Effects of Selenium Deficiency on Principal Indexes of Chicken Kidney Function
详细信息    查看全文
  • 作者:Dongbo Sun (1) (2)
    Chunqiu Li (2)
    Jing Gao (2)
    Shu Li (1)
    Hongbin Wang (1)

    1. College of Veterinary Medicine
    ; Northeast Agricultural University ; No. 59 Mucai Street ; Xiangfang District ; 150030 ; Harbin ; People鈥檚 Republic of China
    2. College of Animal Science and Veterinary Medicine
    ; Heilongjiang Bayi Agricultural University ; No. 2 Xinyang Road ; Sartu District ; 163319 ; Daqing ; People鈥檚 Republic of China
  • 关键词:Selenium deficiency ; Kidney tissue ; Injury
  • 刊名:Biological Trace Element Research
  • 出版年:2015
  • 出版时间:March 2015
  • 年:2015
  • 卷:164
  • 期:1
  • 页码:58-63
  • 全文大小:496 KB
  • 参考文献:1. Roman, M, Jitaru, P, Barbante, C (2014) Selenium biochemistry and its role for human health. Metallomics 6: pp. 25-54 CrossRef
    2. Rederstorff, M, Krol, A, Lescure, A (2006) Understanding the importance of selenium and selenoproteins in muscle function. Cell Mol Life Sci 63: pp. 52-59 CrossRef
    3. Yao, HD, Wu, Q, Zhang, ZW (2013) Selenoprotein W serves as an antioxidant in chicken myoblasts. Biochim Biophys Acta 1830: pp. 3112-3120 CrossRef
    4. Yao, HD, Wu, Q, Zhang, ZW (2013) Gene expression of endoplasmic reticulum resident selenoproteins correlates with apoptosis in various muscles of Se-deficient chicks. J Nutr 143: pp. 613-619 CrossRef
    5. Zhang, JL, Zhang, ZW, Shan, AS (2014) Effects of dietary selenium deficiency or excess on gene expression of selenoprotein N in chicken muscle tissues. Biol Trace Elem Res 157: pp. 234-241 CrossRef
    6. Rees, K, Hartley, L, Day, C (2013) Selenium supplementation for the primary prevention of cardiovascular disease. Cochrane Database Syst Rev 1: pp. CD009671
    7. Iglesias, P, Selgas, R, Romero, S (2013) Selenium and kidney disease. J Nephrol 26: pp. 266-272 CrossRef
    8. Nagy, DT, F眉lesdi, B, Hallay, J (2013) The relationship between selenium and gastrointestinal inflammatory diseases. Orv Hetil 154: pp. 1636-1640 CrossRef
    9. Liu, CP, Fu, J, Lin, SL (2014) Effects of dietary selenium deficiency on mRNA levels of twenty-one selenoprotein genes in the liver of layer chicken. Biol Trace Elem Res 159: pp. 192-198 CrossRef
    10. Wu, Q, Yao, HD, Tan, SR (2014) Possible correlation of selenoprotein w with inflammation factors in chicken skeletal muscles. Biol Trace Elem Res 161: pp. 167-172 CrossRef
    11. Zhang, ZW, Wang, QH, Zhang, JL (2012) Effects of oxidative stress on immunosuppression induced by selenium deficiency in chickens. Biol Trace Elem Res 149: pp. 352-361 CrossRef
    12. Kiss, I (2013) Importance of selenium homeostasis in chronic and end-stage kidney diseases. Orv Hetil 154: pp. 1641-1647 CrossRef
    13. Naito, Y, Takagi, T, Higashimura, Y (2014) Heme oxygenase-1 and anti-inflammatory M2 macrophages. Arch Biochem Biophys 564: pp. 83-88 CrossRef
    14. Nath, KA (2014) Heme oxygenase-1 and acute kidney injury. Curr Opin Nephrol Hypertens 23: pp. 17-24 CrossRef
    15. Liao, YF, Zhu, W, Li, DP (2013) Heme oxygenase-1 and gut ischemia/reperfusion injury: a short review. World J Gastroenterol 9: pp. 3555-3561 CrossRef
    16. Hoffman, RA, Mahidhara, RS, Wolf-Johnston, AS (2002) Differential modulation of CD4 and CD8 T-cell proliferation by induction of nitric oxide synthesis in antigen presenting cells. Transplantation 74: pp. 836-845 CrossRef
    17. Sakaguchi, S, Iizuka, Y, Furusawa, S (2000) Roles of selenium in endotoxin-induced lipid peroxidation in the rats liver and in nitric oxide production in J774A.1 cells. Toxicol Lett 118: pp. 69-77 CrossRef
    18. Leone, AM, Palmer, RM, Knowles, RG (1991) Constitutive and inducible nitric oxide synthases incorporate molecular oxygen into both nitric oxide and citrulline. J Biol Chem 266: pp. 23790-23795
    19. Zhao, X, Yao, H, Fan, R (2014) Selenium deficiency influences nitric oxide and selenoproteins in pancreas of chickens. Biol Trace Elem Res 161: pp. 341-349 CrossRef
    20. Hillyer, JF, Estevez-Lao, TY (2010) Nitric oxide is an essential component of the hemocyte-mediated mosquito immune response against bacteria. Dev Comp Immunol 34: pp. 141-149 CrossRef
    21. Rivero, A (2006) Nitric oxide: an antiparasitic molecule of invertebrates. Trends Parasitol 22: pp. 219-225 CrossRef
    22. Chen, X, Yao, H, Yao, L (2014) Selenium deficiency influences the gene expressions of heat shock proteins and nitric oxide levels in neutrophils of broilers. Biol Trace Elem Res 161: pp. 334-340 CrossRef
    23. Wahlqvist, ML (2013) Antioxidant relevance to human health. Asia Pac J Clin Nutr 22: pp. 171-176
    24. Najafi, M (2014) Serum creatinine role in predicting outcome after cardiac surgery beyond acute kidney injury. World J Cardiol 6: pp. 1006-1021 CrossRef
    25. Thomas, ME, Blaine, C, Dawnay, A (2014) The definition of acute kidney injury and its use in practice. Kidney Int.
    26. Otterbein, LE, Choi, AM (2000) Heme oxygenase: colors of defense against cellular stress. Am J Physiol Lung Cell Mol Physiol 279: pp. L1029-L1037
    27. Palmer, RM, Ferrige, AG, Moncada, S (1987) Nitric oxide release accounts for the biological activity of endothelium-derived relaxing factor. Nature 327: pp. 524-526 CrossRef
    28. Stuehr, DJ, Nathan, CF (1989) Nitric oxide. A macrophage product responsible for cytostasis and respiratory inhibition in tumor target cells. J Exp Med 169: pp. 1543-1555 CrossRef
  • 刊物主题:Biochemistry, general; Biotechnology; Nutrition; Oncology;
  • 出版者:Springer US
  • ISSN:1559-0720
文摘
Selenium (Se) deficiency leads to many pathological changes in animals. However, there have been very few reports regarding chicken tissue injury in the kidney caused by Se deficiency. In this study, a chicken Se-deficient disease model has been constructed, and two renal function indexes [including creatinine (CREA) and uric acid (URIC)], seven renal antioxidative function indexes [including glutathione peroxidase (GPx), anti-hydroxyl radical (AHR), catalase (CAT), hydrogen peroxide (H2O2), nitrogen monoxide (NO), glutathione (GSH), and malonyldialdehyde (MDA)], and two organ/tissue injury-related indexes [including inducible nitric oxide synthase (iNOS) and inducible heme oxygenase (HO)-1] were detected and analyzed to investigate the effects of Se deficiency on chicken kidney tissue. The results showed that Se deficiency caused a significant increase in CREA and URIC levels and a decrease in renal antioxidative capacity. Meanwhile, Se deficiency upregulated the expression of organ/tissue injury-related genes, such as the messenger RNA (mRNA) of HO-1 and iNOS as well as their protein expression levels, in the chicken kidney tissue. These data suggest that Se deficiency in birds triggers renal function regression and oxidative stress in the kidney tissue.

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700