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
0:10
Um, he is a researcher in uh prostate
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
0:28
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
0:38
So with that I'll turn it over to Dr.
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
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
0:58
um be helpful here for setting up for
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
2:15
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
2:33
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
3:13
testicular source of androgen supply,
3:15
they were able to shrink the prostate
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
3:56
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
4:32
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
6:35
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
6:58
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
7:55
not only prostate cancer but every
7:57
cancer always tries to rebel against
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
8:32
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
8:57
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
9:31
Okay? So, what are the current
9:33
therapeutic landscape of prostate
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
9:51
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
10:28
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
12:07
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
12:22
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
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
13:38
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
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
15:01
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.
15:52
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
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
16:40
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.
16:52
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
17:08
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.
17:20
Is there data to suggest that PARP
17:24
inhibitors might be effective
17:27
if you're not bracket mutated or HR
17:31
>> 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
17:52
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
18:12
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
18:28
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
18:39
>> Okay, are you aware of seraparib? I'm
18:42
not sure if I'm pronouncing it right,
18:44
Are there other PARP 1 selective
18:52
the different PARP inhibitors are like
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
19:31
>> No no mutations whatsoever.
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
19:56
working for HRR wild type.
19:59
>> So I'm I'm involved with a company
20:01
that's developing a PARP 1 selective
20:04
>> Okay, that's what that is that's what it
20:06
>> And the primary reason for them to have
20:09
a PARP 1 selective inhibitor is to
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
20:49
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
21:09
>> 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
21:51
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
22:21
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
22:29
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
22:50
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
23:00
>> What are your thoughts on
23:02
uh the qualities of the patients you
23:06
What characteristics will you be looking
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
23:51
>> On the other side of the coin, are there
23:56
characteristics that would disqualify
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,
24:53
>> Let me just ask some of the other
24:55
prostate cancer patients on this
24:57
webinar, uh the same question I asked
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
25:28
>> I just wanted to ask uh
25:39
And what is the efficacy on
25:44
prostate cancer patients?
25:46
>> Of which treatment?
25:57
hormone sensitive, but the tumor
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
26:36
So, this is pretty much about 85% 80 to
26:39
85% of the patients do still respond to
26:42
androgen targeted treatments.
26:52
>> the patient is treated with uh
27:01
after the enzalutamide if I understand
27:04
right uh this is these drugs are less
27:14
the for instance when you are treated
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
27:27
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
28:04
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.
28:50
Uh there's a question in the chat from
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
29:03
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
29:33
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
29:54
a clinical trial that came out
29:55
suggesting that the pembrolizumab was
29:58
quite effective in bladder cancer. So,
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
30:58
>> 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
31:11
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
31:24
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
31:52
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
32:18
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
32:38
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
32:53
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
33:39
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
33:52
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
34:11
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
34:32
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
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
35:18
>> Uh Ramesh, do you have any comments on
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
36:15
>> 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
36:40
>> To my knowledge, I have not seen any
36:41
activity on that in prostate cancer
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
36:54
Let me just go back and
37:03
There There are some um
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
37:35
>> 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
37:45
>> 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,
37:55
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
38:08
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
>> 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
38:56
>> 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
39:42
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
39:55
interested in investing
39:58
a lot of large amount of resources to
40:00
take that risk is the biggest question
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?
41:14
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.
41:56
uh are sort of leading the witness
41:58
through a long argument, could you just
42:00
cut to a single question, please?
42:04
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
42:41
>> Uh um May May I make one other comment?
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
43:11
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
43:46
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
44:09
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
44:19
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
>> 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
44:50
permanent on state of the
44:56
variant. Is that not right?
44:58
>> Yeah, so it is going to inhibit
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
45:26
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
45:35
>> 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
45:47
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
46:30
>> Oh, thank you. Thank you.
46:32
>> Um Ramesh, we I always like to give an
46:36
opportunity to the discussion leader,
46:40
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
47:30
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
48:03
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
48:19
be one of those who make a change in
48:22
to take care of the patients. Thank you
48:24
all really It's an honor to be here and
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.