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Intracellular calcium ions and morphological changes of cardiac myoblasts response to an intelligent biodegradable conducting copolymer

机译:心肌肌细胞对智能生物降解的导电共聚物的心肌细胞的细胞内钙离子和形态变化

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摘要

A novel biodegradable conducting polymer, PLA-b-AP-b-PLA (PAP) triblock copolymer of poly (c-lactide) (PLA) and aniline pentamer (AP) with electroactivity and biodegradability, was synthesized and its potential application in cardiac tissue engineering was studied. The PAP copolymer presented better biocompatibility compared to PANi and PLA because of promoted cell adhesion and spreading of rat cardiac myoblasts (H9c2 cell line) on PAP/PLA thin film. After pulse electrical stimulation (5 V, 1 Hz, 500 ms) for 6 days, the proliferation ratio, and intracellular calcium concentration of H9c2 cells on PAP/PLA were improved significantly. Meanwhile, cell morphology changed by varying the pulse electrical signals. Especially, the oriented pseudopodia-like structure was observed from H9c2 cells on PAP/PLA after electrical stimulation. It is regarded that the novel conducting copolymer could enhance electronic signals transferring between cells because of its special electrochemical properties, which may result in the differentiation of cardiac myoblasts.
机译:合成了一种新型的可生物降解的导电聚合物,聚(C-丙交酯)(PLA)和苯胺五聚体(AP)的聚(C-丙交酯)(PLA)和苯胺五聚体(AP),并在心脏组织中潜在应用研究了工程。与PANI和PLA相比,PAP共聚物呈现了更好的生物相容性,因为促进了对PAP / PLA薄膜的大鼠心脏肌细胞(H9C2细胞系)的细胞粘附和扩散。在脉冲电刺激(5V,1 Hz,500ms)持续6天后,显着提高了PAP / PLA上H9C2细胞的增殖比和细胞内钙浓度。同时,通过改变脉冲电信号来改变细胞形态。特别是,在电刺激后从H9C2细胞中观察到定向的假透视结构。认为新的导电共聚物可以增强电池之间传递的电子信号,因为其特殊的电化学性能,这可能导致心脏肌细胞的分化。

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