明胶
膜
粘附
材料科学
组织粘连
生物相容性
京尼平
生物医学工程
化学工程
化学
复合材料
壳聚糖
医学
生物化学
工程类
冶金
作者
Sang‐Ho Bae,So‐Ra Son,Swapan Kumar Sakar,Thi‐Hiep Nguyen,Shin‐Woo Kim,Young‐Ki Min,Byong‐Taek Lee
摘要
ABSTRACT A common and prevailing complication for patients with abdominal surgery is the peritoneal adhesion that follows during the post‐operative recovery period. Biodegradable polymers have been suggested as a barrier to prevent the peritoneal adhesion. In this work, as a preventive method, PVA/Gelatin hydrogel‐based membrane was investigated with various combinations of PVA and gelatin (50/50, 30/70/, and 10/90). Membranes were made by casting method using hot PVA–gelatin solution and the gelatin was cross‐linked by exposing UV irradiation for 5 days to render stability of the produced sheathed form in the physiological environment. Physical crosslinking was chosen to avoid the problems of potential cytotoxic effect of chemical crosslinking. Their materials characterization and mechanical properties were evaluated by SEM surface characterization, hydrophilicity, biodegradation rate, and so forth. Cytocompatibility was observed by in vitro experiments with cell proliferation using confocal laser scanning microscopy and the MTT assay by L‐929 mouse fibroblast cells. The fabricated PVA/Gel membranes were implanted between artificially defected cecum and peritoneal wall in rats and were sacrificed after 1 and 2 weeks post‐operative to compare their tissue adhesion extents with that of control group where the defected surface was not separated by PVA/Gel membrane. The PVA/Gel membrane (10/90) significantly reduced the adhesion extent and showed to be a potential candidate for the anti‐adhesion application. © 2013 Wiley Periodicals, Inc. J Biomed Mater Res Part B: Appl Biomater, 102B: 840–849, 2014.
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