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Novel method for the study of receptor Ca2+ signalling exemplified by the NK1 receptor

机译:研究NK1受体为代表的Ca2 +受体信号传导的新方法

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We have used a novel technology (NovoStar from BMG Labtechnologies) for the study of the Ca2+. signalling of the human tackykinin NK1 (hNK-1 receptor). The NovoStar is a microplate reader based on fluorescence and luminescence. The instrument implements a robotic pipettor arm and two microplate carriers, typically one for samples and one for cells. The robotic pipettor arm can transfer sample (agonist or antagonist) from the sample plate or other liquid containers to the cell plate, facilitating the study of Ca2+ signalling to such a degree that the instrument can be used for Medium Throughput Screening (MTS). Using the NovoStar we have found the molecular pharmacology of the NK1 receptor to be comparable to that observed in classical signal transduction assays. Thus, we have observed an EC50 value of 3 nM for substance P induced Ca2+ response. This value corresponds well with previously published values for substance P induced IP and cAMP turnover.([1]) Using the NovoStar technology we have studied the pharmacological profile of the well known non-peptide NK1 receptor antagonists CP96,345 and SR140,333([2,33]) in respect of inhibition of the Ca2+ response induced by substance P, Interestingly, the antagonistic potency of the antagonists depended greatly on-the experimental design, e.g., a dependency of timing in the addition of antagonists vs. agonist was noted. Also, metal-ion site engineered NK1 receptors([2]) were tested for the ability of metal-ions to inhibit signalling. It is concluded that the NovoStar is a reliable tool for the study of receptor Ca2+ signalling, both as a research tool and as a MTS system. [References: 10]
机译:我们已经使用一种新颖的技术(来自BMG Labtechnologies的NovoStar)来研究Ca2 +。黏黏激肽NK1(hNK-1受体)的信号传导。 NovoStar是基于荧光和发光的酶标仪。该仪器配有一个自动移液器臂和两个微孔板支架,通常一个用于样品,一个用于细胞。自动移液器臂可将样品(激动剂或拮抗剂)从样品板或其他液体容器转移至细胞板,从而促进Ca2 +信号传导的研究,从而使该仪器可用于中等通量筛选(MTS)。使用NovoStar,我们发现NK1受体的分子药理学与经典信号转导分析法中观察到的可比。因此,我们观察到物质P诱导的Ca2 +响应的EC50值为3 nM。该值与先前公布的物质P诱导的IP和cAMP转换的值非常一致。[[1])使用NovoStar技术,我们研究了众所周知的非肽NK1受体拮抗剂CP96,345和SR140,333( [2,33])在抑制物质P诱导的Ca2 +响应方面,有趣的是,拮抗剂的拮抗效力在很大程度上取决于实验设计,例如,添加拮抗剂与激动剂的时间关系是注意。此外,测试了金属离子位点工程的NK1受体([2])的金属离子抑制信号传导的能力。结论是,无论是作为研究工具还是作为MTS系统,NovoStar都是研究受体Ca2 +信号传导的可靠工具。 [参考:10]

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