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A Murine Model of Muscle Training by Neuromuscular Electrical Stimulation
Published on: May 9, 2012
Investigation of niclosamide as a repurposing agent for skeletal muscle atrophy
Hyun-Jun Kim1, Ji-Hyung Lee1, Seon-Wook Kim1
1New Drug Targets Laboratory, School of Life Sciences, Gwangju Institute of Science and Technology, Gwangju, Jeollanam-do, Republic of Korea.
Abstract:
Skeletal muscle atrophy is a feature of aging (termed sarcopenia) and various diseases, such as cancer and kidney failure. Effective drug treatment options for muscle atrophy are lacking. The tapeworm medication, niclosamide is being assessed for repurposing to treat numerous diseases, including end-stage cancer metastasis and hepatic steatosis. In this study, we investigated the potential of niclosamide as a repurposing drug for muscle atrophy. In a myotube atrophy model using the glucocorticoid, dexamethasone, niclosamide did not prevent the reduction in myotube diameter or the decreased expression of phosphorylated FOXO3a, which upregulates the ubiquitin-proteasome pathway of muscle catabolism. Treatment of normal myotubes with niclosamide did not activate mTOR, a major regulator of muscle protein synthesis, and increased the expression of atrogin-1, which is induced in catabolic states. Niclosamide treatment also inhibited myogenesis in muscle precursor cells, enhanced the expression of myoblast markers Pax7 and Myf5, and downregulated the expression of differentiation markers MyoD, MyoG and Myh2. In an animal model of muscle atrophy, niclosamide did not improve muscle mass, grip strength or muscle fiber cross-sectional area. Muscle atrophy is also feature of cancer cachexia. IC50 analyses indicated that niclosamide was more cytotoxic for myoblasts than cancer cells. In addition, niclosamide did not suppress the induction of iNOS, a key mediator of atrophy, in an in vitro model of cancer cachexia and did not rescue myotube diameter. Overall, these results suggest that niclosamide may not be a suitable repurposing drug for glucocorticoid-induced skeletal muscle atrophy or cancer cachexia. Nevertheless, niclosamide may be employed as a compound to study mechanisms regulating myogenesis and catabolic pathways in skeletal muscle.
Insights
Niclosamide, a potential drug for muscle atrophy, did not prevent muscle wasting in cell or animal models. This study suggests niclosamide is unsuitable for treating muscle atrophy or cancer cachexia.
Area of Science:
- Biochemistry
- Cell Biology
- Physiology
Background:
- Skeletal muscle atrophy, including sarcopenia, is linked to aging and diseases like cancer and kidney failure.
- Current treatments for muscle atrophy are limited.
- Niclosamide, an anthelmintic drug, is being explored for repurposing in various conditions.
Purpose of the Study:
- To investigate the potential of niclosamide as a therapeutic agent for skeletal muscle atrophy.
- To evaluate niclosamide's effects on glucocorticoid-induced muscle atrophy and cancer cachexia models.
Main Methods:
- Utilized a dexamethasone-induced myotube atrophy model.
- Assessed niclosamide's impact on myotube diameter, protein pathways (FOXO3a, mTOR, atrogin-1), and myogenesis.
- Examined niclosamide in an animal model of muscle atrophy and an in vitro cancer cachexia model.
Main Results:
- Niclosamide failed to prevent myotube diameter reduction or affect key catabolic/anabolic pathways.
- It inhibited myogenesis and increased expression of myoblast markers while decreasing differentiation markers.
- In vivo studies showed no improvement in muscle mass or function; niclosamide was cytotoxic to myoblasts and ineffective in cancer cachexia models.
Conclusions:
- Niclosamide is not a suitable repurposing drug for glucocorticoid-induced skeletal muscle atrophy or cancer cachexia.
- The findings suggest niclosamide could be a valuable tool for studying muscle myogenesis and catabolic mechanisms.

