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Drug Screening with Genetically Encoded Fluorescent Sensors: Today and Tomorrow

机译:用遗传编码荧光传感器的药物筛选:今天和明天

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摘要

Genetically-encoded fluorescent sensors have been actively developed over the last few decades and used in live imaging and drug screening. Real-time monitoring of drug action in a specific cellular compartment, organ, or tissue type; the ability to screen at the single-cell resolution; and the elimination of false-positive results caused by low drug bioavailability that is not detected by in vitro testing methods are a few of the obvious benefits of using genetically-encoded fluorescent sensors in drug screening. In combination with high-throughput screening (HTS), some genetically-encoded fluorescent sensors may provide high reproducibility and robustness to assays. We provide a brief overview of successful, perspective, and hopeful attempts at using genetically encoded fluorescent sensors in HTS of modulators of ion channels, Ca2+ homeostasis, GPCR activity, and for screening cytotoxic, anticancer, and anti-parasitic compounds. We discuss the advantages of sensors in whole organism drug screening models and the perspectives of the combination of human disease modeling by CRISPR techniques with genetically encoded fluorescent sensors for drug screening.
机译:在过去的几十年中,遗传编码的荧光传感器已经积极开发,并用于实时成像和药物筛选。特定细胞室,器官或组织类型中药物作用的实时监测;能够以单细胞分辨率筛选;并且消除了通过体外测试方法未检测到的低药物生物利用度引起的假阳性结果是使用药物筛选中的遗传编码荧光传感器的一些明显益处。结合高通量筛选(HTS),一些遗传编码的荧光传感器可以为测定提供高再现性和鲁棒性。我们简要概述了在离子通道调节剂HTS中使用遗传编码的荧光传感器,CA2 +稳态,GPCR活性和筛选细胞毒性,抗癌和抗寄生化合物的成功,透视和有希望的尝试。我们讨论了整个生物体药物筛选模型中传感器的优势,并通过CRISPR技术与遗传编码的药物筛选荧光传感器的荧光传感器组合的观点。

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