PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
April 13, 2015PLoS ONE73 citationsOpen Access

Endothelial-Derived Oxidative Stress Drives Myofibroblastic Activation and Calcification of the Aortic Valve

EFEmily FarrarGHGeoffrey D. HuntleyJBJonathan T. Butcher

Key Result

TNFα-driven endothelial oxidative stress causes loss of endothelial protective function, chronic inflammation, and fibrogenic and osteogenic activation, which are mitigated differentially by BH4 and peg-SOD.

Structured PICO

P
Population
21 adults aged 65-90 years undergoing planned, non-elective valve replacement surgery for calcified aortic valves, alongside porcine in vitro and ex vivo models.
I
Intervention
TNFα treatment (30 ng/mL) alone or co-treated with tetrahydrobiopterin (BH4 10 μmol/L), apocynin (100 μmol/L), or peg-SOD (20U/mL) for up to 48 hours in cells and 21 days in ex vivo leaflets.
C
Comparator
Untreated controls or TNFα treatment alone.
O
Outcome
Endothelial oxidative stress (superoxide, H2O2), endothelial function (eNOS, VE-cadherin, NO secretion), inflammatory response (VCAM-1), and fibrogenic/osteogenic activation (collagen, αSMA, calcification).surrogate

TNFα-driven endothelial oxidative stress promotes aortic valve calcification and fibrosis, which can be mitigated by targeted antioxidants like BH4 and peg-SOD.

Limitations

  • Lack of direct experimental interrogation of mtROS as a propagator of AVD.

Abstract

AIMS: Oxidative stress is present in and contributes to calcification of the aortic valve, but the driving factors behind the initiation of valve oxidative stress are not well understood. We tested whether the valve endothelium acts as an initiator and propagator of oxidative stress in aortic valve disease. METHODS AND RESULTS: Calcified human aortic valves showed side-specific elevation of superoxide in the endothelium, co-localized with high VCAM1 expression, linking oxidative stress, inflammation, and valve degeneration. Treatment with inflammatory cytokine TNFα increased superoxide and oxidative stress and decreased eNOS and VE-cadherin acutely over 48 hours in aortic valve endothelial cells (VEC) and chronically over 21 days in ex vivo AV leaflets. Co-treatment of VEC with tetrahydrobiopterin (BH4) but not apocynin mitigated TNFα-driven VEC oxidative stress. Co-treatment of ex vivo AV leaflets with TNFα+BH4 or TNFα+peg-SOD rescued endothelial function and mitigated inflammatory responses. Both BH4 and peg-SOD rescued valve leaflets from the pro-osteogenic effects of TNFα treatment, but only peg-SOD was able to mitigate the fibrogenic effects, including increased collagen and αSMA expression. CONCLUSIONS: Aortic valve endothelial cells are a novel source of oxidative stress in aortic valve disease. TNFα-driven VEC oxidative stress causes loss of endothelial protective function, chronic inflammation, and fibrogenic and osteogenic activation, mitigated differentially by BH4 and peg-SOD. These mechanisms identify new targets for tailored antioxidant therapy focused on mitigation of oxidative stress and restoration of endothelial protection.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Farrar et al. (2015) studied Aortic valve disease (n=21). TNFα with or without BH4 or peg-SOD vs. Control was evaluated on Endothelial oxidative stress and calcification. TNFα-driven endothelial oxidative stress causes loss of endothelial protective function, chronic inflammation, and fibrogenic and osteogenic activation, which are mitigated differentially by BH4 and peg-SOD.

synapsesocial.com/papers/6a303177b43bc860dd7b694chttps://doi.org/10.1371/journal.pone.0123257
Ask AI
Helpful
Bookmark
Share
View Full Paper

Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Superoxide dismutase protects against effects of eNOS uncoupling in early‐stage aortic valve disease (278.6)2014
  2. 2TNF‐a induced eNOS uncoupling mediates endothelial dysfunction through elevated reactive oxygen species2013
  3. 3Oxidative stress and valvular endothelial cells in aortic valve calcification2023 · 70 citations
  4. 4Contribution of Oxidative Stress (OS) in Calcific Aortic Valve Disease (CAVD): From Pathophysiology to Therapeutic Targets2022 · 35 citations
  5. 5Oxidative Stress in Calcific Aortic Valve Stenosis: Protective Role of Natural Antioxidants2022 · 21 citations