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Data from Novel Arginase Inhibitor, AZD0011, Demonstrates Immune Cell Stimulation and Antitumor Efficacy with Diverse Combination Partners

Authors :
Alwin G. Schuller
Wenlin Shao
Stephen E. Fawell
Lisa Drew
M. Raymond V. Finlay
Scott N. Mlynarski
Eric T. Gangl
Iain Simpson
Deanna A. Mele
Clare Hoover
David Henry
Sonya Gales
Jeffrey Varnes
Hormas Ghadially
M. Paola Castaldi
Song Wu
Maryann San Martin
Minhui Shen
Cecilia Kankkonen
Laura B. Prickett
Petar Pop-Damkov
Yanjun Wang
Matthew Griffin
Sharon Tentarelli
Srimathi Srinivasan
Marylens Hernandez
Susan Cantin
Aatman S. Doshi
Publication Year :
2023
Publisher :
American Association for Cancer Research (AACR), 2023.

Abstract

Antitumor immunity can be hampered by immunosuppressive mechanisms in the tumor microenvironment, including recruitment of arginase (ARG) expressing myeloid cells that deplete l-arginine essential for optimal T-cell and natural killer cell function. Hence, ARG inhibition can reverse immunosuppression enhancing antitumor immunity. We describe AZD0011, a novel peptidic boronic acid prodrug to deliver an orally available, highly potent, ARG inhibitor payload (AZD0011-PL). We demonstrate that AZD0011-PL is unable to permeate cells, suggesting that this compound will only inhibit extracellular ARG. In vivo, AZD0011 monotherapy leads to arginine increases, immune cell activation, and tumor growth inhibition in various syngeneic models. Antitumor responses increase when AZD0011 is combined with anti–PD-L1 treatment, correlating with increases in multiple tumor immune cell populations. We demonstrate a novel triple combination of AZD0011, anti–PD-L1, and anti-NKG2A, and combination benefits with type I IFN inducers, including polyI:C and radiotherapy. Our preclinical data demonstrate AZD0011’s ability to reverse tumor immunosuppression and enhance immune stimulation and antitumor responses with diverse combination partners providing potential strategies to increase immuno-oncology therapies clinically.

Details

Database :
OpenAIRE
Accession number :
edsair.doi.dedup.....ccec8976253039fecbf30710253ac110
Full Text :
https://doi.org/10.1158/1535-7163.c.6611322