首页> 外文期刊>Hypertension: An Official Journal of the American Heart Association >Salt intake augments hypotensive effects of transient receptor potential vanilloid 4: functional significance and implication.
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Salt intake augments hypotensive effects of transient receptor potential vanilloid 4: functional significance and implication.

机译:盐的摄入会增强瞬态受体电位香草的降压作用4:功能上的意义和意义。

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摘要

To test the hypothesis that activation of the transient receptor potential vanilloid 4 (TRPV4) channel conveys a hypotensive effect that is enhanced during salt load, male Wistar rats fed a normal-sodium (0.5%) or high-sodium (HS; 4%) diet for 3 weeks were given 4 alpha-phorbol 12,13-didecanoate (4 alpha-PDD), a specific TRPV4 activator, in the presence or absence of capsazepine, a selective TRPV1 blocker, ruthenium red, a TRPV4 blocker, or TRPV4 small hairpin RNA that selectively knockdowns TRPV4. 4 alpha-PDD (1, 2.5, or 5 mg/kg IV) dose-dependently decreased mean arterial pressure (P<0.05). HS enhanced 4 alpha-PDD-induced depressor effects as well as 4 alpha-PDD-mediated release of calcitonin gene-related peptide and substance P (P<0.001). Ruthenium red markedly blunted (P<0.001), whereas capsazepine slightly attenuated (P<0.05) 4 alpha-PDD-induced depressor effects in HS and normal-sodium diet rats. Ruthenium red alone increased baseline mean arterial pressure in both HS and normal-sodium diet rats with a greater magnitude in the former (P<0.05). Western blot analysis showed that HS increased TRPV4 expression in dorsal root ganglia and mesenteric arteries (P<0.05) but not the renal cortex and medulla. Gene-silencing approach revealed that TRPV4 small hairpin RNA downregulated TRPV4 expression leading to blunted 4 alpha-PDD-induced hypotension (P<0.05). Thus, TRPV4 activation decreases blood pressure in rats given a normal-sodium diet. HS enhances TRPV4 expression in sensory nerves/mesenteric arteries and TRPV4-mediated depressor effects and calcitonin gene-related peptide/substance P release such that HS causes a greater increase in blood pressure when TRPV4 is blocked. Our data indicate that TRPV4 activation may constitute a compensatory mechanism in preventing salt-induced increases in blood pressure.
机译:为了检验假说,瞬态受体电位香草酸4(TRPV4)通道的激活传递的降压作用在盐负荷期间增强,雄性Wistar大鼠饲喂了正常钠(0.5%)或高钠(HS; 4%)在3周的饮食中,在存在或不存在卡塞平,选择性TRPV1阻滞剂,钌红,TRPV4阻滞剂或小TRPV4的情况下,给予4种α-佛波醇12,13-十二烷酸酯(4α-PDD),一种特定的TRPV4激活剂选择性敲低TRPV4的发夹RNA。 4α-PDD(1、2.5或5 mg / kg静脉注射)剂量依赖性地降低平均动脉压(P <0.05)。 HS增强了4α-PDD诱导的降压作用以及4α-PDD介导的降钙素基因相关肽和P物质的释放(P <0.001)。钌红明显钝化(P <0.001),而卡塞西平在HS和正常钠饮食大鼠中略微减弱(P <0.05)4α-PDD诱导的降压作用。单独使用钌红会增加HS和正常钠饮食大鼠的基线平均动脉压,前者的幅度更大(P <0.05)。 Western blot分析显示,HS增加了背根神经节和肠系膜动脉中TRPV4的表达(P <0.05),但没有增加肾皮质和髓质的表达。基因沉默方法显示TRPV4小发夹RNA下调了TRPV4的表达,导致钝化的4 alpha-PDD引起的低血压(P <0.05)。因此,TRPV4激活可降低给予正常钠饮食的大鼠的血压。 HS增强了感觉神经/肠系膜动脉中TRPV4的表达,并增强了TRPV4介导的降压作用以及降钙素基因相关肽/物质P的释放,因此当TRPV4被阻断时,HS会导致血压更大的升高。我们的数据表明TRPV4激活可能构成预防盐诱导的血压升高的补偿机制。

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