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添加剂对明胶-聚(L-谷氨酸)混合物凝胶化及组织黏附的影响

Effect of additives on gelation and tissue adhesion of gelatin-poly(L-glutamic acid) mixture.

作者信息

Otani Y, Tabata Y, Ikada Y

机构信息

Research Center for Biomedical Engineering, Kyoto University, Japan.

出版信息

Biomaterials. 1998 Dec;19(23):2167-73. doi: 10.1016/s0142-9612(98)00123-9.

Abstract

Gelation and tissue adhesion of mixtures of gelatin and poly (L-glutamic acid) (PLGA) aqueous solution were investigated in the presence of additives following the addition of a water-soluble carbodiimide (WSC) that induced chemical cross linking between gelatin and PLGA. To prevent spontaneous gelation of the mixed solution through physical cross linking between gelatin molecules at room temperature, additives were added to the mixed solution. Among the additives studied, starch and urea were effective in preventing the spontaneous physical gelation. The mixed gelatin and PLGA solution set to a cross-linked hydrogel within scores of second by WSC addition, irrespective of the presence of urea, whereas the viscosity of the solution with added starch was too high to measure the gelation time. The cross-linked gelatin-PLGA hydrogels with and without urea showed higher bonding strength to soft tissues than fibrin glue. This was in marked contrast to gelatin-PLGA hydrogels with soluble starch. Irrespective of the presence of urea, the gelatin-PLGA hydrogels gradually biodegraded in the back subcutis of mice over 3 months and no severe inflammatory response to the hydrogels was observed. These findings indicate that urea is promising as an additive to prevent spontaneous physical gelation of the mixed gelatin and PLGA aqueous solution without changing the characteristics of WSC-induced cross linking and tissue adhesion of the formed hydrogel.

摘要

在添加诱导明胶与聚(L-谷氨酸)(PLGA)之间发生化学交联的水溶性碳二亚胺(WSC)之后,研究了存在添加剂的情况下明胶与PLGA水溶液混合物的凝胶化和组织粘附情况。为了防止混合溶液在室温下通过明胶分子之间的物理交联而自发凝胶化,向混合溶液中添加了添加剂。在所研究的添加剂中,淀粉和尿素可有效防止自发的物理凝胶化。无论是否存在尿素,添加WSC后,混合的明胶和PLGA溶液在几十秒内就会形成交联水凝胶,而添加淀粉的溶液粘度太高,无法测量凝胶化时间。含尿素和不含尿素的交联明胶-PLGA水凝胶对软组织的粘结强度均高于纤维蛋白胶。这与含可溶性淀粉的明胶-PLGA水凝胶形成了显著对比。无论是否存在尿素,明胶-PLGA水凝胶在小鼠背部皮下3个月内逐渐生物降解,且未观察到对水凝胶的严重炎症反应。这些发现表明,尿素有望作为一种添加剂,在不改变WSC诱导的交联特性和所形成水凝胶的组织粘附特性的情况下,防止混合的明胶和PLGA水溶液自发物理凝胶化。

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