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Aflatoxin: A 50-Year Odyssey of Mechanistic and Translational Toxicology

Since their discovery 50 years ago, the aflatoxins have become recognized as ubiquitous contaminants of the human food supply throughout the economically developing world. The adverse toxicological consequences of these compounds in populations are quite varied because of a wide range of exposures l... Full description

Journal Title: Toxicological Sciences 03/01/2011, Vol.120(Supplement 1), pp.S28-S48
Main Author: Kensler, T. W.
Other Authors: Roebuck, B. D. , Wogan, G. N. , Groopman, J. D.
Format: Electronic Article Electronic Article
Language: English
Subjects:
ID: ISSN: 1096-6080 ; E-ISSN: 1096-0929 ; DOI: http://dx.doi.org/10.1093/toxsci/kfq283
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recordid: crossref10.1093/toxsci/kfq283
title: Aflatoxin: A 50-Year Odyssey of Mechanistic and Translational Toxicology
format: Article
creator:
  • Kensler, T. W.
  • Roebuck, B. D.
  • Wogan, G. N.
  • Groopman, J. D.
subjects:
  • Aflatoxin
  • Biomarkers
  • Molecular Epidemiology
  • Chemoprevention
ispartof: Toxicological Sciences, 03/01/2011, Vol.120(Supplement 1), pp.S28-S48
description: Since their discovery 50 years ago, the aflatoxins have become recognized as ubiquitous contaminants of the human food supply throughout the economically developing world. The adverse toxicological consequences of these compounds in populations are quite varied because of a wide range of exposures leading to acute effects, including rapid death, and chronic outcomes such as hepatocellular carcinoma. Furthermore, emerging studies describe a variety of general adverse health effects associated with aflatoxin, such as impaired growth in children. Aflatoxin exposures have also been demonstrated to multiplicatively increase the risk of liver cancer in people chronically infected with hepatitis B virus (HBV) illustrating the deleterious impact that even low toxin levels in the diet can pose for human health. The public health impact of aflatoxin exposure is pervasive. Aflatoxin biomarkers of internal and biologically effective doses have been integral to the establishment of the etiologic role of this toxin in human disease through better estimates of exposure, expanded knowledge of the mechanisms of disease pathogenesis, and as tools for implementing and evaluating preventive interventions.
language: eng
source:
identifier: ISSN: 1096-6080 ; E-ISSN: 1096-0929 ; DOI: http://dx.doi.org/10.1093/toxsci/kfq283
fulltext: fulltext
issn:
  • 10966080
  • 1096-6080
  • 10960929
  • 1096-0929
url: Link


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descriptionSince their discovery 50 years ago, the aflatoxins have become recognized as ubiquitous contaminants of the human food supply throughout the economically developing world. The adverse toxicological consequences of these compounds in populations are quite varied because of a wide range of exposures leading to acute effects, including rapid death, and chronic outcomes such as hepatocellular carcinoma. Furthermore, emerging studies describe a variety of general adverse health effects associated with aflatoxin, such as impaired growth in children. Aflatoxin exposures have also been demonstrated to multiplicatively increase the risk of liver cancer in people chronically infected with hepatitis B virus (HBV) illustrating the deleterious impact that even low toxin levels in the diet can pose for human health. The public health impact of aflatoxin exposure is pervasive. Aflatoxin biomarkers of internal and biologically effective doses have been integral to the establishment of the etiologic role of this toxin in human disease through better estimates of exposure, expanded knowledge of the mechanisms of disease pathogenesis, and as tools for implementing and evaluating preventive interventions.
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89$$t=2$$K1=1999$$K2=10559965$$K4=8$$K5=9$$K6=733$$K7=cancer epidemiology biomarkers amp prevention$$K15=santella$$K16=santella$$K18=santella
90$$t=2$$K1=1961$$K2=14764687$$K4=192$$K6=1096$$K7=nature physical science london
91$$t=2$$K1=1996$$K2=01433334$$K3=10.1093/carcin/17.6.1385$$K4=17$$K5=6$$K6=1385$$K7=carcinogenesis$$K15=scholl$$K16=scholl$$K18=scholl
92$$t=2$$K1=2008$$K2=10559965$$K3=10.1158/1055-9965.EPI-07-2926$$K4=17$$K5=6$$K6=1436$$K7=cancer epidemiology biomarkers amp prevention$$K15=scholl$$K16=scholl$$K18=scholl
93$$t=2$$K1=2006$$K2=0893228X$$K3=10.1021/tx050251r$$K4=19$$K5=1$$K6=44$$K7=chemical research in toxicology$$K15=tung$$K16=tung$$K18=tung
94$$t=2$$K1=1997$$K2=0893228X$$K3=10.1021/tx960161+$$K4=10$$K5=10$$K6=1144$$K7=chemical research in toxicology$$K15=scholl$$K16=scholl$$K18=scholl
95$$t=2$$K1=2006$$K2=10559965$$K3=10.1158/1055-9965.EPI-05-0890$$K4=15$$K5=4$$K6=823$$K7=cancer epidemiology biomarkers amp prevention$$K15=scholl$$K16=scholl$$K18=scholl
96$$t=2$$K1=1971$$K2=00156264$$K3=10.1016/0015-6264(71)90080-0$$K4=9$$K5=4$$K6=501$$K7=food cosmetics toxicology$$K15=shank$$K16=shank$$K18=shank
97$$t=2$$K1=1979$$K2=00085472$$K4=39$$K5=11$$K6=4545$$K7=cancer research$$K15=sieber$$K16=sieber$$K18=sieber
98$$t=2$$K1=2007$$K2=01433334$$K3=10.1093/carcin/bgm027$$K4=28$$K5=6$$K6=1294$$K7=carcinogenesis
99$$t=2$$K1=2006$$K2=15529924$$K4=114$$K5=12$$K6=1898$$K7=environmental health perspectives$$K15=strosnider$$K16=strosnider$$K18=strosnider
100$$t=2$$K1=1999$$K2=02709139$$K3=10.1002/hep.510300204$$K4=30$$K5=2$$K6=379$$K7=hepatology baltimore md$$K15=sun$$K16=sun$$K18=sun
101$$t=2$$K1=1999$$K2=00275107$$K4=428$$K5=1$$K6=187$$K7=mutation research$$K15=sylla$$K16=sylla$$K18=sylla
102$$t=2$$K1=2001$$K2=00223166$$K4=131$$K5=11$$K6=3027S$$K7=journal of nutrition$$K15=talalay$$K16=talalay$$K18=talalay
103$$t=2$$K1=2008$$K2=01433334$$K3=10.1093/carcin/bgn008$$K4=29$$K5=2$$K6=411$$K7=carcinogenesis
104$$t=2$$K1=1994$$K2=02732300$$K3=10.1006/rtph.1994.1013$$K4=19$$K5=2$$K6=130$$K7=regulatory toxicology pharmacology rtp$$K15=thorgeirsson$$K16=thorgeirsson$$K18=thorgeirsson
105$$t=2$$K1=1975$$K2=00156264$$K3=10.1016/S0015-6264(75)80011-3$$K4=13$$K5=2$$K6=247$$K7=food cosmetics toxicology$$K15=tilak$$K16=tilak$$K18=tilak
106$$t=2$$K1=2007$$K2=03005771$$K3=10.1093/ije/dym122$$K4=36$$K5=5$$K6=1119$$K7=international journal of epidemiology
107$$t=2$$K1=2005$$K2=01406736$$K3=10.1016/S0140-6736(05)66661-5$$K4=365$$K5=9475$$K6=1950$$K7=lancet$$K15=turner$$K16=turner$$K18=turner
108$$t=2$$K1=1995$$K2=0893228X$$K3=10.1021/tx00044a006$$K4=8$$K5=2$$K6=218$$K7=chemical research in toxicology$$K15=ueng$$K16=ueng$$K18=ueng
109$$t=2$$K1=1962$$K2=14764687$$K4=195$$K6=1060$$K7=nature physical science london
110$$t=2$$K1=1998$$K2=0041008X$$K3=10.1006/taap.1998.8493$$K4=152$$K5=1$$K6=166$$K7=toxicology applied pharmacology$$K15=vanness$$K16=vanness$$K18=vanness
111$$t=2$$K1=1985$$K2=15321827$$K4=51$$K5=5$$K6=713$$K7=british journal of cancer$$K15=vanrensburg$$K16=vanrensburg$$K18=vanrensburg
112$$t=2$$K1=1995$$K2=10559965$$K4=4$$K5=5$$K6=475$$K7=cancer epidemiology biomarkers amp prevention$$K15=vatanasapt$$K16=vatanasapt$$K18=vatanasapt
113$$t=2$$K1=2005$$K2=0265203X$$K3=10.1080/02652030500111129$$K4=22$$K5=3$$K6=270$$K7=food additives contaminants$$K15=wang$$K16=wang$$K18=wang
114$$t=2$$K1=1996$$K2=10559965$$K4=5$$K5=4$$K6=253$$K7=cancer epidemiology biomarkers amp prevention$$K15=wang$$K16=wang$$K18=wang
115$$t=2$$K1=1999$$K2=00278874$$K3=10.1093/jnci/91.4.347$$K4=91$$K5=4$$K6=347$$K7=jnci journal of the national cancer institute$$K15=wang$$K16=wang$$K18=wang
116$$t=2$$K1=1996$$K2=00207136$$K3=10.1002/(SICI)1097-0215(19960904)67:5<620::AID-IJC5>3.0.CO;2-W$$K4=67$$K5=5$$K6=620$$K7=international journal of cancer journal international du cancer$$K15=wang$$K16=wang$$K18=wang
117$$t=2$$K1=2008$$K2=19440049$$K4=25$$K6=622
118$$t=2$$K1=2002$$K2=18793185$$K4=181 182$$K6=43
119$$t=2$$K1=1992$$K2=10559965$$K4=1$$K5=3$$K6=229$$K7=cancer epidemiology biomarkers amp prevention$$K15=wild$$K16=wild$$K18=wild
120$$t=2$$K1=2002$$K2=02678357$$K3=10.1093/mutage/17.6.471$$K4=17$$K5=6$$K6=471$$K7=mutagenesis$$K15=wild$$K16=wild$$K18=wild
121$$t=2$$K1=2009$$K2=15320456$$K3=10.1016/j.cbpc.2008.12.002$$K4=149$$K5=2$$K6=175$$K7=comparative biochemistry physiology toxicology amp pharmacology cbp$$K15=williams$$K16=williams$$K18=williams
122$$t=2$$K1=1974$$K2=00156264$$K3=10.1016/0015-6264(74)90239-9$$K4=12$$K5=5$$K6=681$$K7=food cosmetics toxicology$$K15=wogan$$K16=wogan$$K18=wogan
123$$t=2$$K1=2004$$K2=15205851$$K4=38$$K5=15$$K6=4049$$K7=environmental science amp technology amp t$$K15=wu$$K16=wu
124$$t=2$$K1=2010$$K2=19440049$$K4=27$$K6=496
125$$t=2$$K1=2006$$K2=08991987$$K3=10.1002/mc.20228$$K4=45$$K5=6$$K6=431$$K7=molecular carcinogenesis$$K15=yang$$K16=yang$$K18=yang
126$$t=2$$K1=2006$$K2=00085472$$K3=10.1158/0008-5472.CAN-05-3823$$K4=66$$K5=4$$K6=2488$$K7=cancer research$$K15=yates$$K16=yates$$K18=yates
127$$t=2$$K1=1985$$K2=00831921$$K4=69$$K6=47$$K7=jnci monographs$$K15=yeh$$K16=yeh$$K18=yeh
128$$t=2$$K1=1989$$K2=00085472$$K4=49$$K5=9$$K6=2506$$K7=cancer research$$K15=yeh$$K16=yeh$$K18=yeh
129$$t=2$$K1=2005$$K2=11301406$$K4=22$$K5=4$$K6=194$$K7=revista iberoamericana de micolog x00a0 x00a0 x00a0 x00a0 rgano de la asociaci x00a0 x00a0 n espa x00a0 x00a0 ola de especialistas micolog x00a0 x00a0$$K15=yu$$K16=yu
130$$t=2$$K1=1997$$K2=01688278$$K3=10.1016/S0168-8278(97)80178-X$$K4=27$$K5=2$$K6=320$$K7=journal of hepatology$$K15=yu$$K16=yu
131$$t=2$$K1=1992$$K2=00278424$$K3=10.1073/pnas.89.6.2399$$K4=89$$K5=6$$K6=2399$$K7=pnas$$K15=zhang$$K16=zhang$$K18=zhang
date2011-03-01