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清除受体与内肽酶24.11:在清醒绵羊利钠肽代谢中发挥同等作用

Clearance receptors and endopeptidase 24.11: equal role in natriuretic peptide metabolism in conscious sheep.

作者信息

Charles C J, Espiner E A, Nicholls M G, Richards A M, Yandle T G, Protter A, Kosoglou T

机构信息

Department of Medicine, Christchurch Hospital, New Zealand.

出版信息

Am J Physiol. 1996 Aug;271(2 Pt 2):R373-80. doi: 10.1152/ajpregu.1996.271.2.R373.

Abstract

Although many studies have examined the effects of administering natriuretic peptide receptor C (NPR-C) ligands and endopeptidase 24.11 (EP 24.11) inhibitors on clearance and bioactivity of atrial natriuretic peptide (ANP), none have systematically compared their effects on the endogenous levels of both ANP and brain natriuretic peptide (BNP) under physiological conditions. Accordingly, we examined the hemodynamic, hormonal, and renal actions of an EP 24.11 inhibitor, SCH-32615, and an NPR-C ligand, C-ANP-(4-23), both alone and in combination in eight normal conscious sheep. NPR-C blockade and EP 24.11 inhibition induce similar rises in plasma ANP, BNP, and guanosine 3',5'-cyclic monophosphate (cGMP). Synergistic increments in plasma ANP, BNP, and cGMP observed during combined administration are likely to be due to the reduced clearance of C-ANP-(4-23) in the setting of EP 24.11 inhibition, leading to increased inhibition of the receptor pathway. Combined administration was also associated with enhanced hemodynamic actions and diuretic and natriuretic effects. Our findings show that both enzymatic and receptor clearance pathways contribute equally to natriuretic peptide clearance and induce potentially important hemodynamic and renal effects in normal conscious sheep.

摘要

尽管许多研究已考察了给予利钠肽受体C(NPR-C)配体和内肽酶24.11(EP 24.11)抑制剂对心房利钠肽(ANP)清除率和生物活性的影响,但尚无研究在生理条件下系统比较它们对ANP和脑利钠肽(BNP)内源性水平的影响。因此,我们在八只正常清醒绵羊中单独及联合研究了EP 24.11抑制剂SCH-32615和NPR-C配体C-ANP-(4-23)的血流动力学、激素及肾脏作用。NPR-C阻断和EP 24.11抑制均可使血浆ANP、BNP和鸟苷3',5'-环磷酸(cGMP)升高。联合给药时观察到的血浆ANP、BNP和cGMP协同升高可能是由于在EP 24.11抑制情况下C-ANP-(4-23)清除率降低,导致受体途径抑制增强。联合给药还与增强的血流动力学作用及利尿和利钠作用相关。我们的研究结果表明,酶促和受体清除途径对利钠肽清除的贡献相同,并在正常清醒绵羊中诱导出潜在重要的血流动力学和肾脏效应。

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