Antibacterial and wound healing analysis of gelatin/zeolite scaffolds

被引:64
作者
Ninan, Neethu [1 ,2 ,3 ]
Muthiah, Muthunarayanan [4 ,5 ]
Yahaya, Nur Aliza Bt. [6 ]
Park, In-Kyu [4 ,5 ]
Elain, Anne [1 ]
Wong, Tin Wui [6 ]
Thomas, Sabu [2 ,3 ]
Grohens, Yves [1 ]
机构
[1] Univ Bretagne Sud, Lab Ingn Mat Bretagne, F-56321 Lorient, France
[2] Mahatma Gandhi Univ, Ctr Nanosci & Nanotechnol, Kottayam 686560, Kerala, India
[3] Mahatma Gandhi Univ, Sch Chem Sci, Kottayam 686560, Kerala, India
[4] Chonnam Natl Univ, Sch Med, Dept Biomed Sci, Kwangju 501746, South Korea
[5] Chonnam Natl Univ, Sch Med, PLUS Ctr Creat Biomed Scientists BK21, Kwangju 501746, South Korea
[6] Univ Teknol MARA, Nondestruct Biomed & Pharmaceut Res Ctr, Selangor, Malaysia
关键词
Gelatin; Copper activated faujasite; Anti-bacterial; Wound healing; Animal studies; Fibroblast; TISSUE ENGINEERING SCAFFOLDS; COMPOSITE SCAFFOLDS; SURFACE MODIFICATION; GELATIN; COPPER; CHITOSAN; TOXICITY; MEMBRANES; FILM;
D O I
10.1016/j.colsurfb.2013.11.048
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
In this article, gelatin/copper activated faujasites (CAF) composite scaffolds were fabricated by lyophilisation technique for promoting partial thickness wound healing. The optimised scaffold with 0.5% (w/w) of CAF, G (0.5%), demonstrated pore size in the range of 10-350 mu m. Agar disc diffusion tests verified the antibacterial role of G (0.5%) and further supported that bacterial lysis was due to copper released from the core of CAF embedded in the gelatin matrix. The change in morphology of bacteria as a function of CAF content in gelatin scaffold was studied using SEM analysis. The confocal images revealed the increase in mortality rate of bacteria with increase in concentration of incorporated CAF in gelatin matrix. Proficient oxygen supply to needy cells is a continuing hurdle faced by tissue engineering scaffolds. The dissolved oxygen measurements revealed that CAF embedded in the scaffold were capable of increasing oxygen supply and thereby promote cell proliferation. Also, G (0.5%) exhibited highest cell viability on NIH 3T3 fibroblast cells which was mainly attributed to the highly porous architecture and its ability to enhance oxygen supply to cells. In vivo studies conducted on Sprague Dawley rats revealed the ability of G (0.5%) to promote skin regeneration in 20 days. Thus, the obtained data suggest that G (0.5%) is an ideal candidate for wound healing applications. Crown Copyright (C) 2013 Published by Elsevier B.V. All rights reserved.
引用
收藏
页码:244 / 252
页数:9
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