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Oral Estrogen Receptor PROTAC Vepdegestrant (ARV-471) Is Highly Efficacious as Monotherapy and in Combination with
Sheryl M Gough1, John J Flanagan1, Jessica Teh1
1Arvinas Operations, Inc., New Haven, Connecticut.
Purpose:
Estrogen receptor (ER) alpha signaling is a known driver of ER-positive (ER+)/human epidermal growth factor receptor 2 negative (HER2-) breast cancer. Combining endocrine therapy (ET) such as fulvestrant with CDK4/6, mTOR, or PI3K inhibitors has become a central strategy in the treatment of ER+ advanced breast cancer. However, suboptimal ER inhibition and resistance resulting from the ESR1 mutation dictates that new therapies are needed.
Experimental Design:
A medicinal chemistry campaign identified vepdegestrant (ARV-471), a selective, orally bioavailable, and potent small molecule PROteolysis-TArgeting Chimera (PROTAC) degrader of ER. We used biochemical and intracellular target engagement assays to demonstrate the mechanism of action of vepdegestrant, and ESR1 wild-type (WT) and mutant ER+ preclinical breast cancer models to demonstrate ER degradation-mediated tumor growth inhibition (TGI).
Results:
Vepdegestrant induced ≥90% degradation of wild-type and mutant ER, inhibited ER-dependent breast cancer cell line proliferation in vitro, and achieved substantial TGI (87%-123%) in MCF7 orthotopic xenograft models, better than those of the ET agent fulvestrant (31%-80% TGI). In the hormone independent (HI) mutant ER Y537S patient-derived xenograft (PDX) breast cancer model ST941/HI, vepdegestrant achieved tumor regression and was similarly efficacious in the ST941/HI/PBR palbociclib-resistant model (102% TGI). Vepdegestrant-induced robust tumor regressions in combination with each of the CDK4/6 inhibitors palbociclib, abemaciclib, and ribociclib; the mTOR inhibitor everolimus; and the PI3K inhibitors alpelisib and inavolisib.
Conclusions:
Vepdegestrant achieved greater ER degradation in vivo compared with fulvestrant, which correlated with improved TGI, suggesting vepdegestrant could be a more effective backbone ET for patients with ER+/HER2- breast cancer.
Insights
Vepdegestrant, a novel oral PROTAC degrader of estrogen receptor (ER), effectively inhibits ER-positive breast cancer growth. It shows superior efficacy over fulvestrant and potent combinations with other targeted therapies.
Area of Science:
- Oncology
- Pharmacology
- Medicinal Chemistry
Background:
- Estrogen receptor (ER) alpha signaling drives ER-positive (ER+)/HER2- breast cancer.
- Current endocrine therapies (ET) combined with targeted inhibitors face challenges like suboptimal ER inhibition and ESR1 mutation-driven resistance.
Purpose of the Study:
- To identify and characterize vepdegestrant (ARV-471), a novel small molecule PROTAC degrader of ER.
- To evaluate vepdegestrant's efficacy in preclinical ER+ breast cancer models, including those with ESR1 mutations.
Main Methods:
- Medicinal chemistry campaign to discover vepdegestrant.
- Biochemical and cellular assays to confirm mechanism of action.
- In vivo studies using ER+ breast cancer xenograft and patient-derived models (WT and mutant ER).
Main Results:
- Vepdegestrant achieved >90% ER degradation in vitro and in vivo.
- Demonstrated significant tumor growth inhibition (TGI) in MCF7 xenografts (87%-123%) and tumor regression in resistant models.
- Vepdegestrant showed enhanced efficacy compared to fulvestrant and synergistic effects with CDK4/6, mTOR, and PI3K inhibitors.
Conclusions:
- Vepdegestrant effectively degrades both wild-type and mutant ER.
- Its superior in vivo ER degradation correlates with improved TGI, suggesting potential as a backbone ET for ER+/HER2- breast cancer.
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