Comparative analysis of Bcl-2 family protein overexpression in CAR T cells alone and in combination with BH3 mimetics

威尼斯人 细胞凋亡 Bcl xL型 癌症研究 嵌合抗原受体 淋巴瘤 启动(农业) Bcl-2家族 白血病 化学 生物 T细胞 医学 免疫学 程序性细胞死亡 免疫系统 慢性淋巴细胞白血病 生物化学 发芽 植物
作者
Felix Korell,Michael Olson,Diego Salas‐Benito,Mark B. Leick,Rebecca C. Larson,Amanda A. Bouffard,Harrison Silva,Alessandro Gasparetto,Trisha R. Berger,Michael C. Kann,Markus Mergen,Tamina Kienka,Marc Wehrli,Nicholas J. Haradhvala,Stefanie R. Bailey,Anthony Letai,Marcela V. Maus
出处
期刊:Science Translational Medicine [American Association for the Advancement of Science (AAAS)]
卷期号:16 (750) 被引量:6
标识
DOI:10.1126/scitranslmed.adk7640
摘要

Approximately 50% of patients with hematologic malignancies relapse after chimeric antigen receptor (CAR) T cell treatment; mechanisms of failure include loss of CAR T persistence and tumor resistance to apoptosis. We hypothesized that both of these challenges could potentially be overcome by overexpressing one or more of the Bcl-2 family proteins in CAR T cells to reduce their susceptibility to apoptosis, both alone and in the presence of BH3 mimetics, which can be used to activate apoptotic machinery in malignant cells. We comprehensively investigated overexpression of different Bcl-2 family proteins in CAR T cells with different signaling domains as well as in different tumor types. We found that Bcl-xL and Bcl-2 overexpression in CAR T cells bearing a 4-1BB costimulatory domain resulted in increased expansion and antitumor activity, reduced exhaustion, and decreased apoptotic priming. In addition, CAR T cells expressing either Bcl-xL or a venetoclax-resistant Bcl-2 variant led to enhanced antitumor efficacy and survival in murine xenograft models of lymphoma and leukemia in the presence or absence of the BH3 mimetic venetoclax, a clinically approved BH3 mimetic. In this setting, Bcl-xL overexpression had stronger effects than overexpression of Bcl-2 or the Bcl-2(G101V) variant. These findings suggest that CAR T cells could be optimally engineered by overexpressing Bcl-xL to enhance their persistence while opening a therapeutic window for combination with BH3 mimetics to prime tumors for apoptosis.
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