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STING 激动剂激发宫颈癌免疫微环境炎症并克服抗 PD-1 治疗耐药性

英文原题:STING agonist inflames the cervical cancer immune microenvironment and overcomes anti-PD-1 therapy resistance.

查看英文原题

STING agonist inflames the cervical cancer immune microenvironment and overcomes anti-PD-1 therapy resistance.

PubMed 2024/03/14(内容时间) Front Immunol Q1 · IF 7(JCR 2025)

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研究概要

本研究强调了 STING 通路的关键作用以及 MSA-2 在重塑宫颈癌免疫微环境中的潜力。将 MSA-2 与免疫检查点抑制剂联合使用代表了一种变革性方法,有望改善预后。需要进一步研究以探索 MSA-2 在宫颈癌治疗中更广泛的免疫景观和潜在长期效应。

研究思路结论见上方概要

宫颈癌对全球女性健康构成重大威胁。然而,当前的治疗干预措施,如放疗、化疗、手术切除和免疫检查点抑制剂,在疾病晚期面临局限性。鉴于宫颈癌中的免疫抑制微环境,迫切需要探索新的视角。在这方面,STING激动剂已成为有前景的候选药物。

表达谱和临床病理数据来自癌症基因组图谱(TCGA)和基因表达综合数据库(GEO)数据集。使用Kaplan-Meier Plotter、ESTIMATE和deconvo_CIBERSOR对STING下游基因(CCL5、CXCL9、CXCL10)进行预后分析及免疫浸润分析。采用SingleR、卡方检验和基因集富集分析(GSEA)进行单细胞RNA测序(scRNA-seq)分析,以评估MSA-2在宫颈癌治疗中的潜力。细胞相互作用分析利用CellChat包评估MSA-2给药后细胞相互作用的增强情况。构建了涉及U14和TC-1的小鼠肿瘤模型,随后对组织进行IF以评估治疗后的肿瘤微环境状态。

宫颈癌预后与STING下游基因表达升高相关,提示生存期延长和复发减少。这些基因与免疫浸润呈正相关,影响基质评分、免疫评分和estimate评分。特定免疫细胞群体,包括CD8 + T细胞、M1型巨噬细胞、NK细胞和滤泡辅助性T细胞,与STING下游基因相关。在经典免疫排斥模型中的scRNA-seq显示,MSA-2对TME内重要组分发挥致敏和激活功能,并增强其细胞间通讯。体内实验最终证明,MSA-2无论是作为单一治疗还是与anti-PD-1联合,均有效抑制皮下宫颈肿瘤的生长。此外,与anti-PD-1单药治疗相比,联合策略通过激发强效抗肿瘤免疫应答显著增强了疗效。

展开英文摘要原文

Cervical cancer poses a significant global threat to women's health. However, current therapeutic interventions, such as radiotherapy, chemotherapy, surgical resection, and immune checkpoint inhibitors, face limitations in the advanced stages of the disease. Given the immunosuppressive microenvironment in cervical cancer, it is imperative to explore novel perspectives. In this regard, STING agonists have emerged as promising candidates.

The expression profiles and clinicopathological data were obtained from The Cancer Genome Atlas (TCGA) and Gene Expression Omnibus (GEO) datasets. Prognostic analysis of STING downstream genes (CCL5, CXCL9, CXCL10) and immune infiltration analysis were conducted using Kaplan-Meier Plotter, ESTIMATE, and deconvo_CIBERSOR . Single-cell RNA-seq (scRNA-seq) analysis was conducted to evaluate the potential of MSA-2 in cervical cancer treatment employing SingleR, chi-squared test, and Gene Set Enrichment Analysis (GSEA). Cellular interaction analysis utilized the CellChat package to assess the potentiation of cellular interaction following MSA-2 administration. Murine tumor models involving U14 and TC-1, were conducted, and the IF of tissue was subsequently conducted to assess the tumor microenvironment status after treatment.

Prognosis in cervical cancer correlated with elevated expression of STING downstream genes, indicating prolonged survival and reduced recurrence. These genes positively correlated with immune infiltration, influencing stromal scores, immune scores, and estimate scores. Specific immune cell populations, including CD8 + T cells, M1-type macrophages, NK cells, and T follicular helper cells, were associated with STING downstream genes. scRNA-seq in a classic immune-excluded model revealed that MSA-2 exerts priming and activating functions on vital components within TME, and intensifies their intercellular communications. The in vivo assay ultimately demonstrated that MSA-2, either as a standalone treatment or in combination with anti-PD-1, effectively suppressed the growth of subcutaneous cervical tumors. Moreover, the combination strategy significantly augmented efficacy compared to anti-PD-1 monotherapy by eliciting a robust antitumor immune response.

This study highlights the pivotal role of the STING pathway and the potential of MSA-2 in reshaping the immune microenvironment in cervical cancer. Combining MSA-2 with immune checkpoint inhibitors presents a transformative approach, holding promise for improved prognosis. Further investigations are warranted to explore the broader immune landscape and potential long-term effects of MSA-2 in cervical cancer treatment.

论文信息

作者
Li T、Zhang W、Niu M、Wu Y、Deng X、Zhou J
单位
Department of Gynecology, The Second Affiliated Hospital, Zhejiang University School of Medicine, Zhejiang University, Hangzhou, China.China
文献类型
非美国政府资助研究
期刊
Frontiers in immunology2024
原文标识
PubMed 38550593 · DOI 10.3389/fimmu.2024.1342647