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Transgenic Research
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October 24, 2019
Tamoxifen-independent recombination of reporter genes limits lineage tracing and mosaic analysis using CreER<sup>T2</sup> lines
A Álvarez-Aznar, I Martínez-Corral, N Daubel, et al.
Biochemical and Biophysical Research Communications
|
June 15, 1990
Canine IAPP cDNA sequence provides important clues regarding diabetogenesis and amyloidogenesis in type 2 diabetes
K Jordan, M P Murtaugh, T D O'Brien, et al.
Upsala Journal of Medical Sciences
|
January 1, 1980
Ca2+ transport in pancreatic beta-cells during glucose stimulation of insulin secretion
B Hellman, E Gylfe, P O Berggren, et al.
FEBS Letters
|
July 17, 1989
Sequence divergence in a specific region of islet amyloid polypeptide (IAPP) explains differences in islet amyloid formation between species
C Betsholtz, L Christmansson, U Engström, et al.
The EMBO Journal
|
April 18, 1995
Mice lacking glial fibrillary acidic protein display astrocytes devoid of intermediate filaments but develop and reproduce normally
M Pekny, P Levéen, M Pekna, et al.
Kidney International
|
November 30, 2007
Nephrin is involved in podocyte maturation but not survival during glomerular development
S C Doné, M Takemoto, L He, et al.
Experimental Cell Research
|
April 2, 1998
GFAP-deficient astrocytes are capable of stellation in vitro when cocultured with neurons and exhibit a reduced amount of intermediate filaments and an increased cell saturation density
M Pekny, C Eliasson, C L Chien, et al.
Development (Cambridge, England)
|
November 28, 1997
Alveogenesis failure in PDGF-A-deficient mice is coupled to lack of distal spreading of alveolar smooth muscle cell progenitors during lung development
P Lindahl, L Karlsson, M Hellström, et al.
Angiogenesis
|
July 1, 2019
Adgrf5 contributes to patterning of the endothelial deep layer in retina
C Niaudet, M Petkova, B Jung, et al.
Scandinavian Journal of Immunology
|
May 26, 1998
Mice deficient for the complement factor B develop and reproduce normally
M Pekna, M A Hietala, A Landin, et al.
Page
of 12
Search research articles
Search
Showing results (61-70 of 116) with videos related to
Sort By:
Page
of 12
Transgenic Research
|
October 24, 2019
Tamoxifen-independent recombination of reporter genes limits lineage tracing and mosaic analysis using CreER<sup>T2</sup> lines
A Álvarez-Aznar, I Martínez-Corral, N Daubel, et al.
Biochemical and Biophysical Research Communications
|
June 15, 1990
Canine IAPP cDNA sequence provides important clues regarding diabetogenesis and amyloidogenesis in type 2 diabetes
K Jordan, M P Murtaugh, T D O'Brien, et al.
Upsala Journal of Medical Sciences
|
January 1, 1980
Ca2+ transport in pancreatic beta-cells during glucose stimulation of insulin secretion
B Hellman, E Gylfe, P O Berggren, et al.
FEBS Letters
|
July 17, 1989
Sequence divergence in a specific region of islet amyloid polypeptide (IAPP) explains differences in islet amyloid formation between species
C Betsholtz, L Christmansson, U Engström, et al.
The EMBO Journal
|
April 18, 1995
Mice lacking glial fibrillary acidic protein display astrocytes devoid of intermediate filaments but develop and reproduce normally
M Pekny, P Levéen, M Pekna, et al.
Kidney International
|
November 30, 2007
Nephrin is involved in podocyte maturation but not survival during glomerular development
S C Doné, M Takemoto, L He, et al.
Experimental Cell Research
|
April 2, 1998
GFAP-deficient astrocytes are capable of stellation in vitro when cocultured with neurons and exhibit a reduced amount of intermediate filaments and an increased cell saturation density
M Pekny, C Eliasson, C L Chien, et al.
Development (Cambridge, England)
|
November 28, 1997
Alveogenesis failure in PDGF-A-deficient mice is coupled to lack of distal spreading of alveolar smooth muscle cell progenitors during lung development
P Lindahl, L Karlsson, M Hellström, et al.
Angiogenesis
|
July 1, 2019
Adgrf5 contributes to patterning of the endothelial deep layer in retina
C Niaudet, M Petkova, B Jung, et al.
Scandinavian Journal of Immunology
|
May 26, 1998
Mice deficient for the complement factor B develop and reproduce normally
M Pekna, M A Hietala, A Landin, et al.
Page
of 12