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Effects of dietary lipid-coated zinc on the antioxidant defense system in the small intestine and liver of pigletsopen accessEffects of dietary lipid-coated zinc on the antioxidant defense system in the small intestine and liver of piglets

Other Titles
Effects of dietary lipid-coated zinc on the antioxidant defense system in the small intestine and liver of piglets
Authors
김하나전동경이철영장인석
Issue Date
2018
Publisher
한국실험동물학회
Keywords
Piglets; lipid-coated Zn; antioxidant enzymes; intestine; liver
Citation
Laboratory Animal Research, v.34, no.2, pp 65 - 74
Pages
10
Indexed
SCOPUS
KCI
Journal Title
Laboratory Animal Research
Volume
34
Number
2
Start Page
65
End Page
74
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/12179
DOI
10.5625/lar.2018.34.2.65
ISSN
1738-6055
2233-7660
Abstract
The purpose of the study was to investigate the effects of lipid-coated ZnO (LCZ) and the level of LCZ compared with ordinary zinc oxide (ZnO) on antioxidant defense system in the intestine and liver of piglets. A total of forty piglets (n=8) were fed a diet supplemented with 100 ppm Zn with ZnO (ZnO-1), 2,500 ppm Zn with ZnO (ZnO-2), 100 ppm Zn as LCZ (LCZ-1), 200 ppm Zn as LCZ (LCZ-2), or 400 ppm Zn as LCZ (LCZ-3) for 14-d, respectively. The LCZ-3 group resulted in higher (P<0.05) mRNA expressions and activities of CuZn-superoxide dismutase (SOD), glutathione peroxidase (GPX), catalase (CAT), and glutathione S-transferase (GST) in jejunal mucosa compared with the ZnO-1 and LCZ-1 groups, while no difference was observed in the mRNA level of antioxidant genes between the ZnO-1 and ZnO-2 groups. Within the LCZ groups, the LCZ level linearly and quadratically (P<0.01) increased antioxidant enzymes in the jejunum. The maximum response of jejunal antioxidant enzymes to Zn supplementation was achieved by 400 ppm of LCZ. Hepatic mRNA expression of antioxidant enzymes was unaffected by Zn source and level, while hepatic SOD and GST activities were greater (P<0.05) in the LCZ-3 group than in the ZnO-1 group. No difference was observed in lipid peroxidation of the jejunum and liver and the total antioxidant power of plasma among groups. In conclusion, a supplementation with 400 ppm of LCZ resulted in a maximum increase in antioxidant enzymes, indicating that LCZ may affect antioxidant defense system more profoundly than ZnO.
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