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慢性与非经典 cGAS-STING 激活:对健康、疾病、癌症的意义及新兴治疗机遇

英文原题:Chronic and non-canonical cGAS-STING activation: implications for health, disease, cancer, and emerging therapeutic opportunities.

查看英文原题

Chronic and non-canonical cGAS-STING activation: implications for health, disease, cancer, and emerging therapeutic opportunities.

PubMed 2026/02/09(内容时间) Apoptosis Q1 · IF 9(JCR 2025)

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中文摘要

当前免疫治疗受到广泛关注;CAR-T 细胞和STING激动剂是新兴癌症治疗方法,STING激动剂的开发仍在推进,许多药物尚处于临床前阶段。与此同时,现已明确,cGAS-STING通路失调或持续活化可导致广泛的人类病理状况。经典机制中,cGAS作为双链DNA(dsDNA)感受器识别胞质dsDNA,并通过酶活性生成2′3′-cGAMP二核苷酸分子。2′3′-cGAMP是STING的天然激活剂,并通过TBK1进一步促进下游IRF-3和NF-κB通路。传统上,该通路主要在抗病毒免疫反应背景下研究。STING激动剂在免疫治疗中具有独特作用,但cGAS-STING通路还涉及偏离经典途径的其他分子机制,可激活非经典通路,产生不同分子模式,并与多种疾病及癌症生存相关。本文讨论调控cGAS-STING持续性和非经典活化的多种途径,以及与人类疾病和癌症相关的持续性、非经典通路,并探讨潜在治疗机会。

展开英文摘要原文

Immunotherapy has drawn attention in the current era; CAR T cells and STING agonists are emerging as novel approaches for cancer treatment. Advances in STING agonist development are ongoing, and many remain in the preclinical stage. At the same time, it is now clear that dysregulated or chronic activation of the cGAS-STING pathway contributes to a broad spectrum of human pathological conditions. Classically, cGAS, as a sensor of dsDNA, recognizes the cytoplasmic dsDNA and, due to the enzymatic activity, generates a di-nucleotide molecule as the 2'3' cGAMP.

2'3' cGAMP behaves as the natural activator of STING and further facilitates the downstream pathway via TBK1 to IRF-3 and NF- B. Conventionally, this pathway is explored in the context of the antiviral immune response. The agonists of STING have a distinct role in immunotherapy, but the cGAS-STING pathway is also associated with other molecular mechanisms that deviate from its canonical pathway and activate its non-canonical pathway, which leads to different molecular patterns, and this is associated with many diseases and cancer survival.

Here, we discussed the various pathways that regulate the cGAS-STING activation in chronic and non-canonical ways. Chronic and non-canonical pathways associated with human disease and cancer.

We also discussed the therapeutic opportunities.

论文信息

作者
Vasiyani H
单位
Department of Pharmacology and Toxicology, Virginia Commonwealth University, Richmond, VA, 23284, USA. hiteshvasiyani@gmail.com.United States
文献类型
综述
期刊
Apoptosis : an international journal on programmed cell death2026 Feb 9
原文标识
PubMed 41663856 · DOI 10.1007/s10495-026-02283-5