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zadetkov: 11
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  • YAP and TAZ regulate adhere... YAP and TAZ regulate adherens junction dynamics and endothelial cell distribution during vascular development
    Neto, Filipa; Klaus-Bergmann, Alexandra; Ong, Yu Ting ... eLife, 02/2018, Letnik: 7
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    Formation of blood vessel networks by sprouting angiogenesis is critical for tissue growth, homeostasis and regeneration. How endothelial cells arise in adequate numbers and arrange suitably to shape ...
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  • Primary cilia sensitize end... Primary cilia sensitize endothelial cells to BMP and prevent excessive vascular regression
    Vion, Anne-Clémence; Alt, Silvanus; Klaus-Bergmann, Alexandra ... The Journal of cell biology, 05/2018, Letnik: 217, Številka: 5
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    Blood flow shapes vascular networks by orchestrating endothelial cell behavior and function. How endothelial cells read and interpret flow-derived signals is poorly understood. Here, we show that ...
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  • External Mechanical Stabili... External Mechanical Stability Regulates Hematoma Vascularization in Bone Healing Rather than Endothelial YAP/TAZ Mechanotransduction
    Mehl, Julia; Farahani, Saeed Khomeijani; Brauer, Erik ... Advanced science, 04/2024, Letnik: 11, Številka: 13
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    Bone fracture healing is regulated by mechanobiological cues. Both, extracellular matrix (ECM) deposition and microvascular assembly determine the dynamics of the regenerative processes. Mechanical ...
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  • Endothelial Cell Orientatio... Endothelial Cell Orientation and Polarity Are Controlled by Shear Stress and VEGF Through Distinct Signaling Pathways
    Vion, Anne-Clémence; Perovic, Tijana; Petit, Charlie ... Frontiers in physiology, 03/2021, Letnik: 11
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    Vascular networks form, remodel and mature under the influence of multiple signals of mechanical or chemical nature. How endothelial cells read and interpret these signals, and how they integrate ...
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5.
  • WASp controls oriented migration of endothelial cells to achieve functional vascular patterning
    Rosa, André; Giese, Wolfgang; Meier, Katja ... Development (Cambridge), 02/2022, Letnik: 149, Številka: 3
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    Endothelial cell migration and proliferation are essential for the establishment of a hierarchical organization of blood vessels and optimal distribution of blood. However, how these cellular ...
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  • Vasohibin 1 selectively reg... Vasohibin 1 selectively regulates secondary sprouting and lymphangiogenesis in the zebrafish trunk
    de Oliveira, Marta Bastos; Meier, Katja; Jung, Simone ... Development (Cambridge), 02/2021, Letnik: 148, Številka: 4
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    Previous studies have shown that Vasohibin 1 (Vash1) is stimulated by VEGFs in endothelial cells and that its overexpression interferes with angiogenesis Recently, Vash1 was found to mediate tubulin ...
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7.
  • PDE3A mutations cause autos... PDE3A mutations cause autosomal dominant hypertension with brachydactyly
    Maass, Philipp G; Aydin, Atakan; Luft, Friedrich C ... Nature genetics, 06/2015, Letnik: 47, Številka: 6
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    Cardiovascular disease is the most common cause of death worldwide, and hypertension is the major risk factor. Mendelian hypertension elucidates mechanisms of blood pressure regulation. Here we ...
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  • Svep1 stabilises developmental vascular anastomosis in reduced flow conditions
    Coxam, Baptiste; Collins, Russell T; Hußmann, Melina ... Development (Cambridge), 03/2022, Letnik: 149, Številka: 6
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    Molecular mechanisms controlling the formation, stabilisation and maintenance of blood vessel connections remain poorly defined. Here, we identify blood flow and the large extracellular protein Svep1 ...
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  • Clinical effects of phospho... Clinical effects of phosphodiesterase 3A mutations in inherited hypertension with brachydactyly
    Toka, Okan; Tank, Jens; Schächterle, Carolin ... Hypertension (Dallas, Tex. 1979), 2015-October, Letnik: 66, Številka: 4
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    Autosomal-dominant hypertension with brachydactyly is a salt-independent Mendelian syndrome caused by activating mutations in the gene encoding phosphodiesterase 3A. These mutations increase the ...
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