Daño genotóxico inducido por extractos de durazno, Prunus persica cultivados en Cácota Norte de Santander

1 recurso en línea (páginas 47-55).

Autores:
Meléndez Gélvez, Iván
Quijano Parra, Alfonso
Yañez Urbina, Luis Fabian
Tipo de recurso:
Article of journal
Fecha de publicación:
2018
Institución:
Universidad Pedagógica y Tecnológica de Colombia
Repositorio:
RiUPTC: Repositorio Institucional UPTC
Idioma:
spa
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oai:repositorio.uptc.edu.co:001/2371
Acceso en línea:
http://repositorio.uptc.edu.co/handle/001/2371
Palabra clave:
Durazno
Genotoxicidad
Ensayo cometa
Pesticidas
Cácota
Norte de Santander
Colombia
Rights
openAccess
License
Copyright (c) 2018 Universidad Pedagógica y Tecnológica de Colombia
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dc.title.spa.fl_str_mv Daño genotóxico inducido por extractos de durazno, Prunus persica cultivados en Cácota Norte de Santander
dc.title.alternative.eng.fl_str_mv Genotoxic damage induced by extracts of peach, Prunus persica grown in Cácota Norte de Santander
title Daño genotóxico inducido por extractos de durazno, Prunus persica cultivados en Cácota Norte de Santander
spellingShingle Daño genotóxico inducido por extractos de durazno, Prunus persica cultivados en Cácota Norte de Santander
Durazno
Genotoxicidad
Ensayo cometa
Pesticidas
Cácota
Norte de Santander
Colombia
title_short Daño genotóxico inducido por extractos de durazno, Prunus persica cultivados en Cácota Norte de Santander
title_full Daño genotóxico inducido por extractos de durazno, Prunus persica cultivados en Cácota Norte de Santander
title_fullStr Daño genotóxico inducido por extractos de durazno, Prunus persica cultivados en Cácota Norte de Santander
title_full_unstemmed Daño genotóxico inducido por extractos de durazno, Prunus persica cultivados en Cácota Norte de Santander
title_sort Daño genotóxico inducido por extractos de durazno, Prunus persica cultivados en Cácota Norte de Santander
dc.creator.fl_str_mv Meléndez Gélvez, Iván
Quijano Parra, Alfonso
Yañez Urbina, Luis Fabian
dc.contributor.author.none.fl_str_mv Meléndez Gélvez, Iván
Quijano Parra, Alfonso
Yañez Urbina, Luis Fabian
dc.subject.proposal.spa.fl_str_mv Durazno
Genotoxicidad
Ensayo cometa
Pesticidas
Cácota
Norte de Santander
Colombia
topic Durazno
Genotoxicidad
Ensayo cometa
Pesticidas
Cácota
Norte de Santander
Colombia
description 1 recurso en línea (páginas 47-55).
publishDate 2018
dc.date.issued.none.fl_str_mv 2018-07-04
dc.date.accessioned.none.fl_str_mv 2019-01-31T20:53:10Z
dc.date.available.none.fl_str_mv 2019-01-31T20:53:10Z
dc.type.spa.fl_str_mv Artículo de revista
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dc.type.content.spa.fl_str_mv Text
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dc.identifier.citation.spa.fl_str_mv Meléndez Gélvez, I., Quijano Parra, A., & Yáñez Urbina, L. F. (2018). Daño genotóxico inducido por extractos de durazno, Prunus persica cultivados en Cácota Norte de Santander. Ciencia en Desarrollo, 9(2), 47-55. http://repositorio.uptc.edu.co/handle/001/2371
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identifier_str_mv Meléndez Gélvez, I., Quijano Parra, A., & Yáñez Urbina, L. F. (2018). Daño genotóxico inducido por extractos de durazno, Prunus persica cultivados en Cácota Norte de Santander. Ciencia en Desarrollo, 9(2), 47-55. http://repositorio.uptc.edu.co/handle/001/2371
2462-7658
url http://repositorio.uptc.edu.co/handle/001/2371
dc.language.iso.spa.fl_str_mv spa
language spa
dc.relation.references.spa.fl_str_mv Carranza C., Miranda D. Zonificación actual de los sistemas de producción de frutales caducifolios en Colombia. Situación actual, sistemas de cultivo y plan de desarrollo. Soc. Col. Cienc. Hort. 2013; 67-86.
Xiang Guanggang, Li Diqiu, Yuan Jianzhong, Guan Jingmin, Zhai Huifeng, Shi Mingan, Tao Liming. Carbamate insecticide methomyl confers cytotoxicity through DNA damage induction. Food and Chemical toxicology. 2013; 53: 352-358.
Bolognesi C., Peluso M., Degan P., Rabboni R., Munnia A., Abbondandolo A. Genotoxic effects of the carbamate insecticide, methyomyl. II. In vivo studies with pure compound and the technical formulation, “Lannate 25” Environmental and Molécular Mutagenesis. 1994; 235–242.
Falck GC, Hirvonen A., Scarpato R., Saarikoski ST, Migliore L, Norppa H. Micronuclei in blood lymphocytes and genetic polymorphism for GSTM1, GSTT1 and NAT2 in pesticide-exposed greenhouse workers Mutation Research. 1991; 441: 225–237
Sun XY, Jin YT, Wu B, Wang WQ, Pang XL, Wang J. Study on genotoxicity of aldicarb and methomyl. Huan Jing Ke Xue .2010; 31: 2973–2980.
Pabuena Duban E., Ortiz Isabel C., López Juan, Orozco Luz J., Quijano Parra Alfonso, Pardo Enrique, Meléndez Iván. Actividad genotóxica inducida por extracto de fresa fumigada con pesticidas en Pamplona, Norte de Santander, Colombia. Universidad, Ciencia y Tecnología. 2015; 19: 76.
Simoniello, M.F.; Kleinsorge, E.C.; Scagnetti, J.A.; Grigolato, R.A.; Poletta, G.L. y Carballo, M.A., 2008. DNA damage in workers occupationally exposed to pesticide mixtures. J. Appl. Toxicol. 28, 8: 957-965.
Haibing Li, Yuling Li, Jing Cheng. Molécularly Imprinted Silica Nanospheres Embedded CdSe Quantum Dots for Highly Selective and Sensitive Optosensing of Pyrethroids. Central China Normal University, China. 2010; 22: 2451–2457.
Oudou HC, Alonso RM, Bruun Hansen HC. Voltammetric behaviour of the synthetic pyrethroid lambda-cyhalothrin and its determination in soil and well water. Analytica chemical Acta 2004; 523: 69–74
Idris S, Ambali S., Ayo J. Cytotoxicity of chlorpyrifos and cypermethrin: the ameliorative effects of antioxidants. Afr J Biotechnol. 2012; 11 (99): 16461-16467.
Collins AR, Dobson VL., Dusinska M., Kennedy G, Stetina R. The comet assay: what can it really tell us.Mutat. 1997; 375 : 183–193.
Meléndez I., Pedro E., Quijano A. Actividad genotóxica de aguas antes y después de clorar en la planta de potabilización Empopamplona. Bistua:Revista de la Facultad de Ciencias Básicas.2015.13(2):12-23. DNA.
Meléndez Gélvez I., Martínez Montañez ML, Quijano Parra A. Actividad mutagénica y genotóxica en el material particulado fracción respirable MP2,5 en Pamplona, Norte de Santander, Colombia. Iatreia. 2012; 25 (4): 347-356
Vargas V., Migliavacca S., Melo A., Horn R. Genotoxicity assessment in aquatic environments under the influence of heavy metals and organic contaminants. Mut.2001; 490: 141-158
Bull S., Fletcher K., Boobis AR, Battershill JM, Evidence for genotoxicity of pesticides in pesticide applicators: a review. Mutagenesis, 2006; 21 (2): 93-103.
Bertoncini CR, Meneghini R. DNA strand breaks produced by oxidative stress in mammalian cells exhibit 3′-phosphoglycolate termini Nucleic Acids. 1995; 23: 2995–3002.
Shrivastava R, Upreti RK, Seth PK, Chaturvedi UC. Effects of chromium on the immune system FEMS Immunol. Med. Microbiol. 2002; 34 (1): 1–7.
Nesnow S., Roop BC, Lambert G., Kadiiska M., Mason RP, Cullen W.R, Mass MJ. DNA damage induced by methylated trivalent arsenicals is mediated by reactive oxygen species. Chemical Research Toxicology. 2002; 15: 1627–1634.
Basu A, Ghosh P, Das JK, Banerjee A, Ray K, Giri AK. Micronuclei as biomarkers of carcinogen exposure in populations exposed to arsenic through drinking water in West Bengal, India: a comparative study in three cell types. Cancer Epidemiology Biomarkers and Prevention. 2004; 13: 820–827
Mahata J., Basu A., Ghoshal S., Sarkar JN, Roy AK, Poddar G., Nandy AK, Banerjee A., Ray K., Natarajan AT, Nilsson R, Giri AK. Chromosomal aberrations and sister chromatid exchanges in individuals exposed to arsenic through drinking water in West Bengal, India. Mutation Research. 2003; 534: 133–143.
Ling YH, Jiang JD, Holland JF, Perez Soler R. Arsenic trioxide polymerization of microtubules and mitotic arrest before apoptosis in human tumor cell lines Molécular Pharmacology. 2002; 62: 529–538.
Nesnow S., Roop BC, Lambert G., Kadiiska M., Mason RP, Cullen WR, Mass MJ. DNA damage induced by methylated trivalent arsenicals is mediated by reactive oxygen species. Chemical Research Toxicology. 2002; 15: 1627–1634.
Antherieu S., Ledirac N., Luzy AP., Lenormand P., Caron JC, Rahmani R. Endosulfan decreases cell growth and apoptosis in human HaCaT keratinocytes: Partial ROS-dependent ERK1/2 mechanism. J Cell Physiol. 2007; 213: 177-86.
Chaudhuri K, Selvaraj S, Pal AK. Studies on the genotoxicity of endosulfan in bacterial systems.1999. Mutat Res 439 (1): 63-7.
IARC. 1987. Hexachlorocyclohexanes. In Overall Evaluations of Carcinogenicity. IARC Monographs on the Evaluation of Carcinogenic Risk of Chemicals to Humans, suppl. 7. Lyon, France: International Agency for Research on Cancer.pp. 220-222.
Schulte-Hermann R, Parzefall W. 1981. Failure to discriminate initiation from promotion of liver tumors in a long-term study with the phenobarbital-type inducer alpha-hexachlorocyclohexane and the role of sustained stimulation of hepatic growth and monooxygenases. Cancer Res 41(10): 4140-4146
Ecobicon, D.J. Toxic effects of pesticides. In: Klaassen et al. (eds). Casarett and Doull’s Toxicology: The basic science of poisons, 4th ed. New York: Maxwell McMillan Pergamon; 1991:573-580
132. Volpe, E., Sambucci, M., Battistini, L., Borsellino, G., 2016. Fas-Fas ligand: checkpoint of T cell functions in multiple sclerosis. Front. Immunol. 7, 382.
Wei, J., Zhang, L., Ren, L., Zhang, J., Yu, Y.,Wang, J., Duan, J., Peng, C., Sun, Z., Zhou,X., 2017. Endosulfan inhibits proliferation through the Notch signaling Path way in human umbilical vein endothelial cells. Environ. Pollut. 221, 26–36.
Chen, Z.Y., Liu, C., Lu, Y.H., Yang, L.L., Li, M., He, M.D., et al., 2016. Cadmium exposure enhances bisphenol A-induced genotoxicity through 8-oxoguanine-DNA glycosylase-1 OGG1 inhibition in NIH3T3 fibroblast cells. Cell. Physiol. Biochem. 39, 961–974
Sebastian, R., Raghavan, S.C., 2016. Induction of DNA damage and erroneous repair can explain genomic instability caused by Endosulfan. Carcinogenesis
Palou, R., Palou, G., Quintana, D.G., 2016. A role for the spindle assembly checkpoint in the DNA damage response. Curr. Genet
Wei, J., Zhang, L., Wang, J., Guo, F., Li, Y., Zhou, X., Sun, Z., 2015. Endosulfan inducing blood hypercoagulability and endothelial cells apoptosis via the death receptor pathway in Wistar rats. Toxicol. Res. 4, 1282–1288
dc.relation.ispartofjournal.spa.fl_str_mv Ciencia en Desarrollo;Volumen 9, número 2 (Julio-Diciembre 2018)
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spelling Meléndez Gélvez, IvánQuijano Parra, AlfonsoYañez Urbina, Luis Fabian2019-01-31T20:53:10Z2019-01-31T20:53:10Z2018-07-04Meléndez Gélvez, I., Quijano Parra, A., & Yáñez Urbina, L. F. (2018). Daño genotóxico inducido por extractos de durazno, Prunus persica cultivados en Cácota Norte de Santander. Ciencia en Desarrollo, 9(2), 47-55. http://repositorio.uptc.edu.co/handle/001/23712462-7658http://repositorio.uptc.edu.co/handle/001/23711 recurso en línea (páginas 47-55).Peach Production in Colombia is concentrated in the departments of Boyacá, Cundinamarca, Norte de Santander, Santander, Antioquia, Caldas and Nariño, the main producer is Boyacá with 677 ha, especially in the municipality of Sotaquirá and in other municipalities such as Jenesano, Nuevo Colón, Combita and Tuta; the third production department is Norte de Santander with 480 Ha. Currently the production is concentrated mainly in the municipalities of Chitagá, Pamplonita and Cacota. Pesticides are considered one of the main factors of environmental pollution; As it is known they are widely used to improve the production of food in agriculture and for the control of pests and disease vectors, many have been classified as carcinogenic, because they induce damage to the genetic material. In this work the genotoxicity produced by extracts of peach (Prunus pérsica (L.) Batsch) cultivated in Cacota, Norte de Santander was determined. The comet assay was used for the evaluation of gemoxic activity. The results obtained indicate that the peach extracts induce lesions in the DNA of human lymphocytes, which vary according to the dose of the extract. Considering that the peach is an export product and high consumption in our region, the intake of this could become a risk factor for the population.La Producción del durazno en Colombia se concentra en los departamentos de Boyacá, Cundinamarca, Norte de Santander, Santander, Antioquia, Caldas y Nariño, el principal productor es Boyacá con 677 ha, especialmente en el municipio de Sotaquirá y en otros municipios como Jenesano, Nuevo Colón, Cómbita y Tuta; el tercer departamento productor es Norte de Santander con 480 Ha, la mayor producción se encuentra en los municipios de Pamplonita y Chitagá. Los pesticidas son considerados como uno de los principales factores de contaminación del medio ambiente; como es conocido son ampliamente utilizados para mejorar la producción de alimentos en la agricultura y para el control de plagas y vectores de enfermedades; muchos han sido clasificados como cancerígenos, porque inducen daño en el material genético. En este trabajo se determinó la genotoxicidad producida por extractos de durazno (Prunus pérsica (L.) Batsch) cultivado en Cacota, Norte de Santander. El ensayo cometa fue utilizado para la evaluación de la actividad gentóxica. Los resultados obtenidos indican que los extractos de durazno inducen lesiones en el ADN de linfocitos humanos, que varían de acuerdo a la dosis del extracto. Ya que el durazno es un producto de exportación y de alto consumo en nuestra región, la ingesta de este podría convertirse en un factor de riesgo para la población.Bibliografía: páginas 53-55.application/pdfspaUniversidad Pedagógica y Tecnológica de ColombiaCopyright (c) 2018 Universidad Pedagógica y Tecnológica de Colombiahttps://creativecommons.org/licenses/by-nc/4.0/info:eu-repo/semantics/openAccessAtribución-NoComercial 4.0 Internacional (CC BY-NC 4.0)http://purl.org/coar/access_right/c_abf2https://revistas.uptc.edu.co/index.php/ciencia_en_desarrollo/article/view/8706/7248Daño genotóxico inducido por extractos de durazno, Prunus persica cultivados en Cácota Norte de SantanderGenotoxic damage induced by extracts of peach, Prunus persica grown in Cácota Norte de SantanderArtículo de revistahttp://purl.org/coar/resource_type/c_6501http://purl.org/coar/resource_type/c_2df8fbb1info:eu-repo/semantics/articleinfo:eu-repo/semantics/publishedVersionTexthttps://purl.org/redcol/resource_type/ARThttp://purl.org/coar/version/c_970fb48d4fbd8a85Carranza C., Miranda D. Zonificación actual de los sistemas de producción de frutales caducifolios en Colombia. Situación actual, sistemas de cultivo y plan de desarrollo. Soc. Col. Cienc. Hort. 2013; 67-86.Xiang Guanggang, Li Diqiu, Yuan Jianzhong, Guan Jingmin, Zhai Huifeng, Shi Mingan, Tao Liming. Carbamate insecticide methomyl confers cytotoxicity through DNA damage induction. Food and Chemical toxicology. 2013; 53: 352-358.Bolognesi C., Peluso M., Degan P., Rabboni R., Munnia A., Abbondandolo A. Genotoxic effects of the carbamate insecticide, methyomyl. II. In vivo studies with pure compound and the technical formulation, “Lannate 25” Environmental and Molécular Mutagenesis. 1994; 235–242.Falck GC, Hirvonen A., Scarpato R., Saarikoski ST, Migliore L, Norppa H. Micronuclei in blood lymphocytes and genetic polymorphism for GSTM1, GSTT1 and NAT2 in pesticide-exposed greenhouse workers Mutation Research. 1991; 441: 225–237Sun XY, Jin YT, Wu B, Wang WQ, Pang XL, Wang J. Study on genotoxicity of aldicarb and methomyl. Huan Jing Ke Xue .2010; 31: 2973–2980.Pabuena Duban E., Ortiz Isabel C., López Juan, Orozco Luz J., Quijano Parra Alfonso, Pardo Enrique, Meléndez Iván. Actividad genotóxica inducida por extracto de fresa fumigada con pesticidas en Pamplona, Norte de Santander, Colombia. Universidad, Ciencia y Tecnología. 2015; 19: 76.Simoniello, M.F.; Kleinsorge, E.C.; Scagnetti, J.A.; Grigolato, R.A.; Poletta, G.L. y Carballo, M.A., 2008. DNA damage in workers occupationally exposed to pesticide mixtures. J. Appl. Toxicol. 28, 8: 957-965.Haibing Li, Yuling Li, Jing Cheng. Molécularly Imprinted Silica Nanospheres Embedded CdSe Quantum Dots for Highly Selective and Sensitive Optosensing of Pyrethroids. Central China Normal University, China. 2010; 22: 2451–2457.Oudou HC, Alonso RM, Bruun Hansen HC. Voltammetric behaviour of the synthetic pyrethroid lambda-cyhalothrin and its determination in soil and well water. Analytica chemical Acta 2004; 523: 69–74Idris S, Ambali S., Ayo J. Cytotoxicity of chlorpyrifos and cypermethrin: the ameliorative effects of antioxidants. Afr J Biotechnol. 2012; 11 (99): 16461-16467.Collins AR, Dobson VL., Dusinska M., Kennedy G, Stetina R. The comet assay: what can it really tell us.Mutat. 1997; 375 : 183–193.Meléndez I., Pedro E., Quijano A. Actividad genotóxica de aguas antes y después de clorar en la planta de potabilización Empopamplona. Bistua:Revista de la Facultad de Ciencias Básicas.2015.13(2):12-23. DNA.Meléndez Gélvez I., Martínez Montañez ML, Quijano Parra A. Actividad mutagénica y genotóxica en el material particulado fracción respirable MP2,5 en Pamplona, Norte de Santander, Colombia. Iatreia. 2012; 25 (4): 347-356Vargas V., Migliavacca S., Melo A., Horn R. Genotoxicity assessment in aquatic environments under the influence of heavy metals and organic contaminants. Mut.2001; 490: 141-158Bull S., Fletcher K., Boobis AR, Battershill JM, Evidence for genotoxicity of pesticides in pesticide applicators: a review. Mutagenesis, 2006; 21 (2): 93-103.Bertoncini CR, Meneghini R. DNA strand breaks produced by oxidative stress in mammalian cells exhibit 3′-phosphoglycolate termini Nucleic Acids. 1995; 23: 2995–3002.Shrivastava R, Upreti RK, Seth PK, Chaturvedi UC. Effects of chromium on the immune system FEMS Immunol. Med. Microbiol. 2002; 34 (1): 1–7.Nesnow S., Roop BC, Lambert G., Kadiiska M., Mason RP, Cullen W.R, Mass MJ. DNA damage induced by methylated trivalent arsenicals is mediated by reactive oxygen species. Chemical Research Toxicology. 2002; 15: 1627–1634.Basu A, Ghosh P, Das JK, Banerjee A, Ray K, Giri AK. Micronuclei as biomarkers of carcinogen exposure in populations exposed to arsenic through drinking water in West Bengal, India: a comparative study in three cell types. Cancer Epidemiology Biomarkers and Prevention. 2004; 13: 820–827Mahata J., Basu A., Ghoshal S., Sarkar JN, Roy AK, Poddar G., Nandy AK, Banerjee A., Ray K., Natarajan AT, Nilsson R, Giri AK. Chromosomal aberrations and sister chromatid exchanges in individuals exposed to arsenic through drinking water in West Bengal, India. Mutation Research. 2003; 534: 133–143.Ling YH, Jiang JD, Holland JF, Perez Soler R. Arsenic trioxide polymerization of microtubules and mitotic arrest before apoptosis in human tumor cell lines Molécular Pharmacology. 2002; 62: 529–538.Nesnow S., Roop BC, Lambert G., Kadiiska M., Mason RP, Cullen WR, Mass MJ. DNA damage induced by methylated trivalent arsenicals is mediated by reactive oxygen species. Chemical Research Toxicology. 2002; 15: 1627–1634.Antherieu S., Ledirac N., Luzy AP., Lenormand P., Caron JC, Rahmani R. Endosulfan decreases cell growth and apoptosis in human HaCaT keratinocytes: Partial ROS-dependent ERK1/2 mechanism. J Cell Physiol. 2007; 213: 177-86.Chaudhuri K, Selvaraj S, Pal AK. Studies on the genotoxicity of endosulfan in bacterial systems.1999. Mutat Res 439 (1): 63-7.IARC. 1987. Hexachlorocyclohexanes. In Overall Evaluations of Carcinogenicity. IARC Monographs on the Evaluation of Carcinogenic Risk of Chemicals to Humans, suppl. 7. Lyon, France: International Agency for Research on Cancer.pp. 220-222.Schulte-Hermann R, Parzefall W. 1981. Failure to discriminate initiation from promotion of liver tumors in a long-term study with the phenobarbital-type inducer alpha-hexachlorocyclohexane and the role of sustained stimulation of hepatic growth and monooxygenases. Cancer Res 41(10): 4140-4146Ecobicon, D.J. Toxic effects of pesticides. In: Klaassen et al. (eds). Casarett and Doull’s Toxicology: The basic science of poisons, 4th ed. New York: Maxwell McMillan Pergamon; 1991:573-580132. Volpe, E., Sambucci, M., Battistini, L., Borsellino, G., 2016. Fas-Fas ligand: checkpoint of T cell functions in multiple sclerosis. Front. Immunol. 7, 382.Wei, J., Zhang, L., Ren, L., Zhang, J., Yu, Y.,Wang, J., Duan, J., Peng, C., Sun, Z., Zhou,X., 2017. Endosulfan inhibits proliferation through the Notch signaling Path way in human umbilical vein endothelial cells. Environ. Pollut. 221, 26–36.Chen, Z.Y., Liu, C., Lu, Y.H., Yang, L.L., Li, M., He, M.D., et al., 2016. Cadmium exposure enhances bisphenol A-induced genotoxicity through 8-oxoguanine-DNA glycosylase-1 OGG1 inhibition in NIH3T3 fibroblast cells. Cell. Physiol. Biochem. 39, 961–974Sebastian, R., Raghavan, S.C., 2016. Induction of DNA damage and erroneous repair can explain genomic instability caused by Endosulfan. CarcinogenesisPalou, R., Palou, G., Quintana, D.G., 2016. A role for the spindle assembly checkpoint in the DNA damage response. Curr. GenetWei, J., Zhang, L., Wang, J., Guo, F., Li, Y., Zhou, X., Sun, Z., 2015. Endosulfan inducing blood hypercoagulability and endothelial cells apoptosis via the death receptor pathway in Wistar rats. Toxicol. 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