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Use of Isotopes and LC-MS-ESI-TOF for Mechanistic Studies of Tienilic Acid Metabolic Activation
Advances in Experimental Medicine and Biology - Biological Reactive Intermediates VI
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10.1007/978-1-4615-0667-6_17
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2001
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pp. 139-144
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Cited By ~ 12
Author(s):
Maya Belghazi
◽
Pascale Jean
◽
Sonia Poli
◽
Jean-Marie Schmitter
◽
Daniel Mansuy
◽
...
Keyword(s):
Metabolic Activation
◽
Mechanistic Studies
◽
Tienilic Acid
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References
The use of deuterium labelling in mechanistic studies of metabolic activation
Stable Isotopes
◽
10.1007/978-1-349-03328-7_7
◽
1978
◽
pp. 85-95
◽
Cited By ~ 3
Author(s):
M. Jarman
◽
P. B. Farmer
◽
A. B. Foster
◽
P. J. Cox
Keyword(s):
Metabolic Activation
◽
Mechanistic Studies
◽
Deuterium Labelling
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Mechanistic studies on the metabolic activation of acetaminophen in vivo
Chemical Research in Toxicology
◽
10.1021/tx00015a004
◽
1990
◽
Vol 3
(3)
◽
pp. 204-211
◽
Cited By ~ 15
Author(s):
Kurt Jurgen Hoffmann
◽
Donald B. Axworthy
◽
Thomas A. Baillie
Keyword(s):
Metabolic Activation
◽
Mechanistic Studies
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In Vivo Mechanistic Studies on the Metabolic Activation of 2-Phenylpropionic Acid in Rat
Journal of Pharmacology and Experimental Therapeutics
◽
10.1124/jpet.102.043174
◽
2003
◽
Vol 305
(1)
◽
pp. 250-256
◽
Cited By ~ 22
Author(s):
Chunze Li
◽
Mark P. Grillo
◽
Leslie Z. Benet
Keyword(s):
Metabolic Activation
◽
Mechanistic Studies
◽
Phenylpropionic Acid
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Mechanistic Studies of the Cationic Binding Pocket of CYP2C9 In Vitro and In Silico: Metabolism of Nonionizable Analogs of Tienilic Acid
Drug Metabolism and Disposition
◽
10.1124/dmd.114.059022
◽
2014
◽
Vol 42
(11)
◽
pp. 1955-1963
◽
Cited By ~ 1
Author(s):
Suzanne Tay
◽
Hoa Le
◽
Kevin A. Ford
◽
Sid D. Nelson
◽
S. Cyrus Khojasteh
◽
...
Keyword(s):
In Silico
◽
Binding Pocket
◽
Mechanistic Studies
◽
Tienilic Acid
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Author response for "Inosine pranobex enhances human NK cell cytotoxicity by inducing metabolic activation and NKG2D ligand expression"
10.1002/eji.201847948/v3/response1
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2019
◽
Author(s):
Michael T. McCarthy
◽
Da Lin
◽
Tomoyoshi Soga
◽
Julie Adam
◽
Christopher A OCallaghan
Keyword(s):
Nk Cell
◽
Metabolic Activation
◽
Author Response
◽
Nkg2d Ligand
◽
Cell Cytotoxicity
◽
Inosine Pranobex
◽
Ligand Expression
◽
Nk Cell Cytotoxicity
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Review for "Inosine pranobex enhances human NK cell cytotoxicity by inducing metabolic activation and NKG2D ligand expression"
10.1002/eji.201847948/v2/review1
◽
2019
◽
Keyword(s):
Nk Cell
◽
Metabolic Activation
◽
Nkg2d Ligand
◽
Cell Cytotoxicity
◽
Inosine Pranobex
◽
Ligand Expression
◽
Nk Cell Cytotoxicity
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Decision letter for "Inosine pranobex enhances human NK cell cytotoxicity by inducing metabolic activation and NKG2D ligand expression"
10.1002/eji.201847948/v2/decision1
◽
2019
◽
Keyword(s):
Nk Cell
◽
Metabolic Activation
◽
Nkg2d Ligand
◽
Cell Cytotoxicity
◽
Inosine Pranobex
◽
Ligand Expression
◽
Nk Cell Cytotoxicity
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Review for "Inosine pranobex enhances human NK cell cytotoxicity by inducing metabolic activation and NKG2D ligand expression"
10.1002/eji.201847948/v1/review1
◽
2018
◽
Keyword(s):
Nk Cell
◽
Metabolic Activation
◽
Nkg2d Ligand
◽
Cell Cytotoxicity
◽
Inosine Pranobex
◽
Ligand Expression
◽
Nk Cell Cytotoxicity
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Mechanistic studies of ipomoeassin F for its cell growth inhibition activity
10.1021/scimeetings.0c06615
◽
2020
◽
Author(s):
Lauren Andrews
◽
Wei Shi
◽
Kwabena Duah
Keyword(s):
Cell Growth
◽
Growth Inhibition
◽
Inhibition Activity
◽
Mechanistic Studies
◽
Cell Growth Inhibition
◽
Growth Inhibition Activity
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lmmunomodulatory Effects of Chronic Morphine Treatment: Pharmacologic and Mechanistic Studies
PsycEXTRA Dataset
◽
10.1037/e496412006-011
◽
1990
◽
Author(s):
Henry U. Bryant
◽
Edward W. Bernton
◽
John W. Holaday
Keyword(s):
Mechanistic Studies
◽
Morphine Treatment
◽
Chronic Morphine
◽
Chronic Morphine Treatment
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