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Development of new deoxycytidine kinase inhibitors and noninvasive in vivo evaluation using positron emission tomography.

Authors :
Murphy, Jennifer M
Murphy, Jennifer M
Armijo, Amanda L
Nomme, Julian
Lee, Chi Hang
Smith, Quentin A
Li, Zheng
Campbell, Dean O
Liao, Hsiang-I
Nathanson, David A
Austin, Wayne R
Lee, Jason T
Darvish, Ryan
Wei, Liu
Wang, Jue
Su, Ying
Damoiseaux, Robert
Sadeghi, Saman
Phelps, Michael E
Herschman, Harvey R
Czernin, Johannes
Alexandrova, Anastassia N
Jung, Michael E
Lavie, Arnon
Radu, Caius G
Murphy, Jennifer M
Murphy, Jennifer M
Armijo, Amanda L
Nomme, Julian
Lee, Chi Hang
Smith, Quentin A
Li, Zheng
Campbell, Dean O
Liao, Hsiang-I
Nathanson, David A
Austin, Wayne R
Lee, Jason T
Darvish, Ryan
Wei, Liu
Wang, Jue
Su, Ying
Damoiseaux, Robert
Sadeghi, Saman
Phelps, Michael E
Herschman, Harvey R
Czernin, Johannes
Alexandrova, Anastassia N
Jung, Michael E
Lavie, Arnon
Radu, Caius G
Source :
Journal of medicinal chemistry; vol 56, iss 17, 6696-6708; 0022-2623
Publication Year :
2013

Abstract

Combined inhibition of ribonucleotide reductase and deoxycytidine kinase (dCK) in multiple cancer cell lines depletes deoxycytidine triphosphate pools leading to DNA replication stress, cell cycle arrest, and apoptosis. Evidence implicating dCK in cancer cell proliferation and survival stimulated our interest in developing small molecule dCK inhibitors. Following a high throughput screen of a diverse chemical library, a structure-activity relationship study was carried out. Positron Emission Tomography (PET) using (18)F-L-1-(2'-deoxy-2'-FluoroArabinofuranosyl) Cytosine ((18)F-L-FAC), a dCK-specific substrate, was used to rapidly rank lead compounds based on their ability to inhibit dCK activity in vivo. Evaluation of a subset of the most potent compounds in cell culture (IC50 = ∼1-12 nM) using the (18)F-L-FAC PET pharmacodynamic assay identified compounds demonstrating superior in vivo efficacy.

Details

Database :
OAIster
Journal :
Journal of medicinal chemistry; vol 56, iss 17, 6696-6708; 0022-2623
Notes :
application/pdf, Journal of medicinal chemistry vol 56, iss 17, 6696-6708 0022-2623
Publication Type :
Electronic Resource
Accession number :
edsoai.on1367387312
Document Type :
Electronic Resource