Hall Christian
Department of Medicine, Akershus University Hospital, Lørenskog, Norway.
J Card Fail. 2005 Jun;11(5 Suppl):S81-3. doi: 10.1016/j.cardfail.2005.04.019.
Brain natriuretic peptide (BNP) was isolated originally from porcine brain extracts but was soon defined as a cardiac natriuretic hormone. Together with the highly homologous atrial natriuretic peptide, it forms a dual natriuretic peptide system of the heart. The main stimulus for proBNP synthesis and secretion from cardiac myocytes is myocyte stretch. On secretion, the propeptide is split into the biologically active BNP and the remaining part of the prohormone N-terminal proBNP (NT-proBNP). In heart failure increased wall stretch, neurohormonal activation and hypoxia stimulate BNP secretion. The recently demonstrated production of BNP by stimulated cardiac fibroblasts is of uncertain pathophysiologic importance. In contrast to atrial natriuretic peptide, BNP is a constitutively secreted hormone with relatively little intracellular storage of mature peptide. In the normal state, the atrium is the main cardiac production site, but as heart failure develops, there is a profound activation of ventricular NT-proBNP synthesis. BNP acts on distant tissues and causes diuresis, vasodilatation, and decreased renin and aldosterone secretion. Known mechanisms of BNP clearance from plasma include binding to the natriuretic peptide clearance receptor type-C and proteolysis by peptidase NEP 24.11. NT-proBNP has a longer half-life and thus higher plasma concentration than BNP. It probably is cleared from plasma by renal excretion and possibly other unknown pathways.
脑钠肽(BNP)最初是从猪脑提取物中分离出来的,但很快被定义为一种心脏利钠激素。它与高度同源的心房利钠肽一起,构成了心脏的双利钠肽系统。心肌细胞合成和分泌proBNP的主要刺激因素是心肌细胞的拉伸。分泌时,前体肽被裂解为具有生物活性的BNP和激素原N端proBNP(NT-proBNP)的其余部分。在心力衰竭时,心室壁拉伸增加、神经激素激活和缺氧刺激BNP分泌。最近发现受刺激的心脏成纤维细胞可产生BNP,但其病理生理重要性尚不确定。与心房利钠肽不同,BNP是一种持续分泌的激素,成熟肽在细胞内的储存相对较少。在正常状态下,心房是心脏产生BNP的主要部位,但随着心力衰竭的发展,心室NT-proBNP的合成会显著激活。BNP作用于远处组织,引起利尿、血管舒张,并减少肾素和醛固酮的分泌。已知的BNP从血浆中清除的机制包括与C型利钠肽清除受体结合以及被肽酶NEP 24.11进行蛋白水解。NT-proBNP的半衰期较长,因此血浆浓度比BNP高。它可能通过肾脏排泄以及可能的其他未知途径从血浆中清除。