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Published on: June 9, 2023
Gedatolisib shows superior potency and efficacy versus single-node PI3K/AKT/mTOR inhibitors in breast cancer models
Stefano Rossetti1, Aaron Broege1, Adrish Sen1
1Celcuity, Inc. 16305 36th Ave N, Suite 100, Minneapolis, MN, 55446, USA.
Abstract:
The PI3K, AKT, and mTOR (PAM) pathway is frequently dysregulated in breast cancer (BC) to accommodate high catabolic and anabolic activities driving tumor growth. Current therapeutic options for patients with hormone receptor (HR) + / HER2- advanced BC (ABC) include PAM inhibitors that selectively inhibit only one PAM pathway node, which can lead to drug resistance as cells rapidly adapt to maintain viability. We hypothesized that gedatolisib, which potently inhibits all Class I PI3K isoforms, as well as mTORC1 and mTORC2, may be more effective in BC cells than single-node PAM inhibitors by limiting adaptive resistances. By using multiple functional assays, a panel of BC cell lines was evaluated for their sensitivity to four different PAM inhibitors: gedatolisib (pan-PI3K/mTOR inhibitor), alpelisib (PI3Kα inhibitor), capivasertib (AKT inhibitor), and everolimus (mTORC1 inhibitor). Gedatolisib exhibited more potent and efficacious anti-proliferative and cytotoxic effects regardless of the PAM pathway mutational status of the cell lines compared to the single-node PAM inhibitors. The higher efficacy of gedatolisib was confirmed in three-dimensional culture and in BC PDX models. Mechanistically, gedatolisib decreased cell survival, DNA replication, cell migration and invasion, protein synthesis, glucose consumption, lactate production, and oxygen consumption more effectively than the other PAM inhibitors tested. These results indicate that inhibition of multiple PAM pathway nodes by a pan-PI3K/mTOR inhibitor like gedatolisib may be more effective at inducing anti-tumor activity than single-node PAM inhibitors. A global Phase 3 study is currently evaluating gedatolisib plus fulvestrant with and without palbociclib in patients with HR+/HER2- ABC.
Insights
Gedatolisib, a pan-PI3K/mTOR inhibitor, shows greater effectiveness against breast cancer (BC) cells than single-target drugs by inhibiting multiple nodes of the PI3K/AKT/mTOR (PAM) pathway, potentially overcoming drug resistance.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- The PI3K, AKT, and mTOR (PAM) pathway is crucial for tumor growth and frequently dysregulated in breast cancer (BC).
- Current therapies targeting single nodes of the PAM pathway in advanced hormone receptor-positive/HER2-negative BC (ABC) can lead to drug resistance.
- Gedatolisib, a pan-PI3K/mTOR inhibitor, is hypothesized to be more effective by targeting multiple PAM pathway nodes.
Purpose of the Study:
- To evaluate the efficacy of gedatolisib compared to single-node PAM inhibitors in BC.
- To investigate the mechanisms underlying the anti-tumor activity of gedatolisib.
Main Methods:
- Sensitivity assays of BC cell lines to gedatolisib, alpelisib (PI3Kα inhibitor), capivasertib (AKT inhibitor), and everolimus (mTORC1 inhibitor).
- Evaluation in 3D culture and BC patient-derived xenograft (PDX) models.
- Mechanistic studies assessing cell survival, proliferation, migration, invasion, protein synthesis, and metabolism.
Main Results:
- Gedatolisib demonstrated superior anti-proliferative and cytotoxic effects compared to single-node inhibitors across various BC cell lines.
- Its efficacy was confirmed in 3D cultures and PDX models.
- Gedatolisib more effectively reduced cell survival, DNA replication, migration, invasion, protein synthesis, and metabolic activity (glucose/oxygen consumption, lactate production).
Conclusions:
- Inhibiting multiple nodes of the PAM pathway with a pan-PI3K/mTOR inhibitor like gedatolisib offers greater anti-tumor activity than single-node inhibition in BC.
- Gedatolisib shows promise for treating advanced HR+/HER2- BC, with a Phase 3 study ongoing.
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