Journal of Animal and Veterinary Advances

Year: 2012
Volume: 11
Issue: 16
Page No. 2980 - 2985

Dietary L-Arginine Supplementation Improves the Immune Responses in Mouse Model Infected Porcine Circovirus Types 2

Authors : Gang Liu, Wenkai Ren, Dingding Su, Miaomiao Wu, Yinghui Li, Wei Luo, Xinglong Yu, Tiejun Li and Jun Fang

References

Allan, G.M., F. McNeilly, S. Kennedy, B. Daft and E.G. Clark et al., 1998. Isolation of porcine circovirus-like viruses from pigs with a wasting disease in the USA and Europe. J. Vet. Diagn Invest., 10: 3-10.
Direct Link  |  

Barksdale, A.R., A.C. Bernard, M.E. Maley, G.L. Gellin and P.A. Kearney et al., 2004. Regulation of arginase expression by T-helper II cytokines and soproterenol. Surgery, 135: 527-535.
PubMed  |  

Bhattacharyya, S., S. Ghosh, B. Dasgupta, D. Mazumder, S. Roy and S. Majumdar, 2002. Chemokine-induced leishmanicidal activity in murine macrophages via the generation of nitric oxide. J. Infect. Dis., 185: 1704-1708.
PubMed  |  

Ellis, J., L. Hassard, E. Clark, J. Harding and G. Allan et al., 1998. Isolation of circovirus from lesions of pigs with postweaning multisystemic wasting syndrome. Can. Vet. J., 39: 44-51.
Direct Link  |  

Green, S.J., R.M. Crawford, J.T. Hockmeyer, M.S. Meltzer and C.A. Nacy, 1990. Leishmania major amastigotes initiate the L-arginine-dependent killing mechanism in IFN-γ-stimulated macrophages by induction of tumor necrosis factor-alpha. J. Immunol., 145: 4290-4297.
PubMed  |  Direct Link  |  

Han, J., Y.L. Liu, W. Fan, J. Chao and Y.Q. Hou et al., 2009. Dietary L-arginine supplementation alleviates immunosuppression induced by cyclophosphamide in weaned pigs. Amino. Acids, 37: 643-651.
PubMed  |  

He, Q., X. Kong, G. Wu, P. Ren and H. Tang et al., 2009. Metabolomic analysis of the response of growing pigs to dietary L-arginine supplementation. Amino Acids, 37: 199-208.
PubMed  |  

Iniesta, V., L.C. Gomez-Nieto, I. Molano, A. Mohedano and J. Carcelen et al., 2002. Arginase I induction in macrophages, triggered by Th2-type cytokines, supports the growth of intracellular Leishmania parasites. Parasite Immunol., 24: 113-118.
PubMed  |  

Kim, J., Y. Ha, K. Jung, C. Choi and C. Chae, 2004. Enteritis associated with porcine circovirus 2 in pigs. Can. J. Vet. Res., 68: 218-221.
Direct Link  |  

Kim, S.W., R.D. Mateo, Y.L. Yin and G. Wu, 2007. Functional amino acids and fatty acids for enhancing production performance of sows and piglets. Asian-Aust. J. Anim. Sci., 20: 295-306.
Direct Link  |  

Li, P., Y.L. Yin, D. Li, S.W. Kim and G. Wu, 2007. Amino acids and immune function. Br. J. Nutr., 98: 237-252.
CrossRef  |  Direct Link  |  

Liu, Y.L., J.J. Huang, Y.Q. Hou, H.L. Zhu and S.J. Zhao et al., 2008. Dietary arginine supplementation alleviates intestinal mucosal disruption induced by Escherichia coli lipopolysaccharide in weaned pigs. Br. J. Nutr., 100: 552-560.
PubMed  |  

Minarini, A., A. Milelli, V. Tumiatti, M. Rosini, M.L. Bolognesi and C. Melchiorre, 2010. Synthetic polyamines: An overview of their multiple biological activities. Amino Acids, 38: 383-392.
PubMed  |  

Nathan, C.F. and J.B. Jr. Hibbs, 1991. Role of nitric oxide synthesis in macrophage antimicrobial activity. Curr. Opin. Immunol., 3: 65-70.
Direct Link  |  

O'Connor, B., H. Gauvreau, K. West, J. Bogdan and M. Ayroud et al., 2001. Multiple porcine circovirus 2-associated abortions and reproductive failure in a multisite swine production unit. Can. Vet. J., 42: 551-553.
Direct Link  |  

Opriessnig, T., X.J. Meng and P.G. Halbur, 2007. Porcine circovirus type 2 associated disease: Update on current terminology, clinical manifestations, pathogenesis, diagnosis and intervention strategies. J. Vet. Diagnostic Invest., 19: 591-615.
PubMed  |  Direct Link  |  

Segales, J., G.M. Allan and M. Domingo, 2005. Porcine circovirus diseases. Anim. Health Res. Rev., 6: 119-142.
CrossRef  |  

Stevenson, G.W., M. Kiupel, S.K. Mittal, J. Choi, K.S. Latimer and C.L. Kanitz, 2001. Tissue distribution and genetic typing of porcine circoviruses in pigs with naturally occurring congenital tremors. J. Vet. Diagn. Invest., 13: 57-62.
PubMed  |  

Tan, B., X.G. Li, X. Kong, R. Huang and Z. Ruan et al., 2009. Dietary L-arginine supplementation enhances the immune status in early-weaned piglets. Amino Acids, 37: 323-331.
CrossRef  |  

Tan, B.E., Y.L. Yin, X.F. Kong, P. Li and X.L. Li et al., 2010. L-Arginine stimulates proliferation and prevents endotoxin-induced death of intestinal cells. Amino Acids, 38: 1227-1235.
PubMed  |  

Thomas, T. and T.J. Thomas, 2001. Polyamines in cell growth and cell death: Molecular mechanisms and therapeutic applications. Cell. Mol. Life Sci., 58: 244-258.

Wu, G., F.W. Bazer, T.A. Davis, L.A. Jaeger and G.A. Johnson, 2007. Important roles for arginine-family amino acids in swine nutrition and production. Livestock Sci., 122: 8-22.
Direct Link  |  

Wu, G., F.W. Bazer, T.A. Davis, S.W. Kim and P. Li et al., 2009. Arginine metabolism and nutrition in growth, health and disease. Amino Acids, 37: 153-168.
CrossRef  |  Direct Link  |  

Yao, K., Y.L. Yin, W. Chu, Z. Liu and D. Deng et al., 2008. Dietary arginine supplementation increases mTOR signaling activity in skeletal muscle of neonatal pigs. J. Nutr., 138: 867-872.
Direct Link  |  

Yin, Y.L., R.L. Huang, H.Y. Zhang, C.M. Chen, T.J. Li and Y.F. Pan, 1993. Nutritive value of feedstuffs and diets for pigs: 1. Chemical composition, apparent ileal and faecal digestibilities. Anim. Feed Sci. Technol., 44: 1-27.

Zhang, Y.G., Y.L. Yin, J. Fang and Q. Wang, 2012. Pig production in subtropical agriculture. J. Sci. Food Agric., 92: 1016-1024.
CrossRef  |  PubMed  |  Direct Link  |  

Design and power by Medwell Web Development Team. © Medwell Publishing 2024 All Rights Reserved