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用细胞传感器微生理仪对SHP - 77细胞系中B2受体及缓激肽类似物活性进行表征。

Characterization of the B2 receptor and activity of bradykinin analogs in SHP-77 cell line by Cytosensor microphysiometer.

作者信息

Bironaite Daiva, Gera Lajos, Stewart John M

机构信息

Department of Developmental Biology, Institute of Biochemistry, 2600 Vilnius, Lithuania.

出版信息

Chem Biol Interact. 2004 Dec 7;150(3):283-93. doi: 10.1016/j.cbi.2004.09.021.

Abstract

The Cytosensor microphysiometer device (Molecular Devices, Sunnyvale, CA) is capable of measuring the rate at which cells acidify their environment in response to ligand-receptor binding. By measuring the extracellular acidification response (ECAR) we characterized some aspects of ligand-B2 receptor interaction in SHP-77 cell line. SHP-77 cells maximally acidified their environment within 30 s after the exposure to bradykinin (BK) or the BK agonist, B9972, with the maximum effect seen at a ligands concentration of 1 microM. Fetal bovine serum (FBS) modulated the binding of BK or B9972, showing that B9972 is a partial agonist. In addition, the binding of BK agonist or antagonist to the B2 receptor showed different ECAR and different interaction with other intracellular and plasma membrane proteins. Our microphysiometrical results showed that two parameters, antagonist binding affinity (pD2) and antagonist potency (pIC50) are required to characterize BK antagonist activity for the B2 receptor in the SHP-77 cell line. The previously used parameter of B2 antagonist activity, pA2, had high variation and poor correlation with the inhibition of SHP-77 cell growth in vitro and suppression of tumor growth when SHP-77 cells were injected to mice. Our results permit us to conclude that BK agonists and antagonists differ in their interactions with the B2 receptor and consequently elicit different cell responses. Based on our results, we have developed a new microphysiometrical assay for analyzing the activity of BK agonists and antagonist in SHP-77 cells, which may facilitate the discovery of new potent anticancer drugs.

摘要

细胞传感器微生理计设备(分子设备公司,加利福尼亚州桑尼维尔)能够测量细胞因配体 - 受体结合而酸化其环境的速率。通过测量细胞外酸化反应(ECAR),我们表征了SHP - 77细胞系中配体与B2受体相互作用的某些方面。SHP - 77细胞在暴露于缓激肽(BK)或BK激动剂B9972后30秒内将其环境酸化至最大程度,在配体浓度为1微摩尔时观察到最大效应。胎牛血清(FBS)调节BK或B9972的结合,表明B9972是部分激动剂。此外,BK激动剂或拮抗剂与B2受体的结合表现出不同的ECAR以及与其他细胞内和质膜蛋白的不同相互作用。我们的微生理测量结果表明,需要两个参数,即拮抗剂结合亲和力(pD2)和拮抗剂效能(pIC50)来表征SHP - 77细胞系中B2受体的BK拮抗剂活性。先前使用的B2拮抗剂活性参数pA2变化很大,并且与体外抑制SHP - 77细胞生长以及将SHP - 77细胞注射到小鼠体内时肿瘤生长的抑制相关性很差。我们的结果使我们能够得出结论,BK激动剂和拮抗剂与B2受体的相互作用不同,因此引发不同的细胞反应。基于我们的结果,我们开发了一种新的微生理测量方法来分析SHP - 77细胞中BK激动剂和拮抗剂的活性,这可能有助于发现新的强效抗癌药物。

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