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Methods in Cell Biology
|
September 20, 2011
Discerning different in vivo roles of microRNAs by experimental approaches in zebrafish
Luke Pase, Graham J Lieschke
Methods in Molecular Biology (Clifton, N.J.)
|
April 21, 2009
Validating microRNA Target Transcripts Using Zebrafish Assays
Luke Pase, Graham J Lieschke
Methods in Enzymology
|
February 21, 2012
In vivo real-time visualization of leukocytes and intracellular hydrogen peroxide levels during a zebrafish acute inflammation assay
Luke Pase, Cameron J Nowell, Graham J Lieschke
The Biochemical Journal
|
December 3, 2003
Copper stimulates trafficking of a distinct pool of the Menkes copper ATPase (ATP7A) to the plasma membrane and diverts it into a rapid recycling pool
Luke Pase, Ilia Voskoboinik, Mark Greenough, et al.
Development Genes and Evolution
|
March 15, 2006
Characterisation of duplicate zinc finger like 2 erythroid precursor genes in zebrafish
Benjamin M Hogan, Luke Pase, Nathan E Hall, et al.
Blood
|
November 19, 2010
mpeg1 promoter transgenes direct macrophage-lineage expression in zebrafish
Felix Ellett, Luke Pase, John W Hayman, et al.
Blood
|
October 14, 2008
miR-451 regulates zebrafish erythroid maturation in vivo via its target gata2
Luke Pase, Judith E Layton, Wigard P Kloosterman, et al.
Plos One
|
September 12, 2013
PhagoSight: an open-source MATLAB® package for the analysis of fluorescent neutrophil and macrophage migration in a zebrafish model
Katherine M Henry, Luke Pase, Carlos Fernando Ramos-Lopez, et al.
Plos Pathogens
|
June 9, 2018
Macrophages protect Talaromyces marneffei conidia from myeloperoxidase-dependent neutrophil fungicidal activity during infection establishment in vivo
Felix Ellett, Vahid Pazhakh, Luke Pase, et al.
G3 (Bethesda, Md.)
|
September 25, 2013
Cell-type-specific transcriptional profiles of the dimorphic pathogen Penicillium marneffei reflect distinct reproductive, morphological, and environmental demands
Shivani Pasricha, Michael Payne, David Canovas, et al.
Page
of 2
Search research articles
Search
Showing results (1-10 of 15) with videos related to
Sort By:
Page
of 2
Methods in Cell Biology
|
September 20, 2011
Discerning different in vivo roles of microRNAs by experimental approaches in zebrafish
Luke Pase, Graham J Lieschke
Methods in Molecular Biology (Clifton, N.J.)
|
April 21, 2009
Validating microRNA Target Transcripts Using Zebrafish Assays
Luke Pase, Graham J Lieschke
Methods in Enzymology
|
February 21, 2012
In vivo real-time visualization of leukocytes and intracellular hydrogen peroxide levels during a zebrafish acute inflammation assay
Luke Pase, Cameron J Nowell, Graham J Lieschke
The Biochemical Journal
|
December 3, 2003
Copper stimulates trafficking of a distinct pool of the Menkes copper ATPase (ATP7A) to the plasma membrane and diverts it into a rapid recycling pool
Luke Pase, Ilia Voskoboinik, Mark Greenough, et al.
Development Genes and Evolution
|
March 15, 2006
Characterisation of duplicate zinc finger like 2 erythroid precursor genes in zebrafish
Benjamin M Hogan, Luke Pase, Nathan E Hall, et al.
Blood
|
November 19, 2010
mpeg1 promoter transgenes direct macrophage-lineage expression in zebrafish
Felix Ellett, Luke Pase, John W Hayman, et al.
Blood
|
October 14, 2008
miR-451 regulates zebrafish erythroid maturation in vivo via its target gata2
Luke Pase, Judith E Layton, Wigard P Kloosterman, et al.
Plos One
|
September 12, 2013
PhagoSight: an open-source MATLAB® package for the analysis of fluorescent neutrophil and macrophage migration in a zebrafish model
Katherine M Henry, Luke Pase, Carlos Fernando Ramos-Lopez, et al.
Plos Pathogens
|
June 9, 2018
Macrophages protect Talaromyces marneffei conidia from myeloperoxidase-dependent neutrophil fungicidal activity during infection establishment in vivo
Felix Ellett, Vahid Pazhakh, Luke Pase, et al.
G3 (Bethesda, Md.)
|
September 25, 2013
Cell-type-specific transcriptional profiles of the dimorphic pathogen Penicillium marneffei reflect distinct reproductive, morphological, and environmental demands
Shivani Pasricha, Michael Payne, David Canovas, et al.
Page
of 2