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:A Novel Autologous CAR-T Therapy, YTB323, with Preserved T-cell Stemness Shows Enhanced CAR T-cell Efficacy in Preclinical and Early Clinical Development.
临床上,在比tisagenlecleucel低25倍的剂量下,YTB323显示出:(i) 有前景的整体安全性[细胞因子释放综合征(任何级别,35%;3级,6%),神经毒性(任何级别,25%;3级,6%)];(ii) DL1和DL2的总体缓解率分别为75%和80%;
未标注:CAR T细胞产品质量和干性(Tstem)是体内扩增、疗效和临床应答的主要决定因素。已知延长的体外培养会耗竭Tstem,从而影响临床结局。YTB323是一种新型自体CD19靶向CAR T细胞疗法,表达与tisagenlecleucel相同的已验证CAR,采用下一代平台在<2天内制造。在此,我们报告YTB323在复发/难治性弥漫性大B细胞淋巴瘤(r/r DLBCL;NCT03960840)成人患者中的临床前开发和初步临床数据。在临床前小鼠模型中,YTB323在低于传统制造CAR T细胞的剂量下表现出增强的体内扩增和抗肿瘤活性。在临床上,在比tisagenlecleucel低25倍的剂量下,YTB323显示出(i)有前景的总体安全性[细胞因子释放综合征(任何级别,35%;3级,6%),神经毒性(任何级别,25%;3级,6%)];(ii)DL1和DL2的总体缓解率分别为75%和80%;(iii)相当的CAR T细胞扩增;以及(iv)T细胞表型的保留。当前数据支持YTB323用于r/r DLBCL的继续开发。意义:传统CAR T细胞制造需要延长体外细胞培养,减少naive和干细胞记忆T细胞群体并削弱抗肿瘤活性。YTB323表达与tisagenlecleucel相同的已验证CAR,可在<2天内制造,同时保留T细胞干性并在低25倍的剂量下增强临床活性。参见Wang的相关评论,第1961页。本文收录于本期精选文章,第1949页。
UNLABELLED: CAR T-cell product quality and stemness (Tstem) are major determinants of in vivo expansion, efficacy, and clinical response. Prolonged ex vivo culturing is known to deplete Tstem, affecting clinical outcome. YTB323, a novel autologous CD19-directed CAR T-cell therapy expressing the same validated CAR as tisagenlecleucel, is manufactured using a next-generation platform in <2 days. Here, we report the preclinical development and preliminary clinical data of YTB323 in adults with relapsed/refractory diffuse large B-cell lymphoma (r/r DLBCL; NCT03960840). In preclinical mouse models, YTB323 exhibited enhanced in vivo expansion and antitumor activity at lower doses than traditionally manufactured CAR T cells. Clinically, at doses 25-fold lower than tisagenlecleucel, YTB323 showed (i) promising overall safety [cytokine release syndrome (any grade, 35%; grade 3, 6%), neurotoxicity (any grade, 25%; grade 3, 6%)]; (ii) overall response rates of 75% and 80% for DL1 and DL2, respectively; (iii) comparable CAR T-cell expansion; and (iv) preservation of T-cell phenotype. Current data support the continued development of YTB323 for r/r DLBCL. SIGNIFICANCE: Traditional CAR T-cell manufacturing requires extended ex vivo cell culture, reducing naive and stem cell memory T-cell populations and diminishing antitumor activity. YTB323, which expresses the same validated CAR as tisagenlecleucel, can be manufactured in <2 days while retaining T-cell stemness and enhancing clinical activity at a 25-fold lower dose. See related commentary by Wang, p. 1961. This article is featured in Selected Articles from This Issue, p. 1949.
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