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Zastosowanie hodowli in vitro komórek ludzkich w badaniach pestycydów

Treść / Zawartość
Identyfikatory
Warianty tytułu
EN
The application of the human cell culture in the studies of pesticides impact on the human organism
Języki publikacji
PL
Abstrakty
PL
W celu zapewnienia zasobów żywności dla rosnącej populacji ludzkiej, powszechnie stosowane są środki ochrony roślin (ś.o.r.) zabezpieczające rośliny przed chorobami wirusowymi, bakteryjnymi, grzybowymi i szkodnikami oraz preparaty stymulujące ich wzrost i rozwój, zwane pestycydami. Celem pracy jest przedstawienie przeglądu literatury na temat sposobu działania ich substancji czynnych (s.cz.) oraz wpływu jaki wywierają na organizm człowieka na poziomie komórkowym. Obecnie powszechnie wykorzystywanym modelem badawczym są hodowle in vitro ludzkich linii komórkowych. Odpowiednio dobrane do eksperymentu linie komórkowe pozwalają na badanie absorpcji różnych substancji chemicznych, w tym pestycydów, poprzez nabłonek układu pokarmowego, oddechowego i skórę. Umożliwiają one ocenę wpływu pestycydów na podstawowe parametry stresu oksydacyjnego oraz funkcjonowanie układu hormonalnego na poziomie molekularnym.
EN
In order to provide the food supply for an increasing human population products protecting plants against viral diseases, bacterial, fungal, pests and preparations stimulating their growth and development, known as pesticides, are commonly used. The aim of the paper is to show the way of their actions and the impact they have on the human body at the cellular level. Currently, in vitro cultures of human cell lines are a common model for research in this field. Properly chosen for the experiment cell lines allow for the study of the absorption of various chemicals, including pesticides through the epithelium of the digestive system, respiratory system and skin. They also enable the study of the effects of pesticides on the basic parameters of oxidative stress and the functioning of the endocrine system at the molecular level.
Rocznik
Strony
29--40
Opis fizyczny
Bibliogr. 43 poz., rys., tab.
Twórcy
  • Wydział Budownictwa i Inżynierii Środowiska, Politechnika Białostocka, ul. Wiejska 45A, 15-351 Białystok
autor
  • Wydział Budownictwa i Inżynierii Środowiska, Politechnika Białostocka, ul. Wiejska 45A, 15-351 Białystok
autor
  • Wydział Budownictwa i Inżynierii Środowiska, Politechnika Białostocka, ul. Wiejska 45A, 15-351 Białystok
  • Wydział Budownictwa i Inżynierii Środowiska, Politechnika Białostocka, ul. Wiejska 45A, 15-351 Białystok
Bibliografia
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  • Baandrup M., Ballegaard T. (1989). Three years field experience with an advisory computer system applying factor-adjusted doses. The BCPC Conference – Weeds, Vol. 2, 555-560.
  • Bukowska B., Rychlik B., Krokosz A., Michałowicz J. (2008). Phenoxyherbicides induce production of free radicals in human erythrocytes: oxidation of dichlorodihydrofluorescine and dihydrorhodamine 123 by 2,4-D-Na and MCPA-Na. Food Chem Toxicol., Vol. 46, 1, 359-367.
  • Buonocore G., Perrone S., Tataranno M.L. (2010). Oxygen toxicity: chemistry and biology of reactive oxygen species. Semin. Fetal Neonatal. Med., Vol. 15, 4, 186-190.
  • Butterfield D.A. (2002). Amyloid beta-peptide (1-42)-induced oxidative stress and neurotoxicity: implications for neurodegeneration in Alzheimer's disease brain. A review. Free Radic. Res., Vol. 36, 12, 1307-1313.
  • Butterfield D.A., Lauderback C.M. (2002). Lipid peroxidation and protein oxidation in Alzheimer's disease brain: potential causes and consequences involving amyloid beta-peptideassociated free radical oxidative stress. Free Radic. Biol. Med., Vol. 32, 11, 1050-1060.
  • Coble H.D. (1996). Weed management tools and their impact on the agro-ecosystem. In: Proc. 2nd International Weed Control Congress, Copenhagen, Denmark, 1143-1146.
  • Cochranc C.G. (1991). Cellular injury by oxidants. Am. J. Med., Vol. 92, 235-305.
  • Coleman M.D., O’Neil J.D., Woehrling E.K., Ndunge O.B.A., Hill E.J., Menache A., Reiss C.J. (2012). A Preliminary Investigation into the Impact of a Pesticide Combination on Human Neuronal and Glial Cell Lines In Vitro. PLoS ONE, Vol. 7, 8, e42768.
  • Forbes I.I. (2000). Human airway epithelial cell lines for in vitro drug transport and metabolism studies. Pharm. Sci. Technol. Today., Vol. 3, 1, 18-27.
  • Fuchs J., Zollner T.M., Kaufmann R., Podda M. (2001). Redoxmodulated pathways in inflammatory skin diseases. Free Radic. Biol. Med., Vol. 30, 4, 337-353.
  • Goodyear-Bruch C., Pierce J.D. (2002). Oxidative stress in critically ill patients. Am. J. Crit. Care., Vol. 11, 6, 543-551.
  • Gupta P.K. (2012). Toxicity of herbicides. R.C. Gupta (Ed.), Veterinary Toxicology: Basic and Clinical Principles (2nd edn), Academic Press/Elsevier, Amsterdam, 631-652.
  • Halliwell B. (1994a). Free radicals, antioxidants and human disease: Curiosity, causes and consequences. Lancet, Vol. 344, 721-724.
  • Halliwell, B. (1994b). Free radicals and antioxidants: A personal view. Naut. Rev., Vol. 52, 235-265.
  • He X., Wang L., Szklarz G., Bi Y., Ma Q. (2012). Resveratrol inhibits paraquat-induced oxidative stress and fibrogenic response by activating the nuclear factor erythroid 2-related factor 2 pathway. J. Pharmacol. Exp. Ther., Vol. 342, 1, 81-90.
  • Huovinen M., Loikkanen, J., Naarala, J., Vähäkangas, K. (2015). Toxicity of diuron in human cancer cells. Toxicol. In Vitro., Vol. 29, 7, 1577-1586.
  • Kawaratani Y., Matsuoka T., Hirata Y., Fukata N., Nagaoka Y., Uesato S. (2015). Influence of the carbamate fungicide benomyl on the gene expression and activity of aromatase in the human breast carcinoma cell line MCF-7. Environ. Toxicol. Pharmacol., Vol. 39, 1, 292-299.
  • Keikotlhaile B.M., Spanoghe P., Steurbaut W. (2010). Effects of food processing on pesticide residues in fruits and vegetables: a meta-analysis approach. Food Chem. Toxicol., Vol. 48, 1-6.
  • Kim Y.S., Podder B., Song H.Y. (2013). Cytoprotective effect of alpha-lipoic acid on paraquat-exposed human bronchial epithelial cells via activation of nuclear factor erythroid related factor-2 pathway. Biol. Pharm. Bull., Vol. 36, 5, 802-811.
  • Kimura O., Tsukagoshi K., Hayasaka M., Endo T. (2012). Transepithelial transport of 4-chloro-2-methylphenoxyacetic acid (MCPA) across human intestinal Caco-2 cell monolayers. Basic Clin. Pharmacol. Toxicol., Vol. 110, 6, 530-536.
  • Kjærstad M.B., Taxvig C., Nellemann C., Vinggaard A.M., Andersen H.R. (2010). Endocrine disrupting effects in vitro of conazole antifungals used as pesticides and pharmaceuticals. Reprod. Toxicol., Vol. 30, 4, 573-582.
  • Kortenkamp A. (2007). Ten years of mixing cocktails: a review of combination effects of endocrine-disrupting chemicals. Environ. Health Perspect., Vol. 115 Suppl 1, 98-105.
  • Lachance P.A., Nakat Z., Jeong W.S. (2001). Antioxidants: an integrative approach. Nutrition., Vol. 17, 10, 835-838.
  • Li Z., Zhang H., Gibson M., Li J. (2012). An evaluation on combination effects of phenolic endocrine disruptors by estrogen receptor binding assay. Toxicol. In Vitro., Vol. 26, 6, 769-774.
  • Morinaga H., Yanase T., Nomura M., Okabe T., Goto K., Harada N., Nawata H. (2004). Abenzimidazole fungicide, benomyl, and its metabolite, carbendazim, induce aromatase activity in a human ovarian granulose-like tumor cell line (KGN). Endocrinology, Vol. 145, 1860-1869.
  • Paraviz A., Saiema R. (2014). Emerging Technologies and Management of Crop Stress Tolerance. Volume 1: Biological Techniques, Academic Press, Elsevier, 423-448.
  • Radice S., Chiesara E., Frigerio S., Fumagalli R., Parolaro D., Rubino T., Marabini L. (2006). Estrogenic effect of procymidone through activation of MAPK in MCF-7 breast carcinoma cell line. Life Sci., Vol. 78, 23, 2716-223.
  • Rastogi S.K., Satyanarayan P.V., Ravishankar D., Tripathi S. (2009). A study on oxidative stress and antioxidant status of agricultural workers exposed to organophosphorus insecticides during spraying. Indian J. Occup. Environ. Med., Vol. 13, 131-134.
  • Rathinasamy K., Panda D. (2008). Kinetic stabilization of microtubule dynamic instability by benomyl increases the nuclear transport of p53. Biochem. Pharmacol., Vol. 76, 1669-1680.
  • Regueiro J., Olguín N., Simal-Gándara J., Suñol C. (2015). Toxicity evaluation of new agricultural fungicides in primary cultured cortical neurons. Environ. Res., Vol. 140, 37-44.
  • Rich J.D., Gabriel S.M., Schultz-Norton J.R. (2012). In vitro effects of herbicides and insecticides on human breast cells. ISRN Toxicol., Vol. 2012, ID 232461, doi: 10.5402/2012/232461.
  • Rider C.V., Carlin D.J., Devito M.J., Thompson C.L., Walker N.J. (2013). Mixtures research at NIEHS: an evolving program. Toxicology., Vol. 313, 2-3, 94-102.
  • Rodriguez-Rocha H., Garcia-Garcia A., Pickett C., Li S., Jones J., Chen H., Webb B., Choi J., Zhou Y., Zimmerman M.C., Franco R., (2013). Compartmentalized oxidative stress in dopaminergic cell death induced by pesticides and complex I inhibitors: distinct roles of superoxide anion and superoxide dismutases. Free Radic. Biol. Med., Vol. 61, 370-383.
  • Rollerova E., Wsolova L., Urbancikova M. (2014). Herbicide acetochlor interferes with proliferation activity of MCF-7 cells enhanced by estradiol. Endocr. Regul., Vol. 48, 4, 195-200.
  • Schafer F.Q., Buettner G.R. (2001). Redox environment of the cell as viewed through the redox state of the glutathione disulfide/glutathione couple. Free Radic. Biol. Med., Vol. 30, 11, 1191-1212.
  • Shadnia S., Azizi E., Hosseini R., Khoei S., Fouladdel S., Pajoumand A., Jalali N., Abdollahi M. (2005). Evaluation of oxidative stress and genotoxicity in organophosphorus insecticide formulators. Hum. Exp. Toxicol., Vol. 24, 439-445.
  • Sułowicz S., Piotrowska-Seget Z. (2016). Oddziaływanie fungicydów na mikroorganizmy w środowisku glebowym. Post. Mikrobiol., Vol. 55, 1, 12-18.
  • Wrzosek J. Gworek B. Maciaszek D. (2009). Środki ochrony roślin w aspekcie ochrony środowiska. Ochrona Środowiska i Zasobów Naturalnych, Vol. 3, 75-88.
  • Zarkovic N. (2003). 4-hydroxynonenal as a bioactive marker of pathophysiological processes. Mol. Aspects Med., Vol. 24, 4-5, 281-291.
  • Zhang W., Jiang F., Ou J. (2011). Global pesticide consumption and pollution: with China as a focus. Proc. Internat. Acad. Ecol. Environ. Sci., Vol. 1, 2, 125-144.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-bf88bc57-c33f-483f-a5cd-2bd6e159a104
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