决定异体 CAR T 细胞排斥与扩增的细胞和分子机制
Cellular and molecular mechanisms determining allogeneic CAR T cell rejection and expansion.
我们评估了11例接受单一批次cemacabtagene ansegedleucel(cema-cel)治疗的大B细胞淋巴瘤患者,cemacabtagene ansegedleucel是一种异体抗CD19 CAR T产品。
英文原题:The Activity of EGFR CAR NK and CAR T Cells against EGFR Inhibitor-Resistant NSCLC and Drug-Tolerant Persister Cells.
靶向 EGFR 的细胞疗法,尤其是 EGFR CAR NK 细胞,在体外和体内对 EGFR 突变型 DTPC 和 DRC 显示出活性,与 EGFR TKI 或 TGF- 通路阻断联合时活性增强。
目的:携带 EGFR 突变的非小细胞肺癌患者通常可从 osimertinib 等 EGFR 酪氨酸激酶抑制剂(TKI)中显著获益。然而,仍不可避免地会残留一群耐药持续细胞(DTPC),最终产生完全耐药细胞(DRC)。本研究评估 EGFR CAR 疗法在这一背景下的活性。实验设计:研究者制备 EGFR CAR-T 和 CAR-NK,并在体内外评估其对亲本细胞、DTPC 和 DRC 的抗肿瘤活性。研究机制包括调节 DTPC 和 DRC 对 CAR-T 或 CAR-NK 敏感性的因素,如 NK 活化配体、TGF-β 信号和 EGFR 表面水平。此外,还开发了 galunisertib 治疗方案,以及在 CAR-NK 细胞中表达显性负性 TGF-β 受体 II 的策略。结果:DTPC 对 EGFR CAR-T 和 CAR-NK 的敏感性均提高。DRC 对 CAR-T 相对耐受,但对 CAR-NK 更敏感。DRC 和 DTPC 的自然细胞毒性触发受体 3 及 NKG2D 配体水平较高,可增强 CAR-NK 的效力。DRC 中 TGF-β 升高会损害 CAR 功能,但在 CAR-NK 中联合 galunisertib 或共表达显性负性 TGF-β 受体 II 可逆转这一影响。继续使用 TKI 可提高 DRC 的 EGFR 表达,可能解释为何在 TKI 耐药细胞中,TKI 与 CAR 联合较单用 CAR 杀伤更强。结论:靶向 EGFR 的细胞疗法,尤其是 EGFR CAR-NK,在体内外均对 EGFR 突变 DTPC 和 DRC 有活性;与 EGFR TKI 或 TGF-β 通路阻断联合时,活性进一步增强。
PURPOSE: Patients with non-small cell lung cancer harboring EGFR mutations typically have significant clinical benefits from EGFR tyrosine kinase inhibitors (TKI) such as osimertinib. However, a residual population of drug-tolerant persister cells (DTPC) inevitably remains, which ultimately gives rise to fully drug-resistant cells (DRC). This study evaluates the activity of EGFR chimeric antigen receptor (CAR)-based therapies in this context. EXPERIMENTAL DESIGN: We developed EGFR CAR T and CAR NK cells and evaluated their antitumor activity against parental cells, DTPC, and DRC in vitro and in vivo. We investigated the mechanisms regulating the sensitivity of DTPC and DRC to CAR T or CAR NK cells, including NK-activating ligands, TGF- signaling, and EGFR surface levels. Additionally, we developed strategies that included galunisertib treatment and the expression of a dominant-negative TGF- receptor II in CAR NK cells. RESULTS: DTPC demonstrated increased sensitivity to both EGFR CAR T and CAR NK cells. DRC were relatively resistant to CAR T cells but more sensitive to CAR NK cells. DRC and DTPC had higher levels of natural cytotoxicity triggering receptor-3 and NKG2D ligands, which enhance the effectiveness of CAR NK cells. Elevated TGF- levels in DRC impaired CAR function, but this was reversed by coexpression of galunisertib or dominant-negative TGF- receptor II in CAR NK cells. Continued TKI treatment increased EGFR expression on DRC, possibly contributing to the improved killing activity seen with TKI/CAR combinations compared with CAR alone in TKI-resistant cells. CONCLUSIONS: EGFR-directed cellular therapies, particularly EGFR CAR NK cells, demonstrate activity against EGFR-mutant DTPC and DRC in vitro and in vivo, with enhanced activity observed when combined with EGFR TKI or TGF- pathway blockade.
MEMBER ACCOUNT
登录成功会直接打开下一页。