Different vitamin D supplementation strategies impact serum vitamin D concentrations and the mRNA expression of genes related to vitamin D metabolism, mitochondria respiration, redox balance, and immune system in weanling piglets

断奶 断奶 维生素 空肠 内科学 内分泌学 维生素D与神经学 胆钙化醇 生物 抗氧化剂 医学 生物化学
作者
Danyel Bueno Dalto,Isabelle Audet,Caroline Roy,Geneviève Villeneuve,J. J. Matte,Jérôme Lapointe
出处
期刊:Journal of Animal Science [Oxford University Press]
卷期号:103 被引量:1
标识
DOI:10.1093/jas/skaf024
摘要

Abstract This study compared the effects of different vitamin D supplementation strategies to pre- and postweaning piglets on vitamin D metabolism and health-related parameters. Sixty Yorkshire-Landrace × Duroc suckling piglets were selected at the first day of age and randomly assigned to one of two vitamin D supplementation strategies (n = 30 pigs per treatment): CTR—oral saline at days 2, 8, and 21 of age and, from weaning (day 21), in-feed supplementation with 2,000 IU of vitamin D as cholecalciferol; and VD—oral 25-hydroxycholecalciferol (25(OH)D3) solution at days 2, 8, and 21 of age plus 15-min exposure to UVB light every second day from day 14 until day 21 and, from weaning, in-feed supplementation with 2,000 IU of vitamin D as 25(OH)D3. Piglets were slaughtered (n = 10 pigs per treatment/day) at days 21 (before start in-feed experimental diets), and 28 and 35 and blood and tissues samples (jejunum, liver, and kidney) were collected. Body weight (BW), concentrations of serum 25(OH)D3 and jejunum, liver, and kidney mRNA expression of genes related to vitamin D, antioxidant system, and immune defense were measured. Body weight was not affected by treatments (P ≥ 0.34). Serum 25(OH)D3 concentrations were greater for VD piglets at day 21, 28, and 35 (P < 0.01). No effect of treatment was detected (P ≥ 0.14) for mRNA expression in the jejunum mucosa. In the liver of VD piglets, mRNA expressions of genes related to the antioxidant system were lower at day 21 (NDUFB2) and at day 28 (BNIP3, GPX4, and MSRA) (P ≤ 0.10). The mRNA analysis in kidney during the overall period detected higher expression of genes related to the mitochondria oxidative phosphorylation (COX17, NDUFB2, and NDUFB6) in VD groups compared with CTR (P ≤ 0.09). The expression of CYP27B1 in kidney was higher at day 28 and CYP24A1 was lower at day 21 but higher at day 35 for VD animals. In conclusion, during the preweaning period, dietary 25(OH)D3 supplementation combined with UVB exposure was effective in increasing serum 25(OH)D3 concentrations at weaning, whereas in the postweaning period, dietary 25(OH)D3 supplementation at 2,000 IU/kg was more efficient then dietary cholecalciferol at similar levels. The overall results indicate that 2,000 IU of vitamin D/kg of diet, independently of source, may be enough to improve the vitamin D status of postweaning piglets. However, the use of dietary 25(OH)D3 may promote a better modulation of vitamin D metabolism and redox balance.
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