Multicomponent Non-Woven Fibrous Mats with Balanced Processing and Functional Properties

Author:

Demina Tatiana S.ORCID,Kuryanova Anastasia S.,Bikmulina Polina Y.ORCID,Aksenova Nadejda A.,Efremov Yuri M.ORCID,Khaibullin Zulfar I.,Ivanov Pavel L.,Kosheleva Nastasia V.,Timashev Peter S.ORCID,Akopova Tatiana A.

Abstract

The mimicking of the architectonics of native tissue, biodegradable non-woven fibrous mats is one of the most promising forms of scaffolding for tissue engineering. The key properties needed for their successful application in vivo, such as biodegradability, biocompatibility, morphology, mechanical properties, etc., rely on their composition and appropriate 3D structure. A multicomponent system based on biodegradable synthetic (polycaprolactone, oligo-/polylactide) and natural (chitosan, gelatin) polymers, providing the desired processing characteristics and functionality to non-woven mats fabricated via the electrospinning technique, was developed. The solid-state reactive blending of these components provided a one-step synthesis of amphiphilic graft copolymer with an ability to form stable ultra-fine dispersions in chlorinated solvents, which could be successfully used as casting solvents for the electrospinning technique. The synthesized graft copolymer was analyzed with the aim of fractional analysis, dynamic laser scattering, FTIR-spectroscopy and DSC. Casting solution characteristics, namely viscosity, surface tension, and electroconductivity, as well as electrospinning parameters, were studied and optimized. The morphology, chemical structure of the surface layer, mechanical properties and cytocompatibility were analyzed to confirm the appropriate functionality of the formed fibrous materials as scaffolds for tissue engineering.

Funder

Russian Foundation for Basic Research

Publisher

MDPI AG

Subject

Polymers and Plastics,General Chemistry

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