Department of Polymer Science, School of Chemical Engineering and Technology, Tianjin University, No. 135, Yaguan Road, Tianjin 300350, China.
Biomater Sci. 2020 Jun 7;8(11):3173-3185. doi: 10.1039/c9bm02012h. Epub 2020 May 5.
The development of three-dimensional conductive scaffolds is vital to support the adhesion, proliferation and myocardial differentiation of stem cells in cardiac tissue engineering. Herein, we describe a facile approach for preparing a poly(3,4-ethylenedioxythiophene)/alginate (PEDOT/Alg) porous scaffold with a wide range of desirable properties. In the PEDOT/Alg scaffold, chemically crosslinked alginate networks are formed using adipic acid hydrazide as the crosslinker, and PEDOT is synthesized in situ in the alginate matrix simultaneously. PEDOT exists in the alginate matrix as particles and its morphology can be modulated by adjusting the ratio of PEDOT/alginate. The results also show that the swelling properties, degradation behaviors, mechanical strength and conductivity of the PEDOT/Alg scaffold can be controlled via adjusting the PEDOT/alginate ratio. The introduction of PEDOT can overcome the brittle nature of the pure alginate scaffold. Moreover, the PEDOT/Alg scaffold exhibits excellent conductivity (as high as 6 × 10 S cm). The introduction of PEDOT improves the protein absorption capacity of the alginate scaffold. To explore its potential application in cardiac tissue engineering, brown adipose-derived stem cells (BADSCs) are seeded in the prepared PEDOT/Alg porous scaffold. The results suggest that the PEDOT/Alg porous scaffold can support the attachment and proliferation of BADSCs. Moreover, it is beneficial for the cardiomyogenic differentiation of BADSCs, especially under electrical stimulation. Overall, we conclude that the PEDOT/Alg porous scaffold may represent an ideal platform to modulate the biological behaviors of BADSCs.
三维导电支架的开发对于支持干细胞在心脏组织工程中的黏附、增殖和心肌分化至关重要。本文描述了一种简便的方法,用于制备具有广泛理想性能的聚(3,4-亚乙基二氧噻吩)/海藻酸钠(PEDOT/Alg)多孔支架。在 PEDOT/Alg 支架中,使用己二酰肼作为交联剂形成化学交联的海藻酸钠网络,同时在海藻酸钠基质中原位合成 PEDOT。PEDOT 以颗粒形式存在于海藻酸钠基质中,其形态可以通过调节 PEDOT/海藻酸钠的比例来调节。结果还表明,通过调节 PEDOT/海藻酸钠的比例,可以控制 PEDOT/Alg 支架的溶胀性能、降解行为、机械强度和导电性。PEDOT 的引入可以克服纯海藻酸钠支架的脆性。此外,PEDOT/Alg 支架表现出优异的导电性(高达 6×10 S cm)。PEDOT 的引入提高了海藻酸钠支架的蛋白质吸收能力。为了探索其在心脏组织工程中的潜在应用,将棕色脂肪来源的干细胞(BADSCs)接种在制备的 PEDOT/Alg 多孔支架中。结果表明,PEDOT/Alg 多孔支架可以支持 BADSCs 的黏附和增殖。此外,它有利于 BADSCs 的心肌分化,特别是在电刺激下。总体而言,我们得出结论,PEDOT/Alg 多孔支架可能代表一种调节 BADSCs 生物学行为的理想平台。