The effect of cadmium loading on protein synthesis function and functional state of laying hens’ liver

Abstract

B. Gutyj, A. Ostapiuk, N. Kachmar, O. Stadnytska, O. Sobolev, V. Binkevych, R. Petryshak, O. Petryshak, O. Kulyaba, A. Naumyuk, V. Nedashkivsky, N. Nedashkivska, N. Magrelo, I. Golodyuk, N. Nazaruk, O. Binkevych

In the article are considered issues related to the study of the effect of cadmium on the body of birds, in particular laying hens. The effect of cadmium sulfate at doses of 2.0 and 4.0 mg/kg body weight on protein synthesis function and functional state of the liver were investigated of cross-laying Hysex white hens, of 78 weeks old. Three groups of chickens were formed: two experimental and one control groups. The laying hens of the experimental groups were subjected to a cadmium load. Laying chickens of the first experimental group were given cadmium sulfate at a dose of 2.0 mg/kg body weight. Laying chickens of the second experimental group were given cadmium sulfate at a dose of 4.0 mg/kg body weight. Laying chickens in the control group were in the normal diet without cadmium. Increased activity of aminotransferases, in particular alanine and aspartate aminotransferases in their serum of hens, was observed during cadmium binge drinking in doses of 2.0 and 4.0 mg/kg body weight, respectively. These changes indicate a violation of the functional state of the liver of laying hens under conditions of cadmium load. In the study of protein synthesis of the liver of laying hens under conditions of cadmium loading, it was found that cadmium sulfate in the above doses contributed to a significant decrease in the level of total protein by 14, 21 and 30 days of the experiment. The reduction of total protein in the blood of laying hens was due to a decrease in the level of albumin, which in the second experimental group, respectively, decreased to 28.16 ± 0.75%, whereas in the first – 29.62 ± 0.98%. In the study of the level of globulins, it is possible to increase this indicator in both experimental groups of poultry for 21 days. Drinking with water cadmium sulfate at a dose of 4.0 mg/kg body weight was associated with a more likely decrease in total protein and albumin than drinking cadmium sulfate at a lower dose.
Keywords: Toxicology; Cadmium; Hens; Blood; Immune system
References
Al-Azemi, M., Omu, F.E., Kehinde, E.O., Anim, J.T., Oriowo, M.A., & Omu, A.E. (2010). Lithium protects against toxic effects of cadmium in the rat testes. J. Assist. Reprod. Genet, 27(8), 469–476. doi: https://doi.org/10.1007/s10815-010-9426-3/
Ali, M.M., Murthy, R.C., & Chandra, S.V. (1986). Developmental and longterm neurobehavioral toxicity of low–level in utero Cd exposure in rats. Neurobehavioral Toxicology and Teratology, 8(5), 463–468.
Antonio, M.T., Benito, M.J., Leret, M.L., & Corpas, I. (1998). Gestation administration of cadmium alters the neurotransmitter levels in newborn rat brains. J Appl Toxicol., 18(2), 83–88.
Chumachenko, V.Y., Chumachenko, V.V., & Pavlenko, O.I. (2004). Study of the immune system. Factors that have an influenceon the resistance of animals. Veterinary Medicine of Ukraine, 5, 33–37 (in Ukrainian).
El-Refaiy, A.I., & Eissa, F.I. (2012). Protective effects of ascorbic acid and zinc against cadmium-induced histopathological, histochemical and cytogenetic changes in rats. Comunicata Scientiae, 3(3), 162–180.
El-Shahat, A.E., Gabr, A., Meki, A.R., & Mehana, E.S. (2009). Altered testicular morphology and oxidative stress induced by cadmium in experimental rats and protective effect of simultaneous green tea extract. Int. J. Morphol., 27(3), 757–764. doi:https://doi.org/10.4067/S0717-95022009000300020
Fregoneze, J.B., Marinho, C.A., Soares, T., Castro, L., Sarmento, C., Cunha, M., Gonzalez, V., Oliveira, P., Nascimento, T., Luz, C.P., Santana, Jr. P., De-Oliveira, I.R., & e-Castro-e-Silva, E. (1997). Lead (Pb2+) and cadmium (Cd2+) inhibit the dipsogenic action of central beta-adrenergic stimulation by isoproterenol. Brazilian Journal of Medical and Biological Research, 30(3), 419–423. doi: https://doi.org/10.1590/S0100-879X1997000300018.
Grushanska, N. (2017). The content of heavy metals in the cow hair of the northern-eastern biogeochemical zone. Scientific Messenger of LNU of Veterinary Medicine and Biotechnologies, 19(73), 154–158. doi: https://doi.org/10.15421/nvlvet7332
Grynevych, N., Sliusarenko, A., Dyman, T., Sliusarenko, S., Gutyj, B., Kukhtyn, M., Hunchak, V. Kushnir, V. (2018). Etiology and histopathological alterations in some body organs of juvenile rainbow trout Oncorhynchus mykiss (Walbaum, 1792) at nitrite poisoning. Ukrainian Journal of Ecology, 8(1), 402–408. doi: https://doi.org/10.15421/2018_228
Gutyj, B. (2015). The influence of hydravite-e, e-selenium on activity of aminotransferases in bulls blood serum by chronic cadmium toxicosis. Scientific Messenger of LNU of Veterinary Medicine and Biotechnologies. Series: Veterinary Sciences, 17(2), 43-47. Retrieved from https://nvlvet.com.ua/index.php/journal/article/view/458
Gutyj, B., Grymak, Y., Drach, M., Bilyk, O., Matsjuk, O., Magrelo, N., Zmiya, M., & Katsaraba, O. (2017). The impact of endogenous intoxication on biochemical indicators of blood of pregnant cows. Regulatory Mechanisms in Biosystems, 8(3), 438–443. doi: https://doi.org/10.15421/021768. Gutyj, B., Hufriy, D., Binkevych, V., Vischur, V., Binkevych, O., & Kurlyak, I. (2015). The changes of biochemical and morphological indices of rats’ blood under chronic cadmium toxicosis. Scientific Messenger of LNU of Veterinary Medicine and Biotechnologies, 17(3), 120–123. Retrieved from https://nvlvet.com.ua/index.php/journal/article/view/531.
Gutyj, B., Martyshchuk, T., Bushueva, I., Semeniv, B., Parchenko, V., Kaplaushenko, A., Magrelo, N., Hirkovyy, A., Musiy, L., & Murska, S. (2017). Morphological and biochemical indicators of blood of rats poisoned by carbon tetrachloride and subject to action of liposomal preparation. Regulatory Mechanisms in Biosystems, 8(2), 304–309. doi: https://doi.org/10.15421/021748.
Gutyj, B., Nazaruk, N., Levkivska, A., Shcherbatyj, A., Sobolev, A., Vavrysevych, J., Hachak, Y., Bilyk, O., Vishchur, V., & Guta, Z. (2017). The influence of nitrate and cadmium load on protein and nitric metabolism in young cattle. Ukrainian Journal of Ecology, 7(2), 9–13
Gutyj, B., Stybel, V., Darmohray, L., Lavryshyn, Y., Turko, I., Hachak, Y., Shcherbatyy, A., Bushueva, I., Parchenko, V., Kaplaushenko, A., & Krushelnytska, O. (2017). Prooxidant-antioxidant balance in the organism of bulls (young cattle) after using cadmium load. Ukrainian Journal of Ecology, 7(4), 589–596. Gutyj, B.V. (2015). The activity of antioxidant protecting of the bulls for acute cadmium toxicosis. Scientific Messenger of LNU of Veterinary Medicine and Biotechnologies, 17(1), 31–36. Retrieved from https://nvlvet.com.ua/index.php/journal/article/view/214. Gutyj, B.V., Binkevych, V., & Binkevych, O. (2016). Hematological changes of rats after cadmium toxicosis. Scientific Messenger of LNU of Veterinary Medicine and Biotechnologies, 18(1), 165–167. Retrieved from https://nvlvet.com.ua/index.php/journal/article/view/110. Gutyj, B.V., Gufrij, D., Binkevych, V., Binkevych, O., Kurlyak, I., & Sobolta, A. (2015). Influence of Mevesel & E-selenium on level of intermediate and final products of lipid peroxidation in bulls’ blood after cadmium loading. Scientific Messenger of LNU of Veterinary Medicine and Biotechnologies, 17(1), 190–194. Retrieved from https://nvlvet.com.ua/index.php/journal/article/view/292/.
Gutyj, B.V., Murs'ka, S.D., Gufrij, D.F., Hariv, I.I., Levkivs'ka, N.D., Nazaruk, N.V., Gajdjuk, M.B., Pryjma, O.B., Bilyk, O.Ja., & Guta, Z.A. (2016). Influence of cadmium loading on the state of the antioxidant system in the organism of bulls. Visnyk of Dnipropetrovsk University. Biology, ecology, 24(1), 96–102. doi: https://doi.org/10.15421/011611
Gutyj, B.V., Ostapyuk, A.Y., Sobolev, O.I., Vishchur, V.J., Gubash, O.P., Kurtyak, B.M, Kovalskyi, Y.V., Darmohray, L.M., Hunchak, A.V., Tsisaryk, O.Y., Shcherbatyy, A.R., Farionik, T.V., Savchuk, L.B., Palyadichuk, O.R., & Hrymak, K. (2019). Cadmium burden impact on morphological and biochemical blood indicators of poultry. Ukrainian Journal of Ecology, 9(1), 236-239
Hariv, M.I., & Gutyj, B.V. (2016). Vplyv liposomalnoho preparatu Butaintervit na proteinsyntezuvalnu funktsiiu pechinky shchuriv za otruiennia tetrakhlormetanom [Influence of the liposomal preparation Butaintervite on protein synthesis function in the livers of rats under the influence of carbon tetrachloride poisoning]. Visnyk of Dnipropetrovsk University. Biology, medicine, 7(2), 123–126. doi: https://doi.org/10.15421/021622 (in Ukrainian). Hradovych, N., Paranyak, R., & Zabytivskyi, Y. (2016). Influence of zeolites on lead and cadmium content in separate links of trophic chain in hydroecosystems. Scientific Messenger of LNU of Veterinary Medicine and Biotechnologies, 18, 2(67), 61–65. doi: https://doi.org/10.15421/nvlvet6714.
Hutyi, B.V. (2013). Riven pokaznykiv nefermentnoi systemy antyoksydantnoho zakhystu orhanizmu bychkiv za umov kadmiievoho navantazhennia. Naukovyi visnyk Lvivskoho natsionalnoho universytetu veterynarnoi medytsyny ta biotekhnolohii im. Gzhytskoho, 15, 1(4), 40–45. Retrieved from http://nbuv.gov.ua/UJRN/nvlnu_2013_15_1(4)__10/ (in Ukrainian).
Hutyi, B.V. (2013). Vmist vitaminiv A i E u krovi bychkiv za umov kadmiievoi intoksykatsii. Visnyk Sumskoho natsionalnoho ahrarnoho universytetu. Seriia: Veterynarna medytsyna, 2, 31–33. Retrieved from http://nbuv.gov.ua/UJRN/Vsna_vet_2013_2_10/ (in Ukrainian).
Hutyi, B.V. (2013). Vplyv E-selenu na aktyvnist hlutationovoi systemy antyoksydantnoho zakhystu orhanizmu buhaitsiv pry kadmiievomu navantazhenni. Visnyk Sumskoho natsionalnoho ahrarnoho universytetu. Seriia: Veterynarna medytsyna. 9, 70–73. Retrieved from http://nbuv.gov.ua/UJRN/Vsna_vet_2013_9_22/ (in Ukrainian).
Hutyi, B.V. (2013). Vplyv E-selenu na vmist vitaminiv A i E u krovi bychkiv za umov kadmiievoi intoksykatsii. Naukovyi visnyk Lvivskoho natsionalnoho universytetu veterynarnoi medytsyny ta biotekhnolohii im. Gzhytskoho, 15, 3(3), 311–314. Retrieved from http://nbuv.gov.ua/UJRN/nvlnu_2013_15_3(3)__55/ (in Ukrainian).
Hutyi, B.V. (2013). Vplyv khlorydu kadmiiu u riznykh dozakh na aktyvnist aminotransferaz syrovatky krovi buhaitsiv. Naukovyi visnyk Lvivskoho natsionalnoho universytetu veterynarnoi medytsyny ta biotekhnolohii im. Gzhytskoho, 15, 1(1), 49–52. Retrieved from http://nbuv.gov.ua/UJRN/nvlnu_2013_15_1(1)__11/ (in Ukrainian).
Hutyi, B.V. (2013). Vplyv khlorydu kadmiiu u toksychnykh dozakh na hlutationovu systemu antyoksydantnoho zakhystu orhanizmu bychkiv. Veterynarna biotekhnolohiia, 22, 112–116. Retrieved from http://nbuv.gov.ua/UJRN/vbtb_2013_22_23/ (in Ukrainian).
Hutyi, B.V. (2013). Vplyv Meveselu na pokaznyky neenzymnoi systemy antyoksydantnoho zakhystu orhanizmu buhaitsiv za umov kadmiievoho navantazhennia. Biolohiia tvaryn, 15(3), 16–21. Retrieved from http://nbuv.gov.ua/UJRN/bitv_2013_15_3_4/ (inHutyi, B.V. (2013). Vplyv meveselu na vmist vitaminiv A i E u krovi bychkiv za umov kadmiievoi intoksykatsii. Naukovyi visnyk Lvivskoho natsionalnoho universytetu veterynarnoi medytsyny ta biotekhnolohii im. Gzhytskoho, 15, 3(1), 78–82. Retrieved from http://nbuv.gov.ua/UJRN/nvlnu_2013_15_3(1)__18/ (in Ukrainian).
Hutyi, B.V. (2013). Vplyv meveselu ta E-selenu na riven pokaznykiv ne fermentnoi systemy antyoksydantnoho zakhystu orhanizmu buhaitsiv pry kadmiievomu navantazhenni. Veterynarna medytsyna, 97, 419–421. Retrieved from http://nbuv.gov.ua/UJRN/vetmed_2013_97_172/ (in Ukrainian).
Khariv, M., Gutyj, B., Butsyak, V., & Khariv, I. (2016). Hematological indices of rat organisms under conditions of oxidative stress and liposomal preparation action. Biological Bulletin of Bogdan Chmelnitskiy Melitopol State Pedagogical University. 6 (1), 276–289. doi: http://dx.doi.org/10.15421/201615. Liu, J., Qian, S.Y., Guo, Q., Jiang, J., Waalkes, M.P., Mason, R.P., & Kadiiska, M.B. (2008). Cadmium generates reactive oxygen- and carbon-centered radicalspecies in rats: Insights from in vivo spin-trappingstudies. Free Radic Biol Med., 45(4), 475–481. doi: https://doi.org/10.1016/j.freeradbiomed.2008.04.041 Lu, J., Jin, T., Nordberg, G., & Nordberg, M. (2005). Metallothionein gene expression in peripheral lymphocytes and renal dysfunction in a population environmentally exposed to cadmium. Toxicol Appl Pharmacol 206(2), 150–156. doi: https://doi.org/10.1016/j.taap.2004.12.015. Nazaruk, N., Gutyj, B.V., & Hufriy, D. (2015). Influence of metifen and vitamix se on the activity of aminotransferases of bulls blood serum at cadmium nitrate loading. Scientific Messenger of LNU of Veterinary Medicine and Biotechnologies, 17(1), 121–126. Retrieved from https://nvlvet.com.ua/index.php/journal/article/view/231/.
Ostapyuk, A.Y., & Gutyj, B.V. (2018). Influence of cadmium loading on morphological parameters of blood of the Laying Hens. Scientific Messenger of Lviv National University of Veterinary Medicine and Biotechnologies, 20(88), 48–52. doi: https://doi.org/10.32718/nvlvet8808. Pavan Kumar, G., & Prasad, M.N.V. (2004). Cadmium-Inducible Proteins in Ceratophyllum demersum L. (a Fresh Water Macrophyte): Toxicity Bioassays and Relevance to Cadmium Detoxification. Bulletin of Environmental Contamination and Toxicology, 73(1), 174–181. doi: https://doi.org/10.1007/s00128-004-0410-4 Peng, L., Wang, X., Huo, X., Xu, X., Lin, K., Zhang, J., Huang, Y., & Wu, K. (2015). Blood cadmium burden and the risk of nasopharyngeal carcinoma: a case–control study in Chinese Chaoshan population. Environmental Science and Pollution Research, 22(16), 12323–12331. doi: https://doi.org/10.1007/s11356-015-4533-4. Rodríguez, E.M., Bigi, R., Medesani, D.A., Stella, V.S., Greco, L.S.L., Moreno, P.A.R., Monserrat, J.M., Pellerano, G.N., & Ansaldo, M. (2001). Acute and chronic effects of cadmium on blood homeostasis of an estuarine crab, Chasmagnathus granulata, and the modifying effect of salinity. Brazilian Journal of Medical and Biological Research. 34(4), 509–518. Sachko, R.G., Lesyk, Ja.V., Luchka, I.V., & Nevostruyeva, I.V. (2016). Contents of heavy metals in food, organism and animal products in the Zacarpathian biogeochemical province. Scientific Messenger LNUVMBT named after S.Z. Gzhytskyj, 18, 3(71), 87–90.doi: https://doi.org/10.15421/nvlvet7120.Salvatori, F., Talassi, CB, Salzgeber, S.A., Sipinosa, H.S., & Bernardi, M.M. (2004). Embryotoxic and long-term effects of cadmium exposure during embryogenesis in rats. Neurotoxicology and Teratology, 26(5), 673–680. doi: https://doi.org/10.1016/j.ntt.2004.05.001 Uetani, M., Kobayashi, E., Suwazono, Y., Okubo, Y., Honda, R., Kido, T., & Nogawa, K. (2005). Selenium, Cadmium, Zinc, Copper, and Iron Concentrations in Heart and Aorta of Patients Exposed to Environmental Cadmium. Bulletin of Environmental Contamination and Toxicology, 75(2), 246–250. doi: https://doi.org/10.1007/s00128-005-0744-6. Vlizlo, V.V. (2012). Laboratorni metody doslidzhen u biolohiyi, tvarynnytstvi ta veterynarniy medytsyni [Laboratory methods of investigation in biology, stock-breeding and veterinary]. Spolom, Lviv (in Ukrainian).

Share this article