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J. Vadlejch, I. Langrová, M. Borovský, M. Sedmíková, I. Jankovská, J. Fechtner and A. Lytvynets

. Res., 83: 47–51 http://dx.doi.org/10.1007/s004360050206 [11] Healer, J., Ashall, F., Maizels, R. M. (1991): Characterisation of proteolytic enzymes from larval and adult Nippostrongylus brasiliensis. Parasitology, 103: 305–314 http://dx.doi.org/10.1017/S0031182000059588 [12] Jankovská, I., Langrová, I., Vadlejch, J. (2003a): Arrested development of Trichostrongylus colubriformis in experimentally infected rabbits. Effect of acquired resistance, single, multiple doses and size of doses on rise of hypobiosis

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Radosław Kujawski, Justyna Baraniak, Małgorzata Kania, Joanna Bartkowiak-Wieczorek, Anna Bogacz, Marcin Ożarowski, Michał Cichocki, Ewa Spoz and Przemysław Ł. Mikołajczak

(1):251-280. 43. Gamet-Payrastre L. Signaling pathways and intracellular targets of sulforaphane mediating cell cycle arrest and apoptosis. Curr Cancer Drug Targets 2006; 6:135-145. 44. Clarke JD, Dashwood RH, Ho E. Multi-targeted prevention of cancer by sulforaphane, Cancer Lett 2008; 269:291-304. 45. Singh SV, Srivastava SK, Choi S, Lew KL, Antosiewicz J, Xiao D, Zeng Y, Watkins SC, Johnson CS, Trump DL, Lee YJ, Xiao H, Herman-Antosiewicz A. Sulforaphane-induced cell death in human prostate cancer cells is initiated by reactive oxygen species

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M. Borkovcová, I. Langrová and A. Totková

in den Wildbestanden. Schweiz. Z. Forst., 126: 361–372 [10] Kassai, T. (1999): Veterinary Helminthology. Butterworth-Heinemann, Oxford [11] Kotrlá, B. et al. (1984): Parasitosis of game animals. ČAV, Praha [12] Langrová, I., Makovcová, K., Vadlejch, J., Jankovská, I., Petrtýl, M., Fechtner, J., Keil, P., Lytvynets, A., Borkovcová, M. (2008): Arrested development of sheep strongyles: onset and resumption under field conditions of Central Europe

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J. Cui, Z. Wang and H. Han

[1] Arasu, P., Kwak, D. (1999): Developmental arrest and pregnancy-induced transmammary transmission of Ancylostoma caninum larvae in the murine model. J. Parasitol., 85: 779–784 http://dx.doi.org/10.2307/3285811 [2] Bjorkman, N., Dantzer, V., Leiser, R. (1989): Comparative placenta in laboratory animals. Scand. J. Lab. Anim. Sci., 16: 129–158 [3] Cosoroaba, I., Orjanu, N. (1998): Congenital trichinellosis in the rat. Vet. Parasitol., 77: 147–151 http://dx.doi.org/10.1016/S0304

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Š. Scháňková, M. Maršálek, P. Wagnerová, D. Lukešová, L. Starostová, I. Jankovská, Z. Čadková, M. Kudrnáčová, A. Brožová, J. Truněčková and I. Langrová

–216 [11] Langrova, I., Jankovska, I. (2004): Arrested development of Trichostrongylus colubriformis in experimentally infected rabbits. Effect of decreasing photoperiod, low temperature and desiccation. Helminthologia. 41(2): 85–90 [12] Lyons, E. T., Tolliver, S. C. (2013): Further indication of lowered activity of ivermectin on immature small strongyles in the intestinal lumen of horses on a farm in Central. Kentucky. Parasitol. Res., 112(2): 889–891. DOI: 10.1007/s00436-012-3098-0 http://dx.doi.org/10.1007/s00436

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Ren-wen Zhang, Yong Qiao, Xiao-hua Hao, Hong-min Li, Hui Ren, Xiao-jing Zhang, Hong-shan Wei and Xiao-yuan Xu

(temsirolimus) induces antiproliferative effects through inhibition of mTOR in Bel-7402 liver cancer cells. Cancer Cell Int 2013; 13(1):30. 11. Choi HJ, Fukui M, Zhu BT. Role of cyclin B1/Cdc2 upregulation in the development of mitotic prometaphase arrest in human breast cancer cells treated with nocodazole. PLoS One 2011; 6(8):e24312. 12. Motokura T, Bloom T, Kim HG, Jüppner H, Ruderman JV, Kronenberg HM, et al. A novel cyclin encoded by a bcl1-linked candidate oncogene. Nature 1991; 350(6318):512-515. 13. Thompson MD, Monga SP

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D. Lukešová, I. Langrová, J. Vadlejch, I. Jankovská, J. Hlava, P. Válek and Z. Čadková

, B., Černý, V., Kotrlý, A., Minář, J., Ryšavý, B., Šebek, Z. (1984): Parasites of Wild Animals. Prague, Czech Republic, Academia, 191 pp. [17] Kutzer, E., Frey, H. (1976): Die Parasiten der Feldhasen (Lepus europaeus) in Östereich. Berl. Munch. Tierarztl. Wochenschr., 89: 480–483 [18] Langrová, I., Makovcová, K., Vadlejch, J., Jankovská, I., Petrtýl, M., Fechtner, J., Keil, P., Lytvynets, A., Borkovcová, M. (2008): Arrested development of sheep strongyles: onset and resumption under field conditions of Central

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Justyna Staniszewska, Marcin Szymański and Ewa Ignatowicz

, Kim Y, Kim SJ, Lee JS et al. Chaga mushroom ( Inonotus obliquus ) induces G0/G1 arrest and apoptosis in human hepatoma HepG2 cells. World J Gastroent 2008; 14:511-517. 32. Youn MJ, Kim JK, Park SY, Kim Y, Park C, Kim ES et al. Potential anticancer properties of the water extract of Inonotus obliquus by induction of apoptosis in melanoma B16-F10 cells. J Ethnopharmacol 2009; 121:221-228. doi: http://dx.doi.org/10.1016/j.jep.2008.10.016 33. Caifa C, Weifa Z, Xiaowen G, Xiaoyan X. Aqueous extract of Inonotus obliquus (Fr.) Pilat ( Hymenochaetaceae

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Anna Bogacz, Marlena Wolek, Bogna Juskowiak, Monika Karasiewicz, Adam Kamiński, Izabela Uzar, Anna Polaszewska, Zofia Kostrzewa and Bogusław Czerny

2 and 4 activities as well as induction of cdk inhibitors p21 and p27 during growth arrest of human breast carcinoma cells by (−)-epigallocatechin-3-gallate. J Cell Biochem. 1999; 75 (1): 1-12. 19. Sun L, Yuan JM, Koh WP, Yu MC. Green tea, black tea and breast cancer risk: a meta-analysis of epidemiological studies. Carcinogenesis 2006; 27(7):1310-1315. doi: http://dx.doi.org/10.1093/carcin/bgi276 20. Ogunleye AA, Xue F, Michels KB. Green tea consumption and breast cancer risk or recurrence: a meta-analysis. Breast Cancer Res Treat 2010; 119

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Nazeerullah Khan, Ennus Tajuddin Tamboli, V.K. Sharma and Sunil Kumar

Microbiol Immunol Hung 2007; 4(3):237-60. 44. Luo P, Qiaojun H, Xungui H, Yongzhou H, Wei Lu, Yiyu C et al. Potent antitumor activity of 10-methoxy-9-nitrocamptothecin. Mol Cancer Ther 2006; 5(4):302-10. 45. Huang M, Ze-Hong M, Hong Z,Yu-Jun C, Wei Lu, Jian Ding. Chk1 and Chk2 are differentially involved in homologous recombination repair and cell cycle arrest in response to DNA double-strand breaks induced by camptothecins. Mol Cancer Ther 2008; 7(6):120-27. 46. Cuong N, Hsieh M, Huang C. Recent development in nano