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钙在离体大鼠心房牵张诱导的利钠肽释放及mRNA合成中的作用。

Role of calcium in stretch-induced release and mRNA synthesis of natriuretic peptides in isolated rat atrium.

作者信息

Laine M, Id L, Vuolteenaho O, Ruskoaho H, Weckström M

机构信息

Department of Physiology, Biocenter Oulu, University of Oulu, Kajaanintie 52 A, 90220 Oulu, Finland.

出版信息

Pflugers Arch. 1996 Oct;432(6):953-60. doi: 10.1007/s004240050222.

Abstract

To investigate the role of Ca2+ in stretch-induced synthesis and release of atrial natriuretic peptide (ANP) and B-type natriuretic peptide (BNP) isolated superfused rat atria were stretched by raising intra-atrial pressure. The immunoreactive (ir-) ANP and BNP concentrations were analysed by radioimmunoassay and the corresponding mRNA levels were quantified by Northern blot and dot blot analyses. Stretch-induced ir-ANP release and a rise in BNP mRNA levels increased at high (3.0 mM) compared to low (0.5 mM) extracellular Ca2+ concentration ([Ca2+]o). Moreover, the adaptation of stretch-induced ir-ANP release was dependent on [Ca2+]o. Atrial BNP mRNA levels were increased by stretch also in non-paced, electrically silent atria, where voltage-activated Ca2+ channels are not activated. The stretch-induced rise in BNP mRNA was blocked by gadolinium (80 microM), but not by the L-type channel blocker diltiazem (3.0 microM). This study indicates that both the stretch-secretion coupling of ir-ANP release and the pressure-stimulated synthesis of BNP mRNA are Ca2+-dependent processes. Gadolinium inhibits the stretch-stimulated rise in BNP mRNA levels in contracting and non-contracting atria, which is similar to its ability to block stretch-activated ir-ANP release, suggesting the involvement of Ca2+-permeable stretch-activated channels.

摘要

为了研究钙离子(Ca2+)在牵张诱导的心房利钠肽(ANP)和B型利钠肽(BNP)合成与释放中的作用,通过升高心房内压对分离并进行超灌流的大鼠心房进行牵张。采用放射免疫分析法分析免疫反应性(ir-)ANP和BNP的浓度,并通过Northern印迹法和斑点印迹法对相应的mRNA水平进行定量分析。与低细胞外Ca2+浓度([Ca2+]o,0.5 mM)相比,在高[Ca2+]o(3.0 mM)时,牵张诱导的ir-ANP释放以及BNP mRNA水平的升高更为明显。此外,牵张诱导的ir-ANP释放的适应性依赖于[Ca2+]o。在非起搏、电静息的心房中,牵张也会使心房BNP mRNA水平升高,而在这种情况下电压激活的Ca2+通道未被激活。牵张诱导的BNP mRNA升高被钆(80 μM)阻断,但未被L型通道阻滞剂地尔硫䓬(3.0 μM)阻断。本研究表明,ir-ANP释放的牵张-分泌偶联以及BNP mRNA的压力刺激合成均为Ca2+依赖过程。钆抑制收缩和非收缩心房中牵张刺激引起的BNP mRNA水平升高,这与其阻断牵张激活的ir-ANP释放的能力相似,提示Ca2+可通透的牵张激活通道参与其中。

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