Mycotoxin – induced apoptosis in swine kidney epithelial cells

Authors

  • Agnieszka Chrustek Department of Physiology and Toxicology, Institute of Experimental Biology, Faculty of Natural Sciences, Kazimierz Wielki University, Bydgoszcz, Chodkiewicza 30, 85 064 Bydgoszcz, Poland
  • Magdalena Twarużek Department of Physiology and Toxicology, Institute of Experimental Biology, Faculty of Natural Sciences, Kazimierz Wielki University, Bydgoszcz, Chodkiewicza 30, 85 064 Bydgoszcz, Poland
  • Ewa Zastempowska Department of Physiology and Toxicology, Institute of Experimental Biology, Faculty of Natural Sciences, Kazimierz Wielki University, Bydgoszcz, Chodkiewicza 30, 85 064 Bydgoszcz, Poland
  • Jan Grajewski Department of Physiology and Toxicology, Institute of Experimental Biology, Faculty of Natural Sciences, Kazimierz Wielki University, Bydgoszcz, Chodkiewicza 30, 85 064 Bydgoszcz, Poland

Keywords:

aflatoxins, apoptosis, mycotoxins, ochratoxin A, swine kidney cell line, T2 toxin

Abstract

Apoptosis, as the programmed cell death, plays a significant role in proper functioning of an organism, both in the postnatal period and during embryogenesis. Disturbances in this process can lead to the occurrence of several dysfunctions, e.g. cancer, stroke, Alzheimer’s disease and others. Apoptosis can be triggered by factors such as oxidative stress, free radicals, UV radiation and cytotoxic drugs, but also mycotoxins, e.g. aflatoxins, ochratoxin A and trichothecenes. These toxins are produced primarily by fungi of Aspergillus, Penicillium, Fusarium and Stachybotrys genera. The aim of the study was to investigate the effect of mycotoxins on the occurrence of apoptosis in the swine kidney (SK) epithelial cells. For this purpose, trichothecene T2 toxin was used at a concentration of 2.5 µM and 25 µM, aflatoxin B1 at a dose of 10 µM and 30 µM, and ochratoxin A concentrations of 50 µM and 80 µM. The results were assessed using flow cytometer Muse Cell Analyzer (Merck). Studies have shown high sensitivity of the cell line SK on mycotoxins. Apoptosis was caused by all kinds of toxins and depended on the dose of examined substance. T2 toxin at a concentration of 2.5 µM caused apoptosis in 6.9% of the cells, whereas at a concentration of 25 µM in 26.35% of the cells. Aflatoxin B1 used at concentrations of 10 µM and 30 µM caused apoptosis in 13.5% and 40.6% of the cells, respectively. The use of ochratoxin A in concentrations of 50 µM and 80 µM caused the occurrence of apoptosis respectively in 68.51% and 60.41% of the cells.

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References

Al-Hammadi, S., Marzouqi, F., Al-Mansouri, A., Shahin, A., Al-Shamsi, M., Mensah-Brown, E., Souid, A. (2014). The cytotoxicity of aflatoxin B1 in human lymphocytes. Sultan Qaboos University Medical Journal, 14(1), 65–71.

Chen, J., Cao, J., Chu, Y., Wang, Z., Yang, Z., Wang, H. (2008). T-2 toxin-induced apoptosis involving Fas, p53, Bcl-xL, Bcl-2, Bax and caspase-3 signaling pathways in human chondrocytes. Journal of Zhejiang University Science B, 9(6), 455–463. https://doi.org/10.1631/jzus.B0820013

Chopra, M., Link, P., Michels, C., Schrenk, D. (2010). Characterization of ochratoxin A-induced apoptosis in primary rat hepatocytes. Cell Biology and Toxicology, 26(3), 239–254.

Darif, Y., Mountassi, D., Belkebir, A., Zaid, Y., Basu, K., Mourad, W., Oudghiri, M. (2016). Ochratoxin A mediates MAPK activation, modulates IL-2 and TNF-α mRNA expression and induces apoptosis by mitochondria-dependent and mitochondria-independent pathway in human H9 T cells. The Journal of Toxicological Sciences, 41(3), 403–416. https://doi.org/10.2131/jts.41.403

Darzynkiewicz, Z., Juan, G., Li, X., Gorczyca, W., Murakami, T., Traganos, F. (1997). Cytometry in cell necrobiology analysis of apoptosis and accidental cell death (necrosis). Cytometry, 27(1), 1–20.

Doi, K., Ishigami, N., Sehata, S. (2008). T-2 Toxin-induced toxicity in pregnant mice and rats. International Journal of Molecular Sciences, 9(11), 2146–2158. https://doi.org/10.3390/ijms9112146

Elmore, S. (2007). Apoptosis: a review of programmed cell death. Toxicologic Pathology, 35(4), 455–516. https://doi.org/10.1080/01926230701320337

Fadeel, B., Orrenius, S. (2005). Apoptosis a basic biological phenomenon with wide-ranging implications in human disease. Journal of Internal Medicine, 258(6), 479–517. https://doi.org/10.1111/j.1365-2796.2005.01570.x

Grajewski, J. (2006). Mikotoksyny i grzyby pleśniowe zagrożenia dla człowieka i zwierząt. Bydgoszcz: Wydawnictwo UKW. [In Polish]

Grajewski, J., Jarzemski, P., Twarużek, M., Kuźmińska, K., Trępała, M. (2007). The level of Ochratoxin A in patients after nephrectomy. Mycotoxin Research, 23(1), 22–26. https://doi.org/10.1007/BF02946020

Haake, A.R., Polakowska, R.R. (1993). Cell death by apoptosis in epidermal biology. Journal of Investigative Dermatology, 101(2), 107–112. https://doi.org/10.1111/1523-1747.ep12363594

Kerr, J.F.R., Wyllie, A.H., Currie, A.R. (1972). Apoptosis: a basic biological phenomenon with wide-ranging implications in tissue kinetics. British Journal of Cancer, 26(4), 239–257.

Kopaczewska, M., Kopaczewski, B. (2004). Apoptoza – genetycznie zaprogramowana śmierć komórki. Nowiny Lekarskie, 73(5), 389–392. [In Polish]

Kosicki, R., Błajet-Kosicka, A., Grajewski, J., Twarużek, M. (2016). Multiannual mycotoxin survey in feed materials and feedingstuffs. Animal Feed Science and Technology, 215, 165–180. https://doi.org/10.1016/j.anifeedsci.2016.03.012

Li, G., Shinozuka, J., Uetsuka, K., Nakayama, H., Doi, K. (1997). T-2 toxin-induced apoptosis in intestinal crypt epithelial cells of mice. Experimental and Toxicologic Pathology, 49(6), 447–450.

Liu, J., Wang, L., Guo, X., Pang, Q., Wu, S., Wu, C., Xu, P., Bai, Y. (2014). The role of mitochondria in T-2 toxin-induced human chondrocytes apoptosis. Plos One, 9(9), e108394. https://doi.org/10.1371/journal.pone.0108394

Liu, J., Wang, Q.C., Han, J., Xiong, B., Sun, S. (2015a). Aflatoxin B1 is toxic to porcine oocyte maturation. Mutagenesis, 30(4), 527–535. https://doi.org/10.1093/mutage/gev015

Liu, J., Wu, S., Shen, H., Cui, J., Wang, Y., Xing, L., Wang, J., Yan, X., Zhang, X. (2015b). Ochratoxin A induces DNA damage and G2 phase arrest in human esophageal epithelium Het-1A cells in vitro. The Journal of Toxicological Sciences, 40(5), 657–665. https://doi.org/10.2131/jts.40.657

Majno, G., Joris, I. (1995). Apoptosis, oncosis and necrosis. American Journal of Pathology, 146(1), 3–15.

Nakagawa, T., Zhu, H., Morishima, N., Li, E., Xu, J., Yankner, B.A., Yuan, J. (2000). Caspase-12 mediates endoplasmic-reticulum-specific apoptosis and cytotoxicity by amyloid-beta. Nature, 403(6765), 98–103. https://doi.org/10.1038/47513

Ockner, R.K. (2001). Apoptosis and liver diseases: recent concepts of mechanism and significance. Journal of Gastroenterology and Hepatology, 16(3), 248–260. https://doi.org/10.1046/j.1440-1746.2001.02426.x

Peng, X., Yu, Z., Liang, N., Chi, X., Li, X., Jiang, M., Fang, J., Cui, H., Lai, W., Zhou, Y., Zhou, S. (2016). The mitochondrial and death receptor pathways involved in the thymocytes apoptosis induced by aflatoxin B1. Oncotarget, 7(11), 12222–12234. https://doi.org/10.18632/oncotarget.7731

Shinozuka, J., Li, G., Kiatipattanasakul, W., Uetsuka, K., Nakayama, H., Doi, K. (1997). T-2 toxin-induced apoptosis in lymphoid organs of mice. Experimental and Toxicologic Pathology, 49(5), 387–392. https://doi.org/10.1016/S0940-2993(97)80124-8

Smolewski, P., Darzynkiewicz Z. (2003). Współczesne metody badania apoptozy. Acta Haematologica Polonica, 34(1), 35–47. [In Polish]

Stępień, A., Izdebska, M., Grzanka, A. (2007). Rodzaje śmierci komórki. Postępy Higieny Medycyny Doświadczalnej, 61, 420–428. [In Polish]

Trump, B.F., Berezesky, I.K., Chang, S.H., Phelps, P.C. (1997). The pathways of cell death: oncosis, apoptosis, and necrosis. Toxicologic Pathology, 25(1), 82–88.

Twarużek, M., Błajet-Kosicka, A., Grajewski, J. (2013). Occurrence of aflatoxins in selected spices in Poland. Journal of Consumer Protection and Food Safety, 8(1), 57–60. https://doi.org/10.1007/s00003-013-0813-4

Wang, X., Liu, Q., Ihsan, A., Huang, L., Dai, M., Hao, H., Cheng, G., Liu, Z., Wang, Y., Yuan, Z. (2012). JAK/STAT pathway plays a critical role in the proinflammatory gene expression and apoptosis of RAW264.7 cells induced by trichothecenes as DON and T-2 toxin. Toxicological Sciences, 127(2), 412–424. https://doi.org/10.1093/toxsci/kfs106

Wróbel, B. (2014). Zagrożenia zwierząt i ludzi toksynami grzybów pleśniowych zawartych w paszach i żywności. Water-Enviroment-Rural Areas, 3(47), 159–176. [In Polish]

Zastempowska, E., Grajewski, J., Twarużek, M. (2016). Food-borne pathogens and contaminants in raw milk – a review. Annals of Animal Science, 16(3), 623–639. https://doi.org/10.1515/aoas-2015-0089

Zhang, X., Boesch-Saadatmandi, C., Lou, L., Wolffram, S., Huebbe, P., Rimbach, G. (2009). Ochratoxin A induces apoptosis in neuronal cells. Genes & Nutrition, 4(1), 41–48. https://doi.org/10.1007/s12263-008-0109-y

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Published

2016-12-31

How to Cite

Chrustek, A., Twarużek, M., Zastempowska, E., & Grajewski, J. (2016). Mycotoxin – induced apoptosis in swine kidney epithelial cells. Annales Universitatis Paedagogicae Cracoviensis Studia Naturae, 1(1), 105–114. Retrieved from https://aupcstudianaturae.uken.krakow.pl/article/view/5395

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Section

Experimental Biology