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Detection of hydrogen peroxide in Photosystem II (PSII) using catalytic amperometric biosensor

机译:使用催化安培生物传感器检测光系统II(PSII)中的过氧化氢

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Hydrogen peroxide (H_(2)O_(2)) is known to be generated in Photosystem II (PSII) via enzymatic and non-enzymatic pathways. Detection of H_(2)O_(2)by different spectroscopic techniques has been explored, however its sensitive detection has always been a challenge in photosynthetic research. During the recent past, fluorescence probes such as Amplex Red (AR) has been used but is known to either lack specificity or limitation with respect to the minimum detection limit of H_(2)O_(2). We have employed an electrochemical biosensor for real time monitoring of H_(2)O_(2)generation at the level of sub-cellular organelles. The electrochemical biosensor comprises of counter electrode and working electrodes. The counter electrode is a platinum plate, while the working electrode is a mediator based catalytic amperometric biosensor device developed by the coating of a carbon electrode with osmium-horseradish peroxidase which acts as H_(2)O_(2)detection sensor. In the current study, generation and kinetic behavior of H_(2)O_(2)in PSII membranes have been studied under light illumination. Electrochemical detection of H_(2)O_(2)using the catalytic amperometric biosensor device is claimed to serve as a promising technique for detection of H_(2)O_(2)in photosynthetic cells and subcellular structures including PSII or thylakoid membranes. It can also provide a precise information on qualitative determination of H_(2)O_(2)and thus can be widely used in photosynthetic research.
机译:已知过氧化氢(H_(2)O_(2))是通过酶促途径和非酶促途径在光系统II(PSII)中生成的。已经探索了通过不同的光谱技术检测H_(2)O_(2),但是其灵敏检测一直是光合作用研究中的一个挑战。在最近的过去中,已经使用了诸如Amplex Red(AR)之类的荧光探针,但是已知对于H_(2)O_(2)的最小检测限缺乏特异性或局限性。我们已采用电化学生物传感器实时监测亚细胞器水平的H_(2)O_(2)生成。电化学生物传感器包括反电极和工作电极。对电极是一块铂金板,而工作电极是一种基于介体的催化安培生物传感器装置,该装置是通过在碳电极上涂上ase-辣根过氧化物酶(用作H_(2)O_(2)检测传感器)而开发的。在当前的研究中,已经研究了光照下PSII膜中H_(2)O_(2)的生成和动力学行为。使用催化安培生物传感器装置对H_(2)O_(2)进行电化学检测被认为是一种有前途的技术,可用于检测光合细胞和亚细胞结构(包括PSII或类囊体膜)中的H_(2)O_(2)。它也可以提供定性测定H_(2)O_(2)的精确信息,因此可以广泛用于光合作用研究中。

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