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HIV 驱动的肿瘤生态系统:从慢性免疫功能障碍到癌症进化

英文原题:HIV-driven tumor ecosystem: from chronic immune dysfunction to cancer evolution.

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HIV-driven tumor ecosystem: from chronic immune dysfunction to cancer evolution.

PubMed 2026/09/02(内容时间) Front Microbiol Q1 · IF 5.8(JCR 2025)

研究概要

尽管HIV相关恶性肿瘤已分别从单一致癌病毒(KSHV、EBV、HPV)或单纯免疫功能障碍的角度进行过综述,但此前尚无综合研究将这些过程整合为一个涵盖病毒学、免疫学、肿瘤微环境和临床治疗反应的单一系统性“肿瘤生态系统”框架。

中文摘要

尽管HIV相关恶性肿瘤已分别从单一致癌病毒(KSHV、EBV、HPV)或免疫功能障碍的角度进行过综述,但此前尚无综合研究将这些过程整合为一个跨越病毒学、免疫学、肿瘤微环境和临床治疗反应的系统性“肿瘤生态系统”框架。HIV感染深刻改变免疫格局,建立起一个独特的肿瘤生态系统,其特征为慢性免疫功能障碍、炎症微环境重塑和病毒驱动的致癌机制,这些因素共同促进肿瘤的发生与进展。尽管ART取得了进展,HIV感染者仍面临多种恶性肿瘤的更高风险,凸显了持续性免疫损伤与肿瘤进化之间复杂的相互作用。本综述全面审视了HIV感染者肿瘤生态系统内的各组成部分及其动态变化,重点关注HIV介导的CD4+ T细胞耗竭、免疫检查点失调、慢性抗原刺激以及Tat和Nef等病毒蛋白的直接效应如何促进肿瘤免疫逃逸和基因组不稳定性。整合前沿单细胞组学、空间转录组学和动物模型研究的见解,我们描绘了多种HIV相关癌症(包括淋巴瘤和卡波西肉瘤)的进化轨迹。此外,我们批判性评估了ART对调节肿瘤微环境和免疫反应的影响,以及免疫检查点抑制剂和CAR-T 细胞疗法等新兴免疫治疗手段。通过系统整合分子机制、临床表现和治疗进展,本综述旨在提供一个全面的理论框架,以指导HIV相关恶性肿瘤的精准预防和治疗策略。通过将病毒学、免疫学以及单细胞/空间证据整合到一个生态系统层面的模型中,本综述填补了这一空白,并为HIV相关恶性肿瘤的免疫治疗分层和精准管理提供了直接启示。

展开英文摘要原文

Although HIV-associated malignancies have been reviewed separately through the lens of individual oncogenic viruses (KSHV, EBV, HPV) or immune dysfunction in isolation, no prior synthesis has integrated these processes into a single, systemic "tumor ecosystem" framework spanning virology, immunology, the tumor microenvironment, and clinical treatment response. Human immunodeficiency virus (HIV) infection profoundly alters the immune landscape, establishing a distinctive tumor ecosystem characterized by chronic immune dysfunction, inflammatory microenvironment remodeling, and virus-driven oncogenic mechanisms that collectively promote cancer initiation and progression. Despite advances in antiretroviral therapy (ART), HIV-infected individuals remain at increased risk for various malignancies, underscoring the complex interplay between persistent immune impairment and tumor evolution. This review comprehensively examines the components and dynamic changes within the tumor ecosystem of HIV-infected patients, focusing on how HIV-mediated CD4+ T-cell depletion, immune checkpoint dysregulation, chronic antigenic stimulation, and direct effects of viral proteins such as Tat and Nef facilitate tumor immune evasion and genomic instability. Integrating insights from cutting-edge single-cell omics, spatial transcriptomics, and animal model studies, we delineate the evolutionary trajectories of diverse HIV-associated cancers, including lymphomas and Kaposi's sarcoma. Furthermore, we critically evaluate the impact of ART on modulating the tumor microenvironment and immune responses, alongside emerging immunotherapeutic approaches such as immune checkpoint inhibitors and chimeric antigen receptor T-cell (CAR-T) therapies. By systematically synthesizing molecular mechanisms, clinical manifestations, and therapeutic advancements, this review aims to provide a comprehensive theoretical framework to guide precision prevention and treatment strategies for HIV-related malignancies. By integrating virological, immunological, and single-cell/spatial evidence into an ecosystem-level model, this review addresses this gap and offers direct implications for immunotherapy stratification and precision management of HIV-associated malignancies.

论文信息

作者
Zhou G、Liao J、Tang H、Hou X、Li Q、Li X
单位
Department of General Medicine, West China Hospital, Sichuan University, Chengdu, Sichuan, China.China
文献类型
综述
期刊
Frontiers in microbiology2026
原文标识
PubMed 42751305 · DOI 10.3389/fmicb.2026.1901762