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Kenneth A. Jacobson

Molecular Recognition NIDDK, NIH, Bethesda, MD, United States 
adenosine, P2 receptors
"Kenneth A Jacobson"
Mean distance: 18.3 (cluster 46)
Cross-listing: Chemistry Tree


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Murray Goodman grad student 1981 UCSD (Chemistry Tree)
 (Monodisperse peptide conjugates of catecholamines : new congeners and carrier molecules)
Abraham Patchornik post-doc 1981-1983 Weizmann Institute (Chemistry Tree)


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Anna Junker post-doc
Bin Xu post-doc NIH (Chemistry Tree)
Bilha Fischer post-doc 1992-1993 Bar-Ilan (Chemistry Tree)
Emidio Camaioni post-doc 1997-1999 University of Perugia (Chemistry Tree)
Stefano Moro post-doc 1997-1999 University of Padua (Chemistry Tree)
Carsten Hoffmann post-doc 1998-2000 University of Würzburg (Chemistry Tree)
Yong-Chul Kim post-doc 1998-2000 Gwangju Institute of Science and Technology (Chemistry Tree)
Hak-Sung Kim post-doc 1999-2003 Wonkwang University (Chemistry Tree)
Stefano Costanzi post-doc 2002-2004 American University of Washington, DC (Chemistry Tree)


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Ad P. IJzerman collaborator 1992- (Chemistry Tree)
Christa E. Müller collaborator 1992- University of Bonn, Germany
Geoffrey Burnstock collaborator 1993- Univerisity College London
Bruce T. Liang collaborator 1996- University of Connecticut School of Medicine
Lak Shin Jeong collaborator 2003- Seoul National University
John Auchampach collaborator 2008- (Cell Biology Tree)
Raymond C. Stevens collaborator 2011- USC (Chemistry Tree)
Gary L. Stiles collaborator 1987-1999 Duke Medical School
John W. Daly collaborator 1985-2003 NIDDK, National Institutes of Health
Bertil B. Fredholm collaborator 1985-2011 Karolinska
T. Kendall Harden collaborator 1993-2016 University of North Carolina at Chapel Hill School of Medicine (Chemistry Tree)
BETA: Related publications


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Salmaso V, Jacobson KA. (2019) Survey of ribose ring pucker of signaling nucleosides and nucleotides. Nucleosides, Nucleotides & Nucleic Acids. 1-20
Federico S, Margiotta E, Paoletta S, et al. (2019) Pyrazolo[4,3-][1,2,4]triazolo[1,5-]pyrimidines to develop functionalized ligands to target adenosine receptors: fluorescent ligands as an example. Medchemcomm. 10: 1094-1108
Abel B, Tosh DK, Durell SR, et al. (2019) Evidence for the Interaction of A Adenosine Receptor Agonists at the Drug-Binding Site(s) of Human P-glycoprotein (ABCB1). Molecular Pharmacology
Lu Y, Qin S, Zhang B, et al. (2019) Accelerating the Throughput of Affinity Mass Spectrometry-Based Ligand Screening towards a G Protein-Coupled Receptor. Analytical Chemistry
Coppi E, Cherchi F, Fusco I, et al. (2019) Adenosine A3 receptor activation inhibits pronociceptive N-type Ca2+ currents and cell excitability in dorsal root ganglion neurons. Pain. 160: 1103-1118
Jacobson KA, Tosh DK, Jain S, et al. (2019) Historical and Current Adenosine Receptor Agonists in Preclinical and Clinical Development. Frontiers in Cellular Neuroscience. 13: 124
Coppi E, Cherchi F, Fusco I, et al. (2019) Title: Adenosine A3 receptor activation inhibits pro-nociceptive N-type Ca2+ currents and cell excitability in dorsal root ganglion neurons. Pain
Junker A, Renn C, Dobelmann C, et al. (2019) Structure-Activity Relationship of Purine and Pyrimidine Nucleotides as Ecto-5'-Nucleotidase (CD73) Inhibitors. Journal of Medicinal Chemistry
Xiao C, Liu N, Jacobson KA, et al. (2019) Physiology and effects of nucleosides in mice lacking all four adenosine receptors. Plos Biology. 17: e3000161
Cacciari B, Crepaldi P, Cheng CY, et al. (2019) Structure Activity Relationship of 4-Amino-2-thiopyrimidine Derivatives as Platelet Aggregation Inhibitors. Medicinal Chemistry (Shariqah (United Arab Emirates))
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