Centre de Recherche de l'Hôpital Saint-François d'Assise, CHUQ, Département de Chirurgie, Faculté de Médecine, Université Laval, Québec, Canada.
J Biomed Mater Res A. 2010 Jan;92(1):221-31. doi: 10.1002/jbm.a.32357.
Electrically conducting polypyrrole (PPy) and its composite materials are useful in interfacing electrical components and cells or living tissue. In recent years, significant efforts have been made to bioactivate PPy by incorporating biomolecules. The main objective of this work was to chemically bioactivate PPy particules by incorporating fibronectin (FN) and bovine serum albumin (BSA). Modified PPy particles were synthesized through a water-in-oil emulsion polymerization. XPS and FTIR confirmed the presence of biomolecules on the PPy particles, and the surface morphology was observed by SEM. A four-point probe was used to measure the conductivity of the newly synthesized PPy particles, which was in the range of 10(-1) S cm(-1). Conductive biodegradable membranes were prepared with 5 and 10% (wt/wt) PPy to poly(L,L-lactide) (PPy/PLLA). The contact angles of each synthesized membrane were approximately 75 degrees , supporting their usefulness for cell culture. The cultured human skin fibroblasts demonstrated normal morphology and significantly higher adhesion and spreading on the PPy/PLLA approximately FN membrane than on the unmodified PPy/PLLA membrane. On the other hand, the PPy/PLLA approximately BSA membranes showed decreased cell adhesion. Bioactivated PPy may be useful in tissue engineering to fabricate conducting biodegradable scaffolds with either improved or reduced cell adhesion properties for various cell culture and in vivo applications.
导电聚吡咯(PPy)及其复合材料在电连接元件、细胞或活体组织方面有重要应用。近年来,通过将生物分子掺入 PPy 来实现其生物功能化已经得到了广泛的关注。本工作的主要目的是通过将纤连蛋白(FN)和牛血清白蛋白(BSA)掺入 PPy 颗粒来实现其化学生物功能化。通过水包油乳液聚合合成了修饰后的 PPy 颗粒。XPS 和 FTIR 证实了生物分子存在于 PPy 颗粒上,并且通过 SEM 观察到了表面形貌。使用四点探针测量了新合成的 PPy 颗粒的电导率,其范围在 10(-1) S cm(-1) 之间。用 5%和 10%(wt/wt)的 PPy 制备了可生物降解的导电膜与聚(L,L-丙交酯)(PPy/PLLA)。每个合成膜的接触角约为 75 度,这支持了它们在细胞培养方面的应用。培养的人皮肤成纤维细胞表现出正常的形态,并且在 PPy/PLLA-FN 膜上的黏附和铺展明显高于在未修饰的 PPy/PLLA 膜上。另一方面,PPy/PLLA-BSA 膜显示出细胞黏附减少。生物功能化的 PPy 可能在组织工程中有用,可用于制造具有改进或降低细胞黏附特性的导电可生物降解支架,以用于各种细胞培养和体内应用。