Evidence map›Paper›PMID 42286673›Full record

ArticleCell communication and signaling : CCS2026

The cGAS-STING pathway contributes to cisplatin-induced skeletal muscle atrophy through altered proteostasis and myogenic signaling.

Xiaoguang Liu, Miaomiao Xu, Huan Wang, Haozhe Wang, Hao Wang, Wenjun Fang, Mengqian Li, Jiongxing Huang, Feipeng Chen, Huiguo Wang and 2 more

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Article in Cell communication and signaling : CCS, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.

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5 · Who and what money

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12 authors.

Xiaoguang Liu *School of Sport and Health, Guangzhou Sport University, Guangzhou, 510500, China. liuxg@gzsport.edu.cn.
Miaomiao Xu *Department of Physical Education, Guangdong University of Education, Guangzhou, 510303, China.
Huan WangSchool of Sport and Health, Guangzhou Sport University, Guangzhou, 510500, China.
Haozhe WangSchool of Sport and Health, Guangzhou Sport University, Guangzhou, 510500, China.
Hao WangSchool of Sport and Health, Guangzhou Sport University, Guangzhou, 510500, China.
Wenjun FangSchool of Sport and Health, Guangzhou Sport University, Guangzhou, 510500, China.
Mengqian LiSchool of Sport and Health, Guangzhou Sport University, Guangzhou, 510500, China.
Jiongxing HuangSchool of Sport and Health, Guangzhou Sport University, Guangzhou, 510500, China.
Feipeng ChenSchool of Sport and Health, Guangzhou Sport University, Guangzhou, 510500, China.
Huiguo WangSchool of Sport and Health, Guangzhou Sport University, Guangzhou, 510500, China.
Yang YuSchool of Sport and Health, Guangzhou Sport University, Guangzhou, 510500, China.
Lin ZhuSchool of Sport and Health, Guangzhou Sport University, Guangzhou, 510500, China. 11251@gzsport.edu.cn.

Funding

National Natural Science Foundation of China 32300964
6 · The paper itself

Abstract

backgroundCisplatin chemotherapy is widely used for cancer treatment but frequently induces skeletal muscle atrophy, which compromises physical function and patient outcomes. The molecular mechanisms underlying this process remain incompletely understood. The cyclic GMP-AMP synthase-stimulator of interferon genes (cGAS-STING) signaling pathway, classically involved in innate immune responses, has recently been implicated in cellular stress and tissue dysfunction. Whether cGAS-STING signaling contributes to cisplatin-induced skeletal muscle atrophy remains unclear.

methodsWe employed both pharmacological and genetic approaches. Wild-type (WT) mice received a single intraperitoneal injection of the STING agonist DMXAA prior to cisplatin administration. Genetic models included global cGAS and STING knockout mice, as well as skeletal muscle-specific cGAS knockout mice. Cisplatin was administered intraperitoneally (3 mg/kg/day) for four consecutive days. Body weight, skeletal muscle mass, myofiber cross-sectional area (CSA), and fiber diameter were assessed. Molecular and transcriptional analyses were performed using Western blotting, quantitative polymerase chain reaction, and RNA sequencing.

resultsPretreatment with the STING agonist DMXAA exacerbated cisplatin-induced body weight loss and skeletal muscle atrophy. In contrast, genetic deletion of cGAS or STING attenuated the loss of gastrocnemius and tibialis anterior muscle mass. Skeletal muscle-specific cGAS deficiency preserved muscle weight and myofiber diameter following cisplatin exposure. Although CSA was also assessed, no significant difference was observed between groups. Transcriptomic analysis identified 696 differentially expressed genes upon cGAS deletion, with enrichment in pathways related to inflammatory signaling, proteasome function, and autophagy. Further analyses in skeletal muscle-specific cGAS-deficient mice showed reduced expression of muscle atrophy-associated genes (FBXO32 and Murf1), together with preservation of key myogenic regulators after cisplatin treatment. Consistently, NF-κB signaling and interferon-stimulated gene expression were diminished, accompanied by altered Beclin1 responses and partial attenuation of selected autophagy-related genes.

conclusionsThese findings support a role for cGAS-STING signaling in cisplatin-induced skeletal muscle atrophy, associated with enhanced innate immune and inflammatory signaling, proteolytic and autophagy-related alterations, and impaired myogenic regulation. Targeting the cGAS-STING pathway may represent a potential therapeutic strategy to mitigate chemotherapy-associated skeletal muscle atrophy.

Indexed as

CisplatinMembrane ProteinsMuscle DevelopmentMuscle, SkeletalMuscular AtrophyNucleotidyltransferasesSignal TransductionAnimalscGAS-STING Signaling PathwayCyclic Guanosine Monophosphate-Adenosine Monophosphate SynthaseMaleMiceMice, Inbred C57BLMice, KnockoutSTING ProteincGAS protein, mouseCisplatinCyclic Guanosine Monophosphate-Adenosine Monophosphate SynthaseMembrane ProteinsNucleotidyltransferasesSting1 protein, mouseSTING ProteinCGAS–STING pathwayChemotherapy-induced skeletal muscle atrophyCisplatin toxicitySkeletal muscle wastingTherapeutic target

Identifiers

PMID42286673
PMCPMC13488289

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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the OpenQuestion graph.