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肝细胞癌中三级淋巴结构的双重作用:从空间位置到临床意义

英文原题:The Dichotomous Role of Tertiary Lymphoid Structures in Hepatocellular Carcinoma: From Spatial Location to Clinical Implications.

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The Dichotomous Role of Tertiary Lymphoid Structures in Hepatocellular Carcinoma: From Spatial Location to Clinical Implications.

PubMed 2025/08/31(内容时间) Immunol Invest Q3 · IF 2.3(JCR 2025)

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研究概要

基于 HCC 中 TLSs 空间定位的功能悖论对于指导治疗至关重要。通过整合空间多组学、AI 驱动的计算病理学和多模态液体活检来克服当前的评估和监测瓶颈,为精准解码和标准化评估 TLSs 功能状态提供了途径。未来的研究应转向针对 TLSs 功能和位置的积极治疗干预,以优化 HCC 患者的个性化免疫治疗策略。

研究思路结论见上方概要

三级淋巴结构(TLSs)在非淋巴组织中发挥异位免疫中心的功能,是肿瘤免疫学中的关键研究领域,尤其是在肝细胞癌(HCC)中。然而,TLSs在HCC中的作用表现出显著的异质性;瘤内TLSs(iTLSs)与良好的预后和免疫治疗反应相关,而瘤周TLSs可能功能失调或促进肿瘤进展。这种空间悖论是理解和利用TLSs治疗HCC的核心科学问题。肝脏独特的免疫抑制和纤维化微环境,受肝星状细胞来源的癌症相关成纤维细胞(CAFs)和局部信号如色氨酸代谢的影响,深刻调控着TLSs的形成和功能极化。

本综述整合了当前关于HCC中TLSs的研究,聚焦于基于空间定位的功能异质性及涉及肝脏微环境的调控机制。它指出了TLSs临床转化中的主要瓶颈,包括评估标准不一致以及缺乏非侵入性动态监测方法。空间多组学、AI驱动的计算病理学和多模态液体活检等前沿技术范式被探索为精确解码和标准化评估TLSs功能状态的可行路径。

现有证据强调了iTLSs(有利的结局、改善的免疫治疗反应)与瘤周TLSs(功能失调或促肿瘤)在HCC中的差异性影响。TLSs的调控被证明与肝脏独特的微环境,特别是CAFs和色氨酸代谢,深度交织。该分析指出了整合先进技术以克服当前评估和监测挑战的潜力,为更精确地理解TLSs的功能状态铺平了道路。

展开英文摘要原文

Tertiary lymphoid structures (TLSs) function as ectopic immune centers in non-lymphoid tissues and are a key area of research in tumor immunology, particularly in hepatocellular carcinoma (HCC). However, the role of TLSs in HCC shows significant heterogeneity; intratumoral TLSs (iTLSs) are linked to favorable outcomes and immune therapy responses, while peritumoral TLSs may be dysfunctional or promote tumor progression. This spatial paradox is a core scientific question for understanding and leveraging TLSs in HCC treatment. The liver's unique immunosuppressive and fibrotic microenvironment, influenced by hepatic stellcell-derived cancer-associated fibroblasts (CAFs) and local signals like tryptophan metabolism, profoundly regulates TLSs formation and functional polarization.

This review integrates current research on TLSs in HCC, focusing on their functional heterogeneity based on spatial localization and the regulatory mechanisms involving the liver's microenvironment. It identifies major bottlenecks in TLSs clinical translation, including inconsistent assessment standards and the lack of non-invasive dynamic monitoring methods. Cutting-edge technological paradigms such as spatial multi-omics, AI-driven computational pathology, and multi-modal liquid biopsy are explored as feasible pathways for precise decoding and standardized assessment of TLSs functional states.

Existing evidence highlights the differential impact of iTLSs (favorable outcomes, improved immunotherapy response) versus peritumoral TLSs (dysfunctional or pro-tumorigenic) in HCC. The regulation of TLSs is shown to be deeply intertwined with the liver's unique microenvironment, particularly CAFs and tryptophan metabolism. The analysis points to the potential for integrating advanced technologies to overcome current assessment and monitoring challenges, paving the way for a more precise understanding of TLSs functional states.

Addressing the functional paradox of TLSs based on spatial localization in HCC is crucial for guiding treatment. Overcoming current assessment and monitoring bottlenecks through the integration of spatial multi-omics, AI-driven computational pathology, and multi-modal liquid biopsy offers a pathway for precise decoding and standardized evaluation of TLSs functional states. Future research should shift towards active therapeutic interventions targeting TLSs function and location to optimize personalized immunotherapy strategies for HCC patients.

论文信息

作者
Xu J、Cheng Y、Feng Y、Wang Y
第一作者单位
School of Health Science and Engineering, University of Shanghai for Science and Technology, Shanghai, China.China
通讯作者单位
Department of Liver Surgery, Affiliated Cancer Hospital of Fudan University, Shanghai, China.China
文献类型
综述
期刊
Immunological investigations2025 Nov
原文标识
PubMed 40887833 · DOI 10.1080/08820139.2025.2553774