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Keywords: Vascular development
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Journal Articles
Wenping Zhou, Joey J. Ghersi, Emma Ristori, Nicole Semanchik, Andrew Prendergast, Rong Zhang, Paola Carneiro, Gabriel Baldissera, William C. Sessa, Stefania Nicoli
Journal:
Development
Development (2024) 151 (17): dev202727.
Published: 2 September 2024
... aorta through the maintenance of the Notch pathway. Zebrafish embryo Vascular development Endothelial cells Artery specification Akt and Notch signaling Single cell RNA sequencing National Institutes of Health http://dx.doi.org/10.13039/100000002 R01DK118728-01 R35 HL139945 R01...
Includes: Supplementary data
Journal Articles
Daniel Conde, Paolo M. Triozzi, Wendell J. Pereira, Henry W. Schmidt, Kelly M. Balmant, Sara A. Knaack, Arturo Redondo-López, Sushmita Roy, Christopher Dervinis, Matias Kirst
Journal:
Development
Development (2022) 149 (21): dev200632.
Published: 17 October 2022
... in the vegetative apex, we applied a pipeline for interspecific single-cell gene expression data integration. We contrasted the developmental trajectories of primary phloem and xylem formation in both species, establishing the first comparison of vascular development between a model annual herbaceous and a woody...
Includes: Supplementary data
Journal Articles
Journal:
Development
Development (2021) 148 (23): dev200189.
Published: 7 December 2021
... The authors declare no competing or financial interests. 13 9 2021 25 10 2021 © 2021. Published by The Company of Biologists Ltd 2021 Summary: An integrated molecular analysis in zebrafish identifies new molecular markers for pericytes. Pericyte Vascular development...
Includes: Supplementary data
Journal Articles
Journal:
Development
Development (2021) 148 (11): dev167098.
Published: 3 June 2021
... their implications for understanding the development of the lymphatic vasculature and the aetiology of lymphatic vascular diseases. Lymphatic Lymphangiogenesis Vascular development Valve development Endothelial cell heterogeneity Vascular malformations Lymphoedema Lymphatic vessels...
Journal Articles
Shin-Young Hong, Esther Botterweg-Paredes, Jasmin Doll, Tenai Eguen, Anko Blaakmeer, Sanne Matton, Yakun Xie, Bjørg Skjøth Lunding, Ulrike Zentgraf, Chunmei Guan, Yuling Jiao, Stephan Wenkel
Journal:
Development
Development (2020) 147 (10): dev183681.
Published: 21 May 2020
... and MAX2 that appear to depend on the developmental context and do not all involve the direct regulation of MAX2 by REV. Shade avoidance Shoot branching Senescence Vascular development HD-ZIPIII Arabidopsis Plant development is highly plastic, and both leaf form and plant stature...
Includes: Supplementary data
Journal Articles
Margot E. Smit, Cristina I. Llavata-Peris, Mark Roosjen, Henriette van Beijnum, Daria Novikova, Victor Levitsky, Iris Sevilem, Pawel Roszak, Daniel Slane, Gerd Jürgens, Victoria Mironova, Siobhan M. Brady, Dolf Weijers
Journal:
Development
Development (2020) 147 (8): dev186130.
Published: 20 April 2020
... expression modulator, via interactions with auxin response factors. Arabidopsis Vascular development Auxin Embryo Gene regulatory network Nederlandse Organisatie voor Wetenschappelijk Onderzoek 10.13039/501100003246 NWO; 831.14.003 VICI 865.14.001 European Molecular...
Includes: Supplementary data
Journal Articles
Evangelia Koutelou, Li Wang, Andria C. Schibler, Hsueh-Ping Chao, Xianghong Kuang, Kevin Lin, Yue Lu, Jianjun Shen, Collene R. Jeter, Andrew Salinger, Marenda Wilson, Yi Chun Chen, Boyko S. Atanassov, Dean G. Tang, Sharon Y. R. Dent
Journal:
Development
Development (2019) 146 (4): dev174037.
Published: 22 February 2019
... SAGA Placenta Vascular development TGFβ signaling RTK receptors Endothelial cells Pericytes Mouse National Institutes of Health 10.13039/100000002 R01GM096472 R01HD094400 Cancer Prevention and Research Institute of Texas RP170067 Development of the mouse...
Includes: Supplementary data
Journal Articles
Pavel I. Nedvetsky, Xiaocheng Zhao, Thomas Mathivet, Irene M. Aspalter, Fabio Stanchi, Ross J. Metzger, Keith E. Mostov, Holger Gerhardt
Journal:
Development
Development (2016) 143 (19): 3582–3590.
Published: 1 October 2016
... that endothelial PKA activity is essential for vascular development, specifically regulating the transition from sprouting to stabilization of nascent vessels. Inhibition of endothelial PKA by endothelial cell-specific expression of dominant-negative PKA in mice led to perturbed vascular development, hemorrhage...
Includes: Supplementary data
Journal Articles
Lauren J. Manderfield, Haig Aghajanian, Kurt A. Engleka, Lillian Y. Lim, Feiyan Liu, Rajan Jain, Li Li, Eric N. Olson, Jonathan A. Epstein
Journal:
Development
Development (2015) 142 (17): 2962–2971.
Published: 1 September 2015
... regulates Notch target gene expression during vascular smooth muscle differentiation from neural crest. Notch signaling Hippo signaling Yap Taz Jagged1 Vascular development Neural crest Mouse The neural crest is a transient, migratory, multipotent cell population that contributes...
Includes: Supplementary data
Journal Articles
Dorien M. A. Hermkens, Andreas van Impel, Akihiro Urasaki, Jeroen Bussmann, Henricus J. Duckers, Stefan Schulte-Merker
Journal:
Development
Development (2015) 142 (9): 1695–1704.
Published: 1 May 2015
... of a Sox7 mutant model is still lacking. In this study we generated zebrafish sox7 mutants to understand the role of Sox7 during vascular development. By in vivo imaging of transgenic zebrafish lines we show that sox7 mutants display a short circulatory loop around the heart as a result of aberrant...
Includes: Supplementary data
Journal Articles
Paul Delgado-Olguín, Lan T. Dang, Daniel He, Sean Thomas, Lijun Chi, Tatyana Sukonnik, Nadiya Khyzha, Marc-Werner Dobenecker, Jason E. Fish, Benoit G. Bruneau
Journal:
Development
Development (2014) 141 (23): 4610–4617.
Published: 1 December 2014
... Histone methylation Vascular development Vascular stability Endothelium Extracellular matrix Mmp9 Mouse Stability of the vasculature is essential for embryonic development and tissue homeostasis. Although the establishment of vascular cell fate, differentiation, and new vessel formation has...
Includes: Supplementary data
Journal Articles
Henrik Lindskog, Yung Hae Kim, Eric B. Jelin, Yupeng Kong, Salvador Guevara-Gallardo, Tyson N. Kim, Rong A. Wang
Journal:
Development
Development (2014) 141 (5): 1120–1128.
Published: 1 March 2014
...Henrik Lindskog; Yung Hae Kim; Eric B. Jelin; Yupeng Kong; Salvador Guevara-Gallardo; Tyson N. Kim; Rong A. Wang Coordinated arterial-venous differentiation is crucial for vascular development and function. The origin of the cardinal vein (CV) in mammals is unknown, while conflicting theories have...
Includes: Supplementary data
Journal Articles
Journal:
Development
Development (2013) 140 (14): 3051–3061.
Published: 15 July 2013
... interests statement The authors declare no competing financial interests. 10 5 2013 © 2013. Published by The Company of Biologists Ltd 2013 Vascular development Angiogenesis Endothelial cells Notch Mouse The vertebrate body contains an extensive tubular system...
Includes: Supplementary data
Journal Articles
Journal:
Development
Development (2013) 140 (4): 765–769.
Published: 15 February 2013
... statement The authors declare no competing financial interests. 13 12 2012 © 2013. Published by The Company of Biologists Ltd 2013 Auxin LONESOME HIGHWAY Root Vascular development The vascular bundle is the long-distance transport pathway for water, nutrients and signalling...
Includes: Supplementary data
Journal Articles
Cong Zhu, Tom Smith, Joseph McNulty, Amy L. Rayla, Abirami Lakshmanan, Arndt F. Siekmann, Matthew Buffardi, Xiangdong Meng, Jimann Shin, Arun Padmanabhan, Daniel Cifuentes, Antonio J. Giraldez, A. Thomas Look, Jonathan A. Epstein, Nathan D. Lawson, Scot A. Wolfe
Journal:
Development
Development (2011) 138 (20): 4555–4564.
Published: 15 October 2011
... in vascular development. This work provides a resource to allow targeted germline gene inactivation in zebrafish and highlights the benefit of a definitive reverse genetic strategy to reveal gene function. § Authors for correspondence ( [email protected] ; [email protected]...
Includes: Multimedia, Supplementary data
Journal Articles
Journal:
Development
Development (2010) 137 (22): 3899–3910.
Published: 15 November 2010
... 9 2010 © 2010. Lymphangiogenesis Lymphatic vessels Macrophages Vascular development Mouse Lymphatic vessels play crucial roles during embryonic development and adult homeostasis. These specialised vessels uptake, transport and return interstitial fluid and protein...
Includes: Supplementary data
Journal Articles
Journal:
Development
Development (2010) 137 (5): 767–774.
Published: 1 March 2010
... of the cell division plane. Despite the fundamental importance of cell division orientation to plant development, the mechanisms regulating this process remain almost completely unknown. During vascular development, the meristematic cambial cells divide down their long axis in a highly orientated manner...
Includes: Supplementary data
Journal Articles
Journal:
Development
Development (2009) 136 (7): 1115–1125.
Published: 1 April 2009
...Stryder M. Meadows; Matthew C. Salanga; Paul A. Krieg The VEGF receptor, FLK1, is essential for differentiation of the endothelial lineage and for embryonic vascular development. Using comparative genomics, we have identified conserved ETS and Krüppel-like factor (KLF)binding sites within the Flk1...
Journal Articles
Chen He, Huiqing Hu, Rickmer Braren, Shun-Yin Fong, Andreas Trumpp, Timothy R. Carlson, Rong A. Wang
Journal:
Development
Development (2008) 135 (14): 2467–2477.
Published: 15 July 2008
... the blood vessels and are critical for angiogenesis. The de novo differentiation of endothelial cells is known as vasculogenesis, whereas the growth of new blood vessels from pre-existing vessels is known as angiogenesis. To ascertain the function of c-myc in vascular development, we deleted c-myc...
Includes: Supplementary data
Journal Articles
Journal:
Development
Development (2008) 135 (12): 2193–2202.
Published: 15 June 2008
... function in endothelial cells (ECs) in vivo has not been determined because Itgb1 -/- embryos die before vascular development. Excision of Itgb1 from ECs and a subset of hematopoietic cells, using Tie2-Cre , resulted in abnormal vascular development by embryonic day(e) 8.5 and lethality by e10.5. Tie1-Cre...
Includes: Multimedia, Supplementary data
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