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:Increased EGFRvIII Epitope Accessibility after Tyrosine Kinase Inhibitor Treatment of Glioblastoma Cells Creates More Opportunities for Immunotherapy.
我们的结果表明,EGFRvIII 特异性 L8A4 抗体既可识别 EGFRvIII 单体,也可识别共价二聚体,与半胱氨酸桥接结构无关。
胶质母细胞瘤(GB)病例数量逐年增加,目前可用疗法仍然无效。EGFRvIII是一种有前景的GB治疗抗原,是EGFR缺失突变体,含有由CAR-T细胞疗法所用L8A4抗体识别的独特表位。本研究观察到,将L8A4与特定酪氨酸激酶抑制剂(TKI)联合使用,不会妨碍L8A4与EGFRvIII相互作用;在此条件下,形成的二聚体得到稳定,表位展示增加。与野生型EGFR不同,EGFRvIII单体胞外结构暴露第16位游离半胱氨酸(C16),从而在L8A4与EGFRvIII相互作用区域形成共价二聚体。通过计算机模拟分析可能参与共价同源二聚化的半胱氨酸后,我们制备了EGFRvIII相邻区域中半胱氨酸替换为丝氨酸的构建体。我们发现,由于C16以外的半胱氨酸参与,EGFRvIII胞外区在单体和二聚体内部形成二硫键方面具有可塑性。结果提示,EGFRvIII特异性抗体L8A4能够识别EGFRvIII单体和共价二聚体,而不受半胱氨酸桥接结构影响。总之,基于L8A4抗体的免疫治疗,包括CAR-T与TKI联合使用,有望提高抗GB治疗的成功机会。
The number of glioblastoma (GB) cases is increasing every year, and the currently available therapies remain ineffective. A prospective antigen for GB therapy is EGFRvIII, an EGFR deletion mutant containing a unique epitope that is recognized by the L8A4 antibody used in CAR-T (chimeric antigen receptor T cell) therapy. In this study, we observed that the concomitant use of L8A4 with particular tyrosine kinase inhibitors (TKIs) does not impede the interaction between L8A4 and EGFRvIII; moreover, in this case, the stabilization of formed dimers results in increased epitope display. Unlike in wild-type EGFR, a free cysteine at position 16 (C16) is exposed in the extracellular structure of EGFRvIII monomers, leading to covalent dimer formation in the region of L8A4-EGFRvIII mutual interaction. Following in silico analysis of cysteines possibly involved in covalent homodimerization, we prepared constructs containing cysteine-serine substitutions of EGFRvIII in adjacent regions. We found that the extracellular part of EGFRvIII possesses plasticity in the formation of disulfide bridges within EGFRvIII monomers and dimers due to the engagement of cysteines other than C16. Our results suggest that the EGFRvIII-specific L8A4 antibody recognizes both EGFRvIII monomers and covalent dimers, regardless of the cysteine bridging structure. To summarize, immunotherapy based on the L8A4 antibody, including CAR-T combined with TKIs, can potentially increase the chances of success in anti-GB therapy.
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