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明胶与聚丙烯酸交联水凝胶在体外的生物黏附性和生物相容性评价

Bioadhesion and biocompatibility evaluations of gelatin and polyacrylic acid as a crosslinked hydrogel in vitro.

作者信息

Ghavamzadeh Rosa, Haddadi-Asl Vahid, Mirzadeh Hamid

机构信息

Amirkabir University of Technology, Department of Polymer Engineering, Hafez Avenue, Tehran, Iran.

出版信息

J Biomater Sci Polym Ed. 2004;15(8):1019-31. doi: 10.1163/1568562041526478.

Abstract

This study describes the potentiality of crosslinked hydrogels comprised of gelatin and polyacrylic acid (CHGP) as a biological glue for soft tissues and compares its bonding strength with that of fibrin glue. Water-soluble carbodimide (WSC) was used to crosslink the mixture of gelatin and polyacrylic acid (PAA). An addition of PAA to gelatin increases bonding strength and reduces the gelation time and WSC concentration. Increasing the gelatin, WSC and PAA concentration increases the bonding strength. There is a critical concentration to have a maximum bonding strength. The cured hydrogel exhibited sufficient adhesion to mouse skin with a higher bonding strength than fibrin glue. The in vitro test has been done for evaluating CHGP toxicity.

摘要

本研究描述了由明胶和聚丙烯酸组成的交联水凝胶(CHGP)作为软组织生物胶水的潜力,并将其粘结强度与纤维蛋白胶的粘结强度进行比较。使用水溶性碳二亚胺(WSC)交联明胶和聚丙烯酸(PAA)的混合物。向明胶中添加PAA可提高粘结强度,缩短凝胶化时间并降低WSC浓度。增加明胶、WSC和PAA的浓度可提高粘结强度。存在一个使粘结强度达到最大值的临界浓度。固化后的水凝胶对小鼠皮肤表现出足够的粘附力,粘结强度高于纤维蛋白胶。已进行体外试验以评估CHGP的毒性。

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