Yang Sumi, Jang LindyK, Kim Semin, Yang Jongcheol, Yang Kisuk, Cho Seung-Woo, Lee Jae Young
School of Materials Science and Engineering, Gwangju Institute of Science and Engineering (GIST), Gwangju, 500-712, Republic of Korea.
Department of Biotechnology, Yonsei University, Seoul, 120-749, Republic of Korea.
Macromol Biosci. 2016 Nov;16(11):1653-1661. doi: 10.1002/mabi.201600148. Epub 2016 Jul 26.
Electrically conductive biomaterials that can efficiently deliver electrical signals to cells or improve electrical communication among cells have received considerable attention for potential tissue engineering applications. Conductive hydrogels are desirable particularly for neural applications, as they can provide electrical signals and soft microenvironments that can mimic native nerve tissues. In this study, conductive and soft polypyrrole/alginate (PPy/Alg) hydrogels are developed by chemically polymerizing PPy within ionically cross-linked alginate hydrogel networks. The synthesized hydrogels exhibit a Young's modulus of 20-200 kPa. Electrical conductance of the PPy/Alg hydrogels could be enhanced by more than one order of magnitude compared to that of pristine alginate hydrogels. In vitro studies with human bone marrow-derived mesenchymal stem cells (hMSCs) reveal that cell adhesion and growth are promoted on the PPy/Alg hydrogels. Additionally, the PPy/Alg hydrogels support and greatly enhance the expression of neural differentiation markers (i.e., Tuj1 and MAP2) of hMSCs compared to tissue culture plate controls. Subcutaneous implantation of the hydrogels for eight weeks induces mild inflammatory reactions. These soft and conductive hydrogels will serve as a useful platform to study the effects of electrical and mechanical signals on stem cells and/or neural cells and to develop multifunctional neural tissue engineering scaffolds.
能够有效地将电信号传递给细胞或改善细胞间电通讯的导电生物材料,因其在潜在组织工程应用方面的前景而受到了广泛关注。导电水凝胶尤其适用于神经应用,因为它们能够提供电信号和可模拟天然神经组织的柔软微环境。在本研究中,通过在离子交联藻酸盐水凝胶网络中化学聚合聚吡咯(PPy),制备了导电且柔软的聚吡咯/藻酸盐(PPy/Alg)水凝胶。合成的水凝胶杨氏模量为20 - 200 kPa。与原始藻酸盐水凝胶相比,PPy/Alg水凝胶的电导率可提高一个多数量级。对人骨髓间充质干细胞(hMSCs)的体外研究表明,PPy/Alg水凝胶上细胞的黏附和生长得到促进。此外,与组织培养板对照相比,PPy/Alg水凝胶支持并显著增强了hMSCs神经分化标志物(即Tuj1和MAP2)的表达。水凝胶皮下植入八周会引发轻度炎症反应。这些柔软且导电的水凝胶将成为一个有用的平台,用于研究电信号和机械信号对干细胞和/或神经细胞的影响,并开发多功能神经组织工程支架。