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Cancer Research
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December 22, 1999
Short-chain fatty acid metabolism, apoptosis, and Apc-initiated tumorigenesis in the mouse gastrointestinal mucosa
L H Augenlicht, G M Anthony, T L Church, et al.
The Journal of Experimental Zoology
|
February 15, 1997
A mouse model of human familial adenomatous polyposis
K Yang, W Edelmann, K Fan, et al.
Nature Genetics
|
January 23, 1999
Mammalian MutS homologue 5 is required for chromosome pairing in meiosis
W Edelmann, P E Cohen, B Kneitz, et al.
Molecular Vision
|
September 13, 2000
Ultrastructural and ERG findings in mice with adenomatous polyposis coli gene disruption
D M Marcus, A K Rustgi, D Defoe, et al.
Proceedings of the National Academy of Sciences of the United States of America
|
February 6, 1996
Neuronal abnormalities in microtubule-associated protein 1B mutant mice
W Edelmann, M Zervas, P Costello, et al.
Cancer Research
|
March 30, 1999
Tumorigenesis in Mlh1 and Mlh1/Apc1638N mutant mice
W Edelmann, K Yang, M Kuraguchi, et al.
Cancer Research
|
November 3, 2001
The distinct spectra of tumor-associated Apc mutations in mismatch repair-deficient Apc1638N mice define the roles of MSH3 and MSH6 in DNA repair and intestinal tumorigenesis
M Kuraguchi, K Yang, E Wong, et al.
Cancer Research
|
August 17, 2001
p21(WAF1/cip1) is an important determinant of intestinal cell response to sulindac in vitro and in vivo
W Yang, A Velcich, J Mariadason, et al.
Proceedings of the National Academy of Sciences of the United States of America
|
September 13, 1994
A targeted chain-termination mutation in the mouse Apc gene results in multiple intestinal tumors
R Fodde, W Edelmann, K Yang, et al.
Genes, Chromosomes & Cancer
|
September 19, 2000
Somatic Apc mutations are selected upon their capacity to inactivate the beta-catenin downregulating activity
R Smits, N Hofland, W Edelmann, et al.
Page
of 6
Search research articles
Search
Showing results (31-40 of 54) with videos related to
Sort By:
Page
of 6
Cancer Research
|
December 22, 1999
Short-chain fatty acid metabolism, apoptosis, and Apc-initiated tumorigenesis in the mouse gastrointestinal mucosa
L H Augenlicht, G M Anthony, T L Church, et al.
The Journal of Experimental Zoology
|
February 15, 1997
A mouse model of human familial adenomatous polyposis
K Yang, W Edelmann, K Fan, et al.
Nature Genetics
|
January 23, 1999
Mammalian MutS homologue 5 is required for chromosome pairing in meiosis
W Edelmann, P E Cohen, B Kneitz, et al.
Molecular Vision
|
September 13, 2000
Ultrastructural and ERG findings in mice with adenomatous polyposis coli gene disruption
D M Marcus, A K Rustgi, D Defoe, et al.
Proceedings of the National Academy of Sciences of the United States of America
|
February 6, 1996
Neuronal abnormalities in microtubule-associated protein 1B mutant mice
W Edelmann, M Zervas, P Costello, et al.
Cancer Research
|
March 30, 1999
Tumorigenesis in Mlh1 and Mlh1/Apc1638N mutant mice
W Edelmann, K Yang, M Kuraguchi, et al.
Cancer Research
|
November 3, 2001
The distinct spectra of tumor-associated Apc mutations in mismatch repair-deficient Apc1638N mice define the roles of MSH3 and MSH6 in DNA repair and intestinal tumorigenesis
M Kuraguchi, K Yang, E Wong, et al.
Cancer Research
|
August 17, 2001
p21(WAF1/cip1) is an important determinant of intestinal cell response to sulindac in vitro and in vivo
W Yang, A Velcich, J Mariadason, et al.
Proceedings of the National Academy of Sciences of the United States of America
|
September 13, 1994
A targeted chain-termination mutation in the mouse Apc gene results in multiple intestinal tumors
R Fodde, W Edelmann, K Yang, et al.
Genes, Chromosomes & Cancer
|
September 19, 2000
Somatic Apc mutations are selected upon their capacity to inactivate the beta-catenin downregulating activity
R Smits, N Hofland, W Edelmann, et al.
Page
of 6