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Modulation of articular chondrocyte activity by pirfenidone.

机译:吡非尼酮对关节软骨细胞活性的调节。

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摘要

Pirfenidone is under investigation as an anti-inflammatory and anti-fibrotic agent in several organs including lung. Since important features of arthritic conditions include inflammation and long-term damage to articular cartilage, we have investigated whether PD can suppress chondrocyte responses to bacterial lipopolysaccharide (LPS) and interleukin 1 (IL-1); modulators that induce a cascade of inflammatory responses that lead to articular joint tissue damage. PD (0 - 5microM) showed no effect on cell number or viability when incubated with high density primary equine chondrocyte cultures for a 24 hr period. PD did not stimulate nitric oxide (NO) release by chondrocytes when added alone but LPS and IL-1-induced NO release was inhibited by PD, in a dose-dependent manner. PD did not significantly influence GAG release from cartilage matrix nor did it stimulate or suppress the GAG releasing actions of LPS or IL-1. We conclude that PD is capable of attenuating the cytokine-induced production of the inflammatory mediator, NO by chondrocytes, without stimulating matrix glycosaminoglycan loss from cartilage. PD may have potential as an anti-inflammatory agent in the joint.
机译:吡非尼酮在包括肺在内的多个器官中作为抗炎和抗纤维化剂正在研究中。由于关节炎病症的重要特征包括炎症和对关节软骨的长期损害,因此我们研究了PD是否可以抑制软骨细胞对细菌脂多糖(LPS)和白介素1(IL-1)的反应。调节剂,引起一系列炎症反应,导致关节关节组织损伤。当与高密度原代马软骨细胞培养物一起孵育24小时后,PD(0-5microM)对细胞数量或活力没有影响。当单独添加PD时,它不会刺激软骨细胞释放一氧化氮(NO),但PD会以剂量依赖的方式抑制LPS和IL-1诱导的NO释放。 PD不会显着影响GAG从软骨基质中释放,也不会刺激或抑制LPS或IL-1的GAG释放作用。我们得出的结论是,PD能够减弱软骨素诱导的细胞因子诱导的炎性介质NO生成,而不会刺激软骨基质糖胺聚糖的损失。 PD在关节中可能具有作为抗炎药的潜力。

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