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首页> 外文期刊>Hypertension: An Official Journal of the American Heart Association >Renal Medullary Interstitial COX-2 (Cyclooxygenase-2) Is Essential in Preventing Salt-Sensitive Hypertension and Maintaining Renal Inner Medulla/Papilla Structural Integrity
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Renal Medullary Interstitial COX-2 (Cyclooxygenase-2) Is Essential in Preventing Salt-Sensitive Hypertension and Maintaining Renal Inner Medulla/Papilla Structural Integrity

机译:肾髓质间质Cox-2(环氧氧酶-2)对于预防盐敏感高血压和维持肾内髓质/乳头结构完整性是必不可少的

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摘要

COX (cyclooxygenase)-derived prostaglandins regulate renal hemodynamics and salt and water homeostasis. Inhibition of COX activity causes blood pressure elevation. In addition, chronic analgesic abuse can induce renal injury, including papillary necrosis. COX-2 is highly expressed in the kidney papilla in renal medullary interstitial cells (RMICs). However, its role in blood pressure and papillary integrity in vivo has not been definitively studied. In mice with selective, inducible RMIC COX-2 deletion, a high-salt diet led to an increase in blood pressure that peaked at 4 to 5 weeks and was associated with increased papillary expression of AQP2 (aquaporin 2) and ENac (epithelial sodium channel) and decreased expression of cystic fibrosis transmembrane conductance regulator. With continued high-salt feeding, the mice with RMIC COX-2 deletion had progressive decreases in blood pressure from its peak. After return to a normal-salt diet for 3 weeks, blood pressure remained low and was associated with a persistent urinary concentrating defect. Within 2 weeks of institution of a high-salt diet, increased apoptotic RMICs and collecting duct cells could be detected in papillae with RMIC deletion of COX-2, and by 9 weeks of high salt, there was a striking loss of the papillae. Therefore, RMIC COX-2 expression plays a crucial role in renal handling water and sodium homeostasis, preventing salt-sensitive hypertension and maintaining structural integrity of papilla.
机译:Cox(环氧氧基酶)的前列腺素调节肾血流动力学和盐和水位稳态。抑制COX活性导致血压升高。此外,慢性镇痛滥用可以诱导肾损伤,包括乳头坏死。 COX-2在肾髓质间质细胞(RMIC)的肾乳头高度表达。然而,它在体内血压和乳头完整性中的作用并未明确研究。在具有选择性的诱导性RMIC COX-2缺失的小鼠中,高盐饮食导致血压增加,达到4至5周的达到达到达到峰值,并且与AQP2(AQPAlarin 2)和ENAC的乳头状表达增加有关(上皮钠通道)和降低囊性纤维化跨膜电导调节剂的表达。随着持续的高盐喂养,具有RMIC COX-2缺失的小鼠从其峰值的血压逐渐降低。返回正常盐饮食3周后,血压仍然低,与持续的尿液浓缩缺陷有关。在高盐饮食的2周内,可以在乳头缺血中检测到高盐饮食的凋亡和收集管细胞的增加,并在COX-2的RMIC缺失中检测到,并在9周的高盐中,乳头缺失丧失。因此,RMIC COX-2表达在肾脏处理水和稳态稳态中起着至关重要的作用,预防盐敏感的高血压和维持乳头的结构完整性。

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