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微生物群来源的丁酸盐通过代谢重编程与细胞外基质重塑增强 MSLN CAR-T 细胞治疗

英文原题:Microbiota-derived butyrate potentiates MSLN CAR-T cell therapy by metabolic reprogramming and extracellular matrix remodeling.

查看英文原题

Microbiota-derived butyrate potentiates MSLN CAR-T cell therapy by metabolic reprogramming and extracellular matrix remodeling.

PubMed 2025/09/17(内容时间) Biomed Pharmacother

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中文摘要

尽管嵌合抗原受体(CAR)T细胞疗法在血液系统恶性肿瘤中取得成功,但其治疗实体瘤的疗效受T细胞功能障碍和免疫抑制性微环境限制。新兴证据提示,肠道微生物来源代谢物,尤其是短链脂肪酸(SCFA),可能增强T细胞功能,但其在CAR-T 疗法中的作用尚未探究。

在此,我们在小样本患者队列(n=4)中获得初步宏基因组和代谢组数据,结果提示丁酸水平较高与CAR-T 应答改善相关。这促使我们研究微生物来源短链脂肪酸丁酸钠(NaB),评估其能否通过代谢和转录重编程增强CAR-T 细胞功能。功能筛选显示,NaB处理增强CAR-T 细胞抗肿瘤活性,同时促进记忆样表型并减少耗竭标志物。

从机制上看,NaB增强抗原驱动的信号效应分子磷酸化(p-ERK1/2、p-ZAP-70、p-AKT),诱导糖酵解和氧化磷酸化通路双重活化,并上调细胞外基质(ECM)重塑基因(MMP、胶原),从而改善肿瘤归巢能力。这些初步发现提示NaB可能连接微生物代谢与CAR-T 细胞疗效,是通过信号-代谢-ECM串扰优化过继免疫疗法的一种有前景但仍处于探索阶段的策略,需在更大队列中验证。

展开英文摘要原文

Despite the success of chimeric antigen receptor (CAR)-T cell therapy in hematologic malignancies, its efficacy in solid tumors remains limited due to T cell dysfunction and immunosuppressive microenvironments. Emerging evidence suggests that gut microbiota-derived metabolites, particularly short-chain fatty acids (SCFAs), may enhance T cell function, but their role in CAR-T therapy is unexplored.

Here, in a small patient cohort (n = 4), preliminary metagenomic and metabolomics data suggested an association between higher butyrate levels and improved CAR-T responses, motivating our investigation of sodium butyrate (NaB), a microbiota-derived short-chain fatty acid, as a potential enhancer of CAR-T cell function through integrated metabolic and transcriptional reprogramming. Functional screening showed that NaB treatment augmented CAR-T cell antitumor activity while promoting a memory-like phenotype and reducing exhaustion markers.

Mechanistically, NaB amplified antigen-driven phosphorylation of signaling effectors (p-ERK1/2, p-ZAP-70, p-AKT), inducing dual activation of glycolytic and oxidative phosphorylation pathways, coupled with upregulation of extracellular matrix (ECM)-remodeling genes (MMPs, Collagens), thereby improving tumor homing capacity.

These preliminary findings suggest NaB as a potential link between microbial metabolism and CAR-T cell efficacy, offering a promising yet exploratory strategy to optimize adoptive immunotherapy through signaling-metabolic-ECM crosstalk, pending validation in larger cohorts.

论文信息

作者
Chen J、Li W、Yang L、Li J、Wang S、Chen Z、Xu S、Wen M
第一作者单位
Jiangsu Key Laboratory for Molecular and Medical Biotechnology, College of Life Sciences, Nanjing Normal University, Nanjing 210023, China. Electronic address: cjn.njnu@foxmail.com.China
通讯作者单位
Jiangsu Key Laboratory for Molecular and Medical Biotechnology, College of Life Sciences, Nanjing Normal University, Nanjing 210023, China. Electronic address: 08278@njnu.edu.cn.China
期刊
Biomedicine & pharmacotherapy = Biomedecine & pharmacotherapie2025 Nov
原文标识
PubMed 40967080 · DOI 10.1016/j.biopha.2025.118560