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Integrative Mechanisms of Osteoprotegerin in Cardiovascular Pathophysiology Summarizing the molecular and clinical insights on the multifaceted role of Osteoprotegerin in cardiovascular diseases.

This #CVIA review describes osteoprotegerin as a key regulator of #VascularHomeostasis and #Inflammation, demonstrating that dysregulation of the OPG/RANKL/TRAIL axis drives #ArterialCalcification and adverse #CardiacRemodeling.

#OpenAccess: cvia-journal.org/osteoprotege...

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Research Advances in the Mechanisms of Pannexin-1 Channels in Cardiovascular Diseases Exploring the structural and functional landscape of Panx1, detailing its regulation and its role in the pathophysiology of cardiovascular diseases.

This #CVIA review highlights the critical role of Pannexin-1 channels in modulating #Cardiovascular pathologies, emphasizing how regulated ATP release influences #CardiacRemodeling and #IschemiaReperfusionInjury.

#OpenAccess: cvia-journal.org/pannexin1-ca...

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This review delineates the regulatory roles of the #CardiacTroponin subunits within the cTnC complex, detailing how molecular alterations in troponin subunits drive myofilament dysfunction and pathological #CardiacRemodeling.

#OpenAccess: doi.org/10.1016/j.ge...

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Inflammation-Related Factors S100A9 and TLR2 in Cardiomyocyte Hypertrophy

Inflammation-Related Factors S100A9 and TLR2 in Cardiomyocyte Hypertrophy

A pathogenic S100A9–TLR2 feedback loop amplifies #hypertrophic and #InflammatorySignaling in mechanically stressed #cardiomyocytes, linking immune dysregulation to maladaptive #CardiacRemodeling and highlighting a therapeutic target in #HeartFailure.

Read: doi.org/10.1007/s115...

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Early Vascular Aging Determined by 3-Dimensional Aortic Geometry: Genetic Determinants and Clinical Consequences | Circulation BACKGROUND: Vascular aging is an important phenotype characterized by structural and geometric remodeling. Some individuals exhibit supernormal vascular aging, associated with improved cardiovascular ...

Penn Medicine #BioBank growing its impact: Discerning early aortic #aging from imaging data with links to adverse #CardiacRemodeling and poor #CardiovascularOutcomes www.ahajournals.org/doi/10.1161/... @ThePMBioBank #PMBB #TranslationalScience

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Mitophagy deficiency activates stimulator of interferon genes activation and aggravates pathogenetic cardiac remodeling

Mitophagy deficiency activates stimulator of interferon genes activation and aggravates pathogenetic cardiac remodeling

In this study, researchers show that #StimulatorofInterferonGenes (STING) contributes to #CardiacFibrosis, promotes adverse remodeling, and highlights STING as a potential therapeutic target for the prevention of #CardiacRemodeling induced by pressure overload. #medsky

#OpenAccess: buff.ly/CN3Dykn

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