Awesome speakers, intimate setting, many talks from abstracts. Deadline June 15th to register!
vwfb.de/start/regist...
Awesome speakers, intimate setting, many talks from abstracts. Deadline June 15th to register!
vwfb.de/start/regist...
Maike studies how extracellular and physical microenvironments govern vessel integrity, notably demonstrating how matrix stiffness instructs lymphatic vessel formation.
Deadline June 15th. Register today!
Maike studies how extracellular and physical microenvironments govern vessel integrity, notably demonstrating how matrix stiffness instructs lymphatic vessel formation.
Deadline June 15th. Register today!
Li-Kun studies endothelial cell behavior during angiogenesis, revealing how cell polarity, migration, and signaling dynamics shape vascular network formation and remodeling in vivo. 🐟
Deadline tomorrow, June 15th! www.vwfb.de/start/regist...
Li-Kun studies endothelial cell behavior during angiogenesis, revealing how cell polarity, migration, and signaling dynamics shape vascular network formation and remodeling in vivo. 🐟
Deadline tomorrow, June 15th! www.vwfb.de/start/regist...
Stefania examines how non-coding RNAs integrate metabolic & biomechanical signals to regulate cell behavior in cardiovascular development & disease. 🔬
Register today! www.vwfb.de/start/regist...
Stefania examines how non-coding RNAs integrate metabolic & biomechanical signals to regulate cell behavior in cardiovascular development & disease. 🔬
Register today! www.vwfb.de/start/regist...
Li-Kun studies endothelial cell behavior during angiogenesis, revealing how cell polarity, migration, and signaling dynamics shape vascular network formation and remodeling in vivo. 🐟
Deadline tomorrow, June 15th! www.vwfb.de/start/regist...
@herbertlab.bsky.social examines how cells coordinate their behavior to build new tissues, using live-cell imaging in 🐟. He showed how Notch signaling & mechanical feedback drive endothelial tip-stalk competition during sprouting.
Deadline June 15th!
@herbertlab.bsky.social examines how cells coordinate their behavior to build new tissues, using live-cell imaging in 🐟. He showed how Notch signaling & mechanical feedback drive endothelial tip-stalk competition during sprouting.
Deadline June 15th!
Bong-Inh showed how VEGFR2 signaling drives meningeal vascular regeneration after severe head injury & characterizes organ-specific vascular niches in craniofacial bones.
Deadline June 15th. Register today!
vwfb.de/start/regist...
Bong-Inh showed how VEGFR2 signaling drives meningeal vascular regeneration after severe head injury & characterizes organ-specific vascular niches in craniofacial bones.
Deadline June 15th. Register today!
vwfb.de/start/regist...
Taija studies lymphangiogenesis and showed that dermal lymphatic vasculature arises from non-venous mesenchymal progenitors. Her work has underscored lymphatic heterogeneity and lymphangiocrine signaling.
Deadline June 15th! www.vwfb.de/start/regist...
Taija studies lymphangiogenesis and showed that dermal lymphatic vasculature arises from non-venous mesenchymal progenitors. Her work has underscored lymphatic heterogeneity and lymphangiocrine signaling.
Deadline June 15th! www.vwfb.de/start/regist...
Hellmut studies how Ang-Tie signaling regulates vessel maturation, stability and tumor angiogenesis & how organotypic endothelial cells control metastasis, immune responses and organ function via angiocrine signaling.
Deadline June 15th!
Hellmut studies how Ang-Tie signaling regulates vessel maturation, stability and tumor angiogenesis & how organotypic endothelial cells control metastasis, immune responses and organ function via angiocrine signaling.
Deadline June 15th!
Tatiana studies lymphatic vascular development & tissue-specific remodeling, defining how Prox1, organ-specific mechanical forces, and metabolic signaling pathways govern lymphatic endothelial cell identity & maturation in health & disease.
Tatiana studies lymphatic vascular development & tissue-specific remodeling, defining how Prox1, organ-specific mechanical forces, and metabolic signaling pathways govern lymphatic endothelial cell identity & maturation in health & disease.
Lena fundamentally advanced vascular biology by uncovering how VEGFR signaling, junctional dynamics & proteins like CD93 regulate endothelial permeability & vessel leakage in tumor metastasis & inflammatory diseases.
See our program: www.vwfb.de
Lena fundamentally advanced vascular biology by uncovering how VEGFR signaling, junctional dynamics & proteins like CD93 regulate endothelial permeability & vessel leakage in tumor metastasis & inflammatory diseases.
See our program: www.vwfb.de
Ben uses high-resolution live imaging, forward genetic zebrafish screens 🐟 and single-cell transcriptomics to study lymphangiogenesis, the blood-brain barrier formation and pericyte maturation. 🔬
Deadline June 15th! www.vwfb.de/start/regist...
Ben uses high-resolution live imaging, forward genetic zebrafish screens 🐟 and single-cell transcriptomics to study lymphangiogenesis, the blood-brain barrier formation and pericyte maturation. 🔬
Deadline June 15th! www.vwfb.de/start/regist...
Anne not only helped elucidate neuronal cue guidance of angiogenesis, but also how sensing of hemodynamic flow via Piezo1 can go awry leading to vascular malformations & how ROCK is critical to vessel stability.
Find the Seeon program here: www.vwfb.de/
Anne not only helped elucidate neuronal cue guidance of angiogenesis, but also how sensing of hemodynamic flow via Piezo1 can go awry leading to vascular malformations & how ROCK is critical to vessel stability.
Find the Seeon program here: www.vwfb.de/
Pipsa studies endothelial junctions & vascular stability. She showed how Ang-2 drives endothelial destabilization via beta1-integrin & how targeting b1-integrin can inhibit pathological capillary leakage in diseases like sepsis.
More info here: www.vwfb.de
Pipsa studies endothelial junctions & vascular stability. She showed how Ang-2 drives endothelial destabilization via beta1-integrin & how targeting b1-integrin can inhibit pathological capillary leakage in diseases like sepsis.
More info here: www.vwfb.de