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The interference of HEPES buffer during amperometric detection of ATP in clinical applications

机译:HEPES缓冲液在临床安培检测ATP中的干扰

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摘要

HEPES-based biological buffer is subject to photooxidation upon exposure to fluorescent illumination. Thereby hydrogen peroxide is generated, which interferes with amperometric oxidoreductase-based biosensors for glucose or adenosine triphosphate (ATP). These biosensors operate at an oxidation potential above 500 mV vs. the standard calomel electrode (SCE) and involve hydrogen peroxide as the electroactive molecule detected at the electrode surface. False-positive detection of ATP was observed in HEPES buffer utilizing an amperometric microbiosensor based on the co-immobilization of glucose oxidase and hexokinase for detection of ATP in biological specimens. Electrochemical, mass spectrometric, 31P NMR, and 1H NMR studies indicate that complexation of ATP and HEPES induced by the presence of Ca2+ in HEPES buffer decreases the photooxidation of HEPES. Consequently, the hydrogen peroxide background concentration is reduced, thereby leading to erroneous ATP detection at the dual-enzyme microbiosensor, which determines an increase in ATP via a reduced hydrogen peroxide signal.
机译:基于HEPES的生物缓冲液在暴露于荧光照射下会发生光氧化作用。因此,产生了过氧化氢,其干扰了用于葡萄糖或三磷酸腺苷(ATP)的基于电流型氧化还原酶的生物传感器。与标准甘汞电极(SCE)相比,这些生物传感器的氧化电位高于500 mV,并且涉及过氧化氢作为在电极表面检测到的电活性分子。利用基于葡萄糖氧化酶和己糖激酶共同固定化的安培型微生物传感器,在HEPES缓冲液中观察到ATP的假阳性检测,以检测生物样品中的ATP。电化学,质谱,31 P NMR和1 H NMR研究表明,HEPES缓冲液中Ca2 +的存在引起的ATP与HEPES的络合降低了HEPES的光氧化作用。因此,降低了过氧化氢的本底浓度,从而导致在双酶微生物传感器上检测到错误的ATP,这会通过减少的过氧化氢信号来确定ATP的增加。

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