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A P Cuthbert

Showing results (1-10 of 25) with videos related to

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Molecular Carcinogenesis|April 1, 1995
Novel use of a selectable fusion gene as an "in-out" marker for studying genetic loss in mammalian cellsD A Trott, A P Cuthbert, C M Todd, et al.
Carcinogenesis|February 1, 1995
Mechanisms involved in the immortalization of mammalian cells by ionizing radiation and chemical carcinogensD A Trott, A P Cuthbert, R W Overell, et al.
Annals of Human Genetics|December 4, 2003
SNP subset selection for genetic association studiesM C Byng, J C Whittaker, A P Cuthbert, et al.
Toxicology Letters|April 1, 1993
Cell immortalization as a key, rate-limiting event in malignant transformation: approaches toward a molecular genetic analysisR F Newbold, A P Cuthbert, M Themis, et al.
Gut|August 13, 2004
Genetic association between EPHX1 and Crohn's disease: population stratification, genotyping error, or random chance?A P Cuthbert, S A Fisher, C M Lewis, et al.
Oncogene|February 25, 1999
A telomere-independent senescence mechanism is the sole barrier to Syrian hamster cell immortalizationI Russo, A R Silver, A P Cuthbert, et al.
The EMBO Journal|June 2, 2001
Human acrocentric chromosomes with transcriptionally silent nucleolar organizer regions associate with nucleoliG J Sullivan, J M Bridger, A P Cuthbert, et al.
Cancer Research|February 11, 1999
Functional evidence of novel tumor suppressor genes for cutaneous malignant melanomaC N Parris, J D Harris, D K Griffin, et al.
Cancer Research|October 27, 1998
Human chromosome 16 suppresses metastasis but not tumorigenesis in rat prostatic tumor cellsT Mashimo, M Watabe, A P Cuthbert, et al.
Carcinogenesis|August 1, 1996
Identification of human tumour suppressor genes by monochromosome transfer: rapid growth-arrest response mapped to 9p21 is mediated solely by the cyclin-D-dependent kinase inhibitor gene, CDKN2A (p16INK4A)N L England, A P Cuthbert, D A Trott, et al.
Pageof 3

Showing results (1-10 of 25) with videos related to

Sort By:
Pageof 3
Molecular Carcinogenesis|April 1, 1995
Novel use of a selectable fusion gene as an "in-out" marker for studying genetic loss in mammalian cellsD A Trott, A P Cuthbert, C M Todd, et al.
Carcinogenesis|February 1, 1995
Mechanisms involved in the immortalization of mammalian cells by ionizing radiation and chemical carcinogensD A Trott, A P Cuthbert, R W Overell, et al.
Annals of Human Genetics|December 4, 2003
SNP subset selection for genetic association studiesM C Byng, J C Whittaker, A P Cuthbert, et al.
Toxicology Letters|April 1, 1993
Cell immortalization as a key, rate-limiting event in malignant transformation: approaches toward a molecular genetic analysisR F Newbold, A P Cuthbert, M Themis, et al.
Gut|August 13, 2004
Genetic association between EPHX1 and Crohn's disease: population stratification, genotyping error, or random chance?A P Cuthbert, S A Fisher, C M Lewis, et al.
Oncogene|February 25, 1999
A telomere-independent senescence mechanism is the sole barrier to Syrian hamster cell immortalizationI Russo, A R Silver, A P Cuthbert, et al.
The EMBO Journal|June 2, 2001
Human acrocentric chromosomes with transcriptionally silent nucleolar organizer regions associate with nucleoliG J Sullivan, J M Bridger, A P Cuthbert, et al.
Cancer Research|February 11, 1999
Functional evidence of novel tumor suppressor genes for cutaneous malignant melanomaC N Parris, J D Harris, D K Griffin, et al.
Cancer Research|October 27, 1998
Human chromosome 16 suppresses metastasis but not tumorigenesis in rat prostatic tumor cellsT Mashimo, M Watabe, A P Cuthbert, et al.
Carcinogenesis|August 1, 1996
Identification of human tumour suppressor genes by monochromosome transfer: rapid growth-arrest response mapped to 9p21 is mediated solely by the cyclin-D-dependent kinase inhibitor gene, CDKN2A (p16INK4A)N L England, A P Cuthbert, D A Trott, et al.
Pageof 3