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Cardinal temperatures for germination of Salvia leriifolia Benth

H. Effect of Salvia leriifolia Benth. root extracts on lipid peroxidation level during global ischemic-reperfusion in rat hippocampus. J Med Plants 2003; 7:19-28. 8. Hosseinzadeh H, Lari P. Effect of Salvia leriifolia extract on morphine dependence in mice. Phytother Res 2000; 14:384-7. 9. Farhoosh R, Purazrang H, Khodaparast MHH, Rahimizadeh M, Seyedi SM. Extraction and separation of antioxidative compounds from Salvia leriifolia leaves. J Agric Sci Technol 2004; 6:57-62. 10. Kader MA, Jutzi SC. Effects of thermal

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Effect of camellia sinensis extract on the expression level of transcription factors and cytochrome p450 genes coding phase i drug-metabolizing enzymes

regulation of antioxidant-responsive element-mediated phase II enzyme gene expression. Carcinogenesis 1997; 18:451-456. 8. Gonzalez FJ, Tukey RH. Drug metabolism. In: Brunton LL, Lazo JS, Parker KL. (eds.), Goodman & Gilman’s the pharmacological basis of therapeutics. 11th ed. McGraw-Hill, New York 2006:71-91. 9. Riddick DS, Lee C, Bhathena A, Timist YE, Cheng PY, Morgan ET, et al. Transcriptional suppression of cytochrome P450 genes by endogenous and exogenous chemicals. Drug Metab Dispos 2004; 32:367-375. 10. Van Iersel ML

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Effects of Interleukin-18 and Anti-interleukin- 18-mAb on Experimental Immunological Liver Fibrosis Induced by Repeatedly Administered Concanavalin A and Its Mechanism

References 1. Xie G, Wang X, Wang L, Atkinson RD, Kanel GC. Role of differentiation of liver sinusoidal endothelial cells in progression and regression of hepatic fibrosis in rats. Gastroenterology 2012;142(4):918-927. 2. Tomiyama C, Watanabe H, Izutsu Y, Watanabe M, Abo T. Suppressive role of hepatic dendritic cells in concanavalin A-induced hepatitis. Clin Exp Immunol 2011;166(2):258-268. 3. Kimura K, Ando K, Ohnishi H, Ishikawa T, Kakumu S, Takemura M, et al. Immunopathogenesis of hepatic fibrosis in chronic

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First finding of Trichinella pseudospiralis in two tawny owls (Strix aluco) from Sweden

:171–175 [10] Kapel, C. M. O., Gamble, H. R. (2000): Infectivity, persistence, and antibody response to domestic and sylvatic Trichinella spp. in experimentally infected pigs. Int. J. Parasitol., 30: 215–221. DOI: 10.1016/S0020-7519(99)00202-7 [11] Kinsella, J. M., Foster, G. W., Forrester, D. J. (2001): Parasitic helminths of five species of owls from Florida, USA. Comp. Parasitol., 68:130–134 [12] La Rosa, G

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Lagochilascaris minor: Specific antibodies are related with resistance to experimental infection in A/J strain of mice

.exp para.2010.02.014 [9] Oliveira, J. A., Barbosa, C. A., Vieira, M. A., Fiorini, M. O., Campos, D. M. B. (2002): Isolado de Lagochilascaris minor: procedimentos para obtenção de ovos infectantes. Rev. Patol. Trop., 31: 121–128 [10] Pleass, R. J., Lang, M. L., Kerr, M. A., Woof, J. M. (2007): IgA is a more potent inducer of NADPH oxidase activation and degranulation in blood eosinophils than IgE. Mol. Immunol. 44: 1401–1408. DOI: 10.1016/j.molimm. 2006.05.002 http

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Cystic echinococcosis in Lombardy: epidemiological aspects and spatial analysis

0950268897008406 [33] Varcasia, A., Tanda, B., Giobbe, M., Solinas, C., Pipia, A. P., Malgor, R., Carmona, C., Garippa, G., Scala, A. (2011): Cystic echinococcosis in Sardinia: Farmers’ knowledge and dog infection in sheep farms. Vet. Parasitol., 181(2–4): 335–340. DOI: 10.1016/j.vetpar.2011.05.006

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Characterization of host-parasite interactions during the experimental Trichinella spiralis infection in pigs

-008-9211-9 [28] Møller, L. N., Peterson, E., Gamble, H. R., Kapel, C. M. O. (2005): Comparison of two antigens for demonstration of Trichinella spp. antibodies in blood and muscle fluids of foxes, pigs and wild boars. Vet. Parasitol., 132: 81–84. DOI: 10.1016/j.vetpar.2005.05.032 [29] Murrell, D., Bruschi., F. (1994): Clinical trichinellosis, in: T. Sun (Eds) Progress in clinical parasitology, CRC Press, Fla: Boca Raton, pp 117–150 [30] Nöckler, K., Pozio, E., Voigt, W. P

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Response of nematode communities to reclamation of agricultural soils following degradation through brown coal strip-mining processes

[1] Biederman, L. A., Boutton, T. W., Whisenatn, S. G. (2008): Nematode community development early in ecological restoration: the role of organic amendments. Soil Biol. Biochem., 40(9): 2366–2374. DOI: 10.1016/j.soilbio.2008.05.017 [2] Bongers, M., Bongers, T. (1998): Functional diversity of nematodes. Appl. Soil Ecol., 10(3): 239–251. DOI: 10.1016/S0929-1393(98)00123-1 [3] Bongers, T. (1988

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Molecular identification of Nematodirus spathiger (Nematoda: Molineidae) in Lama guanicoe from Patagonia, Argentina

. Chil. Parasitol., 44: 46–51. [25] Newton, L. A., Chilton, N. B., Beveridge, I., Gasser, R. B. (1998): Differences in the second internal transcribed spacer of four species of Nematodirus (Nematoda: Molineidae). Int. J. Parasitol., 28(2):337–341. DOI: 10.1016/S0020-7519(97)00150-1 [26] Prenter, J., Macneil, C., Dick, J. T., Dunn, A. M. (2004): Roles of parasites in animal invasions. Trends Ecol. Evol., 19(7): 385–390. DOI: 10.1016/j.tree.2004.05.002 http

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First report of Trichinella spiralis from the white-eared (Didelphis albiventris) and the thick-tailed opossum (Lutreolina crassicaudata) in central Argentina

historical review. Vet. Parasitol., 132(1–2): 137–142. DOI: 10.1016/j.vetpar.2005.05.042 [32] Sanches Quadros Altomare, V., Menezes De Arruda Gomes, M., De Camargo Passos, F., Graciolli, G., De Aquino Ribas, A. C. (2012): Home-range and space use by Didelphis albiventris (Lund 1840) (Marsupialia, Didelphidae) in Mutum Island, Paraná river, Brazil. Biota Neotrop., 12(4): 50–55. DOI: 10.1590/S1676-06032012000400004 [33] Santori

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