Department of Basic Pharmaceutical Sciences, College of Pharmacy, Univ. of Louisiana at Monroe, Monroe, LA 71201, USA.
Am J Physiol Renal Physiol. 2011 Apr;300(4):F941-6. doi: 10.1152/ajprenal.00024.2010. Epub 2011 Feb 2.
Heme oxygenase (HO) catalyzes the degradation of heme to form iron, biliverdin, and carbon monoxide (CO). The vascular actions of CO include direct vasodilation of vascular smooth muscle and indirect vasoconstriction through inhibition of nitric oxide synthase (NOS). This study was performed to examine the effects in the kidney of inhibition of heme oxygenase alone or combined with NOS inhibition. Chromium mesoporphyrin (CrMP; 45 μmol/kg ip), a photostable HO inhibitor, was given to control rats and N(G)-nitro-l-arginine methyl ester (l-NAME)-treated hypertensive rats (50 mg·kg⁻¹·day⁻¹), 12 h, 4 days). In control animals, CrMP decreased CO levels, renal HO-1 levels, urine volume, and sodium excretion, but had no effect on arterial pressure, renal blood flow (RBF), plasma renin activity (PRA), or glomerular filtration rate (GFR). In l-NAME-treated hypertensive rats, CrMP decreased endogenous CO and renal HO-1 levels and had no effect on arterial pressure, RBF, or GFR but decreased sodium and water excretion in a similar manner to control animals. An increase in PRA was observed in untreated rats but not in l-NAME-infused rats, indicating that this effect is associated with an absent NO system. The results suggest that inhibition of HO promotes water and sodium excretion by a direct tubular action that is independent of renal hemodynamics or the NO system.
血红素加氧酶(HO)催化血红素降解为铁、胆红素和一氧化碳(CO)。CO 的血管作用包括血管平滑肌的直接舒张和通过抑制一氧化氮合酶(NOS)间接的血管收缩。本研究旨在观察单独抑制血红素加氧酶或与 NOS 抑制联合抑制对肾脏的影响。给予铬中卟啉(CrMP;45 μmol/kg ip),一种光稳定的 HO 抑制剂,给对照组大鼠和 N(G)-硝基-l-精氨酸甲酯(l-NAME)处理的高血压大鼠(50 mg·kg⁻¹·day⁻¹),12 h,4 天)。在对照组动物中,CrMP 降低了 CO 水平、肾 HO-1 水平、尿量和钠排泄,但对动脉压、肾血流量(RBF)、血浆肾素活性(PRA)或肾小球滤过率(GFR)没有影响。在 l-NAME 处理的高血压大鼠中,CrMP 降低了内源性 CO 和肾 HO-1 水平,对动脉压、RBF 或 GFR 没有影响,但以类似于对照组动物的方式减少了钠和水的排泄。在未处理的大鼠中观察到 PRA 增加,但在 l-NAME 输注的大鼠中没有观察到,表明这种作用与不存在的 NO 系统有关。结果表明,HO 抑制通过独立于肾血流动力学或 NO 系统的直接管状作用促进水和钠排泄。