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电刺激可提高人类皮肤成纤维细胞在可导电可生物降解基质上的活力。

Electrical stimulation enhances viability of human cutaneous fibroblasts on conductive biodegradable substrates.

作者信息

Shi Guixin, Rouabhia Mahmoud, Meng Shiyun, Zhang Ze

机构信息

Centre de recherche de l'Hôpital Saint-François d'Assise, CHUQ, Département de chirurgie, Faculté de médecine, Université Laval, Québec (QC), Canada.

出版信息

J Biomed Mater Res A. 2008 Mar 15;84(4):1026-37. doi: 10.1002/jbm.a.31337.

Abstract

Electrically conductive biodegradable polymer membranes were prepared by mixing conductive polypyrrole particles with poly(L-lactic acid) solution followed by solution casting and solvent evaporation. Multi-well electrical cell culture plates were fabricated to host electrically stimulated cell culture and monitor parameters. Human cutaneous fibroblasts were cultured on conductive membranes with or without electrical stimulation (ES). Cell count, MTT, Hoechst staining, and SEM were performed to characterize the cells. The membranes supported the adhesion and proliferation of the fibroblasts in both the presence and absence of ES. In the presence of direct electrical field strength of 100 mV/mm, cell viability on the PPy/PLLA membranes at 2 and 24 h was 2.2- and 4.0-fold (p < 0.05) respectively of that on the same membranes without ES. Direct electrical current ranging from 2.5 to 250 microA/mm had no effect on the viability of cells cultured on the gold-coated Petri dish. Electrical field applied to conductive biodegradable polymer surfaces is therefore an effective approach to upregulate the mitochondrial activity of human skin fibroblasts.

摘要

通过将导电聚吡咯颗粒与聚(L-乳酸)溶液混合,然后进行溶液浇铸和溶剂蒸发,制备了导电可生物降解聚合物膜。制造了多孔电细胞培养板,用于进行电刺激细胞培养并监测参数。在有或没有电刺激(ES)的情况下,将人皮肤成纤维细胞培养在导电膜上。进行细胞计数、MTT、Hoechst染色和扫描电子显微镜(SEM)以表征细胞。无论有无电刺激,这些膜都支持成纤维细胞的黏附和增殖。在100 mV/mm的直接电场强度下,PPy/PLLA膜上2小时和24小时的细胞活力分别是无电刺激时相同膜上细胞活力的2.2倍和4.0倍(p<0.05)。2.5至250微安/毫米的直流电对培养在镀金培养皿上的细胞活力没有影响。因此,施加于导电可生物降解聚合物表面的电场是上调人皮肤成纤维细胞线粒体活性的有效方法。

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