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An amperomertic uric acid biosensor based on immobilization of uricase onto polyaniline-multiwalled carbon nanotube composite film

机译:基于尿酸酶固定在聚苯胺-多壁碳纳米管复合膜上的安培型尿酸生物传感器

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摘要

A highly sensitive, amperometric uric acid biosensor possessing unique physical, electro-conductive properties of carbon nanotubes is described for determination of uric acid level in serum. A uric acid biosensor was constructed after immobilization of uricase onto a polyaniline/CNT matrix by carbonamide linkage. The scanning electron micrographs confirmed the immobilization of globular enzyme onto the electroploymerized polyaniline/CNT composite. Employment of carbon nanotubes composite in the present electrode leads to a very quick response time of 8 sec with the minimum detection limit of 5 μM along with an increase in shelf-life of electrode system to >180 days with slight loss of enzyme activity. Efficiency of the present amperometric uric acid biosensor was validated by quantitative estimation of uric acid level in biological serum of healthy individuals and the persons suffering from hyperuricemia and gout.
机译:描述了一种具有独特的碳纳米管物理,导电特性的高灵敏度,电流型尿酸生物传感器,用于测定血清中的尿酸水平。通过尿素酶通过碳酰胺键固定在聚苯胺/ CNT基质上后,构建了尿酸生物传感器。扫描电子显微照片证实了球状酶固定在电聚合聚苯胺/ CNT复合材料上。在本电极中使用碳纳米管复合材料会导致8秒的非常快速的响应时间,最小检测限为5μM,同时电极系统的保质期增加到> 180天,酶活性略有下降。通过定量估计健康个体以及患有高尿酸血症和痛风的人的生物血清中的尿酸水平,验证了本电流型尿酸生物传感器的效率。

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