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Sex differences in the lung ACE/ACE2 balance in hypertensive rats
Authors:Flavia L Martins  Caio AM Tavares  Pamella A Malagrino  Thiago Rentz  Acaris Benetti  Thiago MS Rios  Gabriel MD Pereira  Bruno Caramelli  Samantha K Teixeira  Jos E Krieger  Adriana CC Girardi
Institution:1.Laboratory of Genetics and Molecular Cardiology, Heart Institute (InCor) – University of São Paulo Medical School, São Paulo, SP, Brazil;2.Cardiogeriatric Unit, Heart Institute (InCor) – University of São Paulo Medical School, São Paulo, SP, Brazil;3.Cardiology Interdisciplinary Medicine Unit, Heart Institute (InCor) – University of São Paulo Medical School, São Paulo, SP, Brazil
Abstract:The angiotensin-converting enzyme (ACE)/Angiotensin II (Ang II) and angiotensin-converting enzyme 2 (ACE2)/angiotensin-(1-7) (Ang-(1-7)) pathways are coexpressed in most tissues. The balance between these pathways determines, at least in part, whether tissue damage will occur in response to pathological stimuli. The present study tested the hypothesis that male sex and high blood pressure are associated with ACE/ACE2 imbalance in the lungs. Experiments were conducted in male and female Wistar rats and spontaneously hypertensive rats (SHRs). Lung ACE and ACE2 gene expression was also evaluated in normotensive and hypertensive humans using the Genotype-Tissue Expression (GTEx) project. Compared with Wistar rats and female SHRs, male SHRs displayed reduced lung ACE2 mRNA, ACE2 protein abundance and ACE2 activity, and increased Ang II concentration. Lung ACE mRNA levels were higher in male SHRs than in Wistar rats, whereas lung ACE protein abundance and activity were similar among the four groups of rats. Lung Ang-(1-7) concentration was higher in female than in male SHRs (89 ± 17 vs. 43 ± 2 pg/g, P<0.05). Lung ACE to ACE2 mRNA expression in hypertensive patients was significantly higher than that in normotensive subjects. Taken together, these results demonstrate that male hypertensive rats display imbalance between the ACE/Ang II and ACE2/Ang-(1-7) pathways in the lungs mainly attributable to ACE2 down-regulation. Further studies should be conducted to investigate whether this imbalance between ACE/ACE2 may promote and accelerate lung injury in respiratory infections, including coronavirus disease 2019 (COVID-19).
Keywords:angiotensin II  angiotensin-(1-7)  Genotype-Tissue Expression project  hypertension  sexual dimorphism
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