CAR-T(CAR-T)细胞疗法在非肿瘤性疾病中的应用
Chimeric antigen receptor T (CAR-T) cell therapy in non-oncological diseases.
CAR-T(CAR-T)细胞在血液系统恶性肿瘤中的应用推动了这种免疫治疗形式的显著进展。
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Novel low-avidity glypican-3 specific CARTs resist exhaustion and mediate durable antitumor effects against HCC.
Novel low-avidity glypican-3 specific CARTs resist exhaustion and mediate durable antitumor effects against HCC.
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低亲和力的 8F8-BBz CAR-T 在肿瘤病灶内抵抗耗竭和凋亡,展现出比高亲和力 CAR-T 更大的治疗潜力。
嵌合抗原受体工程T细胞(CAR-Ts)对HCC和其他实体瘤的疗效不如对血液癌症的疗效。CAR-Ts可能因持续的抗原接合而在肿瘤内部失去功能。本研究的目的是开发针对HCC的低亲和力单克隆抗体(mAbs)和低亲和力CAR-Ts,并验证低亲和力CAR-Ts能抵抗耗竭并在实体瘤中维持功能,产生持久抗肿瘤效应的假说。
从免疫小鼠中开发了新型人 glypican-3 (hGPC3) mAb。我们获得了三种 hGPC3 特异性 mAb,它们能染色 HCC 肿瘤,但不染色邻近的正常肝组织。其中一种,8F8,结合的表位与 GC33(常用的高亲和力 mAb)的表位接近,但亲和力约低 17 倍。随后我们比较了 8F8 CAR-T 与 GC33 CAR-T 的体外功能和体内抗肿瘤效果。在体外,低亲和力 8F8 CAR-T 杀伤 hGPC3 高表达和 hGPC3 低表达 HCC 肿瘤细胞的程度与高亲和力 GC33 CAR-T 相同。8F8 CAR-T 的扩增和持续存在程度高于 GC33 CAR-T,从而对 HCC 异种移植瘤产生持久应答。重要的是,与 GC33 CAR-T 相比,8F8-BBz CAR-T 在肿瘤组织中数量多 5 倍,且持续时间更长。值得注意的是,肿瘤浸润的 8F8 CAR-T 比 GC33 CAR-T 耗竭更少、凋亡更少,且功能更强。
BACKGROUND AND AIMS: Chimeric antigen receptor engineered T cells (CARTs) for HCC and other solid tumors are not as effective as they are for blood cancers. CARTs may lose function inside tumors due to persistent antigen engagement. The aims of this study are to develop low-affinity monoclonal antibodies (mAbs) and low-avidity CARTs for HCC and to test the hypothesis that low-avidity CARTs can resist exhaustion and maintain functions in solid tumors, generating durable antitumor effects. METHODS AND RESULTS: New human glypican-3 (hGPC3) mAbs were developed from immunized mice. We obtained three hGPC3-specific mAbs that stained HCC tumors, but not the adjacent normal liver tissues. One of them, 8F8, bound an epitope close to that of GC33, the frequently used high-affinity mAb, but with approximately 17-fold lower affinity. We then compared the 8F8 CARTs to GC33 CARTs for their in vitro function and in vivo antitumor effects. In vitro, low-avidity 8F8 CARTs killed both hGPC3 high and hGPC3 low HCC tumor cells to the same extent as high-avidity GC33 CARTs. 8F8 CARTs expanded and persisted to a greater extent than GC33 CARTs, resulting in durable responses against HCC xenografts. Importantly, compared with GC33 CARTs, there were 5-fold more of 8F8-BBz CARTs in the tumor mass for a longer period of time. Remarkably, the tumor-infiltrating 8F8 CARTs were less exhausted and apoptotic, and more functional than GC33 CARTs. CONCLUSION: The low-avidity 8F8-BBz CART resists exhaustion and apoptosis inside tumor lesions, demonstrating a greater therapeutic potential than high-avidity CARTs.
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