Jui Dave (@juimdave) 's Twitter Profile
Jui Dave

@juimdave

Research Scientist @yaleCVRC @GreifLab

ID: 1480409429992423426

calendar_today10-01-2022 05:21:41

23 Tweet

69 Followers

69 Following

DanielGreifLab (@greiflab) 's Twitter Profile Photo

📢Check out our latest work on how the #NOTCH3 pathway induces #supravalvular #aortic #stenosis jci.org/articles/view/…. Congratulations to Dr. Jui Dave and everyone who contributed to this work👏👏👏. Journal of Clinical Investigation Yale CVRC #CardioTwitter American Heart Association

Jui Dave (@juimdave) 's Twitter Profile Photo

The amazing aorta! #medial_layers #vascular_wall #elastin #smoothmusclecells #epigenetics #development #FluorescenceFriday👍 #myfirstTweet😊😊😊

The amazing aorta! #medial_layers #vascular_wall #elastin #smoothmusclecells #epigenetics #development #FluorescenceFriday👍 #myfirstTweet😊😊😊
Jui Dave (@juimdave) 's Twitter Profile Photo

Beautiful elastin fibers 🥰 #aorta #elastin #blood_vessel #vascular_wall #media #smoothmusclecells #development #blood #heart #FluorescenceFriday 🌈

Beautiful elastin fibers 🥰 #aorta #elastin #blood_vessel #vascular_wall #media #smoothmusclecells #development #blood #heart #FluorescenceFriday 🌈
Yale Cardiology (@yalecardiology) 's Twitter Profile Photo

A study by Jui Dave from the DanielGreifLab has identified the role of Notch3 in vascular development. In a laboratory setting, treatment with a pharmacological inhibitor or the genetic deletion of Notch3 has a restorative effect on the aortic wall. buff.ly/3370qiN Yale School of Medicine

A study by <a href="/juimdave/">Jui Dave</a> from the <a href="/GreifLab/">DanielGreifLab</a> has identified the role of Notch3 in vascular development. In a laboratory setting, treatment with a pharmacological inhibitor or the genetic deletion of Notch3 has a restorative effect on the aortic wall. buff.ly/3370qiN

<a href="/YaleMed/">Yale School of Medicine</a>
Yale Cardiology (@yalecardiology) 's Twitter Profile Photo

Jui Dave, PhD, investigates potential therapeutic targets for obstructive arterial diseases, including supravalvular aortic #stenosis DanielGreifLab. Congratulations Jui Dave on your Career Development Award from AHA Science. buff.ly/3Pge6d4 Yale School of Medicine Yale Internal Medicine

Jui Dave, PhD, investigates potential therapeutic targets for obstructive arterial diseases, including supravalvular aortic #stenosis <a href="/GreifLab/">DanielGreifLab</a>.  

Congratulations <a href="/juimdave/">Jui Dave</a> on your Career Development Award from <a href="/AHAScience/">AHA Science</a>. buff.ly/3Pge6d4

<a href="/YaleMed/">Yale School of Medicine</a> <a href="/YaleIMed/">Yale Internal Medicine</a>
DanielGreifLab (@greiflab) 's Twitter Profile Photo

👏Congratulations Dr. Inamul Kabir and colleagues for the latest article Nature Aging! "The #age of #bone marrow dictates the #clonality of smooth muscle-derived cells in #atherosclerotic #plaques" is now published👉 nature.com/articles/s4358…

Jui Dave (@juimdave) 's Twitter Profile Photo

📢📢📢 Publication alert! 🧠🔬🧑‍🔬 Dave et al. identify that repression of Angiopoetin-2 via TGFb pathway in #brain pericytes is indispensable for the blood-brain-barrier development! Kathleen Martin DanielGreifLab Yale CVRC Junichi Saito, MD, PhD Lina Ntokou Yale School of Medicine ahajournals.org/doi/abs/10.116…

Stroke AHA/ASA (@strokeaha_asa) 's Twitter Profile Photo

#STROKE #OriginalResearch: Jui Dave et al. discover that the TGFβ pathway represses angiopoietin-2 in brain pericytes during development and identify pericyte-derived angiopoietin-2 as a target for germinal matrix hemorrhage. #AHAJournals ahajournals.org/doi/full/10.11…

#STROKE #OriginalResearch: <a href="/juimdave/">Jui Dave</a> et al. discover that the TGFβ pathway represses angiopoietin-2 in brain pericytes during development and identify pericyte-derived angiopoietin-2 as a target for germinal matrix hemorrhage. #AHAJournals ahajournals.org/doi/full/10.11…