Different Parts of the Chicken Embryo Egg Improve D-Galactose-Induced Aging in a Mice Model

被引:1
作者
Hong, Hsin-Tai [1 ]
Hsu, Tsung-Hsien [1 ,2 ]
Hung, Shao-Wen [2 ]
Chiu, Chien-Chao [2 ]
Wu, Chun-Yun [2 ]
Chen, Chia-Chi [2 ]
Lee, Guo-Chi [3 ]
Lin, Jyh-Shiun [2 ]
Wu, Chean-Ping [1 ]
机构
[1] Natl Chiayi Univ, Dept Anim Sci, Chiayi 600, Taiwan
[2] Agr Technol Res Inst, Anim Technol Res Ctr, Div Anim Ind, Miaoli 350, Taiwan
[3] Council Agr Execut Yuan, Dept Sci & Technol, Taipei 100, Taiwan
关键词
EXERCISE PERFORMANCE; OXIDATIVE STRESS; MOUSE MODELS; MUSCLE;
D O I
10.1155/2021/6654683
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Chick (CE) or duck embryo eggs are known for nutritional supplement foods in traditional East countries for physical fitness enhancement and postpartum conditioning for many years. In this study, we evaluated the effects of different parts of the 10-day CE (embryo: CEr, yolk: CEw, and chorioallantoic membrane: CEp) on the antifatigue and antiaging activities in a D-galactose- (D-gal) induced aging mice model. The results showed CEp obviously increased the muscle weight and the liver and muscle glycogen content and enhanced exercise performance. In the antiaging assay, CEp significantly increased the activity of superoxide dismutase (SOD) and Glutathione Peroxidase (GPx). Moreover, the immunohistochemistry results of NRF-2 and HO-1 were also detected in the livers of mice in the D-gal/CEp group. The only partially potential such as CEr might improve OFT function with TG level, and CEw had strange grip strength. Therefore, we suggest that CEp has a potent antifatigue ability and could minimize the occurrence of age-associated disorders, more than other parts of the 10 days chicken embryo egg.
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页数:11
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共 28 条
  • [1] Assessing Functional Performance in the Mdx Mouse Model
    Aartsma-Rus, Annemieke
    van Putten, Maaike
    [J]. JOVE-JOURNAL OF VISUALIZED EXPERIMENTS, 2014, (85):
  • [2] Age-related Defects in Sensorimotor Activity, Spatial Learning, and Memory in C57BL/6 Mice
    Barreto, George
    Huang, Ting-Ting
    Giffard, Rona G.
    [J]. JOURNAL OF NEUROSURGICAL ANESTHESIOLOGY, 2010, 22 (03) : 214 - 219
  • [3] Chehelcheraghi F, 2015, IRAN J BASIC MED SCI, V18, P764
  • [4] The good and the bad of being connected: the integrons of aging
    Dillin, Andrew
    Gottschling, Daniel E.
    Nystrom, Thomas
    [J]. CURRENT OPINION IN CELL BIOLOGY, 2014, 26 : 107 - 112
  • [5] Farjah GH, 2015, IRAN J VET RES, V16, P167
  • [6] Amino acids and muscle loss with aging
    Fujita, S
    Volpi, E
    [J]. JOURNAL OF NUTRITION, 2006, 136 (01) : 277S - 280S
  • [7] Pathology of Mouse Models of Accelerated Aging
    Harkema, L.
    Youssef, S. A.
    de Bruin, A.
    [J]. VETERINARY PATHOLOGY, 2016, 53 (02) : 366 - 389
  • [8] Establishment of the mimetic aging effect in mice caused by D-galactose
    Ho, SC
    Liu, JH
    Wu, RYY
    [J]. BIOGERONTOLOGY, 2003, 4 (01) : 15 - 18
  • [9] Supplementation of beef extract improves chemotherapy-induced fatigue and toxic effects in mice
    Hsu, Tsung-Hsien
    Hung, Shao-Wen
    Wu, Chun-Yun
    Chiu, Chien-Chao
    Hong, Hsin-Tai
    Lee, Guo-Chi
    Chen, Chia-Chi
    Lin, Jyh-Shiun
    Wu, Chean-Ping
    [J]. JOURNAL OF FUNCTIONAL FOODS, 2020, 75
  • [10] Supplementation with Beef Extract Improves Exercise Performance and Reduces Post-Exercise Fatigue Independent of Gut Microbiota
    Hsu, Tsung-Hsien
    Chiu, Chien-Chao
    Wang, Yu-Chih
    Chen, Ter-Hsin
    Chen, Yi-Hsun
    Lee, Yen-Peng
    Hung, Shao-Wen
    Wu, Chean-Ping
    Chuang, Hsiao-Li
    [J]. NUTRIENTS, 2018, 10 (11)