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Manipulation of electrical charge of proteins for sensitive biosensing using field-effect transistors

机译:使用场效应晶体管操纵蛋白质的电荷以进行敏感的生物传感

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To gain better signals in potentiometric biosensing of protein, site-selective chemical modification of amino acid residues was employed by exogenous acylation and glycation reactions of primary amines and the guanidinium group, converting them from cationic into anionic or neutral. The site-selectivity of the charge-conversions resulted in maintained structural integrity and bioactivity of the proteins. The estimated negative charge density of bovine serum albumin (BSA) under physiological pH increased by 5-fold. The potential shifts by the adsorption was 3-fold higher in succinylated BSA than original BSA, whereas more significant amplification of the signal (11-fold) was observed by the modifications of lysozyme using a field-effect transistor (FET) biosensor.
机译:为了在蛋白质的电位生物传感中获得更好的信号,通过伯胺和胍基的外源酰化和糖基化反应对氨基酸残基进行位点选择性化学修饰,将它们从阳离子转化为阴离子或中性。电荷转化的位点选择性导致蛋白质保持结构完整性和生物活性。在生理pH下,牛血清白蛋白(BSA)的估计负电荷密度增加了5倍。在琥珀酰化的BSA中,吸附引起的电位偏移比原始BSA高3倍,而通过使用场效应晶体管(FET)生物传感器对溶菌酶进行修饰,则观察到信号的显着放大(11倍)。

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