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Promising Treatments for Refractory and Resistant Prostate Cancer - Ramesh Narayanan, PhD, MBA

48:411,056 summary words · ~5 min readEnglishBy Cancer Patient LabTranscribed Jun 20, 2026
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Summary

A novel therapeutic agent, ONCT-534, targets and degrades the N-terminal domain of the androgen receptor, bypassing the ligand-binding domain mutations and splice variants that cause current advanced prostate cancer treatments to fail.

Developing drugs that target non-canonical domains offers a viable path to transform highly lethal, drug-resistant metastatic castration-resistant prostate cancer into a manageable chronic disease while avoiding systemic chemotherapy.

Section summaries

0:00-4:52

Historical Foundations of Hormonal Therapy

optional

Dr. Ramesh Narayanan outlines the history of hormonal blockade in prostate cancer, tracing it back to the Nobel Prize-winning work of Huggins and Hodges in the 1940s. They proved that prostate cancer depends on androgens and demonstrated that surgical castration or estrogen therapy successfully halts tumor growth. This established the foundational biological basis for all modern androgen-deprivation therapies used today.

  • Androgen deprivation remains the core therapeutic backbone for prostate cancer management.
  • Surgical castration and feedback-loop suppression of the hypothalamic-pituitary-gonadal axis are functionally equivalent in reducing testosterone.
  • Early diagnostics relied on crude colorimetric blood assays rather than modern PSA or imaging techniques.

This section provides solid historical and biological background, but may be redundant for viewers already familiar with the basics of androgen deprivation.

4:52-9:44

The Rise of Drug Resistance and Splice Variants

watch

The speaker walks through the progressive stages of prostate cancer development, from hormone-sensitive states to highly aggressive metastatic castration-resistant prostate cancer (mCRPC). He details the molecular structural alterations of the androgen receptor under therapeutic pressure. Cancer cells systematically mutate or entirely drop the ligand-binding domain, producing truncated, constitutively active splice variants that drive tumor growth while ignoring current drugs.

  • Over 80% of prostate cancers rely on the androgen receptor for survival and proliferation.
  • Truncated splice variants act as 'constitutively active monsters' that lack the targets of conventional anti-androgens.
  • Patients expressing these mutated splice variants experience highly aggressive disease progression and rapid mortality.

Explains the precise molecular structural changes that cause advanced prostate cancers to become resistant to standard-of-care blockades.

9:44-14:36

ONCT-534: A Novel N-Terminal Domain Degrader

watch

Dr. Narayanan contrasts current mCRPC treatments (which only extend survival by a marginal 4-5 months) with emerging therapies under development. He introduces ONCT-534, a first-in-class degrader that targets the highly conserved, disordered N-terminal domain instead of the mutating ligand-binding domain. By changing the receptor's physical conformation and recruiting E3 ubiquitin ligases, the drug successfully degrades both standard and truncated splice variants.

  • Traditional second-generation anti-androgens offer statistically significant but modest overall survival extensions in advanced stages.
  • ONCT-534 degrades target proteins entirely rather than trying to competitively block hormone binding.
  • This unique degradation mechanism avoids the typical cross-resistance common to sequential second-generation therapies.

This section introduces the core drug technology, its unique target, and the scientific rationale behind its potential to treat drug-resistant tumors.

14:36-20:41

Clinical Trial Efficacy and Q&A on PARP Inhibitors

watch

The presenter shares clinical data from the completed Phase 1A trial of ONCT-534, demonstrating safety and therapeutic response, including significant PSA drops and direct androgen receptor degradation. The discussion transitions to a Q&A session regarding PARP selective inhibitors. The group analyzes the clinical development of PARP-1 selective agents designed to minimize hematological side effects caused by blocking PARP-2.

  • The Phase 1A trial demonstrated a 25% to 50% PSA reduction in several heavily pretreated patients.
  • Targeted androgen receptor degradation was molecularly confirmed in 70% of evaluated patients within 28 days of therapy.
  • PARP-1 selectivity is heavily pursued in clinical development to mitigate standard PARP inhibitor blood toxicities.

Combines human clinical data with an important discussion on precision therapies and how structural selectivity reduces treatment side effects.

20:41-29:12

IND Regulatory Reborn & Phase 1B Strategy

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Dr. Narayanan explains the regulatory path of ONCT-534 following the shutdown of its previous corporate sponsor, noting that the IND has been transferred back to the University of Tennessee. He shares the immediate fundraising targets and the protocol design for the upcoming Phase 1B trial. The clinical focus will center on 18 late-stage patients to determine optimal dosing levels while avoiding toxicities such as seizure-inducing GABA inhibition.

  • An estimated $6 million is required to initiate and complete the Phase 1B trial for ONCT-534.
  • The Phase 1B protocol will evaluate 300mg and 450mg twice-daily doses.
  • Unlike some conventional AR blockers, ONCT-534 does not exhibit GABA-inhibition liabilities linked to clinical seizures.

Provides crucial operational, clinical design, safety, and regulatory details for patients or investors tracking the drug's timeline.

29:12-48:40

Immunotherapy Failures, Diagnostic Profiling, & TME

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The final segment covers the structural limitations of immunotherapies in prostate oncology, highlighting how Provenge's high costs and complex infusion logistics caused commercial failure despite solid clinical proof. Dr. Apfel explains how functional profiling using metastatic bone and liver tissue provides superior diagnostic value over standard prostate biopsies. The video wraps up with a discussion on modulating the tumor microenvironment (TME) to turn 'cold' tumors 'hot'.

  • Provenge failed commercially due to challenging logistics, manufacturing scale issues, and high cost of delivery compared to oral options.
  • Functional diagnostic profiling in advanced patients is best conducted using metastatic tissue over primary prostatectomy samples.
  • A newly developed companion diagnostic based on circulating tumor cells (CTCs) has been validated to track ONCT-534 therapy.

Essential for understanding clinical translation hurdles, diagnostic strategies, and the critical biological battleground of the tumor microenvironment.

Key points

  • The Splice Variant Escape Mechanism — Late-stage prostate cancer cells frequently develop resistance to second-generation therapies by expressing truncated splice variants (like AR-V7) that completely lack the ligand-binding domain (LBD). Since current standard-of-care drugs only target the LBD, these truncated receptors remain permanently active, driving aggressive tumor growth unchecked.
  • First-in-Class N-Terminal Domain Degradation — ONCT-534 bypasses the mutate-and-escape cycle by binding to the disordered N-terminal domain (NTD), a region shared by both full-length and truncated androgen receptors, recruiting E3 ubiquitin ligase to chew up and degrade the entire target protein structure.
  • The Immunological 'Cold' Tumor Challenge — Prostate cancer is biologically characterized as a 'cold' tumor with minimal T-cell infiltration, which explains why modern immune checkpoint inhibitors routinely fail to demonstrate significant clinical benefits.
  • CTC-Based Precision Companion Diagnostics — Researchers have developed non-invasive companion diagnostics using circulating tumor cells (CTCs) isolated from blood to directly measure and verify androgen receptor degradation during drug candidate trials.
The ultimate objective for researchers like me is to make prostate cancer a chronic disease rather than a death sentence at some point. Dr. Ramesh Narayanan
Our drug binds to the disordered N-terminus domain... brings in a E3 ubiquitin ligase and then chews up the androgen receptor and the splice variants. Dr. Ramesh Narayanan

AI-generated from the transcript. May contain errors.

0:03

Hi, I'm Brad Power and this is the

0:04

Cancer Patient Lab and today we're

0:06

honored to have with us Dr. Ramesh

0:08

Narianan.

0:10

Um, he is a researcher in uh prostate

0:13

cancer.

0:14

And he will be talking to us today about

0:16

what he's seeing in the drugs that he's

0:18

been trying to bring to market as well

0:21

as in general what the landscape looks

0:24

like in bringing new drugs to prostate

0:26

cancer.

0:28

Um, and I'm sure we'll have a

0:29

stimulating conversation about uh just

0:31

understanding what the state of the art

0:33

is and what patients should be looking

0:34

forward to in the months and years

0:37

upcoming.

0:38

So with that I'll turn it over to Dr.

0:39

Narianan.

0:41

>> Brad, thank you so much for having me

0:43

here. It's it's an honor to meet you all

0:45

and uh it's a privilege to talk to you.

0:48

Um,

0:48

it I've been thinking in the last 5

0:51

minutes how to condense a 30-minute

0:52

presentation into 10 minute, but let me

0:54

just um go over a few things that would

0:57

uh

0:58

um be helpful here for setting up for

1:01

our discussion.

1:02

As Brad pointed out, we have our group

1:05

has discovered drugs for different

1:07

diseases and the lead drug that is in

1:10

the phase one clinical trial is for

1:12

treatment refractory and relapse

1:14

castration resistant prostate cancer.

1:16

We received FDA's fast track approval

1:19

for our drug and we are in the process

1:21

of raising about 25 million dollars to

1:24

advance it to phase 1B and phase two

1:25

clinical trial. We um co-founded this

1:29

company um called Ramiller combining my

1:32

name Ramesh and Dwayne Miller. Miller is

1:35

our co-investigator. He is the

1:38

lead chemist in the program. So we

1:40

created this company so as to advance

1:43

our drug into the phase 1B clinical

1:45

trial. Okay. So I just want to give you

1:47

one background one uh topic that keeps

1:51

coming up every single time probably you

1:52

all take a medicine or something is

1:55

androgen and androgen receptor.

1:57

So, how did androgen and androgen

1:59

receptor became the driver of or how was

2:02

it discovered that they are the driver

2:04

drivers of this prostate cancer? So, and

2:07

what I'm showing you here is the Nobel

2:10

Prize-winning discovery by Huggins and

2:12

Hodges.

2:13

What they did was

2:15

prostate, which for normal development

2:17

of prostate requires androgens. So, that

2:20

was well known in the 1930s and 1920s.

2:23

And what they thought was that if the

2:25

normal prostate development requires

2:27

androgens, probably the same androgens

2:29

are contributing to the development of

2:31

the prostate cancer.

2:33

So, what they did was they took that

2:36

they performed two clinical trials. Of

2:38

course, in those days they were not

2:39

controlled clinical trials. And one of

2:41

them was surgical castration. So, they

2:44

surgically eliminated the testes, which

2:46

is the primary source of androgen

2:48

synthesis in our body. And then they

2:50

wanted to see what happens to the

2:52

cancer. In those days there are no

2:53

biopsies, there are no other diagnostic

2:57

available. So, the only way to detect

2:59

whether a cancer prostate cancer is

3:01

shrinking or not is using an acid

3:04

phosphatase colorimetric assay in the

3:06

blood. So, they were able to show that

3:08

by surgical castration that by cutting

3:12

off the

3:13

testicular source of androgen supply,

3:15

they were able to shrink the prostate

3:16

cancer here.

3:18

And androgens bind to the receptor

3:20

called androgen receptor. That's why

3:22

either cutting off the androgen supply

3:24

or blocking androgen receptor, which is

3:26

the current modality of treatment, have

3:29

really helped us to advance the

3:31

discoveries based purely on Huggins and

3:33

Hodges. The other thing that what they

3:35

did also was that administering

3:37

estrogens. Estrogens are female hormones

3:39

or women hormones. And what they have

3:41

what happened was that when you

3:43

administered estrogens, it cuts off the

3:46

testicular supply of androgens based on

3:48

this panel that I'm showing on the

3:50

right. This is called hypothalamus,

3:52

pituitary and gonadal axis. So, our

3:55

hypothalamus

3:56

synthesizes gonadotropin-releasing

3:59

hormone that stimulates the pituitary to

4:01

release luteinizing hormone and

4:03

follicle-stimulating hormone. And

4:04

finally, this releases testosterone.

4:07

By like tricking the brain that there is

4:10

already a surge in the hormones, the

4:12

brain shuts down the synthesis of

4:13

testosterone. And this is the second

4:15

modality by which they were able to show

4:18

that the tumor regresses.

4:20

So, these set up the future discoveries

4:22

of androgen receptor antagonists and

4:24

everything that we are currently taking

4:26

and which are in the market which are

4:28

pretty much the mainstay treatment

4:30

options for our

4:32

uh for prostate cancer. So, let's just

4:34

leave some of these background slides

4:36

which you all have seen um uh which you

4:39

are which are quite basic information

4:42

which we don't have uh at this point.

4:44

So, this slide, what it shows is that

4:46

androgens, they come into the cell

4:48

and bind to the androgen receptor.

4:53

So, the androgen receptor, which is in a

4:55

confirmation, it just changes the shape

4:58

and then it binds to the

5:01

DNA and then causes the trans-

5:03

transcription and translation of genes

5:06

including our PSA which is which is

5:09

which has become the primary diagnostic

5:10

marker for prostate cancer.

5:13

So, either you inhibit the steroid

5:16

entry into the cells or completely

5:18

inhibit the steroid synthesis which is

5:20

what abiraterone does. Or inhibit the

5:23

androgen receptor so that which is what

5:25

enzalutamide, apalutamide, darolutamide,

5:28

like Zytiga, all these drugs they're all

5:30

doing. By either way, you're blocking

5:32

this particular receptor.

5:35

So, this receptor is present in over

5:40

85 80 to 85% of the prostate cancer

5:42

patients. And remaining 10 to 15% of the

5:45

prostate cancer do not express the

5:47

receptor, so which means that

5:49

predominantly majority of the prostate

5:50

cancer will respond to androgens or

5:53

androgen receptor blockers. So, for

5:55

example, if you take here, the prostate

5:57

[clears throat] cancer evolves from

5:58

hormone-sensitive prostate cancer, an

6:00

early-stage prostate cancer, which is

6:03

contained within the prostate. And the

6:05

primarily prostatectomy or radiation or

6:09

gonadotropin-releasing hormone, which I

6:11

showed you before. These are the primary

6:14

treatment options for this stage. When

6:17

it becomes hormone-sensitive and

6:18

resistant prostate cancer, then you have

6:20

several options like androgen receptor

6:23

blockers like enzalutamide, abiraterone,

6:25

apalutamide, darolutamide, apalutamide.

6:28

Then it becomes non-metastatic

6:30

castration-resistant prostate cancer.

6:31

Again, androgen receptor antagonists are

6:34

the primary

6:35

source of treatment here.

6:37

Then it becomes metastatic

6:39

castration-resistant prostate cancer,

6:40

which is a very difficult disease to

6:43

treat and manage. And then again, you

6:46

have pretty much the second-generation

6:48

androgen receptor antagonists,

6:49

chemotherapy, lutetium PSMA, and

6:53

PARP inhibitors are there. And then

6:55

finally, it's unfortunately palliative

6:57

care.

6:58

So, the prostate cancer number of

7:00

patients in globally is just massive

7:03

right now. It's about

7:04

annually 1.6 million men are diagnosed

7:07

with prostate cancer, but this number is

7:09

likely to expand to about 2.5 million

7:11

people, men. And it's going to

7:14

contribute to about 700,000 deaths

7:16

annually from by 2040.

7:19

So, how do we manage this prostate

7:21

cancer that's evolving every single

7:23

time? So, what happens is that I just

7:26

want to go to one particular

7:28

slide here. So, if you look here, every

7:31

single time you block the androgen

7:32

receptor, it always cancer is very

7:35

smart. It's always going to find an

7:37

escape route. So, escape routes are

7:40

different escape routes like androgen

7:41

receptor sensitive to other hormones or

7:44

splice variant which will go through

7:46

what it is and different kinases and

7:49

different ways. These are the different

7:50

mechanisms by which androgen receptor

7:52

finds escape routes. So, every single

7:54

cancer

7:55

not only prostate cancer but every

7:57

cancer always tries to rebel against

8:00

what the blockers.

8:02

So, if you look at this slide, this is

8:04

the androgen receptor structure. It is a

8:06

classic transcription factor structure.

8:09

It has an N-terminus domain, DNA binding

8:11

domain, hinge region, and the ligand

8:13

binding domain. All the drugs that are

8:15

being developed right now bind to this

8:18

domain and then block this androgen

8:20

receptor from function.

8:22

Cancer being very smart, what it does is

8:25

that it just leaves off this particular

8:27

domain and creates this constitutively

8:29

active monster.

8:32

This one retains about 75-80% of the

8:36

androgen receptor activity and now you

8:38

don't have the ligand binding domain

8:40

here for it to further inhibit the

8:42

prostate cancer. So, what happens is

8:44

that this becomes the driver of the

8:46

cancer and the patients who express the

8:48

splice variants succumb to the disease

8:51

very quickly in about a year or year and

8:53

a half. So, it's a very aggressive form

8:55

of prostate cancer.

8:57

Right now, the challenge here in the

8:58

prostate cancer drug discovery and

9:00

development field is that

9:01

we know we all know how to block this

9:03

one but can we block this? This is where

9:07

our drug comes into play where our drug

9:10

binds to this region.

9:12

So, by binding to this region, not only

9:14

we are inhibiting the full-length

9:15

androgen receptor, we are also

9:17

inhibiting this splice variant androgen

9:19

receptor. Thereby, we are able to take

9:21

down both the full-length and the splice

9:24

variant forms and the prostate cancer

9:26

just shrinks or gets contained by

9:30

the our drug.

9:31

Okay? So, what are the current

9:33

therapeutic landscape of prostate

9:35

cancer?

9:36

As I mentioned, the localized uh

9:38

hormone-sensitive prostate cancer, you

9:40

have radical prostatectomy,

9:42

brachytherapy, that is radiation, and

9:44

some of these other treatments like

9:46

enzalutamide, apalutamide, and

9:47

darolutamide, which all showed

9:49

significant um uh

9:51

enhancement in the metastasis-free

9:53

survival as well as in the overall

9:55

survival. Overall, this is a really a

9:57

good thing. But, of course, as you keep

10:00

treating the prostate cancer, as you

10:01

keep hitting the androgen receptor, they

10:03

start creating new forms and new

10:06

mechanisms by which they can overcome

10:08

the inhibition. So, this is

10:10

hormone-sensitive prostate cancer.

10:12

Again, you can see that both apalutamide

10:15

and darolutamide are approved for this

10:16

one, and you can see that they are

10:19

pretty much they can extend the um

10:22

progression-free survival or even

10:24

overall survival significantly in this

10:26

patient population.

10:28

This is the major issue, that is the

10:30

metastatic prostate castration-resistant

10:32

prostate cancer is the major problem

10:35

right now we have how to manage it.

10:38

Right now, you have enzalutamide and

10:40

abiraterone are approved, and I think

10:42

darolutamide and apalutamide are also

10:44

approved in this case, where you can see

10:46

that they performed their studies in

10:48

chemo-relapse and chemo-naive patients.

10:51

That is, those who have relapsed from

10:52

the chemotherapy as well as those

10:54

patients who have never experienced or

10:56

never been treated with chemotherapy. In

10:59

both cases, the overall survival

11:00

improved like same, 18.4 months

11:04

as opposed to 13.4 A marginal increase,

11:07

but still it's all statistically

11:09

significant. Like about 4 to 5 months on

11:11

an average, statistically significant.

11:13

So, AR antagonists and androgen

11:16

synthesizing inhibitors, they can

11:18

actually provide a good amount of um

11:20

uh relief or an extension. And beyond

11:23

this point is where we are all trying to

11:25

discover drugs and develop drugs so that

11:28

people or men who have relapsed from

11:30

these cancers, can they be put on new

11:33

modality of treatments and that can

11:35

actually pretty much give them more

11:37

runway before they go to chemotherapy?

11:40

This is what all our approaches are. Of

11:42

course, you have chemotherapy, you all

11:44

have would have experienced like some of

11:46

you would have experienced docetaxel

11:47

cabazitaxel. We as much as possible we

11:49

want to avoid chemotherapy because these

11:52

are all nasty drugs. They don't

11:53

differentiate or discriminate between

11:55

the cancer and the normal cells. So, we

11:57

don't want the patients to go through

12:00

any of the side effects by taking on

12:03

chemotherapy. So, we would love to have

12:05

provide additional

12:07

hormonal treatments that can actually

12:09

give them uh longevity in terms of um

12:12

the targeted therapeutics. Then you have

12:15

radio pharmaceuticals are coming along

12:17

really well. Um PSMA is um a membrane um

12:21

um um

12:22

antigen in prostate prostate cancer and

12:26

this is something that you can just uh

12:28

develop an antibody and combine that

12:30

with lutetium and then focus that on to

12:33

the cancer. So, this is something that

12:36

is um

12:36

being now developed by many companies

12:39

and they're they're showing really good

12:41

success. And you have PARP inhibitors

12:43

which are exclusive for BRCA mutations.

12:45

We were initially thinking that BRCA

12:47

mutations are exclusive to breast cancer

12:50

and ovarian cancer, but now there is a

12:53

small subset of prostate cancer patients

12:55

also express BRCA mutations and these

12:59

patients are really very good uh

13:02

candidates for going on to PARP

13:04

inhibitors which can provide a really a

13:07

nice um um uh runway before you go to

13:10

chemotherapy. So, what are the therapies

13:12

right now in development? You have

13:14

several drugs that are going on in

13:16

development. Um for example, PROTAC is a

13:19

new new modality of treatment. There's

13:21

something called RIP-Tag. We

13:23

as we don't have much time right now to

13:25

go into details of this. Many of these

13:27

are right now in the clinical trials and

13:29

everyone is trying different approaches

13:31

to see if they can provide additional

13:33

benefits to the patients who relapse

13:35

from existing treatments. So, this is

13:37

something that is

13:38

all coming up. The recently in 2 days

13:41

ago in ASCO, a Chinese company presented

13:44

another PROTAC that is showing really a

13:46

very good response. There is

13:50

a rib deck is something that actually

13:52

brings in the androgen receptor with the

13:54

BRD4 and inhibit that and that was

13:57

providing a 70%

14:00

PSA 50 response.

14:03

So, what does our drug do? So, our drug

14:06

actually this is the androgen receptor.

14:08

This is just a modeling that I'm

14:09

showing. Our drug binds to the

14:11

disordered N-terminus domain and changes

14:14

the conformation of the N-terminus

14:16

domain of the androgen receptor, brings

14:18

in a E3 ubiquitin ligase and then chews

14:20

up the androgen receptor and the splice

14:22

variants. This is the mechanism.

14:24

So, when we perform the phase 1A

14:26

clinical trial, we actually had 20

14:28

patients CRPC who had heavily

14:30

pretreated. Average treatment

14:33

was about three to four different

14:36

treatment options where treatments the

14:38

patients have gone through and six

14:41

patients were still on study when we

14:43

discontinued the study because of

14:44

financial reasons by the previous

14:47

company and then it came back to the

14:48

university and I have licensed it out.

14:50

11 patients completed of whom five

14:53

patients showed really

14:55

good response in PSA anywhere between 25

14:58

and 50% decrease in the PSA from

15:00

baseline.

15:01

More than that, what we were also able

15:03

to show was that the androgen receptor

15:05

was degraded in seven out of 10 patients

15:08

within 28 days, which means that we are

15:10

not only blocking the androgen receptor,

15:12

but we are actually getting rid of the

15:14

entire androgen receptor from the system

15:16

so that the patients will respond far

15:18

better over a prolonged period of time.

15:21

So, two patients had stable disease in

15:23

the BID dosing, there's twice daily

15:24

dosing and a 16% decrease in tumor

15:26

burden within 28 days.

15:28

So, these are all very encouraging signs

15:30

with our drug and we are hoping that

15:32

within the next two to three months we

15:35

are very aggressively raising capital

15:37

for advancing this drug put put this

15:40

back into the clinical trial so that the

15:42

patients can be benefited and we can

15:44

make sure that our science has gone out

15:47

and benefited the patient community,

15:48

prostate cancer patient community.

15:50

So,

15:52

where we started in 1941 was the

15:54

surgical castration and we evolved

15:57

tremendously over the last 80 85 years

16:00

and today you have several treatment

16:02

options. Yet, the prostate cancer is

16:05

pretty much contributing to a

16:06

significant number of deaths annually

16:08

within the USA, about 30 to 35,000 men

16:11

are dying from prostate cancer and we

16:13

hope these new modalities of treatments

16:15

will provide additional

16:17

survival benefits to the patients. So,

16:20

that

16:20

the ultimate objective for researchers

16:22

like me is to make prostate cancer a

16:24

chronic disease rather than a death

16:26

sentence at some point. So, we are just

16:28

striving to find new drugs and new

16:31

modalities to make sure that we can just

16:34

make the prostate cancer a chronic

16:35

disease like a diabetes or

16:37

cholesterolemia. With that I'll stop and

16:39

then

16:40

we'll just open it up for really good

16:41

discussion here. Thank you so much.

16:44

>> Thank you. That was a good good job of

16:47

streamlining it down to 15 minutes.

16:50

Uh

16:50

on on the fly.

16:52

And and provided an excellent summary I

16:54

think of the state of the art. Um uh as

16:57

usual for everyone here, um

16:59

if you have questions or comments, uh

17:01

you can use the raise hand feature or

17:03

you can submit them through the chat

17:05

function and I'll read them

17:07

um to Ramesh.

17:08

Um anybody with any questions off the

17:11

top here? I I know Russ,

17:13

I would expect you might have some

17:14

questions or comments if you can.

17:19

>> Yeah, sure.

17:20

Is there data to suggest that PARP

17:24

inhibitors might be effective

17:27

if you're not bracket mutated or HR

17:29

mutated?

17:31

>> That that that is what right now the

17:33

thought is, but people are even starting

17:35

to try PARP inhibitors even in those who

17:38

have wild type bracket and

17:41

some pre-clinical evidence are

17:42

suggesting that it's true, but it's

17:46

yeah a big leap of faith that you have

17:48

to take when you go into clinical trials

17:49

whether you can put the PARP inhibitors

17:51

into

17:52

the one of the biggest

17:54

uh discouraging thing for prostate

17:56

cancer like breast cancer and ovarian

17:59

cancer is that the immunotherapy is not

18:01

quite effective because these cancers

18:04

are cold cancers. There is not much

18:06

immune infiltration.

18:07

So, is there any way that you can prime

18:10

the pump for immune

18:12

infiltration so that the immunotherapy

18:15

can become If that can be done, then

18:17

it'll really be very helpful for

18:19

prostate cancer patients to have

18:20

additional line of treatment for that.

18:22

So, but that to answer your question,

18:25

bracket mutants are the ones currently

18:27

being

18:28

Those patients are the ones approved

18:29

with the PARP inhibitors, but there are

18:31

studies that I have come across where

18:33

people are trying to see if it can be

18:35

extended to non-bracket mutated patients

18:37

also.

18:39

>> Okay, are you aware of seraparib? I'm

18:42

not sure if I'm pronouncing it right,

18:43

seraparib.

18:44

Are there other PARP 1 selective

18:46

inhibitors

18:48

in trials now?

18:50

>> So,

18:52

the different PARP inhibitors are like

18:53

say

18:54

elaborate, rocaprib, and talazoparib.

18:57

These are the three ones that are

18:59

approved right now. If I'm right, you

19:01

mentioned cerebrum, right?

19:04

>> Seraparib, S A R U parib.

19:07

>> Seraparib, I have not

19:09

I'm not familiar with it. I think only

19:11

the three these carb dollars are prepped

19:14

and a lot prepared are approved ones.

19:16

>> Yeah, those are the three approved ones.

19:18

Saraparib is in I think it's phase three

19:21

clinical trials now.

19:23

It's showing some activity in

19:26

HRBC

19:28

and HRR wild type.

19:30

>> Mhm.

19:31

>> No no mutations whatsoever.

19:33

>> That that is

19:34

>> It's in phase one and phase two and I

19:36

believe it's in phase three right now.

19:38

Pretty sure that's right. It's in phase

19:39

three now and I I was just wondering if

19:40

there are other ones. It's a

19:43

a PARP 1 selective inhibitor. So only

19:46

only instead of PARP 1 PARP 2 it just it

19:48

just inhibits PARP 1.

19:50

And maybe that has something to do with

19:52

it.

19:53

It's being

19:55

being

19:56

working for HRR wild type.

19:59

Not sure.

19:59

>> So I'm I'm involved with a company

20:01

that's developing a PARP 1 selective

20:04

inhibitor.

20:04

>> Okay, that's what that is that's what it

20:06

is.

20:06

>> And the primary reason for them to have

20:09

a PARP 1 selective inhibitor is to

20:11

reduce the

20:13

the the side effects like hematological

20:15

side effects and other things which are

20:18

>> Thank you, David.

20:18

>> evidently attributed to PARP 2. So that

20:21

is the reason that they are going after

20:22

PARP 1 selectivity. But it would be a

20:25

transformational outcome if they are

20:27

able to show a statistically significant

20:30

outcome in PARP in BRCA wild type

20:33

patients with the new PARP inhibitors.

20:35

That would really be very helpful.

20:39

>> Um is anything else, Russ?

20:41

>> Uh that's actually what I was interested

20:44

in is the PARP inhibitor part part of

20:46

it.

20:46

>> Okay.

20:47

Let me let me ask

20:49

I was going to just ask David Plunkett

20:51

if I could put you on the spot. David,

20:53

I'm just curious since I know you're

20:54

very educated on all of the

20:57

treatment options that Ramesh went

21:00

through. Was there anything that you

21:01

learned or anything different? Just if

21:03

you could give me sort of an editorial

21:04

comment on what you what you learned

21:06

today.

21:09

>> Um what I was seeing there looked very

21:11

familiar. It was a nice recap, I think.

21:15

I'm interested to hear

21:17

or re-hear the the name of the drug that

21:19

you're currently working on and ask is

21:21

it still in a phase one trial or is the

21:23

phase one trial extended or are you

21:25

ready for phase two?

21:27

>> So we actually we went our drug earlier

21:31

was called Onkt 534.

21:33

It was run by Onkt Therapeutics. So it

21:36

was discovered in our lab at the

21:37

University of Tennessee. So it came back

21:40

to the University of Tennessee after

21:42

Onkt shut down the company because of

21:44

financial reasons. So then I decided to

21:47

take the bull by its horns. So we took

21:48

the drug and then

21:51

we are starting to develop. So right now

21:53

the IND is it's a fast track IND. The

21:57

IND is transferred back to us. So it's

21:59

an inactive IND. The minute we develop

22:02

so we need about $6 million to get to

22:05

the phase 1B. Phase 1A was run between

22:07

40 mg and 1200 mg and 304 300 mg twice

22:12

daily. So we found significant activity

22:15

at 300 mg twice daily. So what we are

22:17

now doing is that we are going to narrow

22:19

down to 18 patients

22:21

to treat them with 300 mg twice daily

22:24

and 450 mg twice daily to just make sure

22:26

that we choose one of the doses to go

22:28

into phase two.

22:29

So we are likely to start the

22:31

manufacturing. Everything is ready the

22:33

minute we get the funds into our

22:35

account. We will just start the

22:36

manufacturing of the API as well as the

22:39

drug product and then initiate

22:42

ideally we would like to initiate the

22:44

the trial by the third quarter of this

22:46

year and then the phase two trial by

22:48

2027

22:50

third to fourth quarter. This is the

22:51

timeline that we have and we are working

22:53

very hard to just make sure that this is

22:56

becoming available to the patients as

22:58

fast as possible.

23:00

>> What are your thoughts on

23:02

uh the qualities of the patients you

23:04

want to recruit?

23:06

What characteristics will you be looking

23:07

for?

23:08

>> So, we are looking for um patients who

23:11

have already been treated with multiple

23:13

lines of treatment. So, the phase 1A

23:16

trial, the patients were treated all the

23:18

way from different AR antagonists,

23:20

androgen synthesis inhibitors, and also

23:23

chemotherapy. And then we recruited them

23:25

so as to make sure that we start late

23:27

stage. And then if we are showing good

23:29

success, then we'll just move early

23:31

stage because some of these current AR

23:33

antagonists, they have some liabilities

23:35

like GABA inhibition, which causes

23:37

seizures. And we want uh to avoid those,

23:40

and ours do not have that. So, we are

23:42

hoping that we can just start at late

23:44

stage, which is easier for approval, and

23:47

then go early into the the the different

23:50

patient population.

23:51

>> On the other side of the coin, are there

23:53

any uh

23:54

uh

23:55

uh

23:56

characteristics that would disqualify

23:59

for a trial?

24:01

>> So, we have not come across So, overall,

24:03

the phase 1A trial was extremely safe.

24:06

In fact, it was only at the highest

24:08

dose, the maximum tolerated dose was

24:10

achieved at 1,200 mg, where they saw a

24:12

typical AR targeted uh side effects such

24:15

as uh hematological problems. But once

24:18

the patient come came off that uh dose,

24:21

the the the patient reverts back to

24:23

healthy condition. So, we at the dose

24:26

that we are proposing to treat, we found

24:28

that it was um quite safe. There were no

24:31

side effects. Maximum grade one or two

24:33

toxicities, just some nausea, vomiting,

24:36

but we don't know whether these are

24:37

associated with the drug or the

24:39

condition of the disease. So, we are not

24:42

sure, but uh as of now, I can state that

24:45

the drug is extremely safe.

24:50

>> Let me uh is is that okay for you,

24:51

David?

24:53

>> Yeah.

24:53

>> Let me just ask some of the other

24:55

prostate cancer patients on this

24:57

webinar, uh the same question I asked

24:59

David,

25:00

Alexander, I know Chad, I think Arthur

25:03

and Chase are also prostate cancer

25:05

patients. Anybody want to comment on the

25:09

summary? I think that Ramesh did a very

25:11

good summary of the treatment options

25:13

available and where they're fitting and

25:15

so on. Anybody have any thoughts or

25:17

comments on that?

25:24

Alexander?

25:28

>> I just wanted to ask uh

25:31

what is

25:33

is

25:35

the

25:36

efficacy tested?

25:39

And what is the efficacy on

25:42

resistance

25:44

prostate cancer patients?

25:46

>> Of which treatment?

25:48

>> Of our drug.

25:49

>> The R.

25:51

>> Okay. So, the

25:53

>> The one

25:54

>> The efficacy

25:55

>> still

25:56

uh

25:57

hormone sensitive, but the tumor

26:00

continues to grow.

26:03

>> So,

26:04

the

26:05

till the end stage, pretty much almost

26:08

all the prostate cancers, they can be

26:10

treated with hormonal treatments because

26:12

the androgen receptor, one form or the

26:14

other, remains active at that point. But

26:18

what happens is that when you keep

26:20

hitting the androgen receptor,

26:22

they become mutated and the mutation

26:24

will not permit the antagonist inhibitor

26:27

to work further. So, that's why

26:29

different people are trying different

26:30

approaches to block that androgen

26:32

receptor, the mutated or the transformed

26:34

androgen receptor.

26:36

So, this is pretty much about 85% 80 to

26:39

85% of the patients do still respond to

26:42

androgen targeted treatments.

26:46

>> And follow up

26:47

uh

26:52

if

26:52

>> the patient is treated with uh

26:55

enzalutamide the

26:57

uh for example

26:59

um

27:01

after the enzalutamide if I understand

27:04

right uh this is these drugs are less

27:07

effective

27:09

or

27:10

>> Exactly.

27:12

Exactly. So

27:14

the for instance when you are treated

27:15

with enzalutamide

27:17

and then you relapse out of it

27:19

they try to go for like say darolutamide

27:22

or apalutamide but as you rightly said

27:23

the cross resistance is another major

27:25

problem.

27:27

So targeting the again the same androgen

27:29

receptor. So this is why people are

27:31

trying different approaches. Like for

27:33

example in our case we bind to a domain

27:35

that is completely different from what

27:37

typically everyone binds to.

27:40

So this by that way we are not tapping

27:43

into the same region where all the drugs

27:45

are shown to have cross resistance. We

27:47

are going to a completely different

27:49

domain which we all in scientific terms

27:51

call as non-canonical domain and then

27:53

try to block the androgen receptor.

27:56

By this way the cross resistance does

27:58

not take place and we have other

28:00

mechanisms also where we have evaluated

28:02

in

28:04

in models which are shown to be pan

28:06

resistant to all the inhibitors and we

28:09

still show efficacy in those. So

28:11

considering these these are quite

28:13

encouraging pre-clinical data and also

28:16

the clinical trial the patients were

28:17

treated heavily with the enzalutamide or

28:20

apalutamide or one of these other amides

28:23

and we are able to show an inhibition in

28:24

the PSA of the patient. So the patients

28:27

when they were recruited two or three

28:29

continuous monitoring that PSA was

28:32

increasing but when we put them on our

28:34

drug the PSA started coming down within

28:36

like four weeks which shows that the

28:38

drug is pretty much working the way that

28:41

we expect it to work.

28:47

>> Okay Alexander.

28:49

Okay.

28:50

Uh there's a question in the chat from

28:52

Alan Morris.

28:54

Um

28:55

he says, "I know this is off-topic, but

28:56

was wondering if you could weigh in on

28:58

the concept of cold tumors. You must

29:00

make it hot first." So, he's talking

29:02

about

29:03

immunotherapies in prostate cancer, I

29:05

guess. Uh just just generally. What what

29:08

What are your I don't think you touched

29:09

much on immunotherapies. Could you just

29:12

give your perspective on that?

29:14

>> Yeah, it's it's very unfortunate that

29:16

immunotherapy fails or rather failed in

29:19

prostate cancer typically similar to

29:21

breast cancer or ovarian cancer, one of

29:24

these hormonal cancers.

29:26

So, one concept that is out there is

29:28

that these tumors do not have immune

29:31

infiltration.

29:33

So, that only when the T cells are

29:35

infiltrating into the the the tumor

29:37

cells, you can use these PD-1 PDL-1

29:40

inhibitors that actually create this

29:43

environment to block the tumors. Like

29:46

melanoma is a great example, lung

29:48

cancer, even bladder cancer seems to be

29:51

quite responsive because last week there

29:53

was

29:54

a clinical trial that came out

29:55

suggesting that the pembrolizumab was

29:58

quite effective in bladder cancer. So,

30:01

this is all quite

30:04

effective. But when it comes to prostate

30:06

cancer, we have been quite struggling

30:08

with that. So, we are in our lab have

30:12

developed another set of molecules not

30:15

drugs, not drugs, but it's a molecule

30:17

where we can we are creating stress in

30:20

the cells, cancer cells. That stress

30:22

creation, we think that it could

30:24

potentially have a changed

30:27

microenvironment that will bring the the

30:30

T cells into it, and then we can combine

30:32

it with the the immunotherapy.

30:35

Yeah, it's a hope right now, but there

30:37

are a lot of other people are also

30:39

trying this approach of how to just

30:42

get the tap into more immune system in

30:45

the in the prostate cancer

30:46

microenvironment so that we can

30:48

treat it with the immunotherapy.

30:51

It's but clinical trials have not been

30:53

quite successful, but we are expecting

30:55

it to just have some kind of an effect

30:57

quite soon.

30:58

>> I'm trying to remember the name, but I

31:00

believe there is one approved

31:02

immunotherapy in prostate cancer. It

31:04

begins with an S, something like

31:05

>> It was dendrion as the provenge was the

31:08

one that was the first drug that was

31:10

approved

31:11

way back in 2007-2008.

31:14

The problem, you know, the in prostate

31:16

cancer patients would love to have oral

31:19

treatment rather than infusion and that

31:23

was

31:24

regarded as one of the causes for

31:26

dendrion to go out of business and was

31:29

not able to be successful in terms of

31:32

advisement. In fact, that was the first

31:34

immunotherapy in fact approved for any

31:36

cancer in fact. Then only came the PD-1,

31:39

PDL-1 and everything. But, um

31:42

this is something that we have to

31:45

keep our eyes and ears open for future

31:48

immunotherapy.

31:50

>> Okay.

31:51

And

31:52

Dr. Appal, if you don't mind my asking,

31:55

is there a possibility for functional

31:57

testing related to prostate cancer

31:59

because many people are getting a

32:00

prostatectomy so there's tissue. You can

32:02

have fresh tissue, which is the key

32:04

ingredient. What is the experience been

32:07

or what questions would you have around

32:09

using functional testing to predict

32:12

which of the of the variety of possible

32:14

therapies would be useful for different

32:16

patients?

32:17

>> Yeah,

32:18

that that's an important question. Thank

32:20

you for for asking. I would first wanted

32:23

to comment on dendrion because I thought

32:25

this is was actually an interesting case

32:28

and because the clinical study actually

32:31

showed significant effectiveness with

32:33

very little side effects. And the reason

32:36

why

32:38

it actually failed commercially was kind

32:41

of because of costs and so it was then I

32:43

think sold to a Chinese

32:46

Chinese company acquired them. And I

32:49

think they were available in the Asian

32:52

and Pacific

32:53

area and I'm not sure whether they are

32:54

back here in the United States available

32:57

and the many of many oncologists says oh

33:00

the trials and the effectiveness was not

33:02

that great. But if you actually look at

33:04

the effectiveness there was a lot of

33:06

crossover in the trial design. And so

33:09

the if you take out the crossover the

33:12

effectiveness was actually

33:14

was actually pretty good. I think it was

33:16

somewhere in the range of 20%

33:19

overall that's kind of now my my my my

33:22

rare recollection. So I'm I still think

33:24

the dendron is actually a very very

33:27

interesting solution. If if it works of

33:32

course and and of course many of those

33:34

tumors are not that hot but but I do

33:36

think

33:37

it is something

33:39

that has a favorable

33:41

risk benefit profile I would like to say

33:44

for those where it works. So I think

33:46

this is a great one. Now coming back to

33:48

your question on functional profiling

33:51

um

33:52

Our assay is particularly helpful when

33:55

the tumor is relatively aggressive. So

33:57

when it's a high grade tumor and when

34:00

the tissue that we have is

34:03

has a significant tumor proportion. So

34:06

if it's let's say a core needle biopsy

34:09

from a prostate

34:11

cancer then you often have a lot of

34:13

benign material and that can confound

34:16

those results. In a prostatectomy it

34:18

really depends on whether this is really

34:21

tumor tissue and so what we feel is the

34:25

cleanest approach is if there is a

34:27

metastatic stage that we get actually a

34:30

specimen from a

34:32

um prostate cancer metastasis.

34:35

And we have been able to even with small

34:38

amount of tissue to isolate um prostate

34:42

cancer from even bone metastases, which

34:44

is more difficult than isolating

34:48

um tissue from breast cancer metastases

34:50

because the bone um metastases tend to

34:53

be more osteoclastic, so they build more

34:56

bone material around it reactively as

34:59

opposed to the

35:00

um breast cancers that are actually much

35:02

easier to process, but we actually can

35:04

process um the the prostate cancer

35:07

metastases from the liver, the lung, the

35:10

bone, wherever it comes from, and that's

35:12

probably the better approach than

35:14

directly getting it from the

35:15

prostatectomy.

35:18

>> Uh Ramesh, do you have any comments on

35:20

that?

35:21

>> No, this is great actually. Um while Dr.

35:24

Appfel was talking, I was just thinking

35:26

about um uh the our one of our

35:28

publications the the the

35:31

the investigators at KOLS University of

35:34

Wisconsin who were part of the clinical

35:35

trial, they developed a very nice um

35:39

companion diagnostic from circulating

35:41

tumor cells, and they published it about

35:43

four five weeks ago uh in and you all

35:46

can search for uh the the with the

35:49

keyword in PubMed ONCT-534 and they

35:52

produce they provided

35:57

some really good biomarker things. So, I

36:00

was just thinking uh probably Dr. Appfel

36:02

and I should uh correspond after this um

36:06

uh talk at some sometime to just see

36:09

what best we could do to develop some

36:10

companion diagnostics for our phase two

36:13

clinical trials.

36:15

>> Happy to connect. Yeah. Um I can put

36:18

down my email in in the chat.

36:20

>> That'll be great.

36:23

Um from Sophia Ren, there's a question

36:25

about personalized vaccines, I guess

36:27

mRNA vaccines, and wondering whether

36:30

they might be promising in prostate

36:32

cancer. They've They've been successful

36:34

in other cancers. Have you got an

36:36

opinion on that?

36:40

>> To my knowledge, I have not seen any

36:41

activity on that in prostate cancer

36:44

space.

36:45

All right. So, I'll have to go back and

36:47

check what is that at least in the

36:48

clinical development. I have not seen an

36:50

mRNA vaccine.

36:53

I can I can uh

36:54

Let me just go back and

36:57

check my memory.

37:03

There There are some um

37:05

like uh

37:08

There's one gene therapy that is

37:10

actually going on right now with some

37:12

uh viral-based gene therapy, but uh

37:16

mRNA vaccine, I've not

37:19

paid any attention on that. I've not

37:20

seen much in the clinical trial as well.

37:24

But, it's an interesting It's an

37:26

interesting question.

37:29

>> All right. Um Alan Morris has his hand

37:31

raised. Alan?

37:35

>> Um hi, doctor, and I cannot pronounce

37:38

your name. I So, I won't I'll just call

37:40

you Dr. N. Is that okay?

37:42

>> That's perfectly fine. Or even Ramesh

37:44

would be better.

37:45

>> Yeah. Um I I have to warn you that I'm

37:48

very focused on the immune aspect of

37:51

prostate cancer care. Thank you, Chris,

37:54

for

37:55

telling more about how Dendreon first

37:59

went bankrupt and what the reasons were

38:01

and that now a Chinese firm has bought

38:03

it out. So, it still exists exists. Um

38:07

Uh

38:08

I just The questions I'm going to ask

38:10

you, because you are an expert, you're a

38:13

scientist, you're a University of

38:15

Tennessee, you swim in the world of

38:17

people that are uh researching this. I

38:20

want to explore the conventional wisdom

38:22

with you. I think it's already been

38:24

implied, but I want you to overtly state

38:27

it. The conventional wisdom is that hot

38:30

tumor, as opposed to the cold tumor, is

38:32

the best tumor for a vaccine. Is that

38:34

not the conventional wisdom?

38:37

>> Yes.

38:37

>> Okay, thank you for confirming that. Um,

38:41

um, let me see. Uh, the corollary of

38:43

that is that a cold tumor, and the

38:44

prototype of that is prostate cancer,

38:47

and that would be the worst tumor to

38:49

pursue a prostate can- uh, cancer

38:50

vaccine for. That is the conventional

38:52

wisdom, right?

38:54

>> Yeah, yes.

38:55

Unless, yeah.

38:56

>> Yeah, uh, you were actually doing

38:58

important work for me, and I want to ask

39:00

you if you allow me to, uh, um,

39:03

uh, cite, uh, your, um,

39:06

hand on the pulse. I'm writing a paper.

39:09

It's now book-length, and it's why

39:11

prostate cancer is the best cancer to

39:13

pursue a a cancer vaccine for. And you

39:16

realize by me just stating that, I am,

39:20

if you are correct in your hand on the

39:21

pulse, I am stating something that is

39:25

absolutely not believed in the medical

39:27

and scientific community. Is that it

39:29

would would that be a fair statement?

39:32

>> Cannot say that absolutely not believed,

39:34

but actually, still we think there is a

39:37

hope for a vaccine in prostate cancer

39:39

for sure, because as Dr. Apple pointed

39:41

out that

39:42

Provenge was a good success, but for

39:46

varying reasons, it did not become a

39:48

commercial success. But, I I'm I'm sure

39:51

that there is an opportunity to get

39:53

into, but who is

39:55

interested in investing

39:58

a lot of large amount of resources to

40:00

take that risk is the biggest question

40:02

right now.

40:03

>> Well, no, I agree. And what what you if

40:06

if I may probe you psychologically,

40:09

you just demonstrated, um, the, uh,

40:11

measured response that all scientists

40:13

take. They don't make absolute

40:15

statements. And I I I I made absolute

40:18

statements. And for example, if I write

40:20

a paper, I should not make absolute

40:22

statements, especially if I'm proposing

40:24

something that's not um

40:26

conventional wisdom. May May I I want to

40:29

Now that we've stated uh that the

40:31

conventional wisdom is that the hot

40:33

tumor is the best tumor to pursue a a

40:35

cancer vaccine, and that the cold tumor

40:37

is the worst, um uh the conventional

40:40

wisdom also is one of the reasons it's

40:42

the worst is because you first must make

40:46

a cold tumor hot. In other words,

40:48

there's this first pre-step that you

40:50

have to do in order. So, obviously, if

40:53

we don't even know much about vaccine

40:56

development, if we first have to do this

40:59

Herculean step of making a cold tumor

41:01

hot, then it should be that much more

41:05

difficult to make a a cancer vaccine to

41:07

prostate cancer. Is that Would that be

41:10

in line with conventional uh wisdom?

41:13

>> Yeah, it's

41:14

My my The point here is that it it need

41:16

not be a Herculean task, you know. There

41:19

could be an opportunity with some

41:21

modality that is under development or

41:23

that has been developed that could be

41:25

combined with the immunotherapy to just

41:28

make the the cold tumor hot. But what it

41:31

what it is is something that not many

41:33

people know or people or maybe people

41:36

are evaluating it right now. But it's

41:38

something that um would be uh it it it

41:41

need not be a huge um um

41:44

battle, but it could be something that

41:46

if people find it out, then it it would

41:48

become the mainstream treatment option.

41:51

>> Al, okay. Al, Al, Al, let me interrupt.

41:54

Um knowing that you

41:56

uh are sort of leading the witness

41:58

through a long argument, could you just

42:00

cut to a single question, please?

42:02

>> Um

42:04

That is difficult. So, uh the single

42:06

question is, would you be willing to

42:08

read my um 50,000 word treatise on why

42:13

prostate cancer is the best cancer to

42:15

pursue a cancer vaccine. And and what if

42:18

you were willing to even attempt to read

42:20

just the uh introduction and um

42:24

abstract and prologue, I would be

42:26

forever grateful. Would you be able to

42:28

provide me your email address?

42:31

>> Sure. I I would be I would be happy to

42:33

read it and it'll be informative for me,

42:36

too. Um for everyone, for you and

42:38

everyone. I'm just putting my email

42:40

address here.

42:41

>> Uh um May May I make one other comment?

42:44

Um the

42:45

I I I used another absolute term, which

42:48

is Herculean, and you used your your

42:51

scientific measure have to say no, it

42:53

may not be Herculean. May I just

42:55

synopsize it and tell and tell me if

42:57

it's correct. The leap is over the tumor

42:59

microenvironment. In other words, if you

43:02

believe in like Boston Gene believes

43:05

that there's only an immune excluded

43:07

state and not an immune naive state, you

43:10

must

43:11

the the exclusion is by the tumor

43:14

microenvironment. You know, obviously,

43:16

the cancer cell would be theoretically

43:18

in there, but a major component is is

43:20

the tumor microenvironment. And you you

43:23

do know that everybody is researching

43:25

the tumor microenvironment and how to

43:28

modulate that. So, that is the extra

43:30

steps. And testament to how my Herculean

43:34

word is not particularly

43:38

exaggerated is they've been trying to do

43:41

this for a decade and and a half, if not

43:43

more, and have been unsuccessful to

43:45

date.

43:46

Um um and you you you mentioned uh the

43:49

counterargument, well, there's no money

43:51

in it. And I I In some sense, I agree

43:54

with that, but I don't agree with that.

43:55

Basic science is pursuing this. And the

43:58

tumor microenvironment is being

44:00

dissected, but it's in its infancy. Um

44:03

and I know your your main talk is on AR

44:07

degrading

44:09

actually I I didn't quite understand

44:11

your because I was focused on my own

44:13

stuff. Is it mainly an AR degrading a

44:17

binding of

44:19

of the constitutionally activated AR

44:23

state that you might get in is that what

44:24

your your molecule is is doing or

44:28

I

44:28

>> No.

44:28

>> Yeah, go ahead explain it to

44:30

>> No, our money our money binds to a

44:32

common domain that is expressed in this

44:34

uh splice variant that is constitutively

44:37

active as well as in the full length

44:39

receptor. So it can inhibit all forms of

44:42

androgen receptors. So that is the best

44:44

part about this particular molecule.

44:46

>> But it's main mechanism that would be to

44:48

thwart the

44:50

permanent on state of the

44:52

constitutionally

44:53

activated

44:56

variant. Is that not right?

44:58

>> Yeah, so it is going to inhibit

45:00

degrade the whole

45:02

AR constitutively active one as well as

45:04

the the full length receptor.

45:06

>> And to also summarize it your company

45:09

you have a very promising thing but you

45:11

need the money to to get the thing going

45:15

as far as the getting a real study to

45:17

show to to to make it practice changing.

45:21

>> Yes, already the phase one clinical

45:23

trial showed that it's

45:25

it's a quite

45:26

an effective drug. Now we need to

45:28

advance it to phase 1B phase two and

45:30

phase three to just make it as fast

45:33

quickly available as possible to the

45:34

patients.

45:35

>> You may have said this in your your talk

45:38

but you you have people that are

45:40

competing with you in the race. It can

45:43

you list two or three that are competing

45:45

in this

45:47

trying to molecularly thwart the

45:49

constitutionally activated AR state

45:54

who are the two or three that are

45:55

competing with you and where are they?

45:57

>> No no one exactly in this space. So we

46:01

are the only ones who are binding to

46:03

this region and degrading the

46:05

constitutively active form. So,

46:08

from that perspective, there is no

46:09

competition at all. The remaining

46:11

competitions come from the typical

46:13

ligand binding domain binding inhibitors

46:15

or degraders or some other modalities

46:19

like gene therapy or so. But, this what

46:21

we are developing is extremely unique

46:23

and this is why FDA gave us the fast

46:25

track.

46:28

>> Okay.

46:30

>> Oh, thank you. Thank you.

46:32

>> Um Ramesh, we I always like to give an

46:36

opportunity to the discussion leader,

46:38

you in this case,

46:40

um to give some sort of parting words of

46:42

wisdom or thoughts, uh key messages

46:45

you'd like to leave with the with us.

46:47

>> Sure. Yeah, so I've put my email address

46:50

in the chat. Um anyone has any questions

46:53

regarding um the drug development or

46:56

mechanism of action or anything, feel

46:58

free to reach out to me. That is one

47:00

thing. Second is that there is a lot of

47:02

hope in prostate cancer because this is

47:05

something that every pharma wants to

47:08

have a drug developed or every company

47:10

wants to develop. The reason being that

47:13

there is a large population of patients

47:15

who are affected by this disease. And

47:19

we researchers like say in academic

47:21

realm as well as in many of the

47:24

commercial side, they don't want to see

47:26

the patients go on to chemotherapy. So,

47:28

what is the best option that we can

47:29

give?

47:30

And since this one has been studied, the

47:33

androgen receptor and the whole prostate

47:35

cancer mechanism have been studied for a

47:37

sustained period of time,

47:39

people are coming up with new approaches

47:42

to target this disease. So, what I'm

47:44

seeing is that it's quite encouraging.

47:47

Over the next 5 to 10 years, we all may

47:50

have additional modalities, hopefully

47:52

including ours, that can actually

47:54

provide a sequential treatment for

47:57

prostate cancer. like how breast cancer

47:59

is uh currently being managed by

48:01

multiple

48:03

treatment options. The same thing

48:06

prostate cancer will have different

48:07

options and I'm very confident that

48:10

uh the the the the road is quite very

48:14

promising right now and

48:17

I hope I'll

48:19

be one of those who make a change in

48:21

this

48:22

to take care of the patients. Thank you

48:24

all really It's an honor to be here and

48:26

I just thank

48:28

Brad for providing this

48:31

forum to talk to you all and I would be

48:32

very happy to come back and talk about

48:35

any specific topics that you all are

48:37

interested in in the future.

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