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Fabrication of an Implantable Fine Needle-Type Glucose Sensor Using γ -Polyglutamic Acid

机译:用γ-聚谷氨酸制备可植入的细针型葡萄糖传感器

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Implantable fine needle-type glucose sensors with an outer diameter of less that 0.2 mm were fabricated using a low-cost and non-animal origin polyamide, γ-polyglutamic acid (PGA) as a glucose oxidase (GOx) immobilizing material. Two types of PGA, γ-polyglutamic acid (PGAH) and γ-polyglutamic acid sodium salt (PGANa), were employed to prepare GOx immobilized film by the covalent attachment of GOx using water-soluble carbodiimide (EDC). Nafion/cellulose acetate composite film and polyurethane/polydimethylsiloxane composite film were employed as a permselective inner film and a biocompatible outer film, respectively. The procedure of enzyme-immobilized film fabrication affected the stability of the sensor; that is, GOx immobilized film prepared by pouring a mixture solution of GOx and EDC on a PGA precoated surface showed higher sensor stability than that prepared by pouring a mixture solution of GOx, PGA and EDC. Although, obvious differences in the sensor properties were not observed between the use of PGANa and PGAH, the electrode prepared with PGAH had a lower swelling degree. The glucose sensors prepared with both PGANa and PGAH were practically not affected by the existence of electroactive compounds, such as uric acid, and provided long-term stability for approximately 5 weeks. These sensors also showed good performance in horse serum.
机译:使用低成本且非动物来源的聚酰胺γ-聚谷氨酸(PGA)作为葡萄糖氧化酶(GOx)固定材料,制造了外径小于0.2 mm的可植入细针型葡萄糖传感器。通过使用水溶性碳二亚胺(EDC)共价附着GOx,采用两种类型的PGA,即γ-聚谷氨酸(PGAH)和γ-聚谷氨酸钠盐(PGANa)。将Nafion /乙酸纤维素复合膜和聚氨酯/聚二甲基硅氧烷复合膜分别用作选择性渗透内膜和生物相容性外膜。酶固定膜的制备过程影响了传感器的稳定性。即,通过将GOx和EDC的混合溶液倒在PGA预涂表面上制备的GOx固定膜比通过倒GOx,PGA和EDC的混合溶液制备的固定膜具有更高的传感器稳定性。尽管在使用PGANa和PGAH之间没有观察到明显的传感器性能差异,但是用PGAH制备的电极的溶胀度较低。用PGANa和PGAH制备的葡萄糖传感器实际上不受诸如尿酸之类的电活性化合物的存在的影响,并提供约5周的长期稳定性。这些传感器在马血清中也显示出良好的性能。

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