Quercetin Alleviates TMT-Induced PANoptosis in Chicken Skeletal Muscle through Modulation of the ROS/mtDNA Axis

Abstract Trimethyltin (TMT) is an environmental organotin contaminant with recognized systemic toxicity, but its skeletal muscle effects and the protective mechanism of quercetin (Que) remain unclear. This study integrated network toxicology, molecular docking, molecular dynamics simulations, and in vivo/in vitro validation to investigate Que-mediated protection against TMT-induced skeletal-muscle injury. Network analysis indicated the involvement of oxidative stress and cytosolic DNA-sensing pathways, while docking and dynamic simulations suggested stable interactions between Que and mitochondrial regulators and PANoptosis-associated proteins. In vivo and in vitro validation showed that TMT induced skeletal muscle injury, reactive oxygen species (ROS) accumulation, mitochondrial dynamic imbalance, respiratory chain dysfunction, mitochondrial DNA (mtDNA) leakage, and PANoptosis activation. Que markedly suppressed ROS generation, restored mitochondrial homeostasis, reduced cytosolic mtDNA leakage, and inhibited PANoptosis-related signaling. Collectively, Que alleviates TMT-induced skeletal muscle toxicity by regulating the ROS/mtDNA axis, supporting its potential as a dietary intervention or feed additive against organotin-associated muscle damage.

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Journal
Journal of Agricultural and Food Chemistry
Published
2026-09-30
DOI
https://doi.org/10.1021/acs.jafc.6c06054
Primary Topic
Marine Biology and Environmental Chemistry
Type
article
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Quercetin Alleviates TMT-Induced PANoptosis in Chicken Skeletal Muscle through Modulation of the ROS/mtDNA Axis

Yue Zhai, Jiahui DUAN, Tong Xu, Fangfang Wu et al.
Journal of Agricultural and Food Chemistry
Marine Biology and Environmental Chemistry
article

Quercetin Alleviates TMT-Induced PANoptosis in Chicken Skeletal Muscle through Modulation of the ROS/mtDNA Axis

Yue Zhai, Jiahui DUAN, Tong Xu, Fangfang Wu, Chengguo Liu, Lixia Zhao, Ping Zhang
article en

Abstract

Abstract Trimethyltin (TMT) is an environmental organotin contaminant with recognized systemic toxicity, but its skeletal muscle effects and the protective mechanism of quercetin (Que) remain unclear. This study integrated network toxicology, molecular docking, molecular dynamics simulations, and in vivo/in vitro validation to investigate Que-mediated protection against TMT-induced skeletal-muscle injury. Network analysis indicated the involvement of oxidative stress and cytosolic DNA-sensing pathways, while docking and dynamic simulations suggested stable interactions between Que and mitochondrial regulators and PANoptosis-associated proteins. In vivo and in vitro validation showed that TMT induced skeletal muscle injury, reactive oxygen species (ROS) accumulation, mitochondrial dynamic imbalance, respiratory chain dysfunction, mitochondrial DNA (mtDNA) leakage, and PANoptosis activation. Que markedly suppressed ROS generation, restored mitochondrial homeostasis, reduced cytosolic mtDNA leakage, and inhibited PANoptosis-related signaling. Collectively, Que alleviates TMT-induced skeletal muscle toxicity by regulating the ROS/mtDNA axis, supporting its potential as a dietary intervention or feed additive against organotin-associated muscle damage.

Journal of Agricultural and Food Chemistry
Northeast Agricultural University (CN)
Openalex Percentile: Top 16%
Marine Biology and Environmental Chemistry
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Quercetin Alleviates TMT-Induced PANoptosis in Chicken Skeletal Muscle through Modulation of the ROS/mtDNA Axis — Yue Zhai, Jiahui DUAN, et al. · Journal of Agricultural and Food Chemistry (2026) | TGRS Research Map | TGRS