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Cancer Research
|
November 1, 1989
Drug-induced DNA hypermethylation and drug resistance in human tumors
J Nyce
Endocrine-Related Cancer
|
December 2, 2020
Alert to US physicians: DHEA, widely used as an OTC androgen supplement, may exacerbate COVID-19
Jonathan Nyce
Somatic Cell and Molecular Genetics
|
November 1, 1991
Gene silencing in mammalian cells by direct incorporation of electroporated 5-methyl-2'-deoxycytidine 5'-triphosphate
J Nyce
Current Opinion in Allergy and Clinical Immunology
|
January 31, 2004
Respirable antisense oligonucleotides: a new, third drug class targeting respiratory disease
Jonathan Nyce
Cancer Drug Resistance (Alhambra, Calif.)
|
May 18, 2022
Components of the human-specific, p53-mediated "kill switch" tumor suppression mechanism are usurped by human tumors, creating the possibility of therapeutic exploitation
Jonathan Nyce
Endocrine-Related Cancer
|
December 10, 2019
A lex naturalis delineates components of a human-specific, adrenal androgen-dependent, p53-mediated 'kill switch' tumor suppression mechanism
Jonathan Wesley Nyce
Trends in Pharmacological Sciences
|
April 2, 1999
Insight into adenosine receptor function using antisense and gene-knockout approaches
J W Nyce
Endocrine-Related Cancer
|
November 8, 2018
Species-specific mechanisms of tumor suppression are fundamental drivers of vertebrate speciation: critical implications for the 'war on cancer'
Jonathan W Nyce
Angewandte Chemie (International Ed. in English)
|
January 29, 2000
Formal Three-Electron Reduction by an f-Element Complex: Formation of
Evans, Nyce, Ziller
Endocrine-Related Cancer
|
June 27, 2018
Detection of a novel, primate-specific 'kill switch' tumor suppression mechanism that may fundamentally control cancer risk in humans: an unexpected twist in the basic biology of TP53
Jonathan W Nyce
Page
of 15
Search research articles
Search
Showing results (1-10 of 148) with videos related to
Sort By:
Page
of 15
Cancer Research
|
November 1, 1989
Drug-induced DNA hypermethylation and drug resistance in human tumors
J Nyce
Endocrine-Related Cancer
|
December 2, 2020
Alert to US physicians: DHEA, widely used as an OTC androgen supplement, may exacerbate COVID-19
Jonathan Nyce
Somatic Cell and Molecular Genetics
|
November 1, 1991
Gene silencing in mammalian cells by direct incorporation of electroporated 5-methyl-2'-deoxycytidine 5'-triphosphate
J Nyce
Current Opinion in Allergy and Clinical Immunology
|
January 31, 2004
Respirable antisense oligonucleotides: a new, third drug class targeting respiratory disease
Jonathan Nyce
Cancer Drug Resistance (Alhambra, Calif.)
|
May 18, 2022
Components of the human-specific, p53-mediated "kill switch" tumor suppression mechanism are usurped by human tumors, creating the possibility of therapeutic exploitation
Jonathan Nyce
Endocrine-Related Cancer
|
December 10, 2019
A lex naturalis delineates components of a human-specific, adrenal androgen-dependent, p53-mediated 'kill switch' tumor suppression mechanism
Jonathan Wesley Nyce
Trends in Pharmacological Sciences
|
April 2, 1999
Insight into adenosine receptor function using antisense and gene-knockout approaches
J W Nyce
Endocrine-Related Cancer
|
November 8, 2018
Species-specific mechanisms of tumor suppression are fundamental drivers of vertebrate speciation: critical implications for the 'war on cancer'
Jonathan W Nyce
Angewandte Chemie (International Ed. in English)
|
January 29, 2000
Formal Three-Electron Reduction by an f-Element Complex: Formation of
Evans, Nyce, Ziller
Endocrine-Related Cancer
|
June 27, 2018
Detection of a novel, primate-specific 'kill switch' tumor suppression mechanism that may fundamentally control cancer risk in humans: an unexpected twist in the basic biology of TP53
Jonathan W Nyce
Page
of 15