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Fibrosis rather than blood pressure determines cardiac BNP expression in mice.

机译:纤维化而非血压决定了小鼠心脏BNP的表达。

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BACKGROUND: Since first reports demonstrated interactions between the natriuretic peptide (NPS) and renin-angiotensin system (RAS), our experiments should clarify whether cardiac brain natriuretic peptide (BNP) is regulated in mice genetically altered for components of the RAS. METHODS AND RESULTS: The study was carried out in hypotensive AT1- and angiotensinogen (ANG)-, and normotensive AT2-knockout mice, and in hypertensive animals overexpressing ANG and wildtype controls of each genotype. Ventricular BNP expression was analyzed by RNase-protection assay (RPA) (n=6). Cardiac fibrosis was visualized by Sirius red staining. While ANG overexpression increases cardiac BNP-mRNA expression (1035+/-210 vs. wildtype: 405+/-95 in PSL/mm(2), P<0.01), its deficiency had no influence. Both AT1- and AT2-knockouts showed significantly decreased BNP-mRNA concentrations (AT1: 21+/-6 vs. wildtype: 139+/-28 in PSL/mm(2), P<0.001; AT2: 8+/-2 vs. 19+/-3 in PSL/mm(2), P<0.05). These alterations correlate to reduced cardiac fibrosis in AT2-deficient animals, and an unchanged matrix content in ANG knockouts. CONCLUSIONS: Increased BNP-mRNA levels in hypertensive ANG-overexpressing mice and decreased BNP in hypotensive AT1-deficient animals suggest that this mRNA expression is blood pressure-dependent. However, the observed alterations of fibrosis and the unchanged BNP in hypotensive ANG knockouts and impaired BNP-mRNA expression in normotensive AT2-deficient mice demonstrate a direct interaction of the RAS and NPS that is fibrosis- rather than blood pressure-dependent.
机译:背景:由于第一份报告显示了利钠肽(NPS)与肾素-血管紧张素系统(RAS)之间的相互作用,因此我们的实验应阐明是否对经过RAS成分基因改造的小鼠的心脏脑钠肽(BNP)受到调节。方法和结果:这项研究是在降压AT1-和血管紧张素原(ANG)-和血压正常的AT2-敲除小鼠中,以及在过表达ANG和每种基因型野生型对照的高血压动物中进行的。心室BNP表达通过RNA酶保护分析(RPA)分析(n = 6)。天狼星红染色可观察到心脏纤维化。尽管ANG的过表达增加了心脏BNP-mRNA的表达(1035 +/- 210 vs.野生型:PSL / mm(405)中为405 +/- 95,P <0.01),但其缺乏没有影响。 AT1-和AT2-敲除均显示BNP-mRNA浓度显着降低(AT1:21 +/- 6与野生型:139 +/- 28 PSL / mm(2),P <0.001; AT2:8 +/- 2 vs. PSL / mm(19)中的19 +/- 3(P <0.05)。这些变化与AT2缺陷动物的心脏纤维化减少和ANG基因敲除物中基质含量不变有关。结论:高血压ANG过度表达小鼠中BNP-mRNA水平升高,而低血压AT1缺陷型动物中BNP降低,提示该mRNA表达与血压有关。但是,在血压正常的AT2缺陷型小鼠中观察到的纤维化变化和降压ANG基因敲除的BNP不变以及BNP-mRNA表达受损,证明RAS和NPS的直接相互作用是纤维化而非血压依赖性的。

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