Literature DB >> 24832052

Biodegradable polyester-based microcarriers with modified surface tailored for tissue engineering.

A Privalova1, E Markvicheva, Ch Sevrin, M Drozdova, C Kottgen, B Gilbert, M Ortiz, Ch Grandfils.   

Abstract

Microcarriers have been proposed in tissue engineering, namely for bone, cartilage, skin, vascular, and central nervous system. Although polyester-based microcarriers have been already used for this purpose, their surface properties should be improved to provide better cell growth. The goal of this study was to prepare microbeads based on poly(D,L-lactide) acid, poly(L-lactide) acid, and to study cell behavior (adhesion, spreading, growth, and proliferation) in function of microbead topography and surface chemistry. To improve L-929 fibroblasts adhesion, microbead surface has been modified with three polycations: chitosan, poly(2-dimethylamino ethylmethacrylate) (PDMAEMA), or chitosan-g-oligolactide copolymer (chit-g-OLA). Although modification of the microbead surface with chitosan and PDMAEMA was performed through physical adsorption on the previously prepared microbeads, chit-g-OLA copolymer was introduced directly during microbead processing. This simple approach (1) bypass the use of an emulsifier (polyvinyl alcohol, PVA); (2) avoid surface "contamination" with PVA molecules limiting a control of the surface characteristics. In vitro study of the growth of mouse fibroblasts on the microbeads showed that both surface topography and chemistry affected cell attachment, spreading, and proliferation. Cultivation of L-929 fibroblasts for 7 days resulted in the formation of a 3D cell-scaffold network.
© 2014 Wiley Periodicals, Inc.

Entities:  

Keywords:  chitosan copolymer; microcarriers; polyester microbeads; surface modification; tissue engineering

Mesh:

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Year:  2014        PMID: 24832052     DOI: 10.1002/jbm.a.35231

Source DB:  PubMed          Journal:  J Biomed Mater Res A        ISSN: 1549-3296            Impact factor:   4.396


  3 in total

Review 1.  Poly (lactic acid)-based biomaterials for orthopaedic regenerative engineering.

Authors:  Ganesh Narayanan; Varadraj N Vernekar; Emmanuel L Kuyinu; Cato T Laurencin
Journal:  Adv Drug Deliv Rev       Date:  2016-04-25       Impact factor: 15.470

Review 2.  Biodegradable Microparticles for Regenerative Medicine: A State of the Art and Trends to Clinical Application.

Authors:  Anastasia A Sherstneva; Tatiana S Demina; Ana P F Monteiro; Tatiana A Akopova; Christian Grandfils; Ange B Ilangala
Journal:  Polymers (Basel)       Date:  2022-03-24       Impact factor: 4.329

3.  Biodegradable Cell Microcarriers Based on Chitosan/Polyester Graft-Copolymers.

Authors:  Tatiana S Demina; Maria G Drozdova; Chantal Sevrin; Philippe Compère; Tatiana A Akopova; Elena Markvicheva; Christian Grandfils
Journal:  Molecules       Date:  2020-04-22       Impact factor: 4.411

  3 in total

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