MCC950 Ameliorates Diabetic Muscle Atrophy in Mice by Inhibition of Pyroptosis and Its Synergistic Effect with

Xiaoyu Yan1,2, Pengyu Fu2,3, Yimin Zhang1,2

  • 1Key Laboratory of Exercise and Physical Fitness of Ministry of Education, Beijing Sport University, Beijing 100084, China.

PubMed

Insights

MCC950, an NLRP3 inhibitor, treats diabetic muscle atrophy by reducing pyroptosis. Combining MCC950 with exercise enhances muscle function and strength in diabetic mice, offering a novel therapeutic strategy for type-2 diabetes mellitus complications.

Area of Science:

  • Biomedical Science
  • Molecular Biology
  • Exercise Physiology

Background:

  • Diabetic muscle atrophy, a complication of type-2 diabetes mellitus (T2DM), involves inflammation and pyroptosis, with limited treatment options.
  • Existing interventions like exercise can slow deterioration, but underlying cellular mechanisms and effective therapeutic mediators remain underexplored.

Purpose of the Study:

  • To investigate the therapeutic potential of MCC950, a specific NLRP3 inhibitor, in treating pyroptosis and diabetic muscle atrophy in mice.
  • To examine the synergistic effects of MCC950 combined with aerobic exercise on muscle function and atrophy in diabetic mice.

Main Methods:

  • Diabetic (db/db) and control (m/m) mice were treated with MCC950 and/or subjected to aerobic exercise for 12 weeks.
  • Assessment of muscle atrophy included body weight, grip strength, exercise performance, gastrocnemius muscle (GAS) weight, and muscle fiber cross-sectional area (FCSA).
  • Analysis of inflammatory markers, pyroptosis, and apoptosis in GAS tissue, including cleaved-Caspase-1 and GSDMD-N levels.

Main Results:

  • Both MCC950 treatment and exercise individually improved atrophic parameters, reduced serum inflammatory markers, and attenuated pyroptosis in diabetic mice.
  • Combined MCC950 and exercise treatment significantly enhanced glucose uptake, muscle performance, and FCSA compared to either intervention alone.
  • The combination therapy markedly reduced NLRP3-mediated inflammatory factors, cleaved-Caspase-1, GSDMD-N, and prevented apoptosis and pyroptosis in atrophic GAS.

Conclusions:

  • Targeting NLRP3-mediated pyroptosis with MCC950 effectively improves diabetic muscle homeostasis and function, representing a novel therapeutic approach.
  • Inhibiting pyroptosis via MCC950 potentiates the beneficial effects of aerobic exercise, offering a synergistic strategy for managing diabetic muscle atrophy.
  • This study provides a comprehensive understanding of MCC950's role in mitigating T2DM-related muscle complications and highlights its potential in clinical applications.