PO.TB10.14 · 肿瘤生物学

Sphingomonas驱动的鞘氨醇信号传导增强消化系统肿瘤的新辅助治疗应答

Sphingomonas -driven sphingosine signalling enhances neoadjuvant therapy responses in digestive system cancers

编号 4896 展板 12 时间 4/21 09:00–12:00 区域 Section 29 主讲 Bin Wang, PhD
分会场 Microbiome-Tumor-Immune Crosstalk
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作者与单位 Authors & Affiliations

Bin Wang, Xiuchao Wang, Jihui Hao

Tianjin Medical Univ. Cancer Inst. & Hospital, Tianjin, China

摘要 Abstract

中文摘要
新辅助治疗(NAT)正日益成为消化系统恶性肿瘤治疗的重要组成部分,但微生物组是否调节NAT疗效仍不清楚。在此,我们对接受NAT后的消化系统肿瘤患者的肿瘤内微生物组进行了分析,发现Sphingomonas在应答者的胰腺导管腺癌(PDAC)肿瘤中显著富集。在NAT应答良好的胃癌和结直肠癌中同样检测到Sphingomonas。通过小鼠模型,我们证明Sphingomonas能稳定定植于胰腺、胃和结直肠肿瘤,并通过分泌鞘氨醇增强NAT疗效。在机制上,Sphingomonas来源的鞘氨醇结合质膜上的脂筏结构,并优先被免疫细胞内化,在其中选择性激活神经酰胺-鞘磷脂合成通路,而非1-磷酸鞘氨醇(S1P)通路。这一过程放大了脂筏组织,促进免疫突触形成,并增强免疫介导的肿瘤细胞杀伤。我们还进一步开发了一种脂筏靶向的鞘氨醇递送系统,能够增强免疫激活并使肿瘤对NAT敏感。总之,这些发现揭示了消化系统肿瘤中此前未被认识的NAT应答性微生物决定因素,并为基于微生物组的患者分层和治疗增敏提供了概念性和转化性框架。
查看英文原文 English abstract
Neoadjuvant therapy (NAT) is becoming an essential component in the management of digestive system malignancies, yet whether the microbiome modulates NAT efficacy remains unclear. Here, we profile the intratumoral microbiome of patients with digestive system cancers following NAT and identify Sphingomonas as markedly enriched in pancreatic ductal adenocarcinoma (PDAC) tumors from responders. Sphingomonas was likewise detected in gastric and colorectal cancers with favourable NAT responses. Using mouse models, we show that Sphingomonas stably colonizes pancreatic, gastric, and colorectal tumors and augments NAT efficacy through secretion of sphingosine. Mechanistically, Sphingomonas -derived sphingosine binds lipid raft structures on the plasma membrane and is preferentially internalized by immune cells, where it selectively activates the ceramide-sphingomyelin synthetic pathway rather than the Sphingosine-1-Phosphate (S1P) pathway. This process amplifies lipid raft organization, promotes immune synapse formation, and enhances immune-mediated tumor cell killing. We further develop a lipid-raft-targeted sphingosine delivery system that boosts immune activation and sensitizes tumors to NAT. Together, these findings uncover a previously unrecognized microbial determinant of NAT responsiveness in digestive system cancers and provide a conceptual and translational framework for microbiome-based patient stratification and therapeutic sensitization.
利益披露 Disclosure
B. Wang, None.. X. Wang, None.. J. Hao, None.

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