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印度 CAR-T 细胞生产过程中基因组重编程的真实世界见解

英文原题:Real-world insights into genomic reprogramming during CAR-T cell manufacturing in India.

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Real-world insights into genomic reprogramming during CAR-T cell manufacturing in India.

PubMed 2026/09/03(内容时间) Front Immunol Q1 · IF 7(JCR 2025)

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研究概要

本土 CAR-T 制造过程诱导显著的转录组重塑,并反映出与改善的功能适应性相关的高增殖和细胞因子反应性 CAR-T 表型。这些发现可能为真实世界临床环境中探索结局相关分析的 CAR-T 基因组特征描述提供基线框架。

研究思路结论见上方概要

尽管CAR-T 细胞疗法已经改变了B细胞恶性肿瘤的治疗结局,但大多数基因组学见解均来自临床试验。在真实世界实践中,尤其是在非美国CAR构建体方面,描述CAR-T 制备过程中分子变化的数据十分匮乏。

这是一项在印度一家三级医疗中心进行的观察性研究,共分析了4组配对样本,包括白细胞分离起始材料(n=4)及相应的最终CAR-T 细胞产品(n=4)。分析使用NanoString nCounter ®平台,采用包含750个基因的靶向免疫肿瘤学panel进行。

比较CAR-T 产品和白细胞单采样本之间的基因表达分析显示,与白细胞单采样本相比,最终产品中与细胞增殖(MKI67、BUB1)、细胞因子反应性(IL2RA、IL12RB2、CISH)、代谢适应性(PHGDH、PSAT1)和效应分化(IRF4、BATF3、LIF)相关的基因显著上调。同时,固有免疫和髓系谱系基因(CD14、FCGR3A/B、FCAR、CYBB、FPR1、LILRA5、TYROBP、S100A12)的下调以及炎症介质(FOS、DUSP1、S100A12)表达的降低,提示一种受控的激活状态,可能限制了基线炎症预激活并有效富集了适应性T细胞。

展开英文摘要原文

While CAR-T cell therapy has transformed outcomes in B-cell malignancies, most genomic insights originate from clinical trials. There is a paucity of data describing molecular changes during CAR-T manufacturing in real-world practice, particularly for non-US CAR constructs.

This was an observational study conducted at a tertiary care center in India where a total of 4 set of paired samples comprising leukapheresis starting material (n=4) and the corresponding final CAR-T cell product (n=4) were analyzed. Analysis was done using NanoString nCounter ® platform with a targeted immune-oncology panel comprising 750 genes.

Comparative gene expression analysis between CAR-T product and leukapheresis sample revealed significant upregulation of genes associated with cell proliferation (MKI67, BUB1), cytokine responsiveness (IL2RA, IL12RB2, CISH), metabolic fitness (PHGDH, PSAT1), and effector differentiation (IRF4, BATF3, LIF) in final product as compared to leukapheresis sample. Concurrent downregulation of innate immune and myeloid lineage genes (CD14, FCGR3A/B, FCAR, CYBB, FPR1, LILRA5, TYROBP, S100A12) along with reduced expression of inflammatory mediators (FOS, DUSP1, S100A12) suggests a controlled activation state that may limit baseline inflammatory priming and effective enrichment of adaptive T cells.

Indigenous CAR-T manufacturing processes induce significant transcriptomic remodeling and reflects a highly proliferative and cytokine-responsive CAR-T phenotype associated with improved functional fitness. These findings may reflect a baseline framework for CAR-T genomic characterization in real-world clinical settings to explore outcome-related analyses.

论文信息

作者
Das N、Mehta P、Gupta K、Katharia R、Pabbi S、Mishra P、Morya S
单位
Department of Pathology, School of Medicine, Amrita Vishwa Vidyapeetham, Faridabad, Haryana, India.India
期刊
Frontiers in immunology2026
原文标识
PubMed 42756106 · DOI 10.3389/fimmu.2026.1912690