Tamilarasan_2012_Cell.Death.Dis_3_e354

Reference

Title : Skeletal muscle damage and impaired regeneration due to LPL-mediated lipotoxicity - Tamilarasan_2012_Cell.Death.Dis_3_e354
Author(s) : Tamilarasan KP , Temmel H , Das SK , Al Zoughbi W , Schauer S , Vesely PW , Hoefler G
Ref : Cell Death Dis , 3 :e354 , 2012
Abstract :

According to the concept of lipotoxicity, ectopic accumulation of lipids in non-adipose tissue induces pathological changes. The most prominent effects are seen in fatty liver disease, lipid cardiomyopathy, non-insulin-dependent diabetes mellitus, insulin resistance and skeletal muscle myopathy. We used the MCK(m)-hLPL mouse distinguished by skeletal and cardiac muscle-specific human lipoprotein lipase (hLPL) overexpression to investigate effects of lipid overload in skeletal muscle. We were intrigued to find that ectopic lipid accumulation induced proteasomal activity, apoptosis and skeletal muscle damage. In line with these findings we observed reduced Musculus gastrocnemius and Musculus quadriceps mass in transgenic animals, accompanied by severely impaired physical endurance. We suggest that muscle loss was aggravated by impaired muscle regeneration as evidenced by reduced cross-sectional area of regenerating myofibers after cardiotoxin-induced injury in MCK(m)-hLPL mice. Similarly, an almost complete loss of myogenic potential was observed in C2C12 murine myoblasts upon overexpression of LPL. Our findings directly link lipid overload to muscle damage, impaired regeneration and loss of performance. These findings support the concept of lipotoxicity and are a further step to explain pathological effects seen in muscle of obese patients, patients with the metabolic syndrome and patients with cancer-associated cachexia.

PubMedSearch : Tamilarasan_2012_Cell.Death.Dis_3_e354
PubMedID: 22825472

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Citations formats

Tamilarasan KP, Temmel H, Das SK, Al Zoughbi W, Schauer S, Vesely PW, Hoefler G (2012)
Skeletal muscle damage and impaired regeneration due to LPL-mediated lipotoxicity
Cell Death Dis 3 :e354

Tamilarasan KP, Temmel H, Das SK, Al Zoughbi W, Schauer S, Vesely PW, Hoefler G (2012)
Cell Death Dis 3 :e354