Telmisartan Loaded Nanofibers Enhance Re-Endothelialization and Inhibit Neointimal Hyperplasia

Author:

Lee Chen-HungORCID,Liu Kuo-Sheng,Roth Julien GeorgeORCID,Hung Kuo-ChunORCID,Liu Yen-Wei,Wang Shin-Huei,Kuo Chi-ChingORCID,Liu Shih-JungORCID

Abstract

Stent implantation impairs local endothelial function and may be associated with subsequent adverse cardiovascular events. Telmisartan, an angiotensin II receptor blocker that has unique peroxisome proliferator-activated-receptor-gamma-mediated effects on cardiovascular disease, has been shown to enhance endothelial function and limit neointimal hyperplasia. This study utilized hybrid biodegradable/stent nanofibers to facilitate sustained and local delivery of telmisartan to injured arterial vessels. Telmisartan and poly(d,l)-lactide-co-glycolide (PLGA) (75:25) were dissolved in hexafluoroisopropyl alcohol and electrospun into biodegradable nanofibrous tubes which were coated onto metal stents. By releasing 20% of the loaded telmisartan in 30 days, these hybrid biodegradable/stent telmisartan-loaded nanofibers increased the migration of endothelial progenitor cells in vitro, promoted endothelialization, and reduced intimal hyperplasia. As such, this work provides insights into the use of PLGA nanofibers for treating patients with an increased risk of stent restenosis.

Funder

National Science Council

Chang Gung Memorial Hospital

National Science Foundation Graduate Research Fellowship Program (J.G.R.) and the Stanford Smith Family Graduate Fellowship (J.G.R.) for their support

Publisher

MDPI AG

Subject

Pharmaceutical Science

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