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Sensor technologies for monitoring metabolic activity in single cells-part II: nonoptical methods and applications

机译:用于监测单细胞代谢活性的传感器技术,第二部分:非光学方法和应用

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A review of solid-state chemical and electrochemical sensors to detect metabolic activity at the extracellular, single-cell level is presented in the context of the development of lab-on-a-chip research instrumentation. Metabolic processes in cells are briefly reviewed with the goal of quantifying the role of metabolites within the cell. Sensors reviewed include both research and commercial devices that can noninvasively detect extracellular metabolites, including oxygen, carbon dioxide, and glucose. Metabolic activity can also be sensed nonselectively by measuring pH gradients. Performance metrics, such as sensitivity, sensor size, drift, time response, and sensing range, are included when available. Highly suitable sensor technologies for monitoring cellular metabolic activity include electrochemical sensors, scanning electrochemical microscopy, ion-sensitive field effect transistor sensors, and solid-state light-addressable potentiometric sensors. Other less-suitable, but still potentially viable, solid-state sensing technologies are also reviewed briefly, including resonant chemical sensors (surface acoustic wave and quartz crystal microbalance), conductivity or impedance sensors, and sensors with multiple transduction stages. Specific biological applications which benefit from detection of extracellular metabolic events at the single-cell level are discussed to provide context to the practical use of these sensor technologies; these applications include case studies of various diseases (cancer, diabetes, mitochondrial disorders. etc.), cell and tissue differentiation; cell and tissue storage; cell life cycle and basic cellular processes; and developmental biology.
机译:在片上实验室研究仪器的开发背景下,对用于检测细胞外单细胞水平代谢活性的固态化学和电化学传感器进行了综述。简要回顾了细胞中的代谢过程,以量化细胞内代谢物的作用为目标。所审查的传感器包括能够无创检测细胞外代谢物(包括氧气,二氧化碳和葡萄糖)的研究和商业设备。代谢活性也可以通过测量pH梯度来非选择性地检测。可用时,包括性能指标,例如灵敏度,传感器尺寸,漂移,时间响应和感应范围。用于监测细胞代谢活性的最合适的传感器技术包括电化学传感器,扫描电化学显微镜,离子敏感场效应晶体管传感器和固态光寻址电位传感器。还简要回顾了其他不适合但仍可能可行的固态传感技术,包括共振化学传感器(表面声波和石英晶体微天平),电导率或阻抗传感器以及具有多个转导级的传感器。讨论了在单细胞水平上受益于细胞外代谢事件检测的特定生物学应用,为这些传感器技术的实际应用提供了背景。这些应用包括各种疾病(癌症,糖尿病,线粒体疾病等),细胞和组织分化的案例研究;细胞和组织存储;细胞生命周期和基本细胞过程;和发育生物学。

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