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Vascular Pharmacology

@vaspharma.bsky.social
19 followers 21 following 109 posts

Editors of Vascular Pharmacology This is a journal of Vascular Biology and Medicine www.sciencedirect.com/journal/vascu…

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Vascular Pharmacology @vaspharma.bsky.social · 16h
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Vascular Pharmacology @vaspharma.bsky.social · 16h
📢 Applications for the Vascular Pharmacology Young Scientist Award 2026 are now open. We look forward to celebrating the next generation of scientific leaders. 🔗 Learn more about the award, eligibility criteria, and application process via the link. #VascularPharmacology #EarlyCareerResearcher
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Vascular Pharmacology @vaspharma.bsky.social · 16h
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Vascular Pharmacology @vaspharma.bsky.social · 16h
Why do some patients stop responding to vasopressors after cardiac surgery? A new review argues post-CPB vasoplegia is a receptor problem, not just vasodilation: depleted vasopressin, desensitized receptors, disrupted signaling. The case for multimodal therapy over catecholamine escalation. #Cardiac
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Vascular Pharmacology @vaspharma.bsky.social · 20/09/2026
Our new study presents an adjustable EPV ligation model for graded control of portal venous stenosis and hemodynamic stress. It reveals structural and nuclear remodeling and enables the study of mechanosensitive adaptation doi.org/10.1016/j.vp...
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Vascular Pharmacology @vaspharma.bsky.social · 10/09/2026
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Vascular Pharmacology @vaspharma.bsky.social · 10/09/2026
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Vascular Pharmacology @vaspharma.bsky.social · 10/09/2026
Could lymphedema progression be stopped before fibrosis takes hold? Lanifibranor (IVA337) improved lymphatic drainage and vessel integrity while reducing inflammation and fibrosis by suppressing TGFβ/SMAD2/3 signaling—highlighting pan-PPAR activation as a promising early therapeutic strategy
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Vascular Pharmacology @vaspharma.bsky.social · 03/09/2026
Our newly published research article reports aquaporin 1 as a key conduit facilitating H₂O₂ influx and subsequent NO efflux during endothelium-dependent relaxation in regulating vascular tone. Read more at doi.org/10.1016/j.vp...
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Vascular Pharmacology @vaspharma.bsky.social · 27/08/2026
Our new article reports the novel role of Paeoniflorin in stabilizing the atherosclerotic plaque by inhibiting endoplasmic reticulum stress-induced VSMC phenotypic switching via activating the AMPK/PPARδ signaling pathway. doi.org/10.1016/j.vp...
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Vascular Pharmacology @vaspharma.bsky.social · 26/08/2026
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Vascular Pharmacology @vaspharma.bsky.social · 26/08/2026
Beyond the lungs: formoterol fumarate delivers broad cardiometabolic protection in ApoE KO mice, lowering lipids and atherosclerotic plaque burden, while improving endothelial, cardiac, and liver function. MRI confirms reduced hepatic fat and better cardiac performance. #Atherosclerosis #CVD.
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Vascular Pharmacology @vaspharma.bsky.social · 21/08/2026
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Vascular Pharmacology @vaspharma.bsky.social · 21/08/2026
High glucose pushes endothelial cells toward ferroptosis, but circFBXO7 may be a key switch. By promoting TFCP2 degradation, circFBXO7 drives oxidative stress, lipid peroxidation, and vascular injury. The circFBXO7–TFCP2 axis reveals a new target in diabetic vascular dysfunction. #Diabetes.
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Vascular Pharmacology @vaspharma.bsky.social · 14/08/2026
Our recent review highlights molecular pathology and genetic advances in diabetic cardiac autonomic neuropathy (DCAN) and the need for innovative CRISPR and gene therapy strategies for better diagnosis and treatment of DCAN. doi.org/10.1016/j.vp...
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Vascular Pharmacology @vaspharma.bsky.social · 14/08/2026
A heart attack can echo to the brain. Low-density lipoprotein receptor-related protein 5 (LRP5) deficiency worsens cardiac injury and neuronal vulnerability, while TNF-α supports microglial survival via LRP5–NF-κB signaling. #AMI #Neuroinflammation #LRP5 #NFkB. doi.org/10.1016/j.vp...
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Vascular Pharmacology @vaspharma.bsky.social · 03/08/2026
Our new study evaluated magnetically responsive PLGA-MNPs for a stent-targeted drug delivery platform. Magnetic field exposure increased nanoparticle attachment to stents and drug detection in release assays. doi.org/10.1016/j.vp...
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Vascular Pharmacology @vaspharma.bsky.social · 28/07/2026
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Vascular Pharmacology @vaspharma.bsky.social · 28/07/2026
Aspirin may do more than stop platelets. Could it also reshape fibrin clots? This review explores how fibrinogen acetylation may alter clot structure, cross-linking, permeability, and breakdown, and why the clinical impact of this extra-platelet effect remains uncertain. #Thrombosis
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Vascular Pharmacology @vaspharma.bsky.social · 27/07/2026
New Review. This review explores the CAV1–EV axis as a key link between endothelial dysfunction, vascular aging, cardiovascular disease, and frailty, highlighting its potential as a biomarker and therapeutic target. #VascularBiology #Aging #CardiovascularResearch #Frailty doi.org/10.1016/j.vp...
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Vascular Pharmacology @vaspharma.bsky.social · 27/07/2026
Our recently published study highlights that ouabain's vascular effects depend on the contracting stimulus. Na⁺/K⁺-ATPase–Src pathway enhances Ca²⁺ sensitization, while BKCa channels act as a brake on excessive vasoconstriction. doi.org/10.1016/j.vp...
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Vascular Pharmacology @vaspharma.bsky.social · 10/07/2026
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Vascular Pharmacology @vaspharma.bsky.social · 10/07/2026
Not all TAVR patients carry the same stroke risk. In severe PAD patients treated via transfemoral access, combining CHA₂DS₂-VASc with the HOSTILE anatomical score improved prediction of 30-day CVA, highlighting the value of integrating clinical and anatomical risk for smarter prevention. #Cardiology
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Vascular Pharmacology @vaspharma.bsky.social · 06/07/2026
Our recently published study highlights that ouabain's vascular effects depend on the contracting stimulus. Na⁺/K⁺-ATPase–Src pathway enhances Ca²⁺ sensitization, while BKCa channels act as a brake on excessive vasoconstriction. doi.org/10.1016/j.vp...
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Vascular Pharmacology @vaspharma.bsky.social · 30/06/2026
Our new review highlights the importance of endothelial interface and transport barrier in vascularized tumor organoid models. The future lies in quantifying vascular transport, AI-driven analysis, and patient-specific models for precision oncology doi.org/10.1016/j.vp...
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Vascular Pharmacology @vaspharma.bsky.social · 30/06/2026
doi.org/10.1016/j.vp... AUTHOR: @abond01.bsky.social
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Vascular Pharmacology @vaspharma.bsky.social · 30/06/2026
Cannabinoids can relax blood vessels, but is PPARγ truly involved, or are off-target drug effects and ion channels driving the response? This focused review challenges assumptions, weighs the evidence, and calls for better tools to decode vascular cannabinoid signaling. #VascularBiology'
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Vascular Pharmacology @vaspharma.bsky.social · 10/06/2026
Our recently published review highlights the importance of CMR in acute myocardial infarction (AMI) care. Emphasis on faster imaging, AI-assisted analysis, and integration with CT could be the future in clinical care after AMI doi.org/10.1016/j.vp...
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Vascular Pharmacology @vaspharma.bsky.social · 04/06/2026
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Vascular Pharmacology @vaspharma.bsky.social · 04/06/2026
Sex-specific differences in lineage-derived VSMCs may help explain why Stanford type A TAAD occurs more often in men. Female VSMCs showed enhanced ECM-related gene expression linked to greater mechanical resilience. #TAAD #AorticAneurysm #VascularBiology #CardiovascularResearch #scRNAseq
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Vascular Pharmacology @vaspharma.bsky.social · 04/06/2026
10.1016/j.vph.2026.107655
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Vascular Pharmacology @vaspharma.bsky.social · 04/06/2026
New review: m6A RNA methylation plays a key role in VSMC phenotypic switching and vascular disease pathogenesis. Targeting m6A writers, erasers, and readers may offer new therapeutic opportunities for vascular disorders. #VascularBiology #Epigenetics #RNAbiology #m6A #VSMC #CardiovascularResearch
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Vascular Pharmacology @vaspharma.bsky.social · 04/06/2026
Our recently published study reveals that the 21-amino-acid C-terminal domain of CaMKIIδ2 drives vascular smooth muscle cell migration via FYN kinase, a potential target for pathological vascular remodeling. 10.1016/j.vph.2026.107651
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Vascular Pharmacology @vaspharma.bsky.social · 04/06/2026
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Vascular Pharmacology @vaspharma.bsky.social · 04/06/2026
Impaired RV-PA coupling during exercise is linked to pulmonary congestion in HFrEF/HFmrEF patients, especially in those with elevated peak PAPs. Findings highlight a key mechanism driving exercise-induced EVLW increase #HeartFailure #Cardiology #Echocardiography #PulmonaryHypertension #HFmrEF #HFrEF
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Vascular Pharmacology @vaspharma.bsky.social · 14/05/2026
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Vascular Pharmacology @vaspharma.bsky.social · 14/05/2026
Heavy legs, swelling, pain, can venoactive drugs improve chronic venous disease care? This expert review spotlights micronized purified flavonoid fraction as a leading option for easing symptoms and improving quality of life, while weighing evidence for other therapies. #VascularPharma #VenousHealth
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Vascular Pharmacology @vaspharma.bsky.social · 14/05/2026
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Vascular Pharmacology @vaspharma.bsky.social · 14/05/2026
New hope for small abdominal aortic aneurysms? This meta-analysis shows anti-inflammatory therapies not only slowed AAA progression in mice, but were the only treatments linked to reduced rupture risk. A promising step toward translational AAA therapy.#AAA #VascularPharmacology #Inflammation #Cardio
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Vascular Pharmacology @vaspharma.bsky.social · 14/05/2026
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Vascular Pharmacology @vaspharma.bsky.social · 14/05/2026
Does pyroptosis drive thoracic aortic dissection? In a BAPN mouse model, knockout of Caspase-11 or GSDMD failed to alter TAD outcomes, challenging assumptions about non-canonical pyroptosis in aortic disease. Negative results, big implications. #VascularBiology #AorticDissection #Pyroptosis #Cardio
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Vascular Pharmacology @vaspharma.bsky.social · 08/05/2026
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Vascular Pharmacology @vaspharma.bsky.social · 08/05/2026
What happens when the lung can’t utilize more capillaries during exercise? First direct measurements in severe pulmonary arterial hypertension show impaired functional capillary surface area recruitment, even at maximal dyspnea. #VascularPharmacology #PAH #PulmonaryHypertension #ExercisePhysiology
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Vascular Pharmacology @vaspharma.bsky.social · 05/05/2026
Our new review analyzes the mechanistic link between chronic venous insufficiency (CVI) and cardiovascular risk, proposing to integrate proactive cardiovascular screening for CVI patients to improve long-term prognosis. doi.org/10.1016/j.vp...
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Vascular Pharmacology @vaspharma.bsky.social · 05/05/2026
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Vascular Pharmacology @vaspharma.bsky.social · 05/05/2026
A prospective study analyzed long-term survival in a real-world heart failure cohort and identified significant gaps in guideline-directed therapy. Bridging guideline recommendations and practice through early risk stratification and multicomponent therapy is key to improving survival.
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Vascular Pharmacology @vaspharma.bsky.social · 18/04/2026
#Angiogenesis #VascularBiology #CRISPR #AI #3Rs doi.org/10.1016/j.vp...
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Vascular Pharmacology @vaspharma.bsky.social · 18/04/2026
Angiogenesis research is entering a new era 🧬 Our latest review maps in vitro, ex vivo & in vivo assays and integrates AI imaging, spatial transcriptomics & CRISPR to guide smarter assay selection. A decision matrix + algorithm for reproducible, translational science.
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Vascular Pharmacology @vaspharma.bsky.social · 09/04/2026
NEW article 🎉 mTORC1 (via RAPTOR) rewires amino acid metabolism in lymphatic endothelial cells, disrupting glutaminolysis, altering BCAA handling, and impacting vessel formation. Metabolism is central to lymphatic biology. #mTORC1 #Lymphatics #Metabolism #VascularBiology doi.org/10.1016/j.vp...
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Vascular Pharmacology @vaspharma.bsky.social · 06/04/2026
Extracellular vesicles (EVs) link vascular inflammation and coagulation. Our recently published review article proposes a unified mechanistic model that defines the common molecular drivers of EV thrombogenicity, advancing EVs towards precise clinical tools. doi.org/10.1016/j.vp...
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