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http://dx.doi.org/10.5713/ajas.2013.13659

Effects of Acanthopanax senticosus Polysaccharide Supplementation on Growth Performance, Immunity, Blood Parameters and Expression of Pro-inflammatory Cytokines Genes in Challenged Weaned Piglets  

Han, Jie (College of Animal Science and Veterinary Science, Shenyang Agricultural University)
Bian, Lianquan (College of Animal Science and Veterinary Science, Shenyang Agricultural University)
Liu, Xianjun (College of Animal Science and Veterinary Science, Shenyang Agricultural University)
Zhang, Fei (College of Animal Science and Veterinary Science, Shenyang Agricultural University)
Zhang, Yiran (College of Animal Science and Veterinary Science, Shenyang Agricultural University)
Yu, Ning (Liaoning Academy of Agricultural Sciences)
Publication Information
Asian-Australasian Journal of Animal Sciences / v.27, no.7, 2014 , pp. 1035-1043 More about this Journal
Abstract
To investigate the effect of dietary Acanthopanax senticosus polysaccharide (ASPS) on growth performance, immunity, blood parameters and mRNA expression of pro-inflammatory cytokines in immunologically challenged piglets, an experiment employing $2{\times}2$ factorial arrangement concerning dietary ASPS treatment (0 or 800 mg/kg) and immunological challenge (lipopolysaccharide [LPS] or saline injection) was conducted with 64 crossbred piglets (weaned at 28 d of age, average initial body weight of $7.25{\pm}0.21kg$) assigned to two dietary ASPS treatments with 8 replicates of 4 pigs each. Half of the piglets of per dietary treatment were injected with LPS or saline on d 14. Blood samples were obtained at 3 h after immunological injection on d 14 and piglets were slaughtered to obtain spleen samples on d 21. Dietary ASPS did not affect average daily gain (ADG) (p = 0.634), average daily feed intake (ADFI) (p = 0.655), and gain:feed (p = 0.814) prior to LPS challenge. After LPS challenge, for LPS-challenged pigs those fed ASPS had higher ADG and ADFI than the non-supplemented group (p<0.05), and an interaction between $LPS{\times}ASPS$ was observed on the two indices (p<0.05). Dietary ASPS improved lymphocyte proliferation among saline-injected and LPS-injected pigs (p<0.05). Interaction between $LPS{\times}ASPS$ was also revealed on lymphocyte proliferation (p<0.05). Circulatory concentration of IgG was influenced neither by ASPS (p = 0.803) or LPS (p = 0.692), nor their interaction (p = 0.289). Plasma concentration and spleen mRNA expression of interleukin-1beta (IL-$1{\beta}$), interleukin-6 (IL-6), and tumor necrosis factor (TNF)-${\alpha}$ were induced to increase (p<0.05) by LPS challenge, in contrast, these indices were decreased by dietary ASPS (p<0.05), and interactions were found on these cytokines (p<0.05). For LPS-challenged pigs, dietary ASPS also reduced the circulating concentration and spleen mRNA expression of IL-$1{\beta}$, IL-6 as well as TNF-${\alpha}$ (p<0.05). The interaction between $LPS{\times}ASPS$ was also observed on the circulating concentration of insulin-like growth factor-I, ${\alpha}$-acid glycoprotein (${\alpha}$-AGP), nonesterified fatty acid, and glucose (p<0.05). The results of this study demonstrate that dietary ASPS can modulate the release of pro-inflammatory cytokines during immunological challenge, which might enable piglets to achieve better growth performance.
Keywords
Herbal Extract; Stress; Growth; Cytokines; Metabolism; Weaned Pigs;
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1 Richards, C., J. Gauldie, and H. Baumann. 1991. Cytokine control of acute phase protein expression. Eur. Cytokine Netw. 2 89-98.
2 Shen, M. L., S. K. Zhai, H. L. Chen, Y. D. Luo, G. R. Tu, and D. W. Ou. 1991. Immunomopharmacological effects of polysaccharides from Acanthopanax senticosus on experimental animals. Int. J. Immunopharmacol. 13:549-554.   DOI   ScienceOn
3 Soto, L., A. I. Martin, S. Millan, E. Vara, and A. Lopez-Calderon. 1998. Effects of endotoxin lipopolysaccharide administration on the somatotropic axis. J. Endocrinol. 159:239-246.   DOI   ScienceOn
4 Spurlock, M. E. 1997. Regulation of metabolism and growth during immune challenge: An overview of cytokine function. J. Anim. Sci. 75:1773-1783.
5 Le Floc'h, N. L., D. Melchior, and C. Obled. 2004. Modifications of protein and amino acid metabolism during inflammation and immune system activation. Livest. Prod. Sci. 87:37-45.   DOI   ScienceOn
6 Li, L. L., X. Wu, H. Z. Peng, M. Z. Fan, Z. P. Hou, X. F. Kong, Y. L. Yin, B. Zhang, T. J. Li, Y. Q. Hou, K. M .Yang, A. K. Li, C. Y. Liu, X. M. Qiu, and Y. L. Liu. 2009. The effect of dietary addition of a polysaccharide from Atractylodes macrophala Koidz on growth performance, immunoglobulin concentration and IL-$1\beta$ expression in weaned piglets. J. Agric. Sci. 147: 625-631.   DOI   ScienceOn
7 Chen, R. Z., Z. Q. Liu, J. M. Zhao, R. P. Chen, F. L. Meng, M. Zhang, and W. C. Ge. 2011. Antioxidant and immunobiological activity of water-soluble polysaccharide fractions purified from Acanthopanax senticosus. Food Chem. 127:434-440.   DOI   ScienceOn
8 Deyama, T., S. Nishibe, and Y. Nakazawa. 2001. Constituents and pharmacological effects of Eucommia and Siberian ginseng. Acta. Pharmacol. Sin. 22:1057-1070.
9 Blecha, F. and B. Charley. 1990. Rationale for using immunpotentiators in domestic food animals. In Immunomodulation in Domestic Food Animals (Ed. F. Blecha and B. Charley). Academic Press, San Diego, CA. pp. 3-19.
10 Zhang, L. P., L. Y. Chen, and Y. S. Zhang. 1993. Study on water soluble polysaccharides from Acanthopanax senticosus fruits isolation and purification and structural investigating of AS-2. Chin. J. Biochem. Mol. Biol. 9:1-5.
11 Ling, P. R., B. R. Bistrian, B. Mendez, and N. W. Istfan. 1994. Effects of systemic infusions of endotoxin, tumor necrosis factor, and interleukin-1 on glucose metabolism in the rat: Relationship to endogenous glucose production and peripheral tissue glucose uptake. Metabolism 43:279-284.   DOI   ScienceOn
12 Livak, K. J. and T. D. Schmittgen. 2001. Analysis of relative gene expression data using real-time quantitative PCR and the $2^{-\Delta\Delta{Ct}}$ method. Methods 25:402-408.   DOI   ScienceOn
13 McGlone, J. J., J. L. Salak, E. A. Lumpkin, R. I. Nicholson, M. Gibson, and R. L. Norman. 1983. Shipping stress and social status effects on pig performance, plasma cortisol, natural killer cell activity, and leukocyte numbers. J. Anim. Sci. 71: 888-896.
14 Memon, R. A., K. R. Feingold, and C. Grunfeld. 1994. The effects of cytokines on intermediary metabolism. Endocrinologist 4: 59-63.
15 Medzhitov, R. and C. Janeway. 2000. Innate immune recognition:mechanisms and pathways. Immunol. Rev. 173: 89-97.   DOI   ScienceOn
16 Mosmann, T. 1983. Rapid colorimetric assay for cellular growth and survival: application to proliferation and cytotoxicity assays. J. Immunol. Method 65:55-63.   DOI   ScienceOn
17 NRC. 1998. Nutrient Requirements of Swine. 10th ed. National Academy Press, Washington, DC.
18 Park, E. J., J. X. Nan, Y. Z. Zhao, S. H. Lee, Y. H. Kim, J. B. Nam, J. J. Lee, and D. H. Sohn. 2004. Water-soluble polysaccharide from Eleutherococcus senticosus stems attenuates fulminant hepatic failure induced by D-galactosamine and lipopolysaccharide in mice. Basic Clin. Pharmacol. Toxicol. 94:298-304.
19 Staub, A. M. 1965. Removal of protein-sevag method. In: Methods in Carbohydrate Chemistry (ED. R. L. Whistler). Academic Press, New York, USA.
20 Touchette, K. J., J. A. Carroll, G. L. Allee, R. L. Matteri, C. J. Dyer, L. A. Beausang and M. E. Zannelli. 2002. Effect of spray-dried plasma and lipopolysaccharide exposure on weaned pigs: I. Effects on the immune axis of weaned pigs. J. Anim. Sci. 80: 494-501.
21 Wagner, H., A. Proksch, I. Riess-Maurer, A. Vollmar, S. Odenthal, H. Stuppner, K. Jurcic, T. M. Le, and J. N. Fang. 1985. Immunostimulating action of polysaccharides (heteroglycans) from higher plants. Arzneimittelforschung 35:1069-1075.
22 Webel, D. M., B. N. Finck, D. H. Baker, and R. W. Johnson. 1997. Time course of increased plasma cytokines, cortisol, and urea nitrogen in pigs following intraperitoneal injection of lipopolysaccharide. J. Anim. Sci. 75:1514-1520.
23 Wright, K. J., R. Balaji, C. M. Hill, S. S. Dritz, E. L. Knoppel, and J. E. Minton. 2000. Integrated adrenal, somatotropic, and immune responses of growing pigs to treatment with lipopolysaccharide. J. Anim. Sci. 78:1892-1899.
24 Wu, X., F. Y. Yan, X. F. Kong, T. J. Li, R. L. Huang, L. X. Chen, and Y. L. Yin. 2010. Effects of Acanthopanax senticosus extract on growth performance and anti-oxidative capacity in weaned piglet. Nat. Prod. Res. Dev. 22:297-301.
25 Yin, F. G., Y. L. Yin, X. F. Kong, Y. L. Liu, Q. H. He, T. J. Li, R. L. Huang, Y. Q. Hou, X. G. Shu, L. X. Tan, L. X. Chen, J. H. Gong, S. W. Kim, and G. Y. Wu. 2008. Dietary supplementation with Acanthopanax senticosus extract modulates gut microflora in weaned piglets. Asian Australas. J. Anim. Sci. 21:1330-1338.   과학기술학회마을   DOI
26 Steinmann, G. G., A. Esperester, and P. Joller. 2001. Immunopharmacological in vitro effects of Eleutheroeoceus senticosus extracts. Arzneimittelforschung 5l:76-83.
27 Kong, X. F., Y. L. Yin, Q. H. He, F. G. Yin, H. J. Liu, T. J. Li, R. L. Huang, M. M. Geng, Z. Ruan, Z. Y. Deng, M. Y. Xie, and G. Wu. 2008. Dietary supplementation with Chinese herbal powder enhances ileal digestibilities and serum concentrations of amino acids in young pigs. Amino Acids. 37:573-582.
28 Kong, X. F., G. Y. Wu, Y. P. Liao, Z. P. Hou, H. J. Liu, F. G. Yin, T. J. Li, R. L. Huang, Y. M. Zhang, D. Deng, P. Kang, R. X. Wang, Z. Y. Tang, C. B. Yang, Z. Y. Deng, H. Xiong, W. Y. Chu, Z. Ruan, M. Y. Xie, and Y. L. Yin. 2007b. Effects of Chinese herbal ultra-fine powder as a dietary additive on growth performance, serum metabolites and intestinal health in early-weaned piglets. Livest. Sci. 108:272-275.   DOI   ScienceOn
29 Kong, X. F., F. G. Yin, Q. H. He, H. J. Liu, T. J. Li, R. L. Huang, M. Z. Fan, Y. L. Liu, Y. Q. Hou, P. Li, Z. Ruan, Z. Y. Deng, M. Y. Xie, H. Xiong, and Y. L. Yin. 2009a. Acanthopanax senticosus extract as a dietary additive enhances the apparent ileal digestibility of amino acids in weaned piglets. Livest. Sci. 123:261-267.   DOI   ScienceOn
30 Kong, X. F., Y. Z. Zhang, Y. L. Yin, G. Y. Wu, H. J. Zhou, Z. L. Tan, F. Yang, M. J. Bo, R. L. Huang, T. J. Li, and M. M. Geng. 2009b. Chinese Yam polysaccharide enhances growth performance and cellular immune response in weanling rats. J. Sci. Food Agric. 89:2039-2044.   DOI   ScienceOn
31 Lai, C. H., J. D. Yin, D. F. Li, L. D. Zhao, S. Y. Qiao, and J. J. Xing. 2005. Conjugated linoleic acid attenuates the production and gene expression of proinflammatory cytokines in weaned pigs challenged with lipopolysaccharide. J. Nutr. 135:239-244.
32 Lang, C. H., C. Dobrescu, and G. J. Bagby. 1992. Tumor necrosis factor impairs insulin action on peripheral glucose disposal and hepatic glucose output. Endocrinology 130:43-52.
33 Han, S. B., Y. D. Yoon, H. J. Ahn, H. S. Lee, C. W. Lee, W. K. Yoon, S. K. Park, and H. M. Kim. 2003. Toll-like receptormediated activation of B cells and macrophages by polysaccharide isolated from cell culture of Acanthopanax senticosus. Int. lmmunopharmacol. 3:1301-1312.   DOI   ScienceOn
34 Hevener, W., G. W. Almond, J. D. Armstrong, and R. G. Richards. 1997. Effects of acute endotoxemia on serum somatotropin and insulin-like growth factor I concentrations in prepubertal gilts. Am. J. Vet. Res. 58:1010-1013.
35 Johnson, R. W. and E. Von Borell. 1994. Lipopolysaccharideinduced sickness behavior in pigs is inhibited by pretreatment with indomethacin. J. Anim. Sci. 72:309-314.
36 Johnson, R. W. 1997. Inhibition of growth by pro-inflammatory cytokines: an integrated view. J. Anim. Sci. 75:1244-1255.
37 Kelley, K. W., R. W. Johnson, and R. Dantzer. 1994. Immunology discovers physiology. Vet. Immunol. Immunopathol. 43:157-165.   DOI   ScienceOn
38 Klasing, K. C. and B. J. Johnstone. 1991. Monokines in growth and development. Poult. Sci. 70:1781-1789.   DOI   ScienceOn
39 Klasing, K. C. 1988. Nutritional aspects of leukocytic cytokines. J. Nutr. 118:1436-1446.
40 Klasing, K. C., D. E. Laurin, R. K. Peng, and D. M. Fry. 1987. Immunologically mediated growth depression in chicks: Influence of feed intake, corticosterone and interleukin-1. J. Nutr. 117:1629-1637.
41 Kong, X. F., Y. L.Yin, G. Y. Wu, H. J. Liu, F. G. Yin, T. J. Li, R. L. Huang, Z. Ruan, H. Xiong, Z. Y. Deng, M. Y. Xie, Y. P. Liao, and S. W. Kim. 2007a. Dietary supplementation with Acanthopanax senticosus extract modulates cellular and humoral immunity in weaned piglets. Asian Australas. J. Anim. Sci. 20:1453-1461.   과학기술학회마을   DOI
42 Chen, H. L., D. F. Li, B. Y. Chang, L. M. Gong, J. G. Dai, and G. F. Yi. 2003. Effects of Chinese herbal polysaccharides on the immunity and growth performance of young broilers. Poult. Sci. 82:364-370.   DOI
43 DuBois, M., K. A. Gilles, J. K. Hamilton, P. A. Rebers, and F. Smith. 1956. Colorimetric method for determination of sugars and related substances. Anal. Chem. 28:350-356.   DOI
44 Elsasser, T. H., T. S. Rumsey, A. C. Hammond, and R. Fayer. 1988. Influence of parasitism on plasma concentrations of growth hormone, somatomedin-C, and somatomedin binding proteins in calves. J. Endocrinol. 116:191-200.   DOI   ScienceOn
45 Fan, J., M. M. Wojnar, M. Theodorakis, and C. H. Lang. 1996. Regulation of insulin-like growth factor (IGF)-I mRNA and peptide and IGF-binding proteins by interleukin-1. Am. J. Physiol. 270:R621-R629.
46 Fang, J., F. Y. Yan, X. F. Kong, Z. Ruan, Z. Q. Liu, R. L. Huang, T. J. Li, M. M. Geng, F. Yang, Y. Z. Zhang, P. Li, Joshua Gong, G. Y. Wu, M. Z. Fan, Y. L. Liu, Y. Q. Hou, and Y. L. Yin. 2009. Dietary supplementation with Acanthopanax senticosus extract enhances gut health in weanling piglets. Livest. Sci. 123:268-275.   DOI   ScienceOn
47 Guo, G. L., Y. L. Liu, W. Fan, J. Han, Y. Q. Hou, Y. L. Yin, H. L. Zhu, B. Y. Ding, J. X. Shi, J. L. Lu, H. R. Wang, J. Chao, and Y. H. Qu. 2008. Effects of Achyranthes Bidentata polysaccharide on growth performance, immunological, adrenal, and somatotropic responses of weaned pigs challenged with Escherichia coli lipopolysaccharide. Asian Australas. J. Anim. Sci. 21:1189-1195.   과학기술학회마을   DOI
48 Han, J., L. Q. Bian, X. J. Liu, F. Zhang, and K. K. Yang. 2012a. Effects of dietary Acanthopanax senticosus polysaccharide on growth performance and immune parameters of weaner piglets. Chin. J. Anim. Nutr. 24: 2203-2209.
49 Han, J., L. Q. Bian, X. J. Liu, F. Zhang, and K. K. Yang. 2012b. Effects of dietary Acanthopanax senticosus polysaccharide on immune parameters in blood of weaner piglets. Chin. J. Anim. Nutr. 24:2444-2449.
50 Yuan, S. L., X. S. Piao, D. F. Li, S. W. Kim, H. S. Lee, and P. F. Guo. 2006. Effects of dietary Astragalus polysaccharide on growth performance and immune function in weaned pigs. Anim. Sci. 82:501-507.