Yale CVRC (@yalecvrc) 's Twitter Profile
Yale CVRC

@yalecvrc

With 17 laboratories led by @YaleCardiology investigators, our scientists are working to better understand, treat, and prevent cardiovascular disease.

ID: 862337270074011651

linkhttps://medicine.yale.edu/intmed/cardio/ycvrc/ calendar_today10-05-2017 16:03:21

421 Tweet

764 Followers

109 Following

Yale CVRC (@yalecvrc) 's Twitter Profile Photo

Congratulations to Yale CVRC's latest PhD graduate, Dr. Jessica of the Eichmann lab! A spectacular defense presentation on the blood-retinal barrier

Congratulations to <a href="/YaleCVRC/">Yale CVRC</a>'s latest PhD graduate, Dr. <a href="/JessicaFurtado/">Jessica</a> of the Eichmann lab! A spectacular defense presentation on the blood-retinal barrier
DanielGreifLab (@greiflab) 's Twitter Profile Photo

Congratulations to Daniel Jovin and team for their latest review on the heterogeneity of #atherosclerosis in JVS - Vascular Insights! "Manifestations of human atherosclerosis across vascular beds" is now published ๐Ÿ“ท doi.org/10.1016/j.jvsvโ€ฆ

Stefania Nicoli (@nicolilab) 's Twitter Profile Photo

@IVBM24 takeaways: embrace innovation, master basic science, nurture community, and grow by learning from the pioneers!!! Already looking forward of #IVBM2026!! NAVBO EVBO ๐Ÿ‘๐Ÿผ๐Ÿ‘๐Ÿผ๐Ÿ‘๐Ÿผ๐Ÿ‘๐Ÿผ๐Ÿ‘๐Ÿผ

@IVBM24 takeaways: embrace innovation, master basic science, nurture community, and grow by learning from the pioneers!!! Already looking forward of #IVBM2026!! <a href="/vascularbiology/">NAVBO</a> <a href="/EVB_Org/">EVBO</a> ๐Ÿ‘๐Ÿผ๐Ÿ‘๐Ÿผ๐Ÿ‘๐Ÿผ๐Ÿ‘๐Ÿผ๐Ÿ‘๐Ÿผ
Nature Cardiovascular Research (@naturecvr) 's Twitter Profile Photo

Research| Deng et al. show that endothelial cells respond to fluid shear stress by KLF2-mediated induction of the BMP-Smad1/5 pathway inhibitor BMPER, and develop an approach to improve vessel remodelling in diabetic mouse models. ๐Ÿ‘‰ rdcu.be/dM5an

Research| Deng et al. show that endothelial cells respond to fluid shear stress by KLF2-mediated induction of the BMP-Smad1/5 pathway inhibitor BMPER, and develop an approach to improve vessel remodelling in diabetic mouse models. 
๐Ÿ‘‰ rdcu.be/dM5an
Renjing Liu (@renjing_liu) 's Twitter Profile Photo

So happy that Kathleen Martin from Yale CVRC was able to take some time off from her holidays and visit the Victor Chang Cardiac Research Institute to give us an amazing seminar on vascular smooth muscle regulation. Motivating to see fundamental knowledge from the bench making its way to the clinics.

So happy that <a href="/KathyMartinYale/">Kathleen Martin</a> from <a href="/YaleCVRC/">Yale CVRC</a> was able to take some time off from her holidays and visit the <a href="/VictorChangInst/">Victor Chang Cardiac Research Institute</a> to give us an amazing seminar on vascular smooth muscle regulation. Motivating to see fundamental knowledge from the bench making its way to the clinics.
Yale CVRC (@yalecvrc) 's Twitter Profile Photo

Congratulations Junichi Saito from DanielGreifLab for being selected as a finalist for the Elaine W. Raines Early Career Investigator Award at the AHA Scientific Sessions โ€˜24 for his work "Sphingosine Kinase 1 Is Integral For Elastin Deficiency-induced Arterial Hypermuscularizationโ€

Jui Dave (@juimdave) 's Twitter Profile Photo

๐Ÿ“ข๐Ÿ“ข๐Ÿ“ข Publication alert! ๐Ÿง ๐Ÿ”ฌ๐Ÿง‘โ€๐Ÿ”ฌ 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 Lina Ntokou Yale School of Medicine ahajournals.org/doi/abs/10.116โ€ฆ

Yale CVRC (@yalecvrc) 's Twitter Profile Photo

Congratulations to Sean Gu and corresponding authors John Hwa & Vince Faustino for their work in ATVB: An AHA Journal, utilizing mass cytometry to uncover distinct platelet phenotypes in infants with congenital heart disease. ahajournals.org/doi/10.1161/ATโ€ฆ