| Literature DB >> 34256063 |
Anthony Moschetti1, Ruben K Dagda2, Robert O Ryan3.
Abstract
Depletion of coenzyme Q (CoQ) is associated with disease, ranging from myopathy to heart failure. To induce a CoQ deficit, C2C12 myotubes were incubated with high dose simvastatin. This resulted in a concentration-dependent inhibition of cell viability. Simvastatin-induced effects were prevented by co-incubation with mevalonic acid. When myotubes were incubated with 60 μM simvastatin, mitochondrial CoQ content decreased while co-incubation with CoQ nanodisks (ND) increased mitochondrial CoQ levels and improved cell viability. Incubation of myotubes with simvastatin also led to a reduction in oxygen consumption rate (OCR). When myotubes were co-incubated with simvastatin and CoQ ND, the decline in OCR was ameliorated. The data indicate that CoQ ND represent a water soluble vehicle capable of delivering CoQ to cultured myotubes. Thus, these biocompatible nanoparticles have the potential to bypass poor CoQ oral bioavailability as a treatment option for individuals with severe CoQ deficiency syndromes and/or aging-related CoQ depletion.Entities:
Keywords: C2C12 myotubes; Coenzyme Q; Mitochondria; Nanodisk; Simvastatin
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Year: 2021 PMID: 34256063 PMCID: PMC8464493 DOI: 10.1016/j.nano.2021.102439
Source DB: PubMed Journal: Nanomedicine ISSN: 1549-9634 Impact factor: 6.096