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Cell Reports
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December 15, 2015
Vegfc Regulates Bipotential Precursor Division and Prox1 Expression to Promote Lymphatic Identity in Zebrafish
Katarzyna Koltowska, Anne Karine Lagendijk, Cathy Pichol-Thievend, et al.
Developmental Dynamics : an Official Publication of the American Association of Anatomists
|
February 26, 2019
Myosin Vb is required for correct trafficking of N-cadherin and cardiac chamber ballooning
Daniela R Grassini, Jason da Silva, Thomas E Hall, et al.
Biology Open
|
November 30, 2016
Utilising polymorphisms to achieve allele-specific genome editing in zebrafish
Samuel J Capon, Gregory J Baillie, Neil I Bower, et al.
Developmental Biology
|
December 8, 2004
Zebrafish gcm2 is required for gill filament budding from pharyngeal ectoderm
Benjamin M Hogan, Michael P Hunter, Andrew C Oates, et al.
Nature Communications
|
September 2, 2018
Junction-based lamellipodia drive endothelial cell rearrangements in vivo via a VE-cadherin-F-actin based oscillatory cell-cell interaction
Ilkka Paatero, Loïc Sauteur, Minkyoung Lee, et al.
Cell Reports
|
June 22, 2022
mafba and mafbb differentially regulate lymphatic endothelial cell migration in topographically distinct manners
Hannah Arnold, Virginia Panara, Melina Hußmann, et al.
Current Biology : CB
|
March 11, 2006
Specification of the primitive myeloid precursor pool requires signaling through Alk8 in zebrafish
Benjamin M Hogan, Judith E Layton, Ujwal J Pyati, et al.
Elife
|
May 1, 2019
Yap1 promotes sprouting and proliferation of lymphatic progenitors downstream of Vegfc in the zebrafish trunk
Lin Grimm, Hiroyuki Nakajima, Smrita Chaudhury, et al.
Arteriosclerosis, Thrombosis, and Vascular Biology
|
March 23, 2013
Sox18 genetically interacts with VegfC to regulate lymphangiogenesis in zebrafish
Solei Cermenati, Silvia Moleri, Christine Neyt, et al.
NPJ Regenerative Medicine
|
August 28, 2019
Vegfc/d-dependent regulation of the lymphatic vasculature during cardiac regeneration is influenced by injury context
Céline J Vivien, Cathy Pichol-Thievend, Choon Boon Sim, et al.
Page
of 10
Search research articles
Search
Showing results (41-50 of 99) with videos related to
Sort By:
Page
of 10
Cell Reports
|
December 15, 2015
Vegfc Regulates Bipotential Precursor Division and Prox1 Expression to Promote Lymphatic Identity in Zebrafish
Katarzyna Koltowska, Anne Karine Lagendijk, Cathy Pichol-Thievend, et al.
Developmental Dynamics : an Official Publication of the American Association of Anatomists
|
February 26, 2019
Myosin Vb is required for correct trafficking of N-cadherin and cardiac chamber ballooning
Daniela R Grassini, Jason da Silva, Thomas E Hall, et al.
Biology Open
|
November 30, 2016
Utilising polymorphisms to achieve allele-specific genome editing in zebrafish
Samuel J Capon, Gregory J Baillie, Neil I Bower, et al.
Developmental Biology
|
December 8, 2004
Zebrafish gcm2 is required for gill filament budding from pharyngeal ectoderm
Benjamin M Hogan, Michael P Hunter, Andrew C Oates, et al.
Nature Communications
|
September 2, 2018
Junction-based lamellipodia drive endothelial cell rearrangements in vivo via a VE-cadherin-F-actin based oscillatory cell-cell interaction
Ilkka Paatero, Loïc Sauteur, Minkyoung Lee, et al.
Cell Reports
|
June 22, 2022
mafba and mafbb differentially regulate lymphatic endothelial cell migration in topographically distinct manners
Hannah Arnold, Virginia Panara, Melina Hußmann, et al.
Current Biology : CB
|
March 11, 2006
Specification of the primitive myeloid precursor pool requires signaling through Alk8 in zebrafish
Benjamin M Hogan, Judith E Layton, Ujwal J Pyati, et al.
Elife
|
May 1, 2019
Yap1 promotes sprouting and proliferation of lymphatic progenitors downstream of Vegfc in the zebrafish trunk
Lin Grimm, Hiroyuki Nakajima, Smrita Chaudhury, et al.
Arteriosclerosis, Thrombosis, and Vascular Biology
|
March 23, 2013
Sox18 genetically interacts with VegfC to regulate lymphangiogenesis in zebrafish
Solei Cermenati, Silvia Moleri, Christine Neyt, et al.
NPJ Regenerative Medicine
|
August 28, 2019
Vegfc/d-dependent regulation of the lymphatic vasculature during cardiac regeneration is influenced by injury context
Céline J Vivien, Cathy Pichol-Thievend, Choon Boon Sim, et al.
Page
of 10