Long-term exposure of PM2.5 causes hypertension by impaired renal D1 receptor mediated sodium excretion via up-regulation of GRK4 expression in SD rats
Long-term exposure of PM2.5 causes hypertension by impaired renal D1 receptor mediated sodium excretion via up-regulation of GRK4 expression in SD rats
复制标题
长期暴露于 PM2.5,SD 大鼠肾 D1 受体受损,上调 GRK4 表达,介导钠排泄,从而导致高血压
DOI:
--
复制
发表时间:
2018
期刊:
影响因子:
--
通讯作者:
Chunyu Zeng
中科院分区:
文献类型:
--
作者:
Xi Lu;Zhengmeng Ye;Shuo Zheng;Hongmei Ren;Jing Zeng;Xinquan Wang;Pedro A. Jose;Ken Chen;Chunyu Zeng
BACKGROUND: .Epidemiological evidence supports an important association between air pollution exposure and hypertension. However, the mechanisms are not clear..METHODS AND RESULTS: .Our present study found that long-term exposure to fine particulate matter (PM2.5) causes hypertension and impairs renal sodium excretion, which might be ascribed to lower D1 receptor expression and higher D1 receptor phosphorylation, accompanied with a higher G-protein-coupled receptor kinase type 4 (GRK4) expression. The in vivo results were confirmed in in vitro studies (ie, PM2.5 increased basal and decreased D1 receptor mediated inhibitory effect on Na+-K+ ATPase activity, decreased D1 receptor expression, and increased D1 receptor phosphorylation in renal proximal tubule cells). The downregulation of D1 receptor expression and function might be attributable to a higher GRK4 expression after the exposure of renal proximal tubule cells to PM2.5, because downregulation of GRK4 by small-interfering RNA reversed the D1 receptor expression and function. Because of the role of reactive oxygen species on D1 receptor dysfunction and its relationship with air pollution exposure, we determined plasma reactive oxygen species and found the levels higher in PM2.5-treated Sprague-Dawley rats. Inhibition of reactive oxygen species by tempol (4-hydroxy-2,2,6,6-tetramethylpiperidin-1-oxyl) reduced blood pressure and increased sodium excretion in PM2.5-treated Sprague-Dawley rats, accompanied by an increase in the low D1 receptor expression, and decreased the hyperphosphorylated D1 receptor and GRK4 expression..CONCLUSIONS: .Our present study indicated that long-term exposure of PM2.5 increases blood pressure by decreasing D1 receptor expression and function; reactive oxygen species, via regulation of GRK4 expression, plays an important role in the pathogenesis of PM2.5-induced hypertension.