| Literature DB >> 32077331 |
Jaleh Varshosaz1, Khatereh Arabloo1, Nasim Sarrami1, Erfaneh Ghassami1, Emadeddin Yazdani Kachouei2, Monireh Kouhi1, Ali Jahanian-Najafabadi3.
Abstract
The objective of the present study was the fabrication of a wound dressing membrane based on RGD modified polybutylene adipate-co-terephthalate (PBAT)/gelatin nanofibrous structures loaded with doxycycline (DOX). This type of nanofiber for wound healing has not been reported so far and is quite novel. PBAT and gelatin nanofibers were separately electrospun using double needles electrospinning setup. Electrospining variables were optimized to obtain bead-free thin nanofibers. The amount of drug loaded and release were measured in different concentrations of DOX and PBAT. MMPs inhibition was studied by polyacrylamide gel-zymography. Then, surface of the nanofibers was modified with RGD peptide, and their antimicrobial effect was investigated on Staphylococcus aureus and Pseudomonas aeruginosa. Effect of developed nanofibrous membranes on L929 fibroblast cells proliferation, adhesion and closure of excised wounds in rat were also studied. PBAT/gelatin nanofibrous structures with average fiber diameter of 75-529 nm were developed successfully. Drug release study revealed that about 65% of DOX was released from the optimized formulation (P17D1.6) after 20 hours. The developed DOX loaded membrane inhibited the MMPs activity and showed no cytotoxicity. RGD surface-modified PBAT/gelatin nanofibers significantly improved the wound closure and histopathological results (re-epithelialization, collagen deposition, and angiogenesis) in rats compared to the control groups. Overall, RGD immobilized PBAT/gelatin nanofibrous membrane may have a potential application for wound healing.Entities:
Keywords: PBAT/gelatin nanofibrous membranes; RGD peptide; double needles electrospining; doxycycline; wound healing
Year: 2020 PMID: 32077331 DOI: 10.1080/03639045.2020.1730397
Source DB: PubMed Journal: Drug Dev Ind Pharm ISSN: 0363-9045 Impact factor: 3.225