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Sustainable drug release from polycaprolactone coated chitin-lignin gel fibrous scaffolds

Medicine and Health

Sustainable drug release from polycaprolactone coated chitin-lignin gel fibrous scaffolds

T. Abdullah, K. Gauthaman, et al.

Discover a groundbreaking fibrous scaffold developed for controlled drug delivery in wound healing. This innovative design incorporates a chitin-lignin gel core with a polycaprolactone shell, ensuring biocompatibility and sustained antimicrobial action. Researchers Turdimuhammad Abdullah, Kalamegam Gauthaman, Azadeh Mostafavi, and others present a promising solution for effective wound management.... show more
Abstract
Non-healing wounds have placed an enormous stress on both patients and healthcare systems worldwide. Severe complications induced by these wounds can lead to limb amputation or even death and urgently require more effective treatments. Electrospun scaffolds have great potential for improving wound healing treatments by providing controlled drug delivery. Previously, we developed fibrous scaffolds from complex carbohydrate polymers [i.e. chitin-lignin (CL) gels]. However, their application was limited by solubility and undesirable burst drug release. Here, a coaxial electrospinning is applied to encapsulate the CL gels with polycaprolactone (PCL). Presence of a PCL shell layer thus provides longer shelf-life for the CL gels in a wet environment and sustainable drug release. Antibiotics loaded into core-shell fibrous platform effectively inhibit both gram-positive and -negative bacteria without inducting observable cytotoxicity. Therefore, PCL coated CL fibrous gel platforms appear to be good candidates for controlled drug release based wound dressing applications.
Publisher
Scientific Reports
Published On
Nov 24, 2020
Authors
Turdimuhammad Abdullah, Kalamegam Gauthaman, Azadeh Mostafavi, Ahmed Alshahrie, Numan Salah, Pierfrancesco Morganti, Angelo Chianese, Ali Tamayol, Adnan Memic
Tags
core-shell scaffold
drug delivery
wound healing
antimicrobial properties
biocompatibility
electrospinning
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