← 返回

转录组分析与肿瘤微环境分型揭示 HIV 相关卡波西肉瘤独特而动态的免疫生物学特征

英文原题:Transcriptomic Profiling and Tumor Microenvironment Classification Reveal Unique and Dynamic Immune Biology in HIV-Associated Kaposi Sarcoma.

查看英文原题

Transcriptomic Profiling and Tumor Microenvironment Classification Reveal Unique and Dynamic Immune Biology in HIV-Associated Kaposi Sarcoma.

PubMed 2025/01/17(内容时间) Cells Q2 · IF 6(JCR 2025)

分数与星级只用于站内排序 —— 不代表疗效、安全性或个人适用性。

中文摘要

卡波西肉瘤(KS)是一种起源于内皮细胞的血管肿瘤,与人疱疹病毒8型(KSHV)感染相关,对面临健康差异的群体影响尤为显著。尽管抗逆转录病毒治疗(ART)改善了HIV感染者(PWH)中KS的控制,但晚期KS的治疗选择仍然有限。

本研究通过全转录组谱分析,探讨KS的肿瘤微环境(TME),分析随时间的变化及基于HIV状态的差异。TME被分为四种亚型:免疫富集型(IE)、非纤维化型、免疫富集/纤维化型(IE/F)、纤维化型(F)和免疫耗竭型(D)。研究纳入九名KS患者(四名HIV阴性和五名HIV阳性)。来自三名患者(一名HIV阴性和两名HIV阳性)的纵向收集KS样本,使得个体内TME动态变化的研究成为可能。免疫细胞组成通过去卷积确定,并与非KS患者队列进行比较。

我们的发现显示,所有KS样本,无论HIV状态如何,均富集内皮细胞。与非KS组织相比,KS样本含有更高比例的NK和CD8+ T细胞。HIV阴性KS样本显示IE和IE/F TME亚型,而HIV阳性样本表现出IE、IE/F和F亚型。在疾病过程中,两名HIV阳性KS患者观察到血管生成特征减少。

值得注意的是,HIV阴性KS样本在初次诊断时显示NK细胞介导免疫和细胞毒性反应通路的改变,而HIV阳性样本则表现出生长调节和蛋白激酶活性通路的改变。在诊断时,HIV阳性和HIV阴性的KS样本中,免疫检查点基因表达(包括CD274 (PD-L1)和PDCD1LC2 (PD-L2))相当。

此外,测序在所有分析的患者中识别出一个共享的TCR链,表明T细胞对共同抗原的免疫反应。本研究展示了KS中独特的转录组特征和TME亚型,这些特征因HIV状态而异。

同时,它阐述了个体患者中基因签名和TME亚型的纵向动态变化。共享TCR链的识别提示KS患者的免疫T细胞可能靶向共同抗原。未来研究应进一步探索免疫微环境和独特的T细胞克隆型,这可能为KS患者开发新型治疗策略铺平道路。

展开英文摘要原文

Kaposi Sarcoma (KS) is a vascular tumor originating from endothelial cells and is associated with human herpesvirus 8 (KSHV) infection. It disproportionately affects populations facing health disparities. Although antiretroviral therapy (ART) has improved KS control in people with HIV (PWH), treatment options for advanced KS remain limited.

This study investigates the tumor microenvironment (TME) of KS through whole-transcriptomic profiling, analyzing changes over time and differences based on HIV status. The TME was categorized into four subtypes: immune-enriched (IE), non-fibrotic, immune-enriched/fibrotic (IE/F), fibrotic (F) and immune-depleted (D).

Nine KS patients (four HIV-negative and five HIV-positive) were enrolled in the study. Longitudinally collected KS samples from three patients (one HIV-negative and two HIV-positive) allowed for the investigation of dynamic TME changes within individual patients. The immune cellular composition was determined using deconvolution and compared to a cohort of non-KS patients.

Our findings revealed that all KS samples, regardless of HIV status, were enriched in endothelial cells. Compared to non-KS tissues, the KS samples contained a higher percentage of NK and CD8+ T cells. HIV-negative KS samples displayed the IE and IE/F TME subtypes, while HIV-positive samples exhibited IE, IE/F, and F subtypes. Over the course of the disease, a decrease in angiogenic signatures was observed in two HIV-positive KS patients.

Notably, HIV-negative KS samples showed alterations in NK cell-mediated immunity and cytotoxic response pathways, whereas HIV-positive samples exhibited changes in growth regulation and protein kinase activity pathways at the time of initial diagnosis. The gene expression of immune checkpoints, including CD274 (PD-L1) and PDCD1LC2 (PD-L2), was comparable between HIV-positive and HIV-negative KS samples at diagnosis.

Furthermore, sequencing identified a shared TCR chain in all patients analyzed, indicating a T-cell immune response to a common antigen.

This study demonstrates unique transcriptomic features and TME subtypes in KS that differ based on HIV status.

Additionally, it illustrates longitudinal dynamic changes in the gene signatures and TME subtypes in individual patients. The identification of a shared TCR chain suggests that immune T cells in KS patients may target a common antigen. Future studies should further explore the immune microenvironment and unique T cell clonotypes, which could pave the way for the development of novel therapeutic strategies for KS patients.

论文信息

作者
Yang J、Cali Daylan AE、Shevkoplias A、Postovalova E、Wang M、Tyshevich A、Lee M、Narvel H
单位
Department of Oncology (Medical Oncology), Montefiore Medical Center, Albert Einstein College of Medicine, Bronx, NY 10461, USA.United States
文献类型
非美国政府资助研究 · 美国 NIH 资助研究
期刊
Cells2025 Jan 17
原文标识
PubMed 39851562 · DOI 10.3390/cells14020134