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LIFUS 驱动的工程菌通过机械-NOTCH 信号重编程免疫抑制微环境

英文原题:LIFUS-driven engineered bacteria reprogram immunosuppressive niches via mechano-NOTCH signaling.

查看英文原题

LIFUS-driven engineered bacteria reprogram immunosuppressive niches via mechano-NOTCH signaling.

PubMed 2026/03/09(内容时间) Cell Rep Med Q1 · IF 14(JCR 2025)

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中文摘要

实体瘤施加了耦合的基质和免疫屏障,限制了T细胞浸润和功能。在此,我们对Salmonella VNP20009进行工程化改造以表达气体囊泡(GVs),创建了一种瘤内空化源,将低强度聚焦超声(LIFUS)转化为局部机械力。LIFUS激活的GVs通过减少癌症相关成纤维细胞(CAF)丰度、解除基质压缩,并通过机械敏感的Notch1-Jagged1轴选择性破坏CAF-CD8+ T细胞通讯,从而重塑肿瘤微环境。单细胞RNA测序揭示了CD8+ T细胞状态的重新分布,其特征是细胞毒性效应群体的富集和记忆相关细胞中NOTCH信号的减弱。这些生物力学变化增强了瘤内CD8+ T细胞浸润并恢复了效应细胞因子的产生。利用这一机制,我们开发了一种用于过继性T细胞疗法的机械预处理方法。LIFUS驱动的GVs预处理提高了CD8+ T细胞细胞毒性,增强了肿瘤细胞黏附,减少了耗竭特征,并在原位和转移模型中实现了持久的肿瘤控制和延长的生存期。

展开英文摘要原文

Solid tumors impose coupled stromal and immunologic barriers that limit T cell infiltration and function.

Here, we engineer Salmonella VNP20009 to express gas vesicles (GVs), creating an intratumoral cavitation source that converts low-intensity focused ultrasound (LIFUS) into localized mechanical forces. LIFUS-activated GVs remodel the tumor microenvironment by reducing cancer-associated fibroblast (CAF) abundance, decompressing the matrix, and selectively disrupting CAF-CD8 + T cell communication via a mechanosensitive Notch1-Jagged1 axis. Single-cell RNA sequencing reveals a redistribution of CD8 + T cell states, characterized by enrichment of cytotoxic effector populations and attenuation of NOTCH signaling in memory-associated cells.

These biomechanical changes enhance intratumoral CD8 + T cell infiltration and restore effector cytokine production. Leveraging this mechanism, we develop a mechano-priming approach for adoptive T cell therapies. Pre-conditioning with LIFUS-driven GVs improves CD8 + T cell cytotoxicity, strengthens tumor cell adhesion, reduces exhaustion signatures, and achieves durable tumor control and extended survival in orthotopic and metastatic models.

论文信息

作者
Lin L、Li X、Guo W、Xie J、Li X、Guan X、Zhao C、Yin H
第一作者单位
Department of Ultrasound, Institute of Ultrasound in Medicine and Engineering, Zhongshan Hospital, Fudan University, Shanghai 200032, P.R. China.China
通讯作者单位
Department of Ultrasound, Institute of Ultrasound in Medicine and Engineering, Zhongshan Hospital, Fudan University, Shanghai 200032, P.R. China. Electronic address: xu.huixiong@zs-hospital.sh.cn.China
期刊
Cell reports. Medicine2026 Mar 17
原文标识
PubMed 41806839 · DOI 10.1016/j.xcrm.2026.102658