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Carbon nanotubes as electrophysiological building blocks for a bioactive cell scaffold through biological assembly to induce osteogenesis

机译:碳纳米管作为通过生物组装诱导成骨的生物活性细胞支架的电生理基础

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Bio-functional cell scaffolds have great potential in the field of tissue regenerative medicine. In this work, a carbon nanotube (CNT) gel scaffold via specific pairing of functionalized nucleobases was developed for specifically targeted drug delivery and in vitro osteogenesis. The CNT gel scaffold with nano-fibrous architectures was established by Watson–Crick base pairing between thymine and adenine of low molecular weight heparin, respectively. As scaffold precursors, adenine and thymine functionalized heparin derivatives could additionally bind cell growth factors by the affinity interaction. The resulting nano-fibrous gel scaffolds showed excellent mechanical integrity and advanced electro-physiological functions. Potential application of the electrophysiological CNT gel scaffold in bone tissue engineering was confirmed by encapsulation of human adipose-derived stem cells (ASCs). Our results indicate that the electrically conductive networks formed by CNTs within the nano-fibrous framework are the key characteristics of cell scaffolds leading to improved ASC organization and differentiation by an extra electrical stimulus (ES). Specifically, ASCs cultured in bio-electrical gel scaffolds showed ~4 times higher spontaneous osteogenesis in combination with bone morphogenetic protein 2 (BMP-2), compared to those cultured on pristine hydrogels. This electrophysiological CNT gel scaffold containing BMP-2 exhibited beneficial effects on ASC activity and osteogenetic differentiation, which suggested a promising future for local treatment of bone regeneration.
机译:生物功能细胞支架在组织再生医学领域具有巨大潜力。在这项工作中,通过功能化的核碱基的特定配对开发了碳纳米管(CNT)凝胶支架,用于特异性靶向药物递送和体外成骨。通过沃森-克里克碱基配对在低分子量肝素的胸腺嘧啶和腺嘌呤之间建立了具有纳米纤维结构的CNT凝胶支架。作为支架的前体,腺嘌呤和胸腺嘧啶功能化的肝素衍生物还可以通过亲和相互作用结合细胞生长因子。所得的纳米纤维凝胶支架表现出优异的机械完整性和先进的电生理功能。通过包封人脂肪干细胞(ASC),证实了电生理CNT凝胶支架在骨组织工程中的潜在应用。我们的结果表明,由纳米纤维框架内的CNT形成的导电网络是细胞支架的关键特征,可通过额外的电刺激(ES)来改善ASC的组织和分化。具体而言,与在原始水凝胶上培养的相比,在生物电凝胶支架上培养的ASC与骨形态发生蛋白2(BMP-2)结合的自发成骨能力高约4倍。这种包含BMP-2的电生理CNT凝胶支架对ASC活性和成骨细胞分化显示出有益的作用,这表明局部治疗骨再生的前景广阔。

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