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Non-invasive Microsensors for Studying Cell/Tissue Physiology

机译:用于研究细胞/组织生理学的非侵入性微传感器

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Non-invasive tools that allow real-time quantification of molecules relevant to metabolism, homeostasis, and cell signaling in cells and tissue are of great importance for studying physiology. Several microsensor technologies have been developed to monitor concentration of molecules such as ions, oxygen, electroactive molecules (e.g., nitric oxide, hydrogen peroxide), and biomolecules (e.g., sugars, hormones). The major challenges for microsensors are overcoming relatively low sensitivity and low signal-to-noise ratio. Modern approaches for enhancing microsensor performance focus on the incorporation of catalytic nanomaterials to increase sensitivity, reduce response time, and increase operating range. To improve signal-to-noise ratio, a non-invasive microsensor modality called self-referencing (SR) is being applied. The SR technique allows measurement of temporal and spatial transport dynamics at the cell, tissue, organ, and organismal level.
机译:允许与新陈代谢,稳态和细胞信号传导相关的分子实时定量的非侵入性工具对学习生理学具有重要意义。已经开发了几种微传感器技术以监测离子,氧,电活性分子(例如,一氧化氮,过氧化氢)和生物分子(例如,糖,激素)的分子浓度。微传感器的主要挑战克服了相对较低的灵敏度和低信噪比。用于提高催化纳米材料的掺入增强催化纳米材料以提高敏感性,减少响应时间和增加工作范围的现代方法。为了提高信噪比,正在应用被称为自引用(SR)的非侵入性微传感器模态。 SR技术允许在细胞,组织,器官和有机体水平下测量时间和空间传输动态。

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