The Angiotensin II Type 1(AT1) Receptor and Cardiac Hypertrophy: Did We Have It Wrong All Along?

dc.contributor.authorZouein, Fouad A.
dc.contributor.authorAltara, Raffaele
dc.contributor.authorMassoud, Gaelle P.
dc.contributor.authorBooz, George Warren
dc.contributor.departmentPharmacology and Toxicology
dc.contributor.facultyFaculty of Medicine (FM)
dc.contributor.institutionAmerican University of Beirut
dc.date.accessioned2025-01-24T11:39:54Z
dc.date.available2025-01-24T11:39:54Z
dc.date.issued2021
dc.description.abstractAn ongoing issue in cardiac pharmacology is whether angiotensin II has direct growth promoting effects on the heart via the angiotensin II type 1 (AT1) receptor. This question has relevance for whether angiotensin-converting enzyme inhibitors and AT1 receptor blockers offer additional benefit in preventing adverse cardiac remodeling in hypertension. In a recent study, 2 strains of mice were infused with angiotensin II. In both, AT1 receptors were deleted in the heart and conduit vessels, but in one, AT1 receptors were also deleted in resistance vessels. Angiotensin II caused hypertrophy and hypertension in the strain lacking AT1 receptors in the heart and conduit vessels, but not in the strain without AT1 receptors in resistance vessels. This finding supports the conclusion that blood pressure is more important in determining cardiac hypertrophy than direct AT1 activation by angiotensin II, when the two are rapidly and simultaneously introduced. Surprisingly, mice with no cardiac AT1 receptor expression developed ventricular dilation and eccentric hypertrophy with pressure overload, in contrast to wild type mice that exhibited concentric hypertrophy, suggesting that cardiac AT1 receptors protect against high blood pressure. This interpretation revives issues related to β-arrestin-biased signaling and mechanosensitivity of AT1 receptors. Synthetic nanobodies, which are based on the variable regions of camelid-derived heavy chain-only antibodies, could be applied to explore the therapeutic potential of exploiting different activation states of AT1 under stress conditions, such as hypertension and heart failure. At the very least, this experimental approach is likely to reveal new facets of AT1 receptor signaling in the heart. © 2021 Wolters Kluwer Health, Inc. All rights reserved.
dc.identifier.doihttps://doi.org/10.1097/FJC.0000000000000999
dc.identifier.eid2-s2.0-85106143649
dc.identifier.pmid33657051
dc.identifier.urihttp://hdl.handle.net/10938/29383
dc.language.isoen
dc.publisherLippincott Williams and Wilkins
dc.relation.ispartofJournal of Cardiovascular Pharmacology
dc.sourceScopus
dc.subjectAlamandine
dc.subjectG protein-coupled receptor
dc.subjectHeart failure
dc.subjectHypertension
dc.subjectMechanosensitivity
dc.subjectNanobodies
dc.subjectΒ-arrestin-biased signaling
dc.subjectAngiotensin ii
dc.subjectAnimals
dc.subjectBlood pressure
dc.subjectCardiomegaly
dc.subjectMice
dc.subjectReceptor, angiotensin, type 1
dc.subjectAngiotensin 1 receptor
dc.subjectAngiotensin 1 receptor antagonist
dc.subjectAntibody
dc.subjectBeta arrestin
dc.subjectDipeptidyl carboxypeptidase inhibitor
dc.subjectNanobody
dc.subjectArticle
dc.subjectHeart hypertrophy
dc.subjectHeart protection
dc.subjectHeart ventricle hypertrophy
dc.subjectHeart ventricle remodeling
dc.subjectHeavy chain
dc.subjectHuman
dc.subjectModel
dc.subjectNonhuman
dc.subjectPhysiological stress
dc.subjectProtein expression
dc.subjectResistance blood vessel
dc.subjectWild type mouse
dc.subjectAnimal
dc.subjectMouse
dc.titleThe Angiotensin II Type 1(AT1) Receptor and Cardiac Hypertrophy: Did We Have It Wrong All Along?
dc.typeArticle

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