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通过等离子体诱导接枝聚合制备的异双功能膜作为穿透性角膜移植人工器官

Heterobifunctional membranes by plasma induced graft polymerization as an artificial organ for penetration keratoprosthesis.

作者信息

Chang P C, Lee S D, Hsiue G H

机构信息

Department of Ophthalmology, Taichung Veterans General Hospital, Taiwan, ROC.

出版信息

J Biomed Mater Res. 1998 Mar 5;39(3):380-9. doi: 10.1002/(sici)1097-4636(19980305)39:3<380::aid-jbm6>3.0.co;2-f.

Abstract

Highly biocompatible polymer membrane was developed for an artificial cornea in this surface modification study. Heterobifunctional silicone rubber membranes (hetero-SR) were prepared by grafting different functional polymers on each side of a silicone rubber membrane (SR). A novel type of bifunctional membrane was developed with the upper-side favoring cell attachment and growth, and the lower-side suppressing cell adhesion. The preparation of heterobifunctional membranes, characterization of polymer membrane surface properties such as ATR-FTIR and ESCA and contact angle, and biological analysis (in vitro and in vivo studies) were investigated in this work. Based on the biological analysis, the heterobifunctional membrane displays promising potential for use as an artificial cornea.

摘要

在这项表面改性研究中,开发了用于人工角膜的高生物相容性聚合物膜。通过在硅橡胶膜(SR)的每一侧接枝不同的功能聚合物,制备了异双功能硅橡胶膜(hetero-SR)。开发了一种新型双功能膜,其上层有利于细胞附着和生长,下层抑制细胞粘附。本研究对异双功能膜的制备、聚合物膜表面性质(如ATR-FTIR、ESCA和接触角)的表征以及生物学分析(体外和体内研究)进行了研究。基于生物学分析,异双功能膜显示出作为人工角膜的潜在应用前景。

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