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.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Both APRIL and antibody-fragment-based CAR T cells for myeloma induce BCMA downmodulation by trogocytosis and internalization.
Both APRIL and antibody-fragment-based CAR T cells for myeloma induce BCMA downmodulation by trogocytosis and internalization.
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APRIL-CAR-T 细胞的抗肿瘤反应迅速但不持久。无论使用 APRIL 还是基于抗体的结合部分,BCMA 快速下调均会发生。BCMA 内化是导致这一效应的主要原因,但也观察到 CAR-T 细胞的胞啃作用。我们的研究揭示了靶向 BCMA 时 MM 中 CAR-T 细胞失败的机制,并可为改进治疗策略的开发提供依据。
靶向多发性骨髓瘤(MM)B细胞成熟抗原(BCMA)的嵌合抗原受体(CAR)T细胞疗法可产生快速但不持久的反应。治疗失败的原因尚不清楚。同时靶向两种抗原的CAR可能是一种替代方案。在此,我们(1)设计并表征了基于新型A增殖诱导配体(APRIL)的双抗原靶向CAR,并(2)研究了具有三种不同BCMA结合部分(APRIL、单链可变片段、仅重链)的CAR-T 细胞的耐药机制。
设计并表征了三种新的APRIL-CAR。在体外和体内评估了人APRIL-CAR-T 细胞的细胞毒功能、多功能性、免疫突触形成、记忆、耗竭表型和强直信号活性。为探究耐药机制,我们分析了BCMA水平和细胞定位,并通过活细胞显微镜量化了CAR-T 细胞与靶细胞的相互作用。在体外和体内评估了对通路激活和肿瘤细胞增殖的影响。
APRIL-CAR-T 细胞在三聚体配体结合构象下,在小鼠异种移植模型中体内诱导了快速但非持续的抗肿瘤反应。体外实验中,trimer-BB CAR-T 细胞比monomer-BB CAR-T 细胞更具多功能性,并形成更强的免疫突触。CAR-T 细胞与骨髓瘤细胞接触后,在所有评估的结合部分下,靶细胞上的BCMA均迅速下调。CAR-T 细胞通过胞吐作用获得BCMA,而MM细胞上的BCMA迅速内化。由于BCMA在疾病进展过程中可重新表达,且持续存在的CAR-T 细胞可能无法保护患者免于复发,我们研究了非功能性CAR-T 细胞是否在肿瘤进展中发挥作用。虽然CAR-T 细胞与MM细胞的相互作用激活了BCMA通路,但我们在体外或体内均未发现肿瘤生长增强。
Chimeric antigen receptor (CAR) T cell therapy targeting B cell maturation antigen (BCMA) on multiple myeloma (MM) produces fast but not long-lasting responses. Reasons for treatment failure are poorly understood. CARs simultaneously targeting two antigens may represent an alternative. Here, we (1) designed and characterized novel A proliferation inducing ligand (APRIL) based dual-antigen targeting CARs, and (2) investigated mechanisms of resistance to CAR T cells with three different BCMA-binding moieties (APRIL, single-chain-variable-fragment, heavy-chain-only).
Three new APRIL-CARs were designed and characterized. Human APRIL-CAR T cells were evaluated for their cytotoxic function in vitro and in vivo, for their polyfunctionality, immune synapse formation, memory, exhaustion phenotype and tonic signaling activity. To investigate resistance mechanisms, we analyzed BCMA levels and cellular localization and quantified CAR T cell-target cell interactions by live microscopy. Impact on pathway activation and tumor cell proliferation was assessed in vitro and in vivo.
APRIL-CAR T cells in a trimeric ligand binding conformation conferred fast but not sustained antitumor responses in vivo in mouse xenograft models. In vitro trimer-BB CAR T cells were more polyfunctional and formed stronger immune synapses than monomer-BB CAR T cells. After CAR T cell-myeloma cell contact, BCMA was rapidly downmodulated on target cells with all evaluated binding moieties. CAR T cells acquired BCMA by trogocytosis, and BCMA on MM cells was rapidly internalized. Since BCMA can be re-expressed during progression and persisting CAR T cells may not protect patients from relapse, we investigated whether non-functional CAR T cells play a role in tumor progression. While CAR T cell-MM cell interactions activated BCMA pathway, we did not find enhanced tumor growth in vitro or in vivo.
Antitumor responses with APRIL-CAR T cells were fast but not sustained. Rapid BCMA downmodulation occurred independently of whether an APRIL or antibody-based binding moiety was used. BCMA internalization mostly contributed to this effect, but trogocytosis by CAR T cells was also observed. Our study sheds light on the mechanisms underlying CAR T cell failure in MM when targeting BCMA and can inform the development of improved treatment strategies.
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