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Endogenously produced adenosine regulates articular cartilage matrix homeostasis: enzymatic depletion of adenosine stimulates matrix degradation.

机译:内源性产生的腺苷调节关节软骨基质的稳态:腺苷的酶消耗刺激基质降解。

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OBJECTIVE: Enhanced extracellular levels of adenosine have been shown to inhibit experimentally induced cartilage degradation. The objective of this study was to investigate the role of adenosine and A(2)adenosine receptors in regulating cartilage homeostasis in the absence of inflammatory stimuli. METHODS: Cartilage explants were exposed to adenosine deaminase (ADA) to deplete extracellular adenosine, and conditioned medium was collected for evaluation of glycosaminoglycan (GAG), prostaglandin E(2)(PGE(2)), nitric oxide (NO), and matrix metalloproteinases-3 and -13 (MMP-3, MMP-13) levels. In a second set of experiments, cartilage incubated with ADA was simultaneously exposed to the adenosine kinase inhibitor 5'-iodotubercidin (ITU) to inhibit adenosine breakdown, or to the A(2A)adenosine receptor agonist N(6)-[2-(3,5-dimethoxyphenyl)-ethyl]adenosine (DPMA). Finally, explants were incubated with the adenosine receptor antagonists ZM241385, CGS15943, theophylline or caffeine to block normal receptor activation by endogenous adenosine. RESULTS: Exposure to ADA induced a concentration-dependent increase in GAG release and production of total MMP-3, MMP-13, PGE(2), and NO. Both ITU and DPMA inhibited the ADA-mediated increases in GAG release and PGE(2), and NO production, but only ITU inhibited MMP-13 release. Exposure to ZM 241385 increased GAG, MMP-3 and MMP-13 release. Additionally, CGS 15943 increased MMP-3 production while theophylline increased GAG, PGE(2), and NO release. CONCLUSIONS: Endogenous adenosine levels appear to regulate cartilage matrix homeostasis even in the absence of inflammation. Regulation occurs, at least in part, through activation of cell surface receptors. This study suggests that autocrine and paracrine responses to adenosine release are important for maintenance of healthy articular cartilage.
机译:目的:提高细胞外腺苷水平可抑制实验诱导的软骨降解。这项研究的目的是调查在没有炎症刺激的情况下腺苷和A(2)腺苷受体在调节软骨稳态中的作用。方法:将软骨外植体暴露于腺苷脱氨酶(ADA)以消耗细胞外腺苷,并收集条件培养基以评估糖胺聚糖(GAG),前列腺素E(2)(PGE(2)),一氧化氮(NO)和基质金属蛋白酶3和-13(MMP-3,MMP-13)的水平。在第二组实验中,将与ADA孵育的软骨同时暴露于腺苷激酶抑制剂5'-碘杜比西丁(ITU)以抑制腺苷分解,或暴露于A(2A)腺苷受体激动剂N(6)-[2-( 3,5-二甲氧基苯基)-乙基]腺苷(​​DPMA)。最后,将外植体与腺苷受体拮抗剂ZM241385,CGS15943,茶碱或咖啡因一起孵育,以阻止内源性腺苷激活正常受体。结果:暴露于ADA会导致GAG释放和总MMP-3,MMP-13,PGE(2)和NO浓度的浓度依赖性增加。 ITU和DPMA都抑制ADA介导的GAG释放和PGE(2)和NO产生的增加,但只有ITU抑制MMP-13的释放。 ZM 241385暴露会增加GAG,MMP-3和MMP-13的释放。此外,CGS 15943增加了MMP-3的产生,而茶碱增加了GAG,PGE(2)和NO的释放。结论:即使没有炎症,内源性腺苷水平似乎也能调节软骨基质的稳态。调节至少部分地通过细胞表面受体的活化而发生。这项研究表明,对腺苷释放的自分泌和旁分泌反应对于维持健康的关节软骨很重要。

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