Involvement of caveolae in hyperglycemia-induced changes in adiponectin and leptin expressions in vascular smooth muscle cells

dc.contributor.authorEl Atab, Ola
dc.contributor.authorGhantous, Crystal M.
dc.contributor.authorEl-Zein, Nabil
dc.contributor.authorFarhat, Rima
dc.contributor.authorAgouni, Abdelali
dc.contributor.authorKorashy, Hesham Mohamed
dc.contributor.authorDjouhri, Laiche
dc.contributor.authorKamareddine, Layla
dc.contributor.authorZibara, Kazem
dc.contributor.authorZeidan, Asad
dc.contributor.departmentAnatomy, Cell Biology, and Physiological Sciences
dc.contributor.facultyFaculty of Medicine (FM)
dc.contributor.institutionAmerican University of Beirut
dc.date.accessioned2025-01-24T11:37:13Z
dc.date.available2025-01-24T11:37:13Z
dc.date.issued2022
dc.description.abstractHyperglycemia exerts various harmful effects on the vasculature. Studies have shown an association between the levels of the adipokines leptin and adiponectin (APN) and vascular complications in diabetes mellitus. The aim of our study was to investigate the molecular mechanisms mediated by APN and leptin that are involved in hyperglycemia-induced vascular remodeling, especially at the level of oxidative stress and actin cytoskeleton dynamics. Rat aorta organ culture was used to investigate the effect of hyperglycemia on APN and leptin protein expression in vascular smooth muscle cells (VSMCs) using Western blot analysis and immunohistochemistry. Hyperglycemia lead to a significant increase in APN synthesis in VSMCs, mainly through caveolae, but this increase failed to provide vascular protection because of the decreased expression of APN receptors, especially AdipoR2, which was assessed by qPCR. In addition, hyperglycemia significantly upregulated leptin expression in VSMCs through caveolae and the RhoA/ROCK pathway. These variations lead to a marked increase in reactive oxygen species (ROS) production, detected by dihydroethidium (DHE) staining, and in NADPH oxidase type 4 (Nox4) expression. Moreover, Nox4 mediated the synthesis of APN in hyperglycemia in VSMCs. Finally, hyperglycemia activated the RhoA/ROCK pathway and subsequently induced the polymerization of globular actin (G-actin) into filamentous actin (F-actin), decreasing the G/F-actin ratio. Taken together, these data show that hyperglycemia increases oxidative stress and changes actin cytoskeleton dynamics in the aorta via caveolae, favoring vascular remodeling. © 2021 Elsevier B.V.
dc.identifier.doihttps://doi.org/10.1016/j.ejphar.2021.174701
dc.identifier.eid2-s2.0-85124709625
dc.identifier.pmid34954233
dc.identifier.urihttp://hdl.handle.net/10938/28820
dc.language.isoen
dc.publisherElsevier B.V.
dc.relation.ispartofEuropean Journal of Pharmacology
dc.sourceScopus
dc.subjectAdiponectin
dc.subjectCaveolae
dc.subjectCyclophilin a
dc.subjectHyperglycemia
dc.subjectLeptin
dc.subjectVascular smooth muscle remodeling
dc.subjectAnimals
dc.subjectDisease models, animal
dc.subjectMale
dc.subjectMuscle, smooth, vascular
dc.subjectRats
dc.subjectRats, sprague-dawley
dc.subjectVascular remodeling
dc.subjectActin
dc.subjectAdiponectin receptor
dc.subjectReactive oxygen metabolite
dc.subjectReduced nicotinamide adenine dinucleotide phosphate oxidase
dc.subjectReduced nicotinamide adenine dinucleotide phosphate oxidase 4
dc.subjectAnimal experiment
dc.subjectAnimal tissue
dc.subjectArticle
dc.subjectCaveola
dc.subjectImmunohistochemistry
dc.subjectMouse
dc.subjectNonhuman
dc.subjectPolymerase chain reaction
dc.subjectPolymerization
dc.subjectProtein expression
dc.subjectProtein synthesis
dc.subjectSprague dawley rat
dc.subjectUpregulation
dc.subjectVascular smooth muscle cell
dc.subjectWestern blotting
dc.subjectAnimal
dc.subjectDisease model
dc.subjectMetabolism
dc.subjectRat
dc.subjectVascular smooth muscle
dc.titleInvolvement of caveolae in hyperglycemia-induced changes in adiponectin and leptin expressions in vascular smooth muscle cells
dc.typeArticle

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