Max-Delbrück-Center for Molecular Medicine in the Helmholtz Association, Berlin, Germany.
Department of Biology, Chemistry and Pharmacy, Free University of Berlin, Berlin, Germany.
Br J Pharmacol. 2023 Jul;180(14):1843-1861. doi: 10.1111/bph.16051. Epub 2023 Feb 22.
All previous rodent models lacking the peptide hormone angiotensin II (Ang II) were hypotensive. A mixed background strain with global deletion of the angiotensinogen gene was backcrossed to the FVB/N background (Agt-KO), a strain preferred for transgenic generation. Surprisingly, the resulting line turned out to be normotensive. Therefore, this study aimed to understand the unique blood pressure regulation of FVB/N mice without angiotensin peptides.
Acute and chronic recordings of blood pressure (BP) in freely-moving adult mice were performed to establish baseline BP. The pressure responses to sympatholytic and sympathomimetic as well as a nitric oxide inhibitor and donor compounds were used to quantify the neurogenic tone and endothelial function. The role of the renal nerves on baseline BP maintenance was tested by renal denervation. Finally, further phenotyping was done by gene expression analysis, histology and measurement of metabolites in plasma, urine and tissues.
Baseline BP in adult FVB/N Agt-KO was unexpectedly unaltered. As compensatory mechanisms Agt-KO presented an increased sympathetic nerve activity and reduced endothelial nitric oxide production. However, FVB/N Agt-KO exhibited the renal morphological and physiological alterations previously found in mice lacking the production of Ang II including polyuria and hydronephrosis. The hypotensive effect of bilateral renal denervation was blunted in Agt-KO compared to wildtype FVB/N mice.
We describe a germline Agt-KO line that challenges all previous knowledge on BP regulation in mice with deletion of the classical RAS. This line may represent a model of drug-resistant hypertension because it lacks hypotension.
所有以前缺乏肽激素血管紧张素 II(Ang II)的啮齿动物模型都是低血压。将缺乏血管紧张素原基因的混合背景品系与 FVB/N 背景(Agt-KO)进行回交,FVB/N 是一种用于转基因生成的首选品系。令人惊讶的是,由此产生的品系结果是正常血压。因此,本研究旨在了解没有血管紧张素肽的 FVB/N 小鼠独特的血压调节机制。
对自由活动的成年小鼠进行急性和慢性血压(BP)记录,以建立基线 BP。使用交感神经抑制和兴奋以及一氧化氮抑制剂和供体化合物的压力反应来量化神经原性张力和内皮功能。通过肾神经去神经支配测试肾神经在维持基础血压中的作用。最后,通过基因表达分析、组织学和测量血浆、尿液和组织中的代谢物进行进一步表型分析。
成年 FVB/N Agt-KO 的基础血压出人意料地没有改变。作为代偿机制,Agt-KO 表现出增加的交感神经活动和减少的内皮一氧化氮产生。然而,FVB/N Agt-KO 表现出以前在缺乏 Ang II 产生的小鼠中发现的肾脏形态和生理改变,包括多尿和肾盂积水。与野生型 FVB/N 小鼠相比,双侧肾去神经支配在 Agt-KO 中的降压作用减弱。
我们描述了一种生殖系 Agt-KO 系,该系挑战了以前关于删除经典 RAS 的小鼠血压调节的所有知识。该系可能代表一种耐药性高血压模型,因为它不伴有低血压。