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Artificial blood vessel biofuel cell for self-powered blood glucose monitoring

机译:用于自供电血糖监测的人造血管生物燃料电池

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摘要

Biofuel cell (BFC) is a kind of bio-cell based on biological enzymes. The enzyme as a catalyst can interconvert renewable and sustainable energy into each other more rapidly, such as the biochemical energy in glucose and ethanol into electrical energy. In this work, artificial blood vessel and fuel cell are based on polyaniline/thermoplastic polyurethane (PANI/TPU) fiber membrane with an average fiber diameter of 1300 nm, a film thickness of 167 mu m, and a permeability of 18.4 mm s(-1). The PANI/TPU fiber membrane was prepared by electrospinning and followed in situ polymerization. The membrane has good flexibility and mechanical properties, and can be stretched up to 200. The advantages of good hydrophilicity, biocompatibility and high porosity make it possible to efficiently load glucose oxidase and laccase. The prepared BFC can stably output a voltage of 50 mV in simulated blood, and the output electrical signal changes significantly with the change of glucose concentration, which may be used in implantable devices or blood glucose monitoring.
机译:生物燃料电池(BFC)是一种基于生物酶的生物电池。酶作为催化剂可以更快地将可再生和可持续能源相互转化,例如葡萄糖和乙醇中的生化能转化为电能。本研究以聚苯胺/热塑性聚氨酯(PANI/TPU)纤维膜为基础,平均纤维直径为1300 nm,膜厚为167 μ m,渗透率为18.4 mm s(-1)。采用静电纺丝法制备PANI/TPU纤维膜,然后进行原位聚合。该膜具有良好的柔韧性和机械性能,可拉伸至200%。良好的亲水性、生物相容性和高孔隙率的优点使得有效地加载葡萄糖氧化酶和漆酶成为可能。制备的BFC在模拟血液中可稳定输出50 mV的电压,输出电信号随葡萄糖浓度的变化而发生显著变化,可用于植入式器械或血糖监测。

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