UOHI Cardiac Translational Research Laboratory

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UOHI Cardiac Translational Research Laboratory

UOHI Cardiac Translational Research Laboratory

@davis_ctrl

A biotechnology lab located at the uOttawa Heart Institute focused on the discovery & development of biological therapies for heart disease. PI Darryl R. Davis.

Ottawa, Ontario Entrou em Temmuz 2019
51 Seguindo150 Seguidores
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UOHI Cardiac Translational Research Laboratory
Meet the Cardiac Translational Research team, directed by PI Dr. Darryl R. Davis. We are a biotechnology lab located at the UOHI, focused on the discovery & development of biological therapies for heart disease. @HeartInstitute
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Heart Institute
Heart Institute@HeartInstitute·
Exciting news! 🔬 The @HeartInstitute has helped launch Rhythm Biotherapeutics Inc., a pre-clinical startup company pioneering biologic therapies for heart patients. ottawaheart.ca/news/new-initi…
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Heart Institute
Heart Institute@HeartInstitute·
À lire!🔬 L'Institut de cardiologie a contribué au lancement de Rhythm Biotherapeutics Inc., une entreprise de développement préclinique qui travaille à la mise au point de thérapies biologiques innovantes pour traiter les maladies du cœur. ottawaheart.ca/fr/nouvelles/n…
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UOHI Cardiac Translational Research Laboratory
Carbon nanotubes create lesions that closely resemble sarcoid. Sixty days after injecting them into the heart, we observed typical sarcoid granuloma histiocytes co-localizing with the nanotubes (black markings). 🔗doi: 10.1002/adbi.202400238
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Exciting news! This study addresses a critical gap in cardiac sarcoidosis research by exploring the use of stressors like carbon nanotubes and transverse aortic constriction to develop one of the world’s first animal models. 🔗doi: 10.1002/adbi.202400238
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Interleukin-6 (IL-6) is the most abundant cytokine produced by heart explant-derived cells, but its role in cardiac repair remains uncertain. For the first time, this study shows that IL-6 has a pro-healing effect in cell therapy for post-infarct repair.🔗doi:10.7150/thno.19435
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Human atrial extracellular vesicles (EVs) significantly reduce scar burden in the atria, as shown by hydroxyproline and Masson’s trichrome staining, compared to placebo (Talc + veh). Discover the potential of EVs in atrial fibrosis treatment! 🔗 doi.org/10.1172/jci.in…
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Oxidative stress is linked to an increased risk of heart rhythm problems. We showed that injecting extracellular vesicles reduces oxidative stress in a rat pericarditis model, which may explain how they reduce the risk of adverse heart rhythms.🔗 doi: 10.7150/thno.89520
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Unlike pretreatment with amiodarone, a single injection of extracellular vesicles significantly reduces atrial cytokine levels and inflammation linked to postoperative arrhythmias. 🔗#AtrialFibrillation" target="_blank" rel="nofollow noopener">doi.org/10.1016/j.jace…
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Ever wondered how extracellular vesicles could revolutionize AF prevention? Our study shows they reduce atrial fibrosis, and prevent arrhythmias. Discover colchicine's limited benefits and the hidden risks of amiodarone. 🔗 doi:10.1016/j.jacep.2024.02.019 #AtrialFibrillation
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Pericarditis increases atrial scar tissue. While anti-inflammatories offer modest reduction and antiarrhythmics have no effect on fibrosis, a single EV injection eliminates fibrosis and atrial fibrillation! doi:10.1016/j.jacep.2024.02.019 #AtrialFibrillation
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