Hyaluronan derived nanoparticle for simvastatin delivery: evaluation of simvastatin induced myotoxicity in tissue engineered skeletal muscle.
Animals
Cell Differentiation
/ drug effects
Cell Line
Dose-Response Relationship, Drug
Gene Expression Regulation
/ drug effects
Hyaluronic Acid
/ chemistry
Male
Matrix Metalloproteinase 2
/ genetics
Matrix Metalloproteinase 9
/ genetics
Mice
Muscle, Skeletal
/ chemistry
Myogenin
/ genetics
Myotoxicity
Nanoparticles
Osteogenesis
/ drug effects
Simvastatin
/ adverse effects
Tissue Engineering
Tissue Scaffolds
Journal
Biomaterials science
ISSN: 2047-4849
Titre abrégé: Biomater Sci
Pays: England
ID NLM: 101593571
Informations de publication
Date de publication:
17 Dec 2019
17 Dec 2019
Historique:
pubmed:
9
11
2019
medline:
15
4
2020
entrez:
9
11
2019
Statut:
ppublish
Résumé
Statins are currently the most prescribed hypercholesterolemia-lowering drugs worldwide, with estimated usage approaching one-sixth of the population. However, statins are known to cause pleiotropic skeletal myopathies in 1.5% to 10% of patients and the mechanisms by which statins induce this response, are not fully understood. In this study, a 3D collagen-based tissue-engineered skeletal muscle construct is utilised as a screening platform to test the efficacy and toxicity of a new delivery system. A hyaluronic acid derived nanoparticle loaded with simvastatin (HA-SIM-NPs) is designed and the effect of free simvastatin and HA-SIM-NPs on cellular, molecular and tissue response is investigated. Morphological ablation of myotubes and lack of de novo myotube formation (regeneration) was evident at the highest concentrations (333.33 μM), independent of delivery vehicle (SIM or HA-SIM-NP). A dose-dependent disruption of the cytoskeleton, reductions in metabolic activity and tissue engineered (TE) construct tissue relaxation was evident in the free drug condition (SIM, 3.33 μM and 33.33 nM). However, most of these changes were ameliorated when SIM was delivered via HA-SIM-NPs. Significantly, homogeneous expressions of MMP2, MMP9, and myogenin in HA-SIM-NPs outlined enhanced regenerative responses compared to SIM. Together, these results outline statin delivery via HA-SIM-NP as an effective delivery mechanism to inhibit deleterious myotoxic side-effects.
Substances chimiques
Myog protein, mouse
0
Myogenin
0
Hyaluronic Acid
9004-61-9
Simvastatin
AGG2FN16EV
Matrix Metalloproteinase 2
EC 3.4.24.24
Mmp2 protein, mouse
EC 3.4.24.24
Matrix Metalloproteinase 9
EC 3.4.24.35
Mmp9 protein, mouse
EC 3.4.24.35
Types de publication
Journal Article
Langues
eng
Sous-ensembles de citation
IM