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Increased cyclooxygenase-2 expression and prostaglandin E2 production in pressurized renal medullary interstitial cells

机译:加压肾髓质间质细胞中环氧合酶2表达的增加和前列腺素E2的产生

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摘要

Renal medullary interstitial cells (RMICs) are subjected to osmotic, inflammatory, and mechanical stress as a result of ureteral obstruction, which may influence the expression and activity of cyclooxygenase type 2 (COX-2). Inflammatory stress strongly induces COX-2 in RMICs. To explore the direct effect of mechanical stress on the expression and activity of COX-2, cultured RMICs were subjected to varying amounts of pressure over time using a novel pressure apparatus. COX-2 mRNA and protein were induced following 60 mmHg pressure for 4 and 6 h, respectively. COX-1 mRNA and protein levels were unchanged. PGE2 production in the RMICs was increased when cells were subjected to 60 mmHg pressure for 6 h and was prevented by a selective COX-2 inhibitor. Pharmacological inhibition indicating that pressure-induced COX-2 expression is dependent on p38 MAPK and biochemical knockdown experiments showed that NF-κB might be involved in the COX-2 induction by pressure. Importantly, terminal deoxyneucleotidyl transferase-mediated dUTP nick-end labeling and methylthiazoletetetrazolium assay studies showed that subjecting RMICs to 60 mmHg pressure for 6 h does not affect cell viability, apoptosis, and proliferation. To further examine the regulation of COX-2 in vivo, rats were subjected to unilateral ureteral obstruction (UUO) for 6 and 12 h. COX-2 mRNA and protein level was increased in inner medulla in response to 6- and 12-h UUO. COX-1 mRNA and protein levels were unchanged. These findings suggest that in vitro application of pressure recapitulates the effects on RMICs found after in vivo UUO. This directly implicates pressure as an important regulator of renal COX-2 expression.
机译:由于输尿管阻塞,肾髓质间质细胞(RMIC)受到渗透,炎症和机械应力,这可能会影响2型环氧合酶(COX-2)的表达和活性。炎性应激强烈诱导RMIC中的COX-2。为了探究机械应力对COX-2表达和活性的直接影响,使用新型压力设备对培养的RMIC施加了随时间变化的压力。在60 mmHg压力下分别诱导COX-2 mRNA和蛋白4 h和6 h。 COX-1 mRNA和蛋白质水平未改变。当将细胞置于60 mmHg压力下6 h时,RMIC中PGE2的产生增加,并被选择性COX-2抑制剂阻止。药理学抑制作用表明压力诱导的COX-2表达依赖于p38 MAPK,生化击倒实验表明NF-κB可能参与压力诱导的COX-2的表达。重要的是,末端脱氧神经核苷转移酶介导的dUTP缺口末端标记和甲基噻唑四唑鎓测定研究表明,将RMIC置于60 mmHg压力下持续6 h不会影响细胞活力,细胞凋亡和增殖。为了进一步检查体内对COX-2的调节,对大鼠进行了单侧输尿管阻塞(UUO)6小时和12小时。响应6小时和12小时的UUO,内髓质中的COX-2 mRNA和蛋白水平增加。 COX-1 mRNA和蛋白质水平未改变。这些发现表明,体外施加压力可概括体内UUO后发现的对RMIC的影响。这直接暗示压力是肾脏COX-2表达的重要调节剂。

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