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以大眼鲷鱼皮为原料制备壳聚糖基胶原蛋白/明胶复合支架及其抗菌抗氧化性能

Fabrication and characterization of chitosan based collagen/ gelatin composite scaffolds from big eye snapper Priacanthus hamrur skin for antimicrobial and anti oxidant applications.

机构信息

Department of Fish Processing Technology, Kerala University of Fisheries and Ocean Studies, Cochin, 682506, Kerala, India.

Centre for Ocean Research, Sathyabama Institute of Science and Technology, Chennai, 600119, Tamilnadu, India.

出版信息

Mater Sci Eng C Mater Biol Appl. 2020 Feb;107:110270. doi: 10.1016/j.msec.2019.110270. Epub 2019 Oct 15.

Abstract

In this study, for developing a scaffold for tissue engineering from fish processing wastes, a hierachial collagen/gelatin/chitosan novel porous scaffold was fabricated using blends of collagen and gelatin extracted from the skins of Marine big eye snapper Priacanthus humrur. Scaffolds were developed by mechanical spinning of chitosan and by mixing of collagen and gelatin solutions followed by freeze drying and subsequent crosslinking of polymers. The scaffolds were evaluated for rheological properties - porosity, apparent density and swelling capacity to assess their mechanical property.Gelatin/chitosan composition shown very high porosity(81.02%) and incorporation of collagen shown higher density in Collagen/gelatin/chitosan scaffolds (0.0522g/cm) and collagen/chitosan scaffolds (0.0468 g/cm).Morphology of the prepared scaffolds were analyzed by Scanning Electron Microscopy which showed reduced pore size of 10 to 20μ in Collagen/gelatin/Chitosan composite, 5 to 10μ in gelatin/chitosan composites and 2-5μ in collagen/chitosan composites. FTIR analysis showed intense peaks ranging 1120 -11267 cm in the three different scaffolds that are denoted as CH groups. In-vitro antioxidant investigation through DPPH assay showed that the composite 3 in 1 mg/ml concentration exhibited higher antioxidant potential (70%). In contrast, ABTS scavenging assay identified composite1 in 1 mg/ml had good antioxidant activity with highest percentage of inhibition (29.5%). The scaffolds were also evaluated for anti microbial properties through disc diffusion assay. The results showed maximum inhibition- 14 mm, 12 mm and 14 mm for 200 μg of the sample for collagen/chitosan, gelatin/chitosan and collagen/gelatin/chitosan scaffolds respectively towards E.Coli and 20 mm, 20 mm and 24 mm towards S.aureus. The zone of inhibition against E. coli and S. aureus for the three scaffolds was comparatively lower and that could be due to the presence of chitosan. The findings of the study indicates that the bioscaffolds are expected to have wide application in tissue engineering.

摘要

在这项研究中,为了从鱼类加工废物中开发组织工程支架,使用从 Marine big eye snapper Priacanthus humrur 的皮中提取的胶原蛋白和明胶混合物,制造了一种层次结构的胶原蛋白/明胶/壳聚糖新型多孔支架。通过机械纺丝壳聚糖和混合胶原蛋白和明胶溶液,然后进行冷冻干燥和随后的聚合物交联来开发支架。评估了支架的流变性质 - 孔隙率、表观密度和溶胀能力,以评估其机械性能。明胶/壳聚糖组成显示出非常高的孔隙率(81.02%),并且胶原蛋白的掺入显示出在胶原/明胶/壳聚糖支架(0.0522g/cm)和胶原/壳聚糖支架中的更高密度(0.0468g/cm)。通过扫描电子显微镜分析了制备支架的形态,结果表明胶原/明胶/壳聚糖复合材料的孔径减小到 10 到 20μm,明胶/壳聚糖复合材料的孔径减小到 5 到 10μm,而胶原/壳聚糖复合材料的孔径减小到 2 到 5μm。FTIR 分析显示,三种不同支架中存在强度范围为 1120-11267cm 的强烈峰,这些峰被标记为 CH 基团。通过 DPPH 测定法进行的体外抗氧化研究表明,在 1mg/ml 浓度下,复合材料 3 表现出更高的抗氧化潜力(70%)。相比之下,ABTS 清除测定法确定在 1mg/ml 浓度下,复合材料 1 具有良好的抗氧化活性,具有最高的抑制百分比(29.5%)。还通过圆盘扩散试验评估了支架的抗微生物性能。结果表明,对于胶原蛋白/壳聚糖、明胶/壳聚糖和胶原/明胶/壳聚糖支架,样品的 200μg 分别对 E.Coli 具有最大抑制作用-14mm、12mm 和 14mm,对 S.aureus 具有 20mm、20mm 和 24mm。三种支架对 E. coli 和 S. aureus 的抑菌圈宽度相对较低,这可能是由于壳聚糖的存在。该研究的结果表明,生物支架有望在组织工程中得到广泛应用。

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