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A photovoltage-based integrated sensor for nephrotoxicity evaluation under drug stimulation

机译:药物刺激下的肾毒性评价的基于光电电压的集成传感器

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A monolithically integrated sensor based on photovoltage technique is developed for kidney metabolism detection under drug toxicity. The sensor utilizes the light-addressable potentiometric sensor with an electrolyte-insulator-semiconductor (EIS) structure for measuring cellular metabolic rate, and a gold metal layer is deposited on partial surface of silicon dioxide for extracellular redox (reduction-oxidation) potential detection. The neonatal rat's kidney cells are confined to a flow chamber with a volume of 50 µl, in which the constructed sensor continuously monitoring the rate of acid metabolites, and the redox potential in extracellular microenvironment. The synthesis parameters detected reflect the cellular metabolic and active condition after drug stimulation, which demonstrates the potentials for nephrotoxicity evaluation and preclinical drug screening.
机译:在药物毒性下开发了一种基于光伏技术的单片集成传感器,用于肾脏代谢检测。 该传感器利用具有用于测量蜂窝代谢速率的电解质 - 绝缘体 - 半导体(EIS)结构的光可寻度电位传感器,并且金属层沉积在二氧化硅的部分表面上,用于细胞外氧化还原(还原氧化)电位检测。 新生大鼠的肾细胞被限制在具有50&#00b5; L的流动室中,其中构建的传感器连续监测酸代谢物的速率,以及细胞外微环境中的氧化还原电位。 检测到的合成参数反映了药物刺激后的细胞代谢和活性条件,这证明了肾毒性评价和临床前药物筛选的潜力。

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