首页> 外文期刊>Biological & pharmaceutical bulletin >Relaxation Induced by Atrial Natriuretic Peptide Is Impaired in Carotid but Not Renal Arteries from Spontaneously Hypertensive Rats Due to Reduced BKCa Channel Activity
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Relaxation Induced by Atrial Natriuretic Peptide Is Impaired in Carotid but Not Renal Arteries from Spontaneously Hypertensive Rats Due to Reduced BKCa Channel Activity

机译:心房利钠肽诱导的舒张功能受损的自发性高血压大鼠颈动脉而非肾动脉受损,因为其BKCa通道活性降低

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Atrial natriuretic peptide (ANP) plays an important role in vascular functions such as blood pressure regulation and relaxant activity. Individual vascular beds exhibit differences in vascular reactivity to various ligands, however, the difference in responsiveness to ANP between carotid and renal arteries and the molecular mechanisms of its vasorelaxant activity in a pathophysiological state, including hypertension, remain unclear. We therefore investigated this issue by exposing carotid and renal artery rings obtained from spontaneously hypertensive rats (SHR) to ANP. In the SHR artery (vs. control WKY artery), the ANP-induced relaxations were reduced in carotid artery but not renal artery. Acetylcholine-induced relaxations were reduced in both arteries in SHR (vs. WKY). Sodium nitroprusside-induced relaxation was similar in both arteries between the groups. In carotid arteries, the ANP-induced relaxation was not affected by endothelial denudation or by treatment with inhibitors of nitric oxide synthase, cyclooxygenase, the voltage-dependent potassium channel, or ATP-sensitive potassium channel in arteries from both SHR and WKY. In the carotid artery from WKY but not SHR, the ANP-induced relaxation was significantly reduced by inhibition of the large-conductance calcium-activated potassium channel (BKCa). The BKCa activator-induced relaxation was reduced in the SHR artery (vs. WKY). These results suggest that ANP-induced relaxation is impaired in the carotid artery from SHR and this impairment may be at least in part due to the reduction of BICca activity rather than endothelial components.
机译:心钠素(ANP)在血管功能(如血压调节和舒张活性)中起重要作用。各个血管床对各种配体的血管反应性不同,但是,在包括高血压在内的病理生理状态下,颈动脉和肾动脉对ANP的反应性及其血管舒张活性的分子机制尚不清楚。因此,我们通过将自发性高血压大鼠(SHR)获得的颈动脉和肾动脉环暴露于ANP来研究此问题。在SHR动脉(相对于对照WKY动脉)中,ANP引起的舒张在颈动脉中减少,但在肾动脉中没有减少。 SHR的两条动脉中乙酰胆碱引起的松弛均减少(与WKY相比)。硝普钠在两组之间的两条动脉中引起的舒张作用相似。在颈动脉中,ANP诱导的舒张不受内皮剥脱或用SHR和WKY的动脉中一氧化氮合酶,环氧合酶,电压依赖性钾通道或ATP敏感钾通道抑制剂的治疗所影响。在来自WKY而非SHR的颈动脉中,通过抑制大电导钙激活钾通道(BKCa),ANP诱导的舒张作用显着降低。 BKCa激活剂诱导的松弛在SHR动脉中减少(相对于WKY)。这些结果表明,由SHR引起的颈动脉中ANP诱导的舒张功能受损,这种损害可能至少部分是由于BICca活性而不是内皮成分的降低。

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