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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 >Label-free functional assays of chemical receptors using a bioengineered cell-based biosensor with localized extracellular acidification measurement
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Label-free functional assays of chemical receptors using a bioengineered cell-based biosensor with localized extracellular acidification measurement

机译:使用生物工程化的基于细胞的生物传感器与局部细胞外酸化测量,对化学受体进行无标记功能测定

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摘要

New methods for functional assays of chemical receptors are highly essential for the research of chemical signal transduction mechanisms and for the development of chemical biosensors. This study described a novel bioengineered cell-based biosensor for label-free functional assays of chemical receptors by localized extracellular acidification measurement with a light-addressable potentiometric sensor (LAPS). A human taste receptor, hT2R4, and an olfactory receptor of Caenorhabditis elegans (C. elegans), ODR-10, were selected as models of chemical receptors, which were expressed on the plasma membrane of human embryonic kidney (HEK)-293 cells. The specific ligand binding function of expressed chemical receptors was monitored by localized extracellular acidification measurement using LAPS chip with a movable focused laser illuminating on the desired single cell. The function of expressed olfactory receptors was further validated using MDL12330A, which can specifically inhibit the activity of adenylyl cyclase. The obtained results indicate that both of chemical receptors were successfully expressed in HEK-293 cells and can be functionally assayed by this bioengineered cell-based biosensor that shows dose-dependent responses to the target ligands of chemical receptors. This bioengineered cell-based biosensor exhibits the sensitivity of 1.0 mV/s for hT2R4 assays, and 9.8 mV/s for ODR-10 assays. The negative control cells without any chemical receptor expression show no response to all the chemical stimuli tested. All the results demonstrate this bioengineered cell-based biosensor can be used to detect the interactions between chemical receptors and their ligands. This provides a valuable and promising approach for label-free functional assays of chemical receptors as well as for the research of other GPCRs.
机译:化学受体功能测定的新方法对于化学信号转导机制的研究和化学生物传感器的开发至关重要。这项研究描述了一种新型的基于生物工程细胞的生物传感器,用于通过光寻址电位传感器(LAPS)进行的局部细胞外酸化测量,进行化学受体的无标记功能测定。选择人类味觉受体hT2R4和秀丽隐杆线虫(C. elegans)的嗅觉受体ODR-10作为化学受体模型,在人类胚胎肾(HEK)-293细胞的质膜上表达该化学受体。表达的化学受体的特异性配体结合功能是通过使用LAPS芯片进行局部细胞外酸化测量来监控的,该芯片使用可移动聚焦激光照射在所需的单细胞上。使用MDL12330A可以进一步验证表达的嗅觉受体的功能,该功能可以特异性抑制腺苷酸环化酶的活性。获得的结果表明,两种化学受体均已在HEK-293细胞中成功表达,并且可以通过这种基于生物工程细胞的生物传感器进行功能分析,该传感器显示出对化学受体的靶配体的剂量依赖性反应。这种基于生物工程细胞的生物传感器对hT2R4分析的灵敏度为1.0 mV / s,对ODR-10分析的灵敏度为9.8 mV / s。没有任何化学受体表达的阴性对照细胞对所有测试的化学刺激均无反应。所有结果表明,这种基于生物工程细胞的生物传感器可用于检测化学受体及其配体之间的相互作用。这为化学受体的无标记功能测定以及其他GPCR的研究提供了一种有价值且有前途的方法。

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