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首页> 外文期刊>Biochimica et Biophysica Acta. General Subjects >Rejoining of cut wounds by engineered gelatin-keratin glue
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Rejoining of cut wounds by engineered gelatin-keratin glue

机译:用工程明胶-角蛋白胶重新缝合伤口

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Background Rejoining of cut tissue ends of a critical site challenges clinicians. The toxicity, antigenicity, low adhesive strength, flexibility, swelling and cost of the currently employed glue demands an alternative. Engineered gelatin-keratin glue (EGK-glue) described in the present study was found to be suitable for wet tissue approximation. Methods EGK-glue was prepared by engineering gelatin with caffeic acid using EDC and conjugating with keratin by periodate oxidation. UV-visible, 1H NMR and circular dichroism analyses followed by experiments on gelation time, rheology, gel adhesive strength (in vitro), wet tissue approximation (in vivo), H&E staining of tissue sections at scheduled time intervals and tensile strength of the healed skin were carried out to assess the effectiveness of the EGK-glue in comparison with fibrin glue and cyanoacrylate. Results Results of UV-visible, NMR and CD analyses confirmed the functionalization and secondary structural changes. Increasing concentration of keratin reduces the gelation time ( 15 s). Lap-shear test demonstrates the maximum adhesive strength of 16.6 ± 1.2 kPa. Results of hemocompatibility and cytocompatibility studies suggested the suitability of the glue for clinical applications. Tissue approximation property assessed using the incision wound model (Wistar strain) in comparison with cyanoacrylate and fibrin glue suggested, that EGK-glue explicitly accelerates the rejoining of tissue with a 1.86 fold increase in skin tensile strength after healing. Conclusions Imparting quinone moiety to gelatin-keratin conjugates through caffeic acid and a weaker oxidizing agent provides an adhesive glue with appreciable strength, and hemocompatible, cytocompatible and biodegradable properties, which, rejoin the cut tissue ends effectively. General significance EGK-glue obtained in the present study finds wide biomedical/clinical applications.
机译:背景技术关键部位切开的组织末端的重新结合给临床医生带来了挑战。当前使用的胶的毒性,抗原性,低粘合强度,柔韧性,溶胀性和成本需要替代方案。发现本研究中描述的工程明胶-角蛋白胶(EGK-glue)适用于湿组织近似。方法采用EDC对明胶和咖啡酸进行工程改造,并通过高碘酸氧化法与角蛋白结合制备EGK胶。紫外可见光,1H NMR和圆二色性分析,然后进行凝胶化时间,流变学,凝胶粘合强度(体外),湿组织近似(体内),按计划的时间间隔对组织切片进行H&E染色和愈合后的拉伸强度的实验与纤维蛋白胶和氰基丙烯酸酯相比,皮肤进行了评估以评估EGK胶的有效性。结果紫外可见,NMR和CD分析的结果证实了功能化和二级结构变化。角蛋白浓度的增加会缩短胶凝时间(<15 s)。搭接剪切试验表明最大粘合强度为16.6±1.2 kPa。血液相容性和细胞相容性研究的结果表明该胶适用于临床应用。与氰基丙烯酸酯和纤维蛋白胶相比,使用切口伤口模型(Wistar菌株)评估的组织近似性能表明,EGK胶可明显促进组织的再结合,愈合后皮肤抗张强度提高1.86倍。结论通过咖啡酸和较弱的氧化剂将醌部分插入明胶-角蛋白结合物中可提供具有明显强度,血液相容性,细胞相容性和生物降解性的胶粘剂,该胶粘剂可有效地重新结合切开的组织末端。本研究中获得的一般意义的EGK胶具有广泛的生物医学/临床应用。

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