Asperosaponin VI facilitates the regeneration of skeletal muscle injury by suppressing GSK‐3β‐mediated cell apoptosis

Author:

Yang Xinru1,Liang Jian2,Shu Yue1,Wei Linlin1,Wen Cailing1,Luo Hui1,Ma Liqing1,Qin Tian1,Wang Bin3,Zeng Siyu4,Liu Ying56,Zhou Chun1ORCID

Affiliation:

1. Department of Pharmacology, Guangdong Provincial Key Laboratory of Shock and Microcirculation School of Pharmaceutical Sciences, Southern Medical University Guangzhou China

2. Department of Pediatrics Guangdong Second Provincial General Hospital Guangzhou China

3. Department of Cardiovascular Ultrasound Zhongnan Hospital of Wuhan University, Wuhan University Wuhan China

4. Department of Pharmacy Guangdong Second Provincial General Hospital Guangzhou China

5. Department of Pharmacology School of Pharmacy, Macau University of Science and Technology Taipa Macao China

6. Department of Pharmacology School of Pharmacy, Guangzhou Xinhua University Guangzhou China

Abstract

AbstractAsperosaponin VI (ASA VI) is a bioactive triterpenoid saponin extracted from Diptychus roots, of Diptyl, and has previously shown protective functions in rheumatoid arthritis and sepsis. This study investigates the effects and molecular mechanisms of ASA VI on skeletal muscle regeneration in a cardiotoxin (CTX)‐induced skeletal muscle injury mouse model. Mice were subjected to CTX‐induced injury in the tibialis anterior and C2C12 myotubes were treated with CTX. Muscle fiber histology was analyzed at 7 and 14 days postinjury. Apoptosis and autophagy‐related protein expression were evaluated t s by Western blot, and muscle regeneration markers were quantified by quantitative polymerase chain reaction. Docking studies, cell viability assessments, and glycogen synthase kinase‐3β (GSK‐3β) activation analyses were performed to elucidate the mechanism. ASA VI was observed to improve muscle interstitial fibrosis, remodeling, and performance in CTX‐treated mice, thereby increased skeletal muscle size, weight, and locomotion. Furthermore, ASA VI modulated the expression of apoptosis and autophagy‐related proteins through GSK‐3β inhibition and activated the transcription of regeneration genes. Our results suggest that ASA VI mitigates skeletal muscle injury by modulating apoptosis and autophagy via GSK‐3β signaling and promotes regeneration, thus presenting a probable therapeutic agent for skeletal muscle injury.

Funder

Guangzhou Municipal Science and Technology Project

Natural Science Foundation of Hubei Province

Publisher

Wiley

Subject

Cell Biology,Molecular Biology,Biochemistry

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