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首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >A self referencing platinum nanoparticle decorated enzyme-based microbiosensor for real time measurement of physiological glucose transport
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A self referencing platinum nanoparticle decorated enzyme-based microbiosensor for real time measurement of physiological glucose transport

机译:自参考铂纳米粒子修饰的基于酶的微生物传感器,用于实时测量生理葡萄糖转运

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摘要

Glucose is the central molecule in many biochemical pathways, and numerous approaches have been developed for fabricating micro biosensors designed to measure glucose concentration inear cells and/or tissues. An inherent problem for microsensors used in physiological studies is a low signal-to-noise ratio, which is further complicated by concentration drift due to the metabolic activity of cells. A microsensor technique designed to filter extraneous electrical noise and provide direct quantification of active membrane transport is known as self-referencing. Self-referencing involves oscillation of a single microsensor via computer-controlled stepper motors within a stable gradient formed near cells/tissues (i.e., within the concentration boundary layer). The non-invasive technique provides direct measurement of trans-membrane (or trans-tissue) analyte flux. A glucose micro biosensor was fabricated using deposition of nanomaterials (platinum black, multiwalled carbon nanotubes, Nafion) and glucose oxidase on a platinum/iridium microelectrode. The highly sensitive/selective biosensor was used in the self-referencing modality for cell/tissue physiological transport studies. Detailed analysis of signal driftoise filtering via phase sensitive detection (including a post-measurement analytical technique) are provided. Using this highly sensitive technique, physiological glucose uptake is demonstrated in a wide range of metabolic and pharmacological studies. Use of this technique is demonstrated for cancer cell physiology, bioenergetics, diabetes, and microbial biofilm physiology. This robust and versatile biosensor technique will provide much insight into biological transport in biomedical, environmental, and agricultural research applications.
机译:葡萄糖是许多生化途径中的核心分子,并且已经开发出许多方法来制造旨在测量细胞和/或组织中/附近的葡萄糖浓度的微型生物传感器。生理学研究中使用的微传感器的固有问题是信噪比低,由于细胞代谢活性引起的浓度漂移使信噪比进一步复杂化。设计用于过滤外部电噪声并提供对主动膜运输的直接定量的微传感器技术称为自参考。自引用涉及通过计算机控制的步进电机在细胞/组织附近(即在浓度边界层内)形成的稳定梯度内振荡单个微传感器。非侵入性技术可直接测量跨膜(或跨组织)分析物通量。葡萄糖微生物传感器是通过在铂/铱微电极上沉积纳米材料(铂黑,多壁碳纳米管,Nafion)和葡萄糖氧化酶制成的。高度敏感/选择性的生物传感器用于细胞/组织生理转运研究的自参照模式。提供了通过相敏检测(包括测量后分析技术)对信号漂移/噪声滤波的详细分析。使用这种高度敏感的技术,在广泛的代谢和药理研究中证明了生理性葡萄糖摄取。已证明该技术可用于癌细胞生理学,生物能学,糖尿病和微生物生物膜生理学。这种健壮且通用的生物传感器技术将为生物医学,环境和农业研究应用中的生物运输提供更多见识。

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