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A Novel Method for Screening Adenosine Receptor Specific Agonists for Use in Adenosine Drug Development

机译:筛选用于腺苷药物开发的腺苷受体特异性激动剂的新方法

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摘要

Agonists that target the A1, A2A, A2B and A3 adenosine receptors have potential to be potent treatment options for a number of diseases, including autoimmune diseases, cardiovascular disease and cancer. Because each of these adenosine receptors plays a distinct role throughout the body, obtaining highly specific receptor agonists is essential. Of these receptors, the adenosine A2AR and A2BR share many sequence and structural similarities but highly differ in their responses to inflammatory stimuli. Our laboratory, using a combination of specially developed cell lines and calcium release analysis hardware, has created a new and faster method for determining specificity of synthetic adenosine agonist compounds for the A2A and A2B receptors in human cells. A2A receptor expression was effectively removed from K562 cells, resulting in the development of a distinct null line. Using HIV-lentivector and plasmid DNA transfection, we also developed A2A and A2B receptor over-expressing lines. As adenosine is known to cause changes in intracellular calcium levels upon addition to cell culture, calcium release can be determined in these cell lines upon compound addition, providing a functional readout of receptor activation and allowing us to isolate the most specific adenosine agonist compounds.
机译:靶向A1,A2A,A2B和A3腺苷受体的激动剂有可能成为许多疾病的有效治疗选择,包括自身免疫性疾病,心血管疾病和癌症。由于这些腺苷受体中的每一种在整个人体中都扮演着独特的角色,因此获得高度特异性的受体激动剂至关重要。在这些受体中,腺苷A2AR和A2BR具有许多序列和结构相似性,但是它们对炎症刺激的反应却存在很大差异。我们的实验室结合专门开发的细胞系和钙释放分析硬件,创造了一种新的更快的方法来确定合成腺苷激动剂化合物对人细胞中A2A和A2B受体的特异性。从K562细胞中有效去除了A2A受体的表达,从而导致了明显的空系的发展。使用HIV-lentivector和质粒DNA转染,我们还开发了A2A和A2B受体过表达株。由于已知腺苷添加到细胞培养物中会引起细胞内钙水平的变化,因此可以在添加化合物后确定这些细胞系中的钙释放,从而提供受体激活的功能性读数,并使我们能够分离出最特异性的腺苷激动剂化合物。

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