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聚合物纳米层上的蛋白质覆盖导致间充质干细胞形态发生。

Protein coverage on polymer nanolayers leading to mesenchymal stem cell patterning.

机构信息

Department of Chemical and Biomolecular Engineering, Yonsei University, 50 Yonsei-ro, Seodaemun-gu, Seoul 120-749, Korea.

出版信息

Phys Chem Chem Phys. 2011 Oct 21;13(39):17625-32. doi: 10.1039/c1cp21732a. Epub 2011 Sep 7.

Abstract

Interactions of gelatin and albumin with a photo-reactive diphenylamino-s-triazine bridged p-phenylene vinylene polymer (DTOPV) were examined by using surface plasmon resonance (SPR) spectroscopy to explore the effect of the polymer structure on protein coverage of DTOPV nanofilms. The SPR data revealed a significant increase of gelatin adsorption on UV-DTOPV nanofilms, while the adsorption of albumin was decreased by UV exposure in the time frame of the experiment. We also found that the selective adsorption of these proteins was highly dependent on the protein concentration; the highest selectivity of protein adsorption was obtained at the lowest concentration (3.5 μg ml(-1)), while no selective adsorption was confirmed at high concentrations (350 and 1000 μg ml(-1)). The selective attachment of mesenchymal stem cells (MSCs) was directly correlated with the selective adsorption of these proteins onto DTOPV nanofilms. The MSCs attachment onto UV-DTOPV films was promoted with only small mass coverage of gelatin, which led to MSC patterning onto the patterned DTOPV nanofilms successfully. The role of cell adhesion proteins that we found in this study will be a clue to elucidate the complex response of biomolecules on functional polymer nanolayers, and contribute to build up biocompatible surfaces on various advanced materials for the sake of cell engineering and medical implants.

摘要

通过表面等离子体共振(SPR)光谱研究了明胶和白蛋白与光反应的二苯基氨基-s-三嗪桥联对苯撑乙烯聚合物(DTOPV)的相互作用,以探讨聚合物结构对 DTOPV 纳米薄膜中蛋白质覆盖的影响。SPR 数据表明,UV-DTOPV 纳米薄膜上明胶的吸附显著增加,而白蛋白的吸附在实验时间范围内经 UV 照射后减少。我们还发现,这些蛋白质的选择性吸附高度依赖于蛋白质浓度;在最低浓度(3.5 μg ml(-1)) 下获得了最高的蛋白质吸附选择性,而在高浓度(350 和 1000 μg ml(-1)) 下未确认选择性吸附。间充质干细胞(MSCs)的选择性附着直接与这些蛋白质对 DTOPV 纳米薄膜的选择性吸附相关。仅通过少量明胶的质量覆盖,就促进了 MSCs 附着到 UV-DTOPV 薄膜上,这导致 MSC 成功地图案化到图案化的 DTOPV 纳米薄膜上。在这项研究中我们发现的细胞粘附蛋白的作用将为阐明生物分子在功能聚合物纳米层上的复杂反应提供线索,并有助于为细胞工程和医疗植入物构建各种先进材料的生物相容性表面。

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