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氧化石墨烯增强壳聚糖单丝可吸收外科缝合线的制备、力学性能及生物相容性

Preparation, Mechanical Properties, and Biocompatibility of Graphene Oxide-Reinforced Chitin Monofilament Absorbable Surgical Sutures.

机构信息

College of Fisheries, Guangdong Ocean University, Zhanjiang, Guangdong 524025, China.

Life Science and Technology School, Lingnan Normal University, Zhanjiang 524048, China.

出版信息

Mar Drugs. 2019 Apr 4;17(4):210. doi: 10.3390/md17040210.

Abstract

Chitin (CT) is a good material to prepare surgical sutures due to its conspicuous biological characteristics. However, the poor mechanical strength of pure CT sutures limits its application. In order to improve its strength, a composite monofilament absorbable suture was prepared in this study using graphene oxide and chitin (GO-CT) using a green method. FT-IR spectra showed that GO-CT contained the characteristic functional groups of GO and CT, indicating that a GO-CT suture was successfully obtained. With the addition of a small amount of GO (1.6wt% solution) in chitin, the breaking tensile strength, knot strength, and knot-pull strength of the GO-CT suture were significantly improved compared to the CT suture. The biocompatibility of the GO-CT suture in vitro was checked by tetrazolium-based colorimetric assays and no cytotoxicity to L929 cells was found. In vivo, the subcutaneous implantation of GO-CT sutures in the dorsal skin of rats found no abnormalities by hematoxylin-eosin staining. Furthermore, there were no significant changes in the gene expression of the inflammatory mediators, interleukin 1β (), tumor necrosis factor-, , , interferon-, or ; however, the expression of transforming growth factor β was significantly increased in the first week. In summary, GO-CT sutures may have potential as a suture material in the clinic.

摘要

壳聚糖(CT)由于其显著的生物学特性,是制备手术缝线的理想材料。然而,纯 CT 缝线的机械强度较差,限制了其应用。为了提高其强度,本研究采用绿色方法,用氧化石墨烯和壳聚糖(GO-CT)制备了一种复合单丝可吸收缝线。FT-IR 谱图表明,GO-CT 含有 GO 和 CT 的特征官能团,表明成功获得了 GO-CT 缝线。与 CT 缝线相比,在壳聚糖中添加少量 GO(1.6wt%溶液),可显著提高 GO-CT 缝线的断裂拉伸强度、结强度和结拉伸强度。通过四唑盐比色法检测 GO-CT 缝线的体外生物相容性,发现对 L929 细胞无细胞毒性。体内,通过对大鼠背部皮肤进行 GO-CT 缝线的皮下植入实验,苏木精-伊红染色未发现异常。此外,炎症介质白细胞介素 1β()、肿瘤坏死因子-α、-、-和干扰素-的基因表达没有明显变化;然而,转化生长因子-β的表达在第一周显著增加。综上所述,GO-CT 缝线可能有潜力成为临床缝线材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/515b/6520968/e24dbf0db6b8/marinedrugs-17-00210-g001.jpg

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