Very excited to share our new pre-print on how CELL AUTONOMOUS WNT REGULATES ARTERY CELL PLASTICITY. Kudos to @BhavneshBishnoi for his incredible efforts. Huge thanks to all authors and collaborators @Dhan_inStem@shruthiLab.
https://t.co/9ZBZrWxcD8
An update to the Hallmarks of Cancer framework for understanding (and researching) what causes human cancers. https://t.co/3d6pYrcAJ5
Douglas Hanahan
@CellCellPress
Research | Kraft et al. identify TIE2 activation as a key driver of PI3KCA-related venous malformations and demonstrate that inhibiting TIE2 signalling can suppress the growth of advanced lesions.
https://t.co/m7zxk9DRvR
https://t.co/XwG0bLlz2k
Kudos to two of my super-talented senior graduate students who wrote this comprehensive review on Artery Regeneration across systems https://t.co/bGzvqDcDj6 @Swarnadipg98@BhavneshBishnoi@NCBS_Bangalore
Mosquitoes die after drinking the blood of people taking a drug for metabolic disorders — a discovery that could help to prevent the spread of malaria
https://t.co/S0naVbsyHR
#EVBOSummerSchool 2025: spread the news! 10-11 June 2025 | Biomedicum Helsinki, Finland
Registration will open soon. Stay tuned! Preceded by the excellent and free-of-charge Wihuri Research Symposium on Cardiovascular Biology! More info https://t.co/IKhwQIiDUx
Do you wonder if #regeneration and #tumorigenesis are always linked, or can they be uncoupled to maintain tissue homeostasis? 🤔
Excited to share our latest work published in @Nature, where we explore this fundamental question in the #gut!
Link: https://t.co/xsZkoPlxML 🧵👇
🆕Presenting our latest comic with @TinkleMagazine featuring Dr. Soumyashree Das! Her passion for fighting ischemic heart disease is truly inspiring!🫀
🤩Check out the comic and share your thoughts in the comments below!
@soumya3693#sciencecomics#tinkle#hearthealth
Read her award-winning article here with her fellows @GauriArolkar@sneha_srivatsa as first co-authors: https://t.co/qQxOCbV5L6
Image: ATVB: 2023;43:1455–1477. @atvbahajournals
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The 14 current members of @makinenlab come from around the world, representing 10 nationalities. Despite various cultural and scientific backgrounds, we share one common interest: lymphatic vessels. Allow us to present the faces behind the research.
Our studies @makinenlab are focused on the lymphatic vasculature, which is essential for fluid homeostasis, immune cell trafficking and intestinal absorption of lipids - and increasingly recognized as a multifaceted regulator of various organ functions.
Imp work on endothelial potency from @Soumya3693 lab at @NCBS_Bangalore, India.
Injured mammalian hearts can regenerate only till neonate stage & that is correlated with revasculation through a process of Arterial dedifferentiation. Adult arterial ECs do not display this ability