Atorvastatin lipid nanocapsules and gold nanoparticles embedded in injectable thermo-gelling hydrogel scaffold containing adipose tissue extracellular matrix for myocardial tissue regeneration

(2019) Atorvastatin lipid nanocapsules and gold nanoparticles embedded in injectable thermo-gelling hydrogel scaffold containing adipose tissue extracellular matrix for myocardial tissue regeneration. Iet Nanobiotechnology. pp. 933-941. ISSN 1751-8741

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Official URL: WOS:000501783000008

Abstract

This study aimed to prepare, optimise, and characterise the novel hybrid hydrogel scaffold containing atorvastatin lipid nanocapsules (LNCs) and gold nanoparticles (NPs) to improve cardiomyoblasts proliferation and regeneration of myocardium. A thermo-responsive aminated guaran (AGG) hydrogel was prepared to encompass extracellular matrix (ECM) fetched from human adipose tissue. Emulsion phase-inversion technique was used to obtain LNCs. Biocompatibility, tensile strength, conductivity, and proliferation of human myocardial cells of the optimised formulation were studied. The LNCs have a spherical shape, and the optimised formulation showed a mean particle size of 18.79 nm, the zeta potential of - 11.4 mV, drug loading of 99.99, and release efficiency percent over 72 h was 18.73. The injectable thermo-sensitive hydrogel prepared using 1 w/v of AGG, 35 w/w of ECM, similar to 0.5 mg/ml of gold NPs and atorvastatin loaded LNCs showed the best physical characteristics. The hybrid scaffold loaded with atorvastatin and gold NPs improved the proliferation of cardiomyoblasts more than sevenfold with enhanced cell attachment to the scaffold. The tensile strength and the conductivity of the scaffold were 300 kPa and 0.14 S/m, respectively. Injectable hybrid adipose tissue prepared by ECM and AGG hydrogel loaded with atorvastatin and gold NPs showed promising physical characteristics for myocardial tissue engineering.

Item Type: Article
Keywords: biological tissues nanoparticles tensile strength electrokinetic effects particle size nanomedicine emulsions biomedical materials cellular biophysics nanofabrication drugs drug delivery systems molecular biophysics tissue engineering hydrogels gold Au cardiomyoblast hybrid hydrogel scaffold myocardial tissue engineering AGG hydrogel injectable hybrid adipose tissue atorvastatin loaded LNCs gold NPs thermo-sensitive hydrogel drug loading human myocardial cells tensile strength emulsion phase-inversion technique human adipose tissue ECM thermo-responsive aminated guaran hydrogel cardiomyoblasts proliferation atorvastatin lipid nanocapsules myocardial tissue regeneration adipose tissue extracellular matrix thermo-gelling hydrogel scaffold gold nanoparticles electrical-conductivity sustained-release delivery-system cellular uptake transplantation improves adhesion collagen grafts growth Biochemistry & Molecular Biology Science & Technology - Other Topics
Subjects: QS Human Anatomy > QS504-532 Histology
QV Pharmacology
Divisions: Faculty of Medicine > Department of Basic Science > Department of Anatomical Sciences
Faculty of Pharmacy and Pharmaceutical Sciences > Department of Clinical Pharmacy and Pharmacy Practice
Faculty of Pharmacy and Pharmaceutical Sciences > Department of Pharmacotherapy
Novel Drug Delivery Systems Research Center
Page Range: pp. 933-941
Journal or Publication Title: Iet Nanobiotechnology
Journal Index: ISI
Volume: 13
Number: 9
Identification Number: https://doi.org/10.1049/iet-nbt.2019.0035
ISSN: 1751-8741
Depositing User: Zahra Otroj
URI: http://eprints.mui.ac.ir/id/eprint/11491

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