Wang Jingli, Schmidt James R, Roman Richard J, Anjaiah Siddam, Falck John R, Lombard Julian H
Department of Physiology, Medical College of Wisconsin, Milwaukee, Wisconsin 53226 USA.
Microcirculation. 2009 May;16(4):345-54. doi: 10.1080/10739680802698007. Epub 2009 Feb 16.
This study evaluated the role of the 20-HETE/cytochrome P450-4A omega-hydroxylase (CYP450-4A) system in microvascular regulation in the skeletal muscle circulation following short-term (three-day) exposure to a high-salt (HS) diet in Dahl salt-sensitive (SS) rats.
The effects of inhibiting CYP450-4A on resting diameter, O(2)-induced constriction, and vasodilator responses to acetylcholine (ACh) and the nitric oxide (NO) donor, sodium nitroprusside (SNP), were evaluated in cremasteric arterioles of SS rats fed a low- (LS; 0.4% NaCl) or high-salt (HS; 4% NaCl) diet for three days.
The HS diet upregulated CYP450-4A mRNA expression and led to an enhanced constriction of arterioles in response to elevated PO(2) in SS rats, which could be blocked by inhibiting CYP450-4A enzymes with dibromododecenyl methylsulfimide (DDMS). DDMS also inhibited resting tone significantly in SS rats fed the HS, but not the LS, diet, despite similar resting diameters and active tone in the two groups. Arteriolar dilations in response to ACh and SNP were similar in SS rats fed the LS vs. the HS diet and were unaffected by DDMS.
These findings suggest that CYP450-4A enzymes contribute to resting tone and to an enhanced response to elevated PO(2) in arterioles of Dahl-SS rats fed the HS diet.
本研究评估了20-羟基二十碳四烯酸/细胞色素P450-4Aω-羟化酶(CYP450-4A)系统在短期(三天)高盐(HS)饮食喂养的 Dahl 盐敏感(SS)大鼠骨骼肌循环微血管调节中的作用。
在喂食低(LS;0.4% NaCl)盐或高(HS;4% NaCl)盐饮食三天的 SS 大鼠的提睾肌小动脉中,评估抑制 CYP450-4A 对静息直径、氧(O₂)诱导的收缩以及对乙酰胆碱(ACh)和一氧化氮(NO)供体硝普钠(SNP)的血管舒张反应的影响。
高盐饮食上调了 CYP450-4A mRNA 的表达,并导致 SS 大鼠的小动脉对升高的 PO₂反应性收缩增强,这可以通过用二溴十二碳烯基甲基磺酰亚胺(DDMS)抑制 CYP450-4A 酶来阻断。尽管两组的静息直径和主动张力相似,但 DDMS 也显著抑制了喂食高盐饮食而非低盐饮食的 SS 大鼠的静息张力。喂食低盐饮食与高盐饮食的 SS 大鼠对 ACh 和 SNP 的小动脉舒张反应相似,且不受 DDMS 影响。
这些发现表明,CYP450-4A 酶在喂食高盐饮食的 Dahl-SS 大鼠小动脉的静息张力以及对升高的 PO₂的增强反应中起作用。