Reacciones de reducción, oxidación y conjugación del aflatoxicol y la aflatoxina B1 in vitro a partir de extractos de hígado provenientes de cuatro especies de aves de importancia comercial

dc.contributor.advisorDiaz, Gonzálospa
dc.contributor.authorMurcia Gutiérrez, Hansen Wilberspa
dc.contributor.researchgroupGrupo de Investigación en Toxicología y Nutrición Aviarspa
dc.date.accessioned2020-10-05T15:20:24Zspa
dc.date.available2020-10-05T15:20:24Zspa
dc.date.issued2020-09-09spa
dc.description.abstractEnzymatic parameters of in vitro metabolism of aflatoxin B1 (AFB1) in chicken, quail, turkey and duck are related to resistance to AFB1 toxic effects. Duck, a highly sensitive species, produce the higher ammount of AFB1-8,9-epoxide (AFBO) and AFB1 dihydrodiol (AFB1-dhd). AFBO is the bioactivated genotoxic form of AFB1 and can adduct guanine nucleotides in DNA. Spontaneous hydrolisis of AFBO produces AFB1, which in turns rearranges in a pH dependent manner to AFB1 dialdehyde. AFB1 dialdehyde adducts lysine in proteins and therefore leads to cytotoxicity. Enzymatic reduction of AFB1 dialdehyde occurs through aflatoxin B1 aldehyde reductase (AFAR) enzyme and products of this enzyme activity are AFB1 monoalcohol and AFB1 dialcohol (detoxifying products). It was observed that turkey (intermediate sensitive) and chicken (resistant species) possess the highest AFAR activity. In regards of aflatoxicol (reduced form of AFB1) production, it is related to more resistance species like chicken, quail, and turkey, as way to avoid AFB1 epoxidation, meaning that AFBO is produced at lower rates. In silico simulation demonstrated that duck species produce the higher amount of guanine and lysine adducts, in contrast to the other poultry species studied. This fact explains why duck is the only species that develop hepatocarcinoma and severe adverse effects. Apparently, AFB1 dialdehyde is eliminated as AFB1 dialcohol.spa
dc.description.abstractLos parámetros enzimáticos del metabolismo de la aflatoxina B1 (AFB1) en aves de producción como el pollo, la codorniz, el pavo y el pato se encuentran relacionados con la tolerancia los efectos tóxicos de esta micotoxina. El pato (especie sensible) produce la mayor cantidad de AFB1-8,9-epó xido (AFBO) y AFB1 dihidrodiol (AFB1-dhd). El AFBO es la forma bioactiva genotóxica de la AFB1, ya que genera aductos con guanina. La hidrólisis espontánea del AFBO produce AFB1-dhd, el cual de manera dependiente del pH sufre un rearreglo a AFB1 dialdehído. El dialdehído genera aductos con la lisina de las proteínas y por consiguiente, citotoxicidad. La reducción del dialdeh´ıdo ocurre por medio de la enzima enzima aflatoxina B1 aldeh´ıdo reductasa (AFAR), la cual produce AFB1 monoalcohol y AFB1 dialcohol (productos de detoxificación). Se observó que el pavo (sensibilidad intermedio) y el pollo (resistente) tienen la mayor actividad AFAR. La producción de aflatoxicol (forma reducida de la AFB1) permite a especies más resistentes como el pollo, la codorniz y el pavo evitar la epoxidación de la AFB1, es decir, la producción de AFBO. La simulación in silico demostró que el pato es el que más produce aductos con guanina y lisina, a diferencia de las otras especies, lo cual explica por que el pato es la ´unico especie que desarrolla hepatocinoma, además de signos severos. Al parecer, la AFB1 dialdehído es eliminada como dialcohol.spa
dc.description.additionalLínea de Investigación: Metabolismo hepático in vitro de xenobióticosspa
dc.description.degreelevelDoctoradospa
dc.description.projectDoctorados Nacionales Convocatoria 647spa
dc.description.sponsorshipColcienciasspa
dc.format.extent138spa
dc.format.mimetypeapplication/pdfspa
dc.identifier.citationMurcia, H.W.: Reacciones de reducción, oxidación y conjugación del aflatoxicol y la aflatoxina B1 in vitro a partir de extractos de hígado provenientes de cuatro especies de aves de importancia comercial. Tesis de Doctorado. Instituto de Biotecnología. Universidad Nacional de Colombia Sede Bogotá. 2020.spa
dc.identifier.urihttps://repositorio.unal.edu.co/handle/unal/78523
dc.language.isospaspa
dc.publisher.branchUniversidad Nacional de Colombia - Sede Bogotáspa
dc.publisher.programBogotá - Ciencias - Doctorado en Biotecnologíaspa
dc.relationMurcia, H.W., Diaz, G.J. 2020. Dealing with aflatoxin B1 dihydrodiol acute effects: Impact of aflatoxin B1-aldehyde reductase enzyme activity in poultry species tolerance to AFB1 toxic effects. PLoS One 15: e0235061. ISSN: 1932-6203. Publicado 22 junio 2020. San Francisco, USA. https://doi.org/10.1371/journal.pone.0235061.spa
dc.relationMurcia, H.W., Diaz, G.J. 2020. In vitro hepatic aflatoxicol production is related to a higher resistance to aflatoxin B1 in poultry. Scientific Reports 10: 5508. ISSN: 2045-2322. Publicado: 26 marzo 2020. Londres, Reino Unido. https://doi.org/10.1038/s41598-020-62415-yspa
dc.relationDiaz, G.J., Murcia, H.W. 2019. An unusually high production of hepatic aflatoxin B1-dihydrodiol, the possible explanation for the high susceptibility of ducks to aflatoxin B1. Scientific Reports 9: 8010. ISSN: 2045-2322. Publicado: 29 mayo 2019. Londres, Reino Unido. https://doi.org/10.1016/0003-2697(86)90091-6spa
dc.relation.referencesAdams, J.G.: Epizootia espont´anea de hepatitis t´oxica en porcinos atribuida a aflatoxicosis. En: Rev. Ins. Col. Agric. 9 (1974), p. 31{48spa
dc.relation.referencesAguilar, S.P. ; Cerutti, P.: Aflatoxin B1 induces de transversion of G - T in codon 249 of the p53 tumor suppressor gene in human hepatocytes. En: Proc. Natl. Acad. Sci. USA. 90 (1993), p. 8586{8590spa
dc.relation.referencesAhluwalia, K.H. ; Waxman, D.J.: Sexual dimorphism of rat liver gene expression: Regulatory role of growth hormone revealed by deoxyribonucleic acid microarray analysis. En: Mol. Endocrinol. 18 (2004), p. 747{760spa
dc.relation.referencesAly, S.A. ; Anwer, W.: Effect of naturally contaminated feed with aflatoxin on performance of laying hens and the carry over of aflatoxin B1 residues in table eggs. En: Pak. J. Nutr. 8 (2009), p. 181{186spa
dc.relation.referencesAmirkhizi, M. Arefhosseini-S.R. ; Ansarin, M.: Aflatoxin B1 in eggs and chicken livers by dispersive liquid-liquid microextraction and HPLC. En: Food Addit. Contam. Part B Surveill. 8 (2015), p. 245{249spa
dc.relation.referencesArmbrecht, B. H. ; Fitzhugh, O. G.: Mycotoxins II: The biological assay of aflatoxin in Peking White ducklings. En: Toxicol. Appl. Pharmacol. 6 (1964), p. 421{426spa
dc.relation.referencesArmbrecht, F. A. Smith-H. R. ; Nelson, A. A.: Mycotoxins. I. Studies of aflatoxin derived from contaminated peanut meal and certain strains of Aspergillus flavus. En: J. Assoc. Off. Agric. Chem. 46 (1963), p. 805{817spa
dc.relation.referencesAsao, G. Abdel-Kader M.M. Chang S.B. Wick E. ; Wogan, G.N.: The structures of aflatoxins B and G1. En: J. Am. Chem. Soc. 87 (1965), p. 882{886spa
dc.relation.referencesAzzam, A.H. ; Gabal, M.A.: Aflatoxin and immunity in layer hens. En: Avian Pathol 27 (1998), p. 570{577spa
dc.relation.referencesBaertschi, K.D. Shimada-T. Harris T. ; Guengerich, F.P.: Comparison rates of enzymatic oxidation of aflatoxin B1, aflatoxin G1, and sterigmatocystin and activities of the epoxides in forming guanyl-N 7 adducts and inducing different genetic responses. En: Chem. Res. Toxicol. 2 (1989), p. 114{122spa
dc.relation.referencesBailey, G.S. ; Loveland, P.M. ; Pereira, C. ; Pierce, D. ; Hendricks, J.D. ; Groopman, J.D.: Quantitative carcinogenesis and dosimetry in rainbow trout for aflatoxin B1 and aflatoxicol, two aflatoxins that form the same DNA adduct. En: Mutat. Res. 313 (1994), p. 25{38spa
dc.relation.referencesBartlet, A.L. ; Kirinya, L.M.: Activities of mixed function oxidases, UDPglucuronyl transferase and sulphate conjugation enzymes in Galliformes and Anseriformes. En: Q. J. Exp. Physiol. 61 (1976), p. 105{119spa
dc.relation.referencesBechtel, D.H.: Molecular dosimetry of hepatic aflatoxin B1-DNA adducts: Linear correlation with hepatic cancer risk. En: Regul. Toxicol. Pharmacol. 10 (1989), p. 74{81spa
dc.relation.referencesBedard, L.L. ; Massey, T.E.: Aflatoxin B1-induced DNA damage and its repair. En: Cancer Lett. 241 (2006), p. 174{183spa
dc.relation.referencesBennet, J.W. ; Klich, M.: Mycotoxins. En: Clin. Microbiol. Rev 16 (2003), p. 497{516spa
dc.relation.referencesBennett, J.M. ; Wogan, G.N.: Excretion of aflatoxin-guanine adduct in the urine of aflatoxin B1-treated rats. En: Cancer Res. 41 (1981), p. 650-654spa
dc.relation.referencesBhatnagar-Mathur, S. Bhatnagar-Panwar M. Waliyar F. ; Sharma, K.K.: Biotechnological advances for combating Aspergillus flavus and aflatoxin contamination in crops. En: Plant Sci. 234 (2015), p. 119-132spa
dc.relation.referencesBintvihok, W. ; Doi, K.: Acute toxicity of aflatoxin B1 in three species of domestic fowls. En: J. Toxicol. Pathol. 10 (1997), p. 149-152spa
dc.relation.referencesBlount, W.P.: Turkey "X"disease. En: Turkeys 9 (1961), p. 52spa
dc.relation.referencesBudavari, S: Aflatoxin B1. In: The Merk Index, 12th edition. Whitehouse Station, NJ : Merck and Co., 1996spa
dc.relation.referencesBurt, R.K. ; Thorgeirsson, S.S.: Coinduction of MDR-1 Multidrug-resistance and cytochrome P-450 genes in rat liver by xenobiotics. En: J. Nat. Cancer. Inst. 80 (1988), p. 138-1386spa
dc.relation.referencesCéspedes , A.E. ; Diaz, G.J.: Analysis of aflatoxins in poultry and pig feeds and feedstuffs used in Colombia. En: J. AOAC Int. 80 (1997), p. 1215-1219spa
dc.relation.referencesChang, J. Wu K. ; Hsiung, K.: In vitro interconversion of aflatoxin B1 and aflatoxicol by rat erythrocytes. En: Biochem. Pharmacol. 34 (1985), p. 2566-2569spa
dc.relation.referencesChen, N. Cotter P. ; Applegate, T.J.: Growth, serum biochemistry, complement activity, and liver gene expression responses of Pekin ducklings to graded levels of cultured aflatoxin B1. En: Poult. Sci. 93 (2014), p. 2028-2036spa
dc.relation.referencesChen, R. Zhang Q. Shafer D. ; Applegate, T.J.: Effects of dietary protein concentration on performance and nutrient digestibility in Pekin ducks during aflatoxicosis. En: Poult. Sci. 95 (2016), p. 834-841spa
dc.relation.referencesCheng, T. Pang V. ; Chen, B.: Effects of aflatoxin and carotenoids on growth performance and immune response in mule ducklings. En: Comp. Biochem. Physiol. Part C 128 (2001), p. 19-26spa
dc.relation.referencesCh’in, J.J. ; Devlin, T.M.: The distribution and intracellular translocation of aflatoxin B1 in isolated hepatocytes. En: Biochem. Biophys. Res. Commun. 122 (1984), p. 1 - 8spa
dc.relation.referencesCoordinators, NCBI R.: Database resources of the National Center for Biotechnology Information. En: Nucleic Acids Res. 46 (2018), p. D8-D13spa
dc.relation.referencesCouncil for Agricultural Science and Technology. Mycotoxins: Risk in plant, animal and human systems. 2003spa
dc.relation.referencesCroy, R.G. ; Wogan, G.N.: Quantitative comparison of covalent aflatoxin-DNA adducts formed in rat and mouse livers and kidneys. En: J. Nat. Cancer. Inst. 66 (1981), p. 761-768spa
dc.relation.referencesCullen, J.M. ; Newberne, P.M.: Acute hepatotoxicity of aflatoxins. En: The toxicology of aflatoxins. Human health, veterinary, and agricultural significance. San Diego : Academic Press, 1994spa
dc.relation.referencesCullen, P.L. Sherman G.J. Hong X. ; Newbold, J.E.: Hepatic neoplasms in aflatoxin B1-treated, congenital duck hepatitis B virus-infected, and virus-free Pekin ducks. En: Cancer Res. 50 (1990), p. 4072{4080spa
dc.relation.referencesDai, F.W. ; Roe, R.M: Glutathione S-transferases in the Japanese quail: Tissue distribution and purification of the liver isozymes. En: J. Biochem. Toxicol. 11 (1996), p. 85-96spa
dc.relation.referencesDalloul, R.A. Zimin A.V. Aslam L. Beal K. ; et al.: Multi-Platform Next-Generation sequencing of the domestic turkey (Meleagris gallopavo): Genome assembly and analysis. En: PLoS Biol. 8 (2010), p. e1000475.spa
dc.relation.referencesDeeley, R.G. ; Cole, S.P.C.: Substrate recognition and transport by multidrug resistant protein 1 (ABCC1). En: FEBS Lett. 580 (2006), p. 1103-1111spa
dc.relation.referencesDegen, G.H. ; Neumann, H.G.: Differences in aflatoxin B1-susceptibility of rat and mouse are correlated with the capability in vitro to inactivate aflatoxin B1- epoxide. En: Carcinogenesis 2 (1981), p. 299-306spa
dc.relation.referencesDelcuve, R. Bailey G. ; Davie, J.R.: Gene-specific differences in the aflatoxin B1 adduction of chicken erythrocyte chromatin. En: Cancer Res. 48 (1981), p. 7146-7149spa
dc.relation.referencesDetroy, R.W. ; Hesseltine, C.W.: Isolation and biological activity of a microbial conversion product of aflatoxin B1. En: Nature 219 (1968), p. 967spa
dc.relation.referencesDetroy, R.W. ; Hesseltine, C.W.: Aflatoxicol: Structure of a new transformation product of aflatoxin B1. En: Can. J. Biochem. 48 (1970), p. 830-832spa
dc.relation.referencesDiaz, A. ; Botero, L.: Evaluation of the ability of a feed additive to ameliorate the adverse effects of aflatoxins in turkey poults. En: Br. Poult. Sci 50 (2009b), p. 240-250spa
dc.relation.referencesDiaz, G. J.: Toxicolog´ıa de las micotoxinas y sus efectos en avicultura comercial. Zaragoza, Espa~na : Editorial Acribia, S.A., 2020spa
dc.relation.referencesDiaz, G. J. ; Calabrese, E. ; Blaint, R.: Aflatoxicosis in chickens (Gallus gallus): An example of Hormesis? En: Poult. Sci. 87 (2008), p. 727 -732spa
dc.relation.referencesDiaz, G.J. ; Murcia, H.W.: Biotransformation of aflatoxin B1 and its relationship with the differential toxicological response to aflatoxin in commercial poultry species. En: Aflatoxins: Biochemistry and Molecular Biology. Croatia : Intech Open Access, 2011spa
dc.relation.referencesDiaz, G.J. ; Murcia, H.W.: An unusually high production of hepatic aflatoxin B1- dihydrodiol, the possible explanation for the high susceptibility of ducks to aflatoxin B1. En: Sci.Rep. 9 (2019), p. 8010spa
dc.relation.referencesDiaz, G.J. ; Sugahara, M.: Individual and combined effects of aflatoxin and gizzerosine in broiler chickens. En: Br. Poult. Sci 36 (1995), p. 729-736spa
dc.relation.referencesDiaz, J. G. ; Murcia, H. W. ; Cepeda, S. M.: Bioactivation of aflatoxin B1 by turkey liver microsomes: responsible cytochrome P450 enzymes. En: Br. Poult. Sci. 51 (2010a), p. 828 - 837spa
dc.relation.referencesDiaz, J. G. ; Murcia, H. W. ; Cepeda, S. M.: Cytochrome P450 enzymes involved in the metabolism of aflatoxin B1 in chickens and quail. En: Poult. Sci. 89 (2010b), p. 2461 - 2469spa
dc.relation.referencesDiaz, J. G. ; Murcia, H. W. ; Cepeda, S. M. ; J., Boermans H.: The role of selected cytochrome P450 enzymes on the bioactivation of aflatoxin B1 by duck liver microsomes. En: Avian Pathol. 39 (2010c), p. 279 -285spa
dc.relation.referencesDiaz, M. ; Acuna ~ , A.: Prevalence of Aspergillus species on selected colombian animal feedstuffs and ability of Aspergillus section Flavi to produce aflatoxins. En: World Micotoxin J. II (2009a), p. 31-34spa
dc.relation.referencesDiaz, N.S. ; Rojas, Y.: Occurrence of aflatoxins in selected colombian foods. En: Mycotoxin Res. 17 (2001), p. 15-20spa
dc.relation.referencesEaton, D.L. ; Gallagher, E.P.: Mechanisms of aflatoxin carcinogenesis. En: Annu. Rev. Pharmacol. Toxicol. 34 (1994), p. 135-172spa
dc.relation.referencesEaton, H.S. ; Neal, G.E.: Biotransformation of aflatoxins, in: Eaton, D.L., Groopman, J.D. (Eds.), The Toxicology of Aflatoxins. Human Health, Veterinary and Agricultural Significance. San Diego : Academic Press, 1994spa
dc.relation.referencesEaton, K.M. Bammler T.K. Riley R.T. Voss K.: Hepatotoxic mycotoxins. In: Comprehensive Toxicology, Volume 2, Hepatic Toxicology. Third Edition. Amsterdam : Elsevier Science, 2018spa
dc.relation.referencesEllis, C.M. ; Hayes, J.D.: Characterization of the rat aflatoxin B1 aldehyde reductase gene AKR7A1. Structure and chromosomal localization of AKR7A1 as well as identification of antioxidant elements in the gene promoter. En: Carcinogenesis 24 (2003), p. 727-737spa
dc.relation.referencesEllis, D.J. Neal G. ; Hayes, J.D.: An ethoxyquin-inducible aldehyde reductase from rat liver that izes aflatoxin B1 defines a subfamily of aldo-keto reductases. En: Proc. Natl. Acad. Sci. 90 (1993), p. 10350-10354spa
dc.relation.referencesElzupir, A.S. ; Dutton, M.F.: The ocurrence of aflatoxin in rice worldwide: a review. En: Toxin Rev. 31 (1994), p. 37-42spa
dc.relation.referencesEsaki, H. ; Kumagai, S.: Glutathione-S-transferase activity towards aflatoxin epoxide in livers of mastomys and other rodents. En: Toxicon 40 (2002), p. 941 - 945spa
dc.relation.referencesEsmaeilishirazifard, E. ; Keshavarz, T.: Aflatoxin occurrence. En: Aflatoxins: Food sources, occurrence and toxicological effects. New York : Nova Publishers, 2011spa
dc.relation.referencesVan der Fels-Klerx, C. ; Battilani, P.: Modelling climate change impacts on mycotoxin contamination. En: World Mycotoxin J. 9 (2016), p. 717-726spa
dc.relation.referencesFernandez ´ , M.T. Gascon M. Ramos J. G´omez J. Luco D. ; Chavez ´ , G.: Variations of clinical biochemical parameters of laying hens and broiler chickens fed aflatoxin containing feed. En: Avian Pathol. 23 (1994), p. 37-47spa
dc.relation.referencesFringuelli, R. Pizzo F. ; Savelli, G.: One-pot two-steps synthesis of 1,2-diol. En: Synth. Commun. 19 (1989), p. 1939-1943spa
dc.relation.referencesFunahashi, N. Morohashi M. ; Kitano, H.: CellDesigner: a process diagram editor for gene-regulatory and biochemical networks. En: Biosilico 1 (2003), p. 159-162spa
dc.relation.referencesFunahashi, Y. Jouraku A. Morohashi M. Kikuchi N. ; Kitano, H.: CellDesigner 3.5: A Versatile Modeling Tool for Biochemical Networks. En: Proc. IEEE 96 (2008), p. 1254-1265spa
dc.relation.referencesGallagher, E.P. ; Eaton, D.L.: In vitro biotransformation of aflatoxin B1 (AFB1) in Channel Catfish Liver. En: Toxicol. Appl. Pharmacol. 132 (1995), p. 82-90spa
dc.relation.referencesGarlich, H.T. ; Hamilton, O.B.: The effects of short term feeding of aflatoxin on egg production and some plasma constituents of the laying hen. En: Poult. Sci. 52 (1973), p. 2206-2211spa
dc.relation.referencesGiambrone, U.L. Davis N.D. Panangala V. ; Hoerr, F.J.: Effect of purified aflatoxin on turkeys. En: Poult. Sci. 64 (1984a), p. 859-865spa
dc.relation.referencesGiambrone, U.L. Davis N.D. Panangala V. ; Hoerr, F.J.: Effects of aflatoxin on young turkeys and broiler chickens. En: Poult. Sci. 64 (1984b), p. 1678-1684spa
dc.relation.referencesGroopman, J.A. Trudel L.J. Pikul A. Donahue P. ; Wogan, G.N.: Molecular dosimetry in rat urine of aflatoxin-N7-guanine and other aflatoxin metabolites by multiple monoclonal antibody affinity chromatography and immunoaffinity/high performance liquid chromatography. En: Cancer Res. 52 (1992), p. 267-274spa
dc.relation.referencesGroopman, P.R. Zhu J. Chen J. ; Wogan, G.N.: Aflatoxin metabolism in humans: detection of metabolites and nucleic acid adducts in urine by affinity chromatography. En: Proc. Natl. Acad. Sci. 82 (1985), p. 6492-6496spa
dc.relation.referencesGross-Steinmeyer, K. ; Eaton, D.L.: Dietary modulation of the biotransformation and genotoxicity of aflatoxin B1. En: Toxicol. 299 (2012), p. 69-79spa
dc.relation.referencesGuengerich, F. P. Analysis and characterization of enzymes and nucleic acids relevant to toxicology in Hayes’s Principles and Methods of Toxicology Sixth Edition (ed. Hayes, A. W. and Kruger, C. L.) 1939 (CRC Press). ISBN-13: 978-1842145364. 2014spa
dc.relation.referencesGuengerich, F. P. ; Arneson, K. O. ; Williams, K. M. ; Deng, Z. ; Harris, T. M.: Reaction of aflatoxin B1 oxidation products with lysine. En: Chem. Res. Toxicol. 15 (2002), p. 780 -792spa
dc.relation.referencesGuengerich, F. P. ; Johnson, W. W. ; Shimada, T. ; Ueng, Y. ; Yamazaki, H. ; LangouE¨t, S.: Activation and detoxication of aflatoxin B1. En: Mut. Res. 402 (1998), p. 121 - 128spa
dc.relation.referencesGuengerich, H. McMahon M. Hayes J.D. Sutter T.R. Groopman J.D. Deng Z. ; Harris, T.M.: Reduction of aflatoxin B1 dialdehyde by rat and human aldo-keto reductases. En: Chem. Res. Toxicol. 14 (2001), p. 727-737spa
dc.relation.referencesGuengerich, K.O. Williams K.M. Deng Z. ; Harris, T.M.: Reaction of aflatoxin B1 oxidation products with lysine. En: Chem. Res. Toxicol. 15 (2002), p. 780-792spa
dc.relation.referencesGuengerich, W.W. Shimada T. Ueng Y. Yamazaki H. ; LangouE¨t, S.: Activation and detoxication of aflatoxin B1. En: Mut. Res. 402 (1998), p. 121-128spa
dc.relation.referencesGursoy-Yuzugullu, H. Yilmaz M. ; Ozturk, M.: Aflatoxin genotoxicity is associated with a defective DNA damage response bypassing p53 activation. En: Liver Int. 31 (2011), p. 561-571spa
dc.relation.referencesHafez, S.E. Abdel Fattah H. ; Kamel, Y.Y.: Aflatoxin and aflatoxicosis. Effect of aflatoxin on ovaries and testicles in mature domestic fowls. En: Mycopathologia 77 (1982), p. 137-139spa
dc.relation.referencesHamilton, P.B. ; Garlich, J.D.: Aflatoxin as a possible cause of fatty liver syndrome in laying hens. En: Poult. Sci. 50 (1971), p. 800-804spa
dc.relation.referencesHan, Q. Li W. Jiang J. ; Xu, Z.: Changes in growth performance, digestive enzyme activities and nutrient digestibility of cherry valley ducks in response to aflatoxin B1 levels. En: Livest. Sci. 119 (2008), p. 216-220spa
dc.relation.referencesHayes, D. McLellan L. ; Neal, G.E.: Contribution of the glutathione S-transferases to the mechanisms of resistance to aflatoxin B1. En: Pharmacol. Ther. 50 (1991), p. 443-472spa
dc.relation.referencesHayes, D.J. Ellins E.M. McLeod R. James R.F.L. Seideg˚ard J. Mosialou E. Jernstr¨ om B. Neal G.E.: Regulation of rat glutathione S-transferase A5 by cancer chemopreventive agents: Mechanisms of inducible resistance to aflatoxin B1. En: Chem. Biol. Interact. 111-112 (1998), p. 51-67spa
dc.relation.referencesHayes, D.J. Neal G. ; Nguyen, T.: Molecular cloning and heterologous expression of a cDNA encoding a mouse glutathione S-transferase Yc subunit possessing high catalytic activity for aflatoxin B1-8,9-epoxide. En: Biochem. J. 285 (1992), p. 173-180spa
dc.relation.referencesHayes, J. D. ; Judah, D. J. ; Neal, G. E.: Resistance to aflatoxin B1 is associated with the expression of a novel aldo-keto reductase which has catalytic activity towards a cytotoxic aldehyde-containing metabolite of the toxin. En: Cancer Res. 53 (1993), p. 3887 - 3894spa
dc.relation.referencesHayes, T. Judah D.J. Petersson D.G. NEal G.: Cloning of cDNAs from fetal rat liver encoding glutathione S-transferase Yc polypeptides. The Yc2 subunit is expressed in adult rat liver resistant to the hepatocarcinogen aflatoxin B1. En: J. Biol. Chem. 269 (1994), p. 20707-20717spa
dc.relation.referencesHe, G. Zhao S. Yin Z. Zhao L. Lv C. ; Li, Y.: Pharmacokinetics of doxycycline hydrochloride in Cherry Valley duckling during aflatoxicosis. En: Int. J. Clin. Exp. Med. 9 (2016), p. 13035-13040spa
dc.relation.referencesHerzallah, S.M.: Aflatoxin B1 residues in eggs and flesh of lying hens fed aflatoxin B1 contaminated diet. En: Am. J. Agric. Biol. Sci. 8 (2013), p. 156-161spa
dc.relation.referencesHetzel, D. J. S. ; Hoffmann, D. ; Van De Ven, J. ; Soeripto, S.: Mortality rate and liver histopathology in four breeds of ducks following long term exposure to low levels of aflatoxins. En: Singap. Vet. J. 8 (1984), p. 6 - 14spa
dc.relation.referencesHowarth, B. J. ; Wyatt, R.D.: Effect of dietary aflatoxin on fertility, hatchability and progeny performance of broiler breeder hens. En: Appl. Environ. Microbiol. 31 (1976), p. 680-684spa
dc.relation.referencesHu, S.X.: Age-related change of hepatic uridine diphosphate glucuronosyltransferase and sulfotransferasa activities in male chickens and pigs. En: J. Vet. Pharmacol. Ther. 40 (1991), p. 270-278spa
dc.relation.referencesHuang, Y. Burt D.W. Chen H. ; Zhang, Y.: The duck genome and transcriptome provide insight into an avian influenza virus reservoir species. En: Nat. Genet. 45 (2013), p. 776-784spa
dc.relation.referencesHuff, R.D. ; Hamilton, P.B.: Effects of dietary aflatoxin on certain egg yolk parameters. En: Poult. Sci. 54 (1975), p. 2014-2018spa
dc.relation.referencesVan der Hurk, P. ; James, M.O.: Sulfation and glucuronidation of benzo[a]pyrene-7,8-dihydrodiol in intestinal mucosa of channel catfish (Ictalurus punctatus). En: Mar. Environ. Res. 50 (2000), p. 11-15spa
dc.relation.referencesHussain, M.Z. Khan A. Javed I. Saleemi M.K. Mahmood S. ; Asi, M.R.: Residues of aflatoxin B1 in broiler meat: effect of age and dietary aflatoxin B1 levels. En: Food Chem. Toxicol. 48 (2010), p. 3304-3307spa
dc.relation.referencesInstituto Colombiano de Normas Tecnicas y Certificaci ´ on ´ : Norma T´ecnica Colombiana 2107. Alimento para animales. Alimento Completo para aves / Instituto Colombiano de Normas T´ecnicas y Certificaci´on. 1999. { Informe de Investigaci´onspa
dc.relation.referencesInstituto Colombiano de Normas Tecnicas y Certificaci ´ on ´ : Norma T´ecnica Colombiana 3581. Industrias alimentarias. Nivel m´aximo permitido de aflatoxinas en los alimentos. / Instituto Colombiano de Normas T´ecnicas y Certificaci´on. 2006. { Informe de Investigaci´onspa
dc.relation.referencesInternational Agency for Research on Cancer: Monographs on the Evaluation of Carcinogenic Risk on Humans. Volume 100F Chemical Agents and Related Occupations. / International Agency for Research on Cancer. 2012. { Informe de Investigaci´on. { 225{248 pspa
dc.relation.referencesInternational Chicken Genome Sequencing Consortium: Sequence and comparative analysis of the chicken genome provide unique perspectives on vertebrate evolution. En: Nature 432 (2004), p. 695-716spa
dc.relation.referencesIwaki, T. Akamatsu Y. ; Aibara, K.: Cytotoxin effects of aflatoxin B1 and its association with cellular components in chicken embryo primary cultured cells. En: Biochim. Biohys. Acta. 1035 (1990), p. 146-153spa
dc.relation.referencesJoffe, A.Z.: Feeding tests with ducklings, turkey chicks and rabbits and the effects of aflatoxin on these animals. En: Mycopathol. Mycol. Appl. 40 (1970), p. 49-61spa
dc.relation.referencesJohnson, P.A. OBrian G. Glassbrook N. Roebuck B.D. Sutter T.R. Payne G.A. Kensler T. ; Groopman, J.D.: Quantification of urinary aflatoxin B1 dialdehyde metabolites formed by aflatoxin aldehyde reductase using isotope dilution tandem mass spectrometry. En: Chem. Res. Toxicol. 21 (2008), p. 752-760spa
dc.relation.referencesJohnson, T.M. ; Guengerich, F.P.: Kinetics and mechanism of hydrolysis of aflatoxin B1 exo-8,9-epoxide and rearrangement of the dihydrodiol. En: J. Am. Chem. Soc 118 (1996), p. 8213-8220spa
dc.relation.referencesJosephy, P. D. ; Guengerich, F. P. ; Miners, J. O.: \Phase I "and \Phase II "drug metabolism: Terminology that we should phase out? En: Drug Met. Rev. 37 (2005), p. 575 - 580spa
dc.relation.referencesJudah, J.D. Yang J.C. Lian L.Y. Roberts G.C. Farmer P.B. Lamb J. ; Neal, G.E.: A novel aldehyde reductase with activity towards a metabolite of aflatoxin B1 is expressed in rat liver during carcinogenesis and following the administration of an anti-oxidant. En: Biochem. J. 292 (1993), p. 13-18spa
dc.relation.referencesKakkar, H. ; Mayersohn, M.: Estimation of Ki in a competitive enzyme-inhibition model: comparisons among three methods of data analysis. En: Drug Metab. Disp. 27 (1999), p. 756-762spa
dc.relation.referencesKanehisa, M. ; Goto, S.: KEGG: Kyoto Encyclopedia of Genes and Genomes. En: Nucleic Acids Res. 28 (2000), p. 27-30spa
dc.relation.referencesKanehisa, M. Tanabe M. Sato Y. ; Morishima, K.: KEGG: New perspectives on genomes, pathways, diseases and drugs. En: Nucleic Acids Res. 45 (2017), p. D353-D361spa
dc.relation.referencesKanehisa, Y. Kawashima M. Furumichi M. ; Tanabe, M.: KEGG as a reference resource for gene and protein annotation. En: Nucleic Acids Res. 44 (2016), p. D457-D462spa
dc.relation.referencesKawahara-Miki, S. Nunome M. Shimmura T. Kuwayama T. Takahashi S. Kawashima T. Matsuda Y. Yoshimura T. ; Kono, T.: Next{generation sequencing reveals genomic features in the Japanese Quail. En: Genomics 101 (2013), p. 345-353spa
dc.relation.referencesKelly, E.M. Mansom M.M. Chanas S.A. Moffat G.J. McLeod R. Judah D. ; Neal, G.E.: Chemoprevention of aflatoxin B1 hepatocarcinogenesis by coumarin, a natural benzopyrone that is a potent inducer of aflatoxin B1-aldehyde reductase, the glutathione S-transferase A5 and P1 subunits, and NAD(P)H:Quinone oxidoreductase in rat liver. En: Cancer Res. 60 (2000), p. 957-969spa
dc.relation.referencesKelly, L.S. Ellis E. ; Hayes, J.D.: Purification from rat liver of a novel constitutively expressed member of the aldo-keto reductase 7 family that is widely distributed in extrahepatic tissues. En: Biochem. J. 348 (2000), p. 389-400spa
dc.relation.referencesKelly, P.J. Crouch D. ; Hayes, J.D.: Novel homodimeric and heterodimeric rat γ -hydroxybutyrate synthases that associate with the Golgi apparatus define a distinct subclass of aldo-keto reductase 7 family proteins. En: Biochem. J. 366 (2002), p. 847-861spa
dc.relation.referencesKensler, P.A. Davidson N.E. Roebuck B.D. Pikul A. ; Groopman, J.D.: Modulation of aflatoxin metabolism, aflatoxin-N 7-guanine formation, and hepatic tumorogenesis in rats fed ethoxyquin: role of induction of glutathione S-transferases. En: Cancer Res. 46 (1986), p. 3924-3931spa
dc.relation.referencesKhan, M.Z. Khan A. Hassan Z.U. Rafique S. Saleemi M. ; Ahad, A.: Dietary vitamin E in White Leghorn layer breeder hens: a strategy to combat aflatoxin B1 {induced damage. En: Avian Pathol. 43 (2014), p. 389-395spa
dc.relation.referencesKim, B.R. Croasdell A. Reed K. ; Coulombre, R.A.: Alpha{class glutathione S{transferase in wild turkeys (Meleagris gallopavo): Characterization and role in resistance to the carcinogenic mycotoxin aflatoxin B1. En: PLoS One 8 (2013), p. e60662spa
dc.relation.referencesKlein, R. Kelly J. ; Coulombe, R.A.: Biochemical basis for the extreme sensitivity of Turkeys to aflatoxin B1. En: Toxicol. Appl. Pharmacol. 165 (2000), p. 45-52spa
dc.relation.referencesKlein, T.R. Hall J. ; Coulombe, R.A.: Biochemical factors underlying the age related sensitivity of turkeys to aflatoxin B1. En: Comp. Biochem. Physiol. C 132 (2002), p. 193-201spa
dc.relation.referencesKolars, P. Schmiedlin-Ren P. ; Watkins, B.: Aflatoxin B1-adduct formation in rat and human small bowel enterocytes. En: Gastroenterolology 106 (1994), p. 433-436spa
dc.relation.referencesKubena, T.S. Kamps-Holtzapple C. Harvey R.B. Elissalde M.H. Rottinghaus G.: Effects of feeding fumonisin B1 present in Fusarium moniliforme culture material and aflatoxin singly and in combination to turkey poults. En: Poult. Sci. 74 (1995), p. 1295-1303spa
dc.relation.referencesKubena, W.E. Harvey-R.B. Yersin A.G. Ellissalde M.H. Witzel D.A. Giroir L.E. Phillips T.D. Petersen H.: Effects of a hydrated sodium calcium aluminosilicate on growing turkey poults during aflatoxicosis. En: Poult. Sci. 70 (1991), p. 1823-1830spa
dc.relation.referencesLauwers, S. De Baere S. ; Sevastiyanova, M.: Supplementary materials: Assessment of dried blood spots for multi-mycotoxin biomarker analysis in pigs and broiler chickens. En: Toxins 11 (2019), p. S1-S8spa
dc.relation.referencesLeenadevi, K.V. ; Rajan, A.: Aflatoxin induced hepatocarcinogenesis in ducks. En: Mycotoxin Res. 11 (1995), p. 2-8spa
dc.relation.referencesLeslie, R.G. ; Cole, S.P.C.: Multidrug resistant proteins: role of P-glycoprotein, MRP1, MRP2 and BCRP (ABCG2) in tissue defense. En: Toxicol. Appl. Pharmacol. 204 (2005), p. 216-237spa
dc.relation.referencesLoe, D.W. ; Stewart, R.K. ; Massey, T.E. ; Deeley, R.G. ; Cole, S.P.C.: ATPDependent transport of aflatoxin B1 and its glutathione conjugates by the product of the multidrug resistant protein (MRP) gene. En: Mol. Pharmacol. 51 (1997), p. 1034-1041spa
dc.relation.referencesLoveland, J.E. ; Bailey, G.S.: Glucuronides in bile of rainbow trout (Salmo gairdneri) injected with 3[H]aflatoxin B1 and the effects of dietary β-naphtoflavone. En: Comp. Biochem. Physiol. Part C 78 (1984), p. 13-19spa
dc.relation.referencesLoveland, P.M. ; Wilcox, J.S. ; Hendricks, J.D. ; Bailey, G.S.: Comparative metabolism and DNA binding of aflatoxin B1, aflatoxin M1, aflatoxicol and aflatoxicolM1 in hepatocytes from rainbow trout (Salmo gairdneri). En: Carcinogenesis 9 (1988), p. 441-446spa
dc.relation.referencesLoveland, P.M. ; Wilcox, J.S. ; Pawlowski, N.E. ; Bailey, G.S.: Metabolism and DNA binding of aflatoxicol and aflatoxin B1 in vivo and in isolated hepatocytes from rainbow trout (Salmo gairdneri). En: Carcinogenesis 8 (1987), p. 1065-1070spa
dc.relation.referencesLozano, M. C. ; Diaz, G. J.: Microsomal and cytosolic biotransformation of aflatoxin B1 in four poultry species. En: Br. Poult. Sci. 47 (2006), p. 734 - 741spa
dc.relation.referencesMagnoli, S.M. da Rocha Rosa C.A. Dalcero A. ; Marin, R.H.: Aflatoxin B1 residues in liver from Japanese Quail (Coturnix japonica) exposed to contaminated feed and exogenous corticosterone. En: Rev. Bras. Med. Vet. 35 (2013), p. 378-384spa
dc.relation.referencesMannervik, B. ; Danielson, U.H.: Glutathione transferases - structure and catalytic activity. En: CRC Crit. Rev. Biochem. 23 (1988), p. 283-337spa
dc.relation.referencesMannervik, B. ; Jemth, P.: Measurement of Glutathione Transferases. En: Curr. Protoc. Toxicol. 14 (2002), p. 1-10spa
dc.relation.referencesMannervik, B. ; Jensson, H.: Binary combinations of four protein subunits with different catalytic specificities explain the relationship between six basic glutathione S-transferases in rat liver cytosol. En: J. Biol. Chem. 257 (1982), p. 9909-9912spa
dc.relation.referencesMarangoni, A.G.: Enzyme kinetics. A modern approach. Chapter 2: How do enzymes work. Hoboken, New Jersey : Wiley & Sons, Inc., 2003spa
dc.relation.referencesMariE¨n, K. ; Moyer, R. ; Loveland, P. ; Van Holde, K. ; Bailey, G.: Comparative binding and sequence interaction specificities of aflatoxin B1, aflatoxicol, aflatoxin M1, and aflatoxicol M1 with purified DNA. En: J. Biol. Chem. 262 (1987), p. 7455-7462spa
dc.relation.referencesMarin, D.E. ; Taranu, I.: Overview on aflatoxins and oxidative stress. En: Toxin Rev. Early Online (2012), p. 1-12spa
dc.relation.referencesMarks, H.L. ; Wyatt, R.D.: Aflatoxin susceptibility of selected and control Japanese Quail lines. En: Br. Poult. Sci. 21 (1980), p. 29-36spa
dc.relation.referencesMarroqu´ın{Cardona A.G. Johnson, T.D. ; Hayes, A.W.: Mycotoxins in a changing global environment {A review. En: Food Chem. Toxicol. 69 (2014), p. 220-230spa
dc.relation.referencesMaurice, S.F. Kuo-Tung H. ; Rhoades, J.F.: Comparison of glutathione Stransferase activity in the rat and birds: Tissue distribution and rhythmicity in chicken (Gallus domesticus) liver. En: Comp. Biochem. Physiol. B 100 (1991), p. 471-474spa
dc.relation.referencesMcLellan, D.J. Neal G. ; Hayes, J.D.: Regulation of aflatoxin B1-metabolizing aldehyde reductase and glutathione S-transferase by chemoprotectors. En: Biochem. J. 300 (1994), p. 117-124spa
dc.relation.referencesMu¨ller, N. ; Petzinger, E.: Hepatocellular uptake of aflatoxin B1 by non-ionic diffusion. Inhibition of bile acid transport by interference with membrane lipids. En: Biochim. Biohys. Acta. 938 (1988), p. 334-344spa
dc.relation.referencesOstrowski {Meissner, H.T.: Effect of contamination of diets with aflatoxins on growing ducks and chickens. En: Trop. Anim. Health Prod. 15 (1983), p. 161-168spa
dc.relation.referencesOstrowski {Meissner, H.T.: Biochemical and physiological responses of growing chickens and ducklings to dietary aflatoxins. En: Comp. Biochem. Physiol. C 79 (1984), p. 193-204spa
dc.relation.referencesMicco, C. Miraglia M. ; Onori, R.: HPLC determination of the total content of aflatoxins in naturally contaminated eggs in free and conjugated forms. En: Food Addit. Contam. 4 (1987), p. 407-414spa
dc.relation.referencesMinisterio de Agricultura y Desarrollo Rural de Colombia: Anuario estad´ıstico del sector agropecuario y pesquero. / Ministerio de Agricultura y Desarrollo Rural de Colombia. 2014. { Informe de Investigaci´onspa
dc.relation.referencesMinisterio de Salud y Proteccion Social de Colombia ´ : Resoluci´on 4506 por la cual se establecen los niveles m´aximos de contaminantes en los alimentos destinados al consumo humano y se dictan otras disposiciones. / Ministerio de Salud y Protecci´on Social de Colombia. 2013. { Informe de Investigaci´onspa
dc.relation.referencesMinisterio de Salud y Proteccion Social de Colombia ´ : Resoluci´on 2671 por la cual se modifica la Tabla 1 del art´ıculo 4 de la resoluci’on 4506 de 2013. / Ministerio de Salud y Protecci´on Social de Colombia. 2014. { Informe de Investigaci´onspa
dc.relation.referencesMitchell, E. Hurburgh C. ; Wu, F.: Potential economic losses to the USA corn industry from aflatoxin contamination. En: Food Addit. Contam. Part A 33 (2016), p. 540-550spa
dc.relation.referencesMonson, R.A. ; Reed, K.M.: Aflatoxicosis: Lessons from toxicity and responses to aflatoxin B1 in poultry. En: Agriculture 5 (2015), p. 742-777spa
dc.relation.referencesMoore, H.C. Miller E. ; Miller, J.A.: Cholangiocellular carcinomas induced in Syrian golden Hamsters administered aflatoxin B1 in large doses. En: J. Nat. Cancer. Inst. 68 (1982), p. 271-278spa
dc.relation.referencesMuller, C.W. Semeniuk G. ; Harshfield, G.S.: The response of chicks, ducklings, goslings, pheasants, and poults to graded levels of aflatoxins. En: Poult. Sci. 49 (1970), p. 1346-1350spa
dc.relation.referencesMurcia, H.W. ; Diaz, G.J.: In vitro hepatic aflatoxicol production is related to a higher resistance to aflatoxin B1 in poultry. En: Sci.Rep. 10 (2020a), p. 1-8spa
dc.relation.referencesMurcia, H.W. ; Diaz, G.J.: In vitro hepatic glutathione sulfotransferase activity and its possible relationship to tolerance or sensitivity to hepatocarcinoma due to aflatoxin B1 in poultry species. En: Toxicol. Lett. En Prensa (2020b)spa
dc.relation.referencesMurcia, H.W. ; Diaz, G.J.: Dealing with aflatoxin B1 dihydrodiol acute effects: impact of aflatoxin B1-aldehyde reductase enzyme activity in poultry species tolerant to AFB1 toxic effects. En: Methods Mol. Biol. En Prensa (2020c)spa
dc.relation.referencesNeal, D.J. Stirpe F. ; Patterson, D.S.: The formation of 2,3-dihydroxy-2,3-dihydroaflatoxin B1 by the metabolism of aflatoxin B1 by liver microsomes isolated from certain avian and mammalian species and the possible role of this metabolite in the acute toxicity of aflatoxin B1. En: Toxicol. Appl. Pharmacol. 58 (1981), p. 431-437spa
dc.relation.referencesNeal, G. E. ; Judah, D. J. ; Stirpe, F. ; Patterson, D. S. P.: The formation of 2,3-dihydroxy-2,3-dihydro-aflatoxin B1 by the metabolism of aflatoxin B1 by liver microsomes isolated from certain avian and mammalian species and the possible role of this metabolite in the acute toxicity of aflatoxin B1. En: Toxicol. Appl. Pharmacol. 58 (1981), p. 431 - 437spa
dc.relation.referencesNeal, U. Judah D. ; Hulbert, P.B.: Conjugation of model substrates or microsomally-activated aflatoxin B1 with reduced glutathione, catalysed by cytosolic glutathione-s-transferases in livers of rats, mice and guinea pigs. En: Biochem. Pharmacol. 36 (1987), p. 4269-4276spa
dc.relation.referencesNesbitt, B. F. ; O’Kelly, J. ; Sargeant, K. ; Sheridan, A.: Aspergillus flavus and Turkey X Disease: Toxic Metabolites of Aspergillus flavus. En: Nature 195 (1962), p. 1062- 1063spa
dc.relation.referencesNewberne, P. M. ; Butler, W. H.: Acute and chronic effects of aflatoxin on the liver of domestic and laboratory animals: A review. En: Cancer Res. 29 (1969), p. 236 - 250spa
dc.relation.referencesNgindu, A. ; Kenya, P. R. ; Ocheng, D. M. ; Omondi, T. N. ; Ngare, W. ; Gatei, D. ; Johnson, B. K. ; Ngira, J. A. ; Nandwa, H. ; Jansen, A. J. ; Kaviti, J. N. ; Siongok, T. A.: Outbreak of acute hepatitis caused by aflatoxin poisoning in Kenya. En: The Lancet 319 (1982), p. 1346 - 1348spa
dc.relation.referencesNorthrop, D. B.: On the meaning of Km and V/K in enzyme kinetics. En: J. Chem. Edu. 75 (1998), p. 1153 - 1157spa
dc.relation.referencesOakley, A.: Glutathione transferases: A structural perspective. En: Drug Metab. Rev. 43 (2011), p. 138 -151spa
dc.relation.referencesO’Brien, E. Judah D. ; Neal, G.: Metabolic basis of the species difference to aflatoxin B1 induced hepatotoxicity. En: Biochem. Biophys. Res. Commun. 114 (1987), p. 813-821spa
dc.relation.referencesOgido, C.A.F. Ledoux D.R. Rottinghaus G.E. Corr^ ea B. Butkeraitis P. Reis T.A. Gon¸calez E. ; Albuquerque, R.: Effects of prolonged administration of aflatoxin B1 and fumonisin B1 in laying Japanese Quail. En: Poult. Sci. 83 (2004), p. 1953-1958spa
dc.relation.referencesOliveira, J.F. Butkeraitis P. Corr^ ea B. Reis T.A. Guerra J.L. Albuquerque R. ; Moro, M.E.G.: Effect of low levels of dietary aflatoxin B1 on laying Japanese Quail. En: Poult. Sci. 81 (2002), p. 976-980spa
dc.relation.referencesOliveira, R. Ledoux D.R. Rottinghaus G.E. Corr^ ea B. Reis T.A. Gon¸calez E.: The quality of eggs from Japanese Quail, Coturnix japonica, fed ration containing aflatoxin B1 and fumonisin B1. En: J. Poult. Sci. 44 (2007), p. 29-33spa
dc.relation.referencesOlson, D. Chen G. Sharma A.K. Amin S. Ropson I.J. Spratt T. ; Lazarus, P.: Characterization of dibenzo[a,l]pyrene-trans-11,12-diol (dibenzo [def,p]chrysene) glucuronidation by UDP-glucuronosyltransferases. En: Chem. Res. Toxicol. 24 (2011), p. 1549-1559spa
dc.relation.referencesOrganizacion de las Naciones Unidas para la Alimentaci ´ on y la Agri- ´cultura. Federacion Internacional de la Industria de Piensos ´ : Buenas pr´acticas para la industria de piensos-Implementaci´on del C´odigo de Pr´acticas Sobre Buena Alimentaci´on Animal. Manual FAO de producci´on y sanidad animal. No 9. / Organizaci´on de las Naciones Unidas para la Alimentaci´on y la Agricultura. 2014. - Informe de Investigaci´onspa
dc.relation.referencesPankaj, H. ; Keener, K.M.: A review of novel physical and chemical decontamination technologies for aflatoxin in food. En: Trends Food Sci. Technol. 71 (2018), p. 73-83spa
dc.relation.referencesPatterson, D. S. P.: Metabolism as a factor in determining the toxic action of the aflatoxins in different animal species. En: Food Cosmet. Toxicol. 11 (1973), p. 287 -294spa
dc.relation.referencesPatterson, D.S.P. ; Roberts, B.A.: The in vitro reduction of aflatoxins B1 and B2 by soluble avian liver enzymes. En: Food Cosmet. Toxicol. 9 (1971), p. 829-837spa
dc.relation.referencesPatterson, D.S.P. ; Roberts, B.A.: Aflatoxin metabolism in duck-liver homogenates: The relative importance of reversible cyclopentenone reduction and hemiacetal formation. En: Food Cosmet. Toxicol. 10 (1972), p. 501-512spa
dc.relation.referencesPym, R.: Revisi´on del desarrollo agr´ıcola. Gen´etica y cr´ıa de aves de corral en los pa´ıses en desarrollo. / Organizaci´on de las Naciones Unidas para la Alimentaci´on y la Agricultura. 2014. { Informe de Investigaci´onspa
dc.relation.referencesQuezada, H. Jaramillo {Ju´arez F. Valdivia A. ; Reyez, J.L.: Effects of aflatoxin B1 on the liver and kidney of broiler chickens during development. En: Comp. Biochem. Physiol. Part C 125 (2000), p. 265-272spa
dc.relation.referencesQuinn, T.L. Kocal T.E. Best S.J. Cameron R.G. Rushmore T.H. Farber E. ; Hayes, M.A.: Protective activity of different hepatic cytosolic glutathione S-transferases against DNA-binding metabolites of aflatoxin B1. En: Toxicol. Appl. Pharmacol. 105 (1990), p. 351-363spa
dc.relation.referencesQuist, D.I. Kilburn J.V. Nettles V. ; Wyatt, R.D.: The effect of dietary aflatoxin on wild turkey poults. En: J. Wild. Dis. 36 (2000), p. 436-444spa
dc.relation.referencesRaisuddin, D. Zaidi S.I.A. Singh K.P. Verma A.S. Seth P. ; Ray, P.K.: Aflatoxin induces depletion of activities of phase I biotransformation enzymes in growing rats. En: Eur. J. Drug Metab. Pharmacokinet. 19 (1994), p. 163-168spa
dc.relation.referencesRamsdell, H.S. ; Eaton, D.L.: Species Susceptibility to Aflatoxin B1 Carcinogenesis: Comparative Kinetics of Microsomal Biotransformation. En: Cancer Res. 50 (1990), p. 615-620spa
dc.relation.referencesRane, A. ; Wilkinson, G. R. ; Shand, D. G.: Prediction of hepatic extraction ratio from in vitro measurement of intrinsic clearance. En: J. Pharmacol. Exp. Ther. 200 (1977), p. 420 -424spa
dc.relation.referencesRaney, D.J. Ketterer B. Harris T. ; Guengerich, F.P.: Glutathione conjugation of aflatoxin B1 exo-and endo-epoxides by rat and human glutathione S-transferases. En: Chem. Res. Toxicol. 5 (1992), p. 470-478spa
dc.relation.referencesRauber, P. Giacomini L.Z. Ara´ujo de Almeida C.A. Mallman C.: Performance of turkey poults fed different doses of aflatoxins in the diet. En: Poult. Sci. 86 (2007), p. 1620-1624spa
dc.relation.referencesRavindran, V.: Disponibilidad de piensos y nutrici´on de aves de corral en pa´ıses en desarrollo. Principales ingredientes utilizados en las formulaciones de alimentos para aves de corral. / Organizaci´on de las Naciones Unidas para la Alimentaci´on y la Agricultura. 2014. { Informe de Investigaci´onspa
dc.relation.referencesRaza, H.: Dual localization of glutathione S-transferase in the cytosol and mitochondria: Implications in oxidative stress, toxicity and disease. En: FEBS J. 278 (2011), p. 4243-4251spa
dc.relation.referencesReddy, B. Saad B. Abbas H.K. Abel C. ; Shier, W.T.: An overview of mycotoxin contamination in foods and its implications for human health. En: Toxin Rev. 29 (2010), p. 3-26spa
dc.relation.referencesRedinbaugh, M. G. ; Turley, R. B.: Adaptation of the bicinchoninic acid protein assay for the use with microtiter plates and sucrose gradient fractions. En: Anal. Biochem. 153 (1986), p. 267 -271spa
dc.relation.referencesReed, K.M. ; Coulombe, R.A.: Alpha{class glutathione S{transferase in wild turkeys (Altered gene response to aflatoxin B1 in the spleens of susceptible and resistant turkeys. 11 (2019), p. 1-13spa
dc.relation.referencesReed, K.M. Abrahante J. ; Coulombe, R.A.: Comparative response of the hepatic transcriptomes of domesticated and wild turkey to aflatoxin B1. 10 (2018), p. 1-24spa
dc.relation.referencesRoda, T. Acerbi D. Castoldi A. ; Manzo, L.: Comparative in vitro and ex-vivo myelotoxicity of aflatoxins B1 and M1 on haematopoietic progenitors (BFU-E, CFUE, and CFU-GM): Species-related susceptibility. En: Toxicol. In Vitro 24 (2010), p. 217-223spa
dc.relation.referencesRoebuck, B.D. ; Wogan, G.N.: Species comparison of in vitro metabolism of aflatoxin B1. En: Cancer Res. 37 (1977), p. 1649-1656spa
dc.relation.referencesRogers, G.M. ; Wyatt, R.D.: Effect of tryptophan supplementation on aflatoxicosis in laying hens. En: Poult. Sci. 70 (1991), p. 307-312spa
dc.relation.referencesRuff, W.E. ; Wilkins, G.C.: Characterization of the toxicity of the mycotoxins aflatoxin, ochratoxin, and T-2 toxin in game birds. III. Bobwhite and Japanese Quail. En: Avian Dis. 36 (2010), p. 34-39spa
dc.relation.referencesSabbioni, G.: Chemical and physical properties of the major serum albumin adduct of aflatoxin B1 and their implications for the quantification in biological samples. En: Chem. Biol. Interact. 75 (1990), p. 1-15spa
dc.relation.referencesSabbioni, G. ; Skipper, P. L. ; BA~¼chi, G. ; Tannenbaum, S. R.: Isolation and characterization of the major serum albumin adduct formed by aflatoxin B1 in vivo in rats. En: Carcinogenesis 8 (1987), p. 819 - 824spa
dc.relation.referencesSabbioni, P.L. Bachi G. ; Tannenbaum, S.R.: Isolation and characterization of the major serum albumin adduct formed by aflatoxin B1 in vivo in rats. En: Carcinogenesis 8 (1987), p. 819-824spa
dc.relation.referencesSalhab, A.S. ; Edwards, G.S.: Production of aflatoxicol from aflatoxin B1 by postmitochondrial liver fractions. En: J. Toxicol. Environm. Health 2 (1977a), p. 583-587spa
dc.relation.referencesSalhab, A.S. ; Edwards, G.S.: Comparative in vitro metabolism of aflatoxicol by liver preparations from animals and humans. En: Cancer Res. 37 (1977b), p. 1016-1021spa
dc.relation.referencesSarasin, C.A. ; Hanawalt, P.C.: Repair of DNA in human cells after treatment with activated aflatoxin B1. En: Cancer Res. 37 (1977), p. 1786-1793spa
dc.relation.referencesSAS Institute Inc. Base SAS® 9.4 Procedures Guide: Statistical Procedures, Second Edition. www.support.sas.com/bookstore. 2013spa
dc.relation.referencesSawhney, D.V. ; Baker, R.C.: Aflatoxicosis in the laying Japanese Quail (Coturnix coturnix japonica). En: Poult. Sci. 52 (2010), p. 465-473spa
dc.relation.referencesScholl, S.M. ; Groopman, J.D.: Synthesis and characterization of aflatoxin B1 mercapturic acids and their identification in rat urine. En: Chem. Res. Toxicol. 10 (1997), p. 1144-1151spa
dc.relation.referencesSeibert, E. ; Tracy, T.S.: Fundamentals of enzyme kinetics, In: Enzyme kinetics in drug metabolism. Fundamentals and applications. Eds. Nagar, S., Argikar, U.A., Tweedie, D.J. New York : Humana Press.,spa
dc.relation.referencesSharlin, B. Thompson F. ; Wyatt, R.D.: Decreased reproductive potential and reduced consumption in mature White Leghorn males fed aflatoxin. En: Poult. Sci. 52 (1981), p. 2701-2708spa
dc.relation.referencesShen, C. ; Lee, Shi C.: Aflatoxin B1-induced 8-hydroxydeoxyguanosine formation in rat hepatic DNA. En: Carcinogenesis 16 (1995), p. 419-422spa
dc.relation.referencesShen, C. Lee H. ; Ong, C.: Aflatoxin B1-induced lipid peroxidation in rat liver. En: Toxicol. Appl. Pharmacol. 127 (1994), p. 145-150spa
dc.relation.referencesShort, W. Hsieh L.C. Aranas T. Ou S. ; Weissinger, J.: Comparison of the hepatic drug metabolizing enzyme activities in several agricultural species. En: Comp. Biochem. Physiol. C 91 (1988), p. 419-424spa
dc.relation.referencesSiu, G.M. ; Draper, H.H.: Metabolism of malonaldehyde in vivo and in vitro. En: Lipids 17 (1982), p. 349-355spa
dc.relation.referencesSmith, J. W. ; Hamilton, P. B.: Aflatoxicosis in the Broiler Chicken. En: Poult. Sci. 49 (1970), p. 207 -215spa
dc.relation.referencesSrivastava, P.K. ; Waxman, D.J: Sex-dependent expression and growth hormone regulation of class Alpha and class Mu glutathione S-transferase mRNAs in adult rat liver. En: Biochem. J. 294 (1993), p. 159-165spa
dc.relation.referencesStanley, M. Dunckley C. Daley M. Kruger W.F. Sefton A. ; Hinton, A.: Impact of yeast culture residue on the supplementation of dietary aflatoxin in performance of broiler breeder hens. En: J. Appl. Poult. Res. 13 (2004), p. 533-539spa
dc.relation.referencesSurai, P.F.: Antioxidants in poultry nutrition and reproduction: An update. 9 (2020), p. 4-9spa
dc.relation.referencesSwenson, D. H. ; Miller, J. A. ; Miller, E. C.: 2,3-dihydro-2,3-dihydroxy-aflatoxin B1: An acid hydrolysis product of an RNA-aflatoxin B1 adduct formed by hamster and rat liver microsomes in vitro. En: Biochem. Biophys. Res. Commun. 53 (1973), p. 1260 - 1267spa
dc.relation.referencesSwenson, J.A. ; Miller, E.C.: 2,3-dihydro-2,3-dihydroxy-aflatoxin B1: An acid hydrolysis product of an RNA-aflatoxin B1 adduct formed by hamster and rat liver microsomes in vitro. En: Biochem. Biophys. Res. Commun. 53 (1973), p. 1260-1267spa
dc.relation.referencesTachampa, M. Khamdang S. Noshiro-Kofugi R. Tsuda M. Jariyawat S. Fukutomi T. Sophasan S. Anzai N. ; Endou, H.: Interactions of Organic Anion Transporters and Organic Cation Transporters with mycotoxins. En: J. Pharmacol. Sci. 106 (2008), p. 435-443spa
dc.relation.referencesTrucksess, L. ; Young, K.: Aflatoxicol and aflatoxins B1 and M1 in eggs and tissues of laying hens consuming aflatoxin contaminated feed. En: Poult. Sci. 62 (1983), p. 2176-2182spa
dc.relation.referencesTulayakul, S. Dong K. ; Kumagai, S.: Comparative activities of glutathione-S-transferase and dialdehyde reductase toward aflatoxin B1 in livers of experimental and farm animals. 46 (2005), p. 204-209spa
dc.relation.referencesUchida, K. Esumi M. Arii-M. ; Shikata, T.: Influence of aflatoxin B1 intoxication on duck livers with duck hepatitis B virus infection. En: Cancer Res. 48 (1988), p. 1559-1565spa
dc.relation.referencesUdomkun, A.N. Nagle M. MA~ ¼ller-J. Vanlauwe B. ; Bandyopadhyay, R.: Innovative technologies to manage aflatoxins in foods and feeds and the profitability of application -A review. En: Food Control 76 (2017), p. 127-138spa
dc.relation.referencesVarga, J.C. ; Samson, R.A.: A reappraisal of fungi producing aflatoxins. En: World Mycotoxin J. 2 (2009), p. 263-277spa
dc.relation.referencesVarga, J.C. ; Samson, R.A.: Two new aflatoxin producing species, and an overview of Aspergillus section Flavi. En: Stud. Mycol. 69 (2011), p. 57-80spa
dc.relation.referencesVerma, T.S. Swain B. ; Ameena, S.: Effect of graded levels of aflatoxin, ochratoxin and their combinations on the performance and immune response of broilers. En: Br. Poult. Sci. 45 (2004), p. 512-518spa
dc.relation.referencesWang, W. Muhammad I. Sun-X. Cui X. Cheng P. Qayum A. ; Zhang, X.: Biochemical basis for the age-related sensitivity of broilers to aflatoxin B1. En: Toxicol. Mech. Methods 28 (2018), p. 361-368spa
dc.relation.referencesWashburn, R.D. Potts P. ; Lanze, G.M.: Effects and mechanism of aflatoxin variation in shell strength. En: Poult. Sci. 64 (1985), p. 1302-1305spa
dc.relation.referencesWild, Y. Sabbioni G. Chapot-B. ; Montesanto, R.: Evaluation of methods for quantitation of aflatoxin-albumin adducts and their implications to human exposure assessment. En: Cancer Res. 50 (1990), p. 245-251spa
dc.relation.referencesWilson, D.M. ; King, J.K.: Production of aflatoxins B1, B2, G1, and G2 in pure and mixed cultures of Aspergillus parasiticus and Aspergillis flavus. En: Food Addit. Contam. 12 (1995), p. 521-525spa
dc.relation.referencesWitlock, Wyatt R.: Effect of dietary aflatoxin on homeostasis of young turkey poults. En: Poult. Sci. 60 (1981), p. 528-531spa
dc.relation.referencesWolzak, A.M. Coleman T.H. Pestka-J.J. ; Gray, J.I.: Aflatoxin deposition and clearance in the eggs of laying hens. En: Food Chem. Toxicol. 32 (1995), p. 1057-1061spa
dc.relation.referencesWong, J.J. ; Hsieh, D.P.: Mutagenicity of aflatoxins related to their metabolism and carcinogenic potential. En: Proc. Natl. Acad. Sci. 73 (1976), p. 2241-2244spa
dc.relation.referencesWong, Z.A. ; Decad, G.M. ; Byard, J.L. ; Hsieh, D.P.H.: Conversion of aflatoxicol to aflatoxin B1 in rats in vivo and in primary hepatocyte culture. En: Food Cosmet. Toxicol. 17 (1979), p. 481-486spa
dc.relation.referencesWong, Z.A. ; Hsieh, D.P.H.: Aflatoxicol: Major aflatoxin B1 metabolite in rat plasma. En: Science 200 (1978), p. 325-327spa
dc.relation.referencesWu, F.: Global impacts of aflatoxin in maize: trade and human health. En: World Mycotoxin J. 8 (2015), p. 137-142spa
dc.relation.referencesWu, F. ; Guclu, H.: Aflatoxin regulations in a network of global maize trade. En: Methods Mol. Biol. 7 (2012), p. e45151spa
dc.relation.referencesWu, F. ; Khlangwiset, P.: Health economic impacts and cost{effectiveness of aflatoxin reduction strategies in Africa: case studies in biocontrol and postharvest interventions. En: Food Addit. Contam. A 73 (2010), p. 2241-2244spa
dc.relation.referencesXia, X. Xue F. Zhang-J. Zhai B. Kong D. Wang C. Huang Z. ; Long, X.: Genetic polymorphisms of DNA repair genes and DNA repair capacity related to aflatoxin B1 (AFB1)-induced DNA damages, in: Chen, C. (Ed.), New Research Directions in DNA Repair. Croatia : Intech Publishing, 2013spa
dc.relation.referencesZaghini, G. Ronchada P. ; Rizzi, L.: Mannanoligosaccharides and aflatoxin B1 and M1 residues in fed of laying hens. Effect on egg quality, aflatoxin B1 and M1 residue in eggs and aflatoxin B1 levels in liver. En: Poult. Sci. 84 (2005), p. 825 - 832spa
dc.relation.referencesVan der Zijden, W.A.A. Boldingh J. Barrett C.B. Ord W. ; Philip, J.: Aspergillus flavus and Turkey X Disease: Isolation of crystalline form of a toxin responsible for Turkey X Disease. En: Nature 195 (1962), p. 1060-1062spa
dc.relation.referencesAcuña, G. ; Espitia, M.: Aflatoxinas en maíz: reporte de caso en en la costa atlántica colombiana. En: Rev. Fac. Med.Vet. Zoot. LII (2005), p. 156–162spa
dc.rightsDerechos reservados - Universidad Nacional de Colombiaspa
dc.rights.accessrightsinfo:eu-repo/semantics/openAccessspa
dc.rights.licenseAtribución-NoComercial 4.0 Internacionalspa
dc.rights.spaAcceso abiertospa
dc.rights.urihttp://creativecommons.org/licenses/by-nc/4.0/spa
dc.subject.ddc500 - Ciencias naturales y matemáticasspa
dc.subject.proposalAflatoxina B1spa
dc.subject.proposalAflatoxin B1eng
dc.subject.proposalAflatoxina B1 dialdehídospa
dc.subject.proposalAFB1-Gua adducteng
dc.subject.proposalAflatoxicolspa
dc.subject.proposalAFB1-Lys adducteng
dc.subject.proposalAflatoxicoleng
dc.subject.proposalAflatoxina B1 dihidrodiolspa
dc.subject.proposalAflatoxin epoxideeng
dc.subject.proposalAflatoxina B1 monoalcoholspa
dc.subject.proposalAflatoxin B1 dihydrodioleng
dc.subject.proposalAflatoxina B1 dialcoholspa
dc.subject.proposalAducto AFB1-Guaspa
dc.subject.proposalAflatoxin B1 dialdehydeeng
dc.subject.proposalAflatoxin B1 monoalcoholeng
dc.subject.proposalAducto AFB1-Lysspa
dc.subject.proposalAflatoxina B1 epóxidospa
dc.subject.proposalAflatoxin B1 dialcoholeng
dc.titleReacciones de reducción, oxidación y conjugación del aflatoxicol y la aflatoxina B1 in vitro a partir de extractos de hígado provenientes de cuatro especies de aves de importancia comercialspa
dc.typeTrabajo de grado - Doctoradospa
dc.type.coarhttp://purl.org/coar/resource_type/c_db06spa
dc.type.coarversionhttp://purl.org/coar/version/c_ab4af688f83e57aaspa
dc.type.contentTextspa
dc.type.driverinfo:eu-repo/semantics/doctoralThesisspa
dc.type.versioninfo:eu-repo/semantics/acceptedVersionspa
oaire.accessrightshttp://purl.org/coar/access_right/c_abf2spa

Archivos

Bloque original

Mostrando 1 - 2 de 2
Cargando...
Miniatura
Nombre:
79761114,2020.pdf
Tamaño:
7.34 MB
Formato:
Adobe Portable Document Format
Cargando...
Miniatura
Nombre:
2020_Dealing_AFB1_dihydrodiol_acute_effects.pdf
Tamaño:
1.78 MB
Formato:
Adobe Portable Document Format

Bloque de licencias

Mostrando 1 - 1 de 1
Cargando...
Miniatura
Nombre:
license.txt
Tamaño:
3.8 KB
Formato:
Item-specific license agreed upon to submission
Descripción: