不适合移植的大 B 细胞淋巴瘤二线使用 axicabtagene ciloleucel:ALYCANTE 最终分析
Second-line axicabtagene ciloleucel in large B-cell lymphoma ineligible for transplantation: ALYCANTE final analysis.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:A Costimulatory CAR Improves TCR-based Cancer Immunotherapy.
A Costimulatory CAR Improves TCR-based Cancer Immunotherapy.
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T细胞受体(TCR)可识别细胞内和细胞外肿瘤抗原,使T细胞能够靶向多种肿瘤抗原。为了维持增殖和持久性,T细胞不仅需要通过TCR的信号(信号1),还需要共刺激信号(信号2)和细胞因子信号(信号3)。由于大多数癌细胞缺乏共刺激分子,肿瘤部位的TCR接合导致T细胞活化不完全和短暂抗肿瘤效应。为克服信号2的缺乏,我们用共刺激嵌合抗原受体(CoCAR)对肿瘤特异性T细胞进行基因修饰。与经典CAR一样,CoCAR将抗体的抗原结合域与共刺激内域结合以触发T细胞增殖,但CoCAR缺乏细胞毒性CD3ζ链,以避免对正常组织的毒性。
我们首先在与共表达同源肽-HLA复合物(信号1)和CD19(信号2)的白血病细胞的连续共培养中,测试了靶向CD19的CoCAR与HLA-A*02:01限制性、survivin特异性转基因TCR(sTCR)的组合。CoCAR使sTCR+ T细胞能够在中位四次额外肿瘤攻击中杀伤肿瘤。CoCAR活性依赖于CD19,但在CD19表达异质性的肿瘤中仍得以维持。在小鼠肿瘤模型中,与sTCR+ T细胞相比,sTCR+CoCAR+ T细胞改善了肿瘤控制并延长了生存期。
我们进一步在Epstein-Barr病毒特异性T细胞(EBVST)中评估了CoCAR。表达CoCAR的EBVST比未转导的EBVST扩增更快,并在EBV+小鼠淋巴瘤模型中延缓了肿瘤进展。
总体而言,我们证明CoCAR可增加表达天然和转基因TCR的T细胞的活性,并增强抗肿瘤反应。
T-cell receptors (TCR) recognize intracellular and extracellular cancer antigens, allowing T cells to target many tumor antigens. To sustain proliferation and persistence, T cells require not only signaling through the TCR (signal 1), but also costimulatory (signal 2) and cytokine (signal 3) signaling. Because most cancer cells lack costimulatory molecules, TCR engagement at the tumor site results in incomplete T-cell activation and transient antitumor effects.
To overcome this lack of signal 2, we genetically modified tumor-specific T cells with a costimulatory chimeric antigen receptor (CoCAR). Like classical CARs, CoCARs combine the antigen-binding domain of an antibody with costimulatory endodomains to trigger T-cell proliferation, but CoCARs lack the cytotoxic CD3ζ chain to avoid toxicity to normal tissues.
We first tested a CD19-targeting CoCAR in combination with an HLA-A*02:01-restricted, survivin-specific transgenic TCR (sTCR) in serial cocultures with leukemia cells coexpressing the cognate peptide-HLA complex (signal 1) and CD19 (signal 2). The CoCAR enabled sTCR+ T cells to kill tumors over a median of four additional tumor challenges. CoCAR activity depended on CD19 but was maintained in tumors with heterogeneous CD19 expression. In a murine tumor model, sTCR+CoCAR+ T cells improved tumor control and prolonged survival compared with sTCR+ T cells.
We further evaluated the CoCAR in Epstein-Barr virus-specific T cells (EBVST). CoCAR-expressing EBVSTs expanded more rapidly than nontransduced EBVSTs and delayed tumor progression in an EBV+ murine lymphoma model.
Overall, we demonstrated that the CoCAR can increase the activity of T cells expressing both native and transgenic TCRs and enhance antitumor responses.
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