College of Chemistry & Molecular Sciences, Wuhan University, Wuhan, 430072 (China).
Angew Chem Int Ed Engl. 2014 May 19;53(21):5380-4. doi: 10.1002/anie.201402751. Epub 2014 Apr 7.
Nanostructured conductive polymers can offer analogous environments for extracellular matrix and induce cellular responses by electric stimulation, however, such materials often lack mechanical strength and tend to collapse under small stresses. We prepared electrically conductive nanoporous materials by coating nanoporous cellulose gels (NCG) with polypyrrole (PPy) nanoparticles, which were synthesized in situ from pyrrole monomers supplied as vapor. The resulting NCG/PPy composite hydrogels were converted to aerogels by drying with supercritical CO2, giving a density of 0.41-0.53 g cm(-3), nitrogen adsorption surface areas of 264-303 m(2) g(-1), and high mechanical strength. The NCG/PPy composite hydrogels exhibited an electrical conductivity of up to 0.08 S cm(-1). In vitro studies showed that the incorporation of PPy into an NCG enhances the adhesion and proliferation of PC12 cells. Electrical stimulation demonstrated that PC12 cells attached and extended longer neurites when cultured on NCG/PPy composite gels with DBSA dopant. These materials are promising candidates for applications in nerve regeneration, carbon capture, catalyst supports, and many others.
纳米结构导电聚合物可为细胞外基质提供类似的环境,并通过电刺激诱导细胞反应,然而,此类材料通常缺乏机械强度,并且在较小的应力下容易塌陷。我们通过用吡咯单体的蒸汽原位合成的聚苯胺(PPy)纳米颗粒涂覆纳米多孔纤维素凝胶(NCG)来制备导电纳米多孔材料。所得的 NCG/PPy 复合水凝胶通过用超临界 CO2 干燥转化为气凝胶,密度为 0.41-0.53 g cm(-3),氮气吸附表面积为 264-303 m(2) g(-1),具有较高的机械强度。NCG/PPy 复合水凝胶的电导率高达 0.08 S cm(-1)。体外研究表明,将 PPy 掺入 NCG 中可以增强 PC12 细胞的黏附和增殖。电刺激表明,当在含有 DBSA 掺杂剂的 NCG/PPy 复合凝胶上培养时,PC12 细胞附着并延伸更长的神经突。这些材料有望应用于神经再生、碳捕获、催化剂载体等领域。