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Activating Inducible T-cell Costimulator Yields Antitumor Activity Alone and in Combination with Anti-PD-1 Checkpoint
Sapna Yadavilli1, Jeremy D Waight1, Sara Brett2
1GSK, Collegeville, Pennsylvania.
Abstract:
In recent years, there has been considerable interest in mAb-based induction of costimulatory receptor signaling as an approach to combat cancer. However, promising nonclinical data have yet to translate to a meaningful clinical benefit. Inducible T-cell costimulator (ICOS) is a costimulatory receptor important for immune responses. Using a novel clinical-stage anti-ICOS immunoglobulin G4 mAb (feladilimab), which induces but does not deplete ICOS+ T cells and their rodent analogs, we provide an end-to-end evaluation of the antitumor potential of antibody-mediated ICOS costimulation alone and in combination with programmed cell death protein 1 (PD-1) blockade. We demonstrate, consistently, that ICOS is expressed in a range of cancers, and its induction can stimulate growth of antitumor reactive T cells. Furthermore, feladilimab, alone and with a PD-1 inhibitor, induced antitumor activity in mouse and humanized tumor models. In addition to nonclinical evaluation, we present three patient case studies from a first-time-in-human, phase I, open-label, dose-escalation and dose-expansion clinical trial (INDUCE-1; ClinicalTrials.gov: NCT02723955), evaluating feladilimab alone and in combination with pembrolizumab in patients with advanced solid tumors. Preliminary data showing clinical benefit in patients with cancer treated with feladilimab alone or in combination with pembrolizumab was reported previously; with example cases described here. Additional work is needed to further validate the translation to the clinic, which includes identifying select patient populations that will benefit from this therapeutic approach, and randomized data with survival endpoints to illustrate its potential, similar to that shown with CTLA-4 and PD-1 blocking antibodies.
Significance:
Stimulation of the T-cell activation marker ICOS with the anti-ICOS agonist mAb feladilimab, alone and in combination with PD-1 inhibition, induces antitumor activity across nonclinical models as well as select patients with advanced solid tumors.
Insights
Stimulating the Inducible T-cell Costimulator (ICOS) with feladilimab, alone or with PD-1 blockade, shows antitumor potential. This approach activates T cells and demonstrates efficacy in preclinical models and early patient studies for advanced cancers.
Area of Science:
- Immunology
- Oncology
- Pharmacology
Background:
- Monoclonal antibodies (mAbs) targeting costimulatory receptors aim to enhance anti-cancer immunity.
- Despite interest, translating preclinical success of costimulatory receptor signaling to clinical benefit remains a challenge.
- Inducible T-cell Costimulator (ICOS) is crucial for effective T-cell responses and anti-tumor immunity.
Purpose of the Study:
- To evaluate the anti-tumor potential of the novel anti-ICOS mAb, feladilimab, which induces ICOS signaling.
- To assess feladilimab's efficacy as a monotherapy and in combination with PD-1 blockade.
- To present initial clinical data from a Phase I trial investigating feladilimab in advanced solid tumors.
Main Methods:
- Utilized a novel clinical-stage anti-ICOS IgG4 mAb (feladilimab) in nonclinical models (mouse and humanized tumors).
- Evaluated feladilimab's ability to induce ICOS signaling and stimulate anti-tumor T cells.
- Conducted a first-in-human Phase I clinical trial (INDUCE-1) assessing feladilimab with or without pembrolizumab in advanced solid tumors.
Main Results:
- Demonstrated consistent ICOS expression across various cancers, with induction stimulating anti-tumor T cells.
- Showed that feladilimab, alone and combined with a PD-1 inhibitor, induced significant anti-tumor activity in preclinical models.
- Presented case studies from the Phase I trial indicating preliminary clinical benefit in patients with advanced solid tumors.
Conclusions:
- Antibody-mediated ICOS costimulation with feladilimab shows promise for cancer therapy.
- Combination therapy with PD-1 blockade may enhance anti-tumor responses.
- Further validation through randomized trials is necessary to confirm clinical efficacy and identify optimal patient populations.
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