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Carbon Nanotube Yarn-Based Glucose Sensing Artificial Muscle

机译:碳纳米管基于纱线的葡萄糖传感人造肌肉

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摘要

Boronic acid (BA), known to be a reversible glucose-sensing material, is conjugated to a nanogel (NG) derived from hyaluronic acid biopolymer and used as a guest material for a carbon multiwalled nanotube (MWNT) yarn. By exploiting the swelling/deswelling of the NG that originates from the internal anionic charge changes resulting from BA binding to glucose, a NG MWNT yarn artificial muscle is obtained that provides reversible torsional actuation that can be used for glucose sensing. This actuator shows a short response time and high sensitivity (in the 5-100 x 10(-3)m range) for monitoring changes in glucose concentration in physiological buffer, without using any additional auxiliary substances or an electrical power source. It may be possible to apply the glucose-sensing MWNT yarn muscles as implantable glucose sensors that automatically release drugs when needed or as an artificial pancreas.
机译:众所周知,硼酸(BA)是可逆的葡萄糖传感材料,它与衍生自透明质酸生物聚合物的纳米凝胶(NG)结合在一起,并用作碳多壁纳米管(MWNT)纱线的客体材料。通过利用源自BA与葡萄糖结合的内部阴离子电荷变化而引起的NG溶胀/消肿,获得了NG MWNT纱线人造肌肉,它提供了可逆的扭转致动,可用于葡萄糖感测。该执行器显示了短的响应时间和很高的灵敏度(在5-100 x 10(-3)m范围内),用于监测生理缓冲液中葡萄糖浓度的变化,而无需使用任何其他辅助物质或电源。可以将葡萄糖敏感的MWNT纱线肌肉用作可植入的葡萄糖传感器,该传感器可在需要时自动释放药物,也可以用作人造胰腺。

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