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一种保留 T 细胞干性的新型自体 CAR-T 疗法 YTB323 在临床前和早期临床开发中显示增强的 CAR T 细胞疗效

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.

PubMed 2023/09/06(内容时间) Cancer Discov Q1 · IF 29.5(JCR 2025)

研究概要

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%;

中文摘要

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。

展开英文摘要原文

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.

论文信息

作者
Dickinson MJ、Barba P、Jäger U、Shah NN、Blaise D、Briones J、Shune L、Boissel N
第一作者单位
Clinical Haematology, Peter MacCallum Cancer Centre and Royal Melbourne Hospital, and the Sir Peter MacCallum Department of Oncology, University of Melbourne, Melbourne, Victoria, Australia.Australia
通讯作者单位
Sarah Cannon Research Institute and Tennessee Oncology Center for Blood Cancers, Nashville, Tennessee.United States
文献类型
非美国政府资助研究
期刊
Cancer discovery2023 Sep 6
原文标识
PubMed 37249512 · DOI 10.1158/2159-8290.CD-22-1276