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Mussel-Inspired Dopamine and Carbon Nanotube Leading to a Biocompatible Self-Rolling Conductive Hydrogel Film

机译:贻贝启发多巴胺和碳纳米管导致生物相容性的自滚动导电水凝胶膜。

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摘要

We report a novel self-rolling, conductive, and biocompatible multiwall carbon nanotube (MWCNT)-dopamine-polyethylene glycol (PEG) hydrogel film. The gel can self-fold into a thin tube when it is transferred from a glass slide to an aqueous environment, regardless of the concentrations of the MWCNT. The film presents a highly organized pattern, which results from the self-assembly of hydrophilic dopamine and hydrophobic carbon nanotubes. By exploring the biomedical potential, we found that MWCNT-included rolled film is nontoxic and can promote cell growth. For further functional verification by qPCR (quantitative polymerase chain reaction), bone marrow derived mesenchymal cells present higher levels of osteogenic differentiations in response to a higher concentration of CNTs. The results suggest that the self-rolling, conductive CNT-dopamine-PEG hydrogel could have multiple potentials, including biomedical usage and as a conductive biosensor.
机译:我们报告了一种新型的自滚动,导电和生物相容性的多壁碳纳米管(MWCNT)-多巴胺-聚乙二醇(PEG)水凝胶膜。当凝胶从载玻片转移到水性环境中时,它可以自动折叠成细管,而与MWCNT的浓度无关。该膜呈现出高度有组织的图案,这是由于亲水性多巴胺和疏水性碳纳米管的自组装而产生的。通过探索生物医学潜力,我们发现包含MWCNT的卷膜是无毒的,可以促进细胞生长。为了通过qPCR(定量聚合酶链反应)进行进一步的功能验证,骨髓来源的间充质细胞响应更高浓度的CNTs,表现出更高水平的成骨分化水平。结果表明,自滚动导电CNT-多巴胺-PEG水凝胶可能具有多种潜力,包括生物医学用途和作为导电生物传感器。

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