Carreño Flávia Regina, Ji Lisa L, Cunningham J Thomas
Department of Pharmacology, University of Texas Health Science Center at San Antonio, San Antonio, TX 78229, USA.
Am J Physiol Regul Integr Comp Physiol. 2009 Feb;296(2):R454-66. doi: 10.1152/ajpregu.90460.2008. Epub 2008 Dec 17.
Inappropriate vasopressin (AVP) release causes dilutional hyponatremia in many pathophysiological states such as cirrhosis. The central molecular mechanisms that mediate inappropriate AVP release are unknown. We tested the hypothesis that changes in the expression or trafficking of TRPV4 in the central nervous system may contribute to inappropriate AVP release in the bile duct ligation (BDL) model of cirrhosis in the rat. Four weeks after surgery, BDL rats demonstrated significantly increased plasma vasopressin and plasma renin activity (PRA), hypervolemia, and decreased plasma osmolality. These effects were blocked by providing BDL rats with 2% saline to drink for 15 days. TRPV4 protein expression was significantly increased in brain punches from BDL rats containing the supraoptic nucleus (SON) of the hypothalamus (100% +/- 11 to 157% +/- 4.8), and this effect was blocked in BDL rats given saline. Immunohistochemistry demonstrated a significant increase in TRPV4-positive cells and the percentage of AVP neurons that also were TRPV4-positive in the SON of BDL rats. In the hypothalamus of BDL rats, TRPV4 lipid raft association increased compared with sham (from 100% +/- 2.1 to 326.1% +/- 16). This effect was significantly attenuated in BDL rats given 2% saline to drink (174% +/- 11). In the brain stem, TRPV4 lipid raft association was reduced by BDL and inversely related to plasma AVP and PRA. We speculate that changes in TRPV4 expression and compartmentalization within lipid rafts could contribute to a feed-forward mechanism related to AVP release in cirrhosis.
在许多病理生理状态下,如肝硬化,不适当的血管加压素(AVP)释放会导致稀释性低钠血症。介导不适当AVP释放的中枢分子机制尚不清楚。我们检验了这样一个假设,即大鼠肝硬化胆管结扎(BDL)模型中,中枢神经系统中瞬时受体电位香草酸亚型4(TRPV4)表达或转运的变化可能导致AVP不适当释放。术后四周,BDL大鼠表现出血浆血管加压素和血浆肾素活性(PRA)显著升高、血容量过多以及血浆渗透压降低。给BDL大鼠饮用2%盐水15天可阻断这些效应。在含有下丘脑视上核(SON)的BDL大鼠脑切片中,TRPV4蛋白表达显著增加(从100%±11增至157%±4.8),而给BDL大鼠饮用盐水可阻断这一效应。免疫组织化学显示,BDL大鼠SON中TRPV4阳性细胞以及同时为TRPV4阳性的AVP神经元百分比显著增加。与假手术组相比,BDL大鼠下丘脑TRPV4与脂筏的结合增加(从100%±2.1增至326.1%±16)。给BDL大鼠饮用2%盐水可使这一效应显著减弱(174%±11)。在脑干中,BDL使TRPV4与脂筏的结合减少,且与血浆AVP和PRA呈负相关。我们推测,TRPV4表达及在脂筏内分布的变化可能促成了与肝硬化中AVP释放相关的前馈机制。