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.
Comparative analysis of Bcl-2 family protein overexpression in CAR T cells alone and in combination with BH3 mimetics.
对 CAR T 细胞单独使用和与 BH3 模拟物联合使用时 Bcl-2 家族蛋白过表达的比较分析
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作者:Korell Felix, Olson Michael L, Salas-Benito Diego, Leick Mark B, Larson Rebecca C, Bouffard Amanda, Silva Harrison, Gasparetto Alessandro, Berger Trisha R, Kann Michael C, Mergen Markus, Kienka Tamina, Wehrli Marc, Haradhvala Nicholas J, Bailey Stefanie R, Letai Anthony, Maus Marcela V
| 期刊: | Science Translational Medicine | 影响因子: | 14.600 |
| 时间: | 2024 | 起止号: | 2024 Jun 5; 16(750):eadk7640 |
| doi: | 10.1126/scitranslmed.adk7640 | 研究方向: | 细胞生物学 |
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