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TAVUK EMBRİYOLARININ EMBRİYOTOKSİSİTE VE TERATOJENİTE TESTLERİNDE KULLANIMI

Year 2015, Issue: 40, 13 - 22, 01.06.2015

Abstract

Günümüzde her alanda kimyasal madde kullanımında hızlı bir artış söz konusudur. Bu sebeple insanlar ve hayvanlar çevrelerinde bulunan pek çok değişik kimyasal maddeye maruz kalmaktadır. Bu maddelerin potansiyel risklerini ve olumsuz etkilerini değerlendiren embriyotoksisite ve teratojenite testleri her geçen gün daha çok önem kazanmaktadır. Bu derlemede alternatif bir deney hayvanı olarak tavuk embriyolarının çeşitli tekniklerle embriyotoksisite ve teratojenite çalışmalarında kullanımıyla ilgili yayınlar derlenmiştir.

References

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  • Brown LP, Flint OP, Orton TC and Gibson GG (1986). Chemical teratogenesis: Testing methods and the role of metabolism. Drug Metabolism and Drug Interactions 17 (3-4), 221-260.
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  • Brunström B, Broman D and Naf C (1990). Embryotoxicity of Polycyclic Aromatic Hydrocarbons (PAHs) in three domestic avian species, and of PAHs and coplanar Polychlorinated Biphenyls (PCBs) in the common eider. Environmental Pollution 67, 133-143.
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  • Budai P, Fejes S, Varnagy L, Somlyay IM and Takacs I (2001). Teratogenicity test of dimethoate containing insecticide formulation and heavy elements (Cu, Cd) in chicken embryos after administration as single compounds or in combination. Mededelingen / Universiteit Gent, Faculteit Landbouwkundige en Toegepaste Biologische Wetenschappen 66 (2b), 885-889.
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  • Davies WJ and Freeman SJ (1995). Chick embryotoxicity screening test (CHEST I and II). In: O’Hare S and Atterwill CK (eds.) Methods in Molecular Biology. In Vitro Toxicity Testing Protocols, Humana Press Inc., Totowa, NJ, 43, 307-310.
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  • Durmus E, Inan O, Çelik I, Sur E, Özkan Y, Acar A and Aydin MF (2005). Use of the fertilized hen’s egg in the evaluation of embryotoxicity of dental alloys. Journal of Biomedical Materials Research 72 (B), 322-327.
  • Dusek Z, Holejsovska I, Novotna B and Zemanova Z (2001). Embryotoxicity of 1,2-dibromoethane in chick embryos in ovo: Early and late effects. European Journal of Morphology 39 (2), 105-112.
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  • Farage-Elawar M and Francis BM (1988). Effects of fenthion, fenitrothion and desbromoleptophos on gait, acetylcholinesterase, and neurotoxic esterase in young chicks after in ovo exposure. Toxicology 49, 253
  • Fejes S, Budai P, Varnagy L, Molnar T, Szabo R and Fancsi T (2002). Toxicity of a mancozeb containing fungicide formulation and Cu-sulphate to chicken embryos after administration as single compounds or in combination. Mededelingen / Universiteit Gent, Faculteit Landbouwkundige en Toegepaste Biologische Wetenschappen 67/2, 105-109.
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  • Gilani SH and Alibhai Y (1990). Teratogenicity of metals to chick embryos. Journal of Toxicology and Environmental Health 30 (1), 23-31.
  • Hamburger V and Hamilton HL (1951). A series of normal stages in the development of chick embryo. Journal of Morphology 88, 49-92.
  • Hamilton JV, Denison MS and Bloom SE (1983). Development of basal and induced aryl hydrcarbon (benzo(a)pyrene) hydroxylase activity in the chick embryo in ovo. Proceedings of the National Academy of Sciences of the United States of America 80, 3372-3376.
  • Harold TT, Bruyere J, Steve J, Kargas A, Nishikawa T, Takagi Y and Gilbert EF (1987). Alcohol induces cardiovascular malformations in the chick embryo. Teratology 35, 95-103.
  • Hashizume R, Noda A, Itoh M, Yamamoto Y, Masui S, Oka M and Nakamura T (1992). Studies on teratological testing using chicken embryos-effects of solvents, injection sites and the age of the embryo. Jikken Dobutsu 41 (3), 349-356.
  • Heinrich-Hirsch B and Neubert D (1991). Effect of Aciclovir on the development of the chick embryo in ovo. Archives of Toxicology 65, 402-408.
  • Henry MH and Wyatt RD (2001). The toxicity of fumonisin B1, B2 and B3, individually and in combination, in chicken embryos. Poultry Science 80 (4), 401-407.
  • Hothorn LA, Reisinger K, Wolf T, P Albrecht, Fieblinger D, Liebsch M And Pirow R (2013). Statistical analysis of the hen’s egg test for micronucleus induction (HET-MN assay). Mutation Research/DNA Repair 757, 68-78.
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THE USE OF CHICK EMBRYOS IN EMBRYOTOXICITY AND TERATOGENICITY TESTS

Year 2015, Issue: 40, 13 - 22, 01.06.2015

Abstract

Nowadays there is a rapid increase in the use of chemical substances in every field. Therefore human beings and animals are exposed to a large number of chemical substances in their environment. Embryotoxicity and teratogenicity tests about the adverse effects and potential risks of these substance gain increasingly more importance. In this review, publications about the use of chick embryos as an alternative experiment animal in embryotoxicity and teratogenicity studies by various techniques have been compiled.

References

  • Ahmed AA, Soliman MM, Khlifa BAA, El-Sadek SE and Nounou AH (1988). Embryocidal and teratogenic effects of paraquat on chick embryos and white rats. Archiv fur Experimentelle Veterinarmedizin 42, 848- 853.
  • Ameenuddin S and Sunde ML (1984). Sensitivity of chick embryo to various solvents used in egg injection studies. Proceedings of the Society for Experimental Biology and Medicine 175, 176-178.
  • Aydın MF, Çelik İ, Sur E, Özparlak H ve Telatar T (2005). Yumurtaya verilen Aflatoksin B1’in civciv çıkış ağırlığı üzerindeki etkileri. Veteriner Bilimler Dergisi 21 (1-2), 85-89.
  • Becker SRB and Shibley IA (1998). Teratogenicity of ethanol in different chicken strains. Alcohol Alcoholism 33 (5), 457-464.
  • Brown LP, Flint OP, Orton TC and Gibson GG (1986). Chemical teratogenesis: Testing methods and the role of metabolism. Drug Metabolism and Drug Interactions 17 (3-4), 221-260.
  • Bruel MT and David D (1980. Effects of an organophosphorous pesticide, dichlorvos, on germ cells of the undifferentiated gonads of young quail embryos. Comptes Rendus des Seances de la Societe de Biologie et de ses Filiales 174 (2), 163-169.
  • Brunström B, Broman D and Naf C (1990). Embryotoxicity of Polycyclic Aromatic Hydrocarbons (PAHs) in three domestic avian species, and of PAHs and coplanar Polychlorinated Biphenyls (PCBs) in the common eider. Environmental Pollution 67, 133-143.
  • Bryan TE, Gildersleeve RP and Wiard RP (1989). Exposure of Japanese quail embryos to o,p´-DDT has long- term effects on reproductive behaviors, hematology and feather morphology. Teratology 39, 525-535.
  • Budai P, Fejes S, Varnagy L, Somlyay IM and Takacs I (2001). Teratogenicity test of dimethoate containing insecticide formulation and heavy elements (Cu, Cd) in chicken embryos after administration as single compounds or in combination. Mededelingen / Universiteit Gent, Faculteit Landbouwkundige en Toegepaste Biologische Wetenschappen 66 (2b), 885-889.
  • Budai P, Fejes S, Varnagy L, Szabo R and Keseru M (2002). Embryonic toxicity of a dimethoate containing insecticide formulation and Cu-Sulphate in chicken after individual or combined administration. Mededelingen / Universiteit Gent, Faculteit Landbouwkundige en Toegepaste Biologische Wetenschappen 67 (2), 99-103.
  • Chibber G and Gilani SH (1986). Acrolein and embryogenesis: An experimental study. Environmental Research 39, 44-49.
  • Cilievici O, Cordos I, Ghidus E and Moldovan A (1980). The toxic and teratogenic effect of Aflatoxin B1 on the chick embryo development. Morphology Embryology 26 (4), 309-314.
  • Çelik İ, Oğuz H, Demet Ö, Boydak M, Dönmez HH, Sur E and Nizamlioğlu F (2000). Emryotoxicity assay of aflatoxin produced by Aspergillus parasiticus Nrrl 2999. British Poultry Science 41 (4), 401-409.
  • David D (1982). Influence of technical and commercial decamethrin, a new synthetic pyrethroid, on the gonadic germ population in quail embryos. Archives d Anatomie, d Histologie et d Embryologie 65, 99-110.
  • Davies WJ and Freeman SJ (1995). Chick embryotoxicity screening test (CHEST I and II). In: O’Hare S and Atterwill CK (eds.) Methods in Molecular Biology. In Vitro Toxicity Testing Protocols, Humana Press Inc., Totowa, NJ, 43, 307-310.
  • Deli E and Kiss Z (1988). Effect of parathion and methylparathion on protein content of chicken embryo muscle in vivo. Biochemical Pharmacology 37 (17), 3251-3256.
  • Durmus E, Inan O, Çelik I, Sur E, Özkan Y, Acar A and Aydin MF (2005). Use of the fertilized hen’s egg in the evaluation of embryotoxicity of dental alloys. Journal of Biomedical Materials Research 72 (B), 322-327.
  • Dusek Z, Holejsovska I, Novotna B and Zemanova Z (2001). Embryotoxicity of 1,2-dibromoethane in chick embryos in ovo: Early and late effects. European Journal of Morphology 39 (2), 105-112.
  • Dusek Z, Novotna B, Vodickova L, Naprstkova I, Dostal M and Vilhelmova M (2003). Effects of 1,2- dibromoethane on haematopoiesis in the chick embryo. Xenobiotica 33 (4), 443-458.
  • Elovaara E, Hemminki K and Vainio H (1979). Effects of methylene chloride, trichloroethane, tetrachloroethylene and toluen on the development of chick embryos. Toxicology 12, 111-119.
  • El-Sayyad HI, El-Gammal SA and Kariem SA (1996). Some aspects of growth deformities of chick embryos induced by flufenoxuron. Journal of Union of Arab Biologists Cairo A Zoology 5 (A), 313-329.
  • Etches R (1996). Reproduction in Poultry. CAB International, Cambridge.
  • Farage-Elawar M and Blaker WD (1992). Chick embryo exposure to carbamates alters neurochemical parameters and behavior. Journal of Applied Toxicology 12 (6), 421-426.
  • Farage-Elawar M and Francis BM (1988). Effects of fenthion, fenitrothion and desbromoleptophos on gait, acetylcholinesterase, and neurotoxic esterase in young chicks after in ovo exposure. Toxicology 49, 253
  • Fejes S, Budai P, Varnagy L, Molnar T, Szabo R and Fancsi T (2002). Toxicity of a mancozeb containing fungicide formulation and Cu-sulphate to chicken embryos after administration as single compounds or in combination. Mededelingen / Universiteit Gent, Faculteit Landbouwkundige en Toegepaste Biologische Wetenschappen 67/2, 105-109.
  • Fox LL and Grasman KA (1999). Effects of PCB 126 on primary immune organ development in chicken embryos. Journal of Toxicology and Environmental Health 58, 233-244.
  • Gilani SH and Alibhai Y (1990). Teratogenicity of metals to chick embryos. Journal of Toxicology and Environmental Health 30 (1), 23-31.
  • Hamburger V and Hamilton HL (1951). A series of normal stages in the development of chick embryo. Journal of Morphology 88, 49-92.
  • Hamilton JV, Denison MS and Bloom SE (1983). Development of basal and induced aryl hydrcarbon (benzo(a)pyrene) hydroxylase activity in the chick embryo in ovo. Proceedings of the National Academy of Sciences of the United States of America 80, 3372-3376.
  • Harold TT, Bruyere J, Steve J, Kargas A, Nishikawa T, Takagi Y and Gilbert EF (1987). Alcohol induces cardiovascular malformations in the chick embryo. Teratology 35, 95-103.
  • Hashizume R, Noda A, Itoh M, Yamamoto Y, Masui S, Oka M and Nakamura T (1992). Studies on teratological testing using chicken embryos-effects of solvents, injection sites and the age of the embryo. Jikken Dobutsu 41 (3), 349-356.
  • Heinrich-Hirsch B and Neubert D (1991). Effect of Aciclovir on the development of the chick embryo in ovo. Archives of Toxicology 65, 402-408.
  • Henry MH and Wyatt RD (2001). The toxicity of fumonisin B1, B2 and B3, individually and in combination, in chicken embryos. Poultry Science 80 (4), 401-407.
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Other ID JA57ZA87SB
Journal Section Research Articles
Authors

Haluk Özparlak This is me

Publication Date June 1, 2015
Submission Date June 1, 2015
Published in Issue Year 2015 Issue: 40

Cite

APA Özparlak, H. (2015). TAVUK EMBRİYOLARININ EMBRİYOTOKSİSİTE VE TERATOJENİTE TESTLERİNDE KULLANIMI. Selçuk Üniversitesi Fen Fakültesi Fen Dergisi(40), 13-22.
AMA Özparlak H. TAVUK EMBRİYOLARININ EMBRİYOTOKSİSİTE VE TERATOJENİTE TESTLERİNDE KULLANIMI. sufefd. June 2015;(40):13-22.
Chicago Özparlak, Haluk. “TAVUK EMBRİYOLARININ EMBRİYOTOKSİSİTE VE TERATOJENİTE TESTLERİNDE KULLANIMI”. Selçuk Üniversitesi Fen Fakültesi Fen Dergisi, no. 40 (June 2015): 13-22.
EndNote Özparlak H (June 1, 2015) TAVUK EMBRİYOLARININ EMBRİYOTOKSİSİTE VE TERATOJENİTE TESTLERİNDE KULLANIMI. Selçuk Üniversitesi Fen Fakültesi Fen Dergisi 40 13–22.
IEEE H. Özparlak, “TAVUK EMBRİYOLARININ EMBRİYOTOKSİSİTE VE TERATOJENİTE TESTLERİNDE KULLANIMI”, sufefd, no. 40, pp. 13–22, June 2015.
ISNAD Özparlak, Haluk. “TAVUK EMBRİYOLARININ EMBRİYOTOKSİSİTE VE TERATOJENİTE TESTLERİNDE KULLANIMI”. Selçuk Üniversitesi Fen Fakültesi Fen Dergisi 40 (June 2015), 13-22.
JAMA Özparlak H. TAVUK EMBRİYOLARININ EMBRİYOTOKSİSİTE VE TERATOJENİTE TESTLERİNDE KULLANIMI. sufefd. 2015;:13–22.
MLA Özparlak, Haluk. “TAVUK EMBRİYOLARININ EMBRİYOTOKSİSİTE VE TERATOJENİTE TESTLERİNDE KULLANIMI”. Selçuk Üniversitesi Fen Fakültesi Fen Dergisi, no. 40, 2015, pp. 13-22.
Vancouver Özparlak H. TAVUK EMBRİYOLARININ EMBRİYOTOKSİSİTE VE TERATOJENİTE TESTLERİNDE KULLANIMI. sufefd. 2015(40):13-22.

Journal Owner: On behalf of Selçuk University Faculty of Science, Rector Prof. Dr. Metin AKSOY
Selcuk University Journal of Science Faculty accepts articles in Turkish and English with original results in basic sciences and other applied sciences. The journal may also include compilations containing current innovations.

It was first published in 1981 as "S.Ü. Fen-Edebiyat Fakültesi Dergisi" and was published under this name until 1984 (Number 1-4).
In 1984, its name was changed to "S.Ü. Fen-Edeb. Fak. Fen Dergisi" and it was published under this name as of the 5th issue.
When the Faculty of Letters and Sciences was separated into the Faculty of Science and the Faculty of Letters with the decision of the Council of Ministers numbered 2008/4344 published in the Official Gazette dated 3 December 2008 and numbered 27073, it has been published as "Selcuk University Journal of Science Faculty" since 2009.
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