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首页> 外文期刊>The Journal of Nutrition: Official Organ of the American Institute of Nutrition >Oat β-Glucan and Dietary Calcium and Phosphorus Differentially Modify Intestinal Expression of Proinflammatory Cytokines and Monocarboxylate Transporter 1 and Cecal Morphology in Weaned Pigs
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Oat β-Glucan and Dietary Calcium and Phosphorus Differentially Modify Intestinal Expression of Proinflammatory Cytokines and Monocarboxylate Transporter 1 and Cecal Morphology in Weaned Pigs

机译:燕麦β-葡聚糖和饲料中钙和磷差异调节断奶仔猪促炎性细胞因子和单羧酸盐转运蛋白1的肠道表达及盲肠形态

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摘要

Physiologic effects of dietary oat β-glucan and low and high dietary calcium-phosphorus (CaP) on intestinal morphology and gene expression related to SCFA absorption, mucus production, inflammation, and peptide digestion have not been established in weaned mammals. We therefore randomized 32 weaned pigs into 4 equal groups that received a cornstarch-casein–based diet with low (65% of the Ca and P requirement) and high (125 and 115% of the Ca and P requirement, respectively) CaP levels and low- and high-CaP diets supplemented with 8.95% oat β-glucan concentrate for 14 d. High-CaP diets downregulated duodenal expression of IL-1β (P 0.05) by 30% compared with low-CaP diets. Furthermore, high-CaP diets reduced (P 0.05) cecal crypt depth by 14% compared with low-CaP diets. Dietary β-glucan upregulated the expression of cecal MCT1 (P 0.05) by 40% and that of colonic IL-6 (P 0.05) by 142% compared with the control diet. Correlation analysis indicated that cecal MCT1 (r = 0.99, P 0.001) and colonic IL-6 (r = 0.84, P 0.05) expression was positively related to luminal butyrate and total SCFA, respectively, indicating that β-glucan may partly modify gene expression via increased SCFA generation. In conclusion, β-glucan and CaP levels modulated the expression of selected genes and morphology in the postweaning period, but effects were specific to intestinal segment. The present results further indicate that, in addition to being essential nutrients for bone accretion, dietary CaP level may modify the intestinal tissue response in young pigs.
机译:在断奶的哺乳动物中,膳食燕麦β-葡聚糖和低,高膳食钙磷(CaP)对肠形态和基因表达的生理影响与SCFA吸收,粘液产生,炎症和肽消化有关。因此,我们将32头断奶仔猪随机分为4组,分别接受低(占Ca和P需求的65%)和高(分别占Ca和P需求的125和115%)的玉米淀粉-酪蛋白饮食。低和高CaP日粮中补充了8.95%的燕麦β-葡聚糖浓缩液,持续14天。与低CaP饮食相比,高CaP饮食使IL-1β的十二指肠表达下调30%(P <0.05)。此外,与低CaP饮食相比,高CaP饮食可减少(P <0.05)盲肠隐窝深度14%。与对照饮食相比,饮食中的β-葡聚糖将盲肠MCT1的表达上调40%(P <0.05),将结肠IL-6的表达上调142%(P <0.05)。相关分析表明,盲肠MCT1(r = 0.99,P <0.001)和结肠IL-6(r = 0.84,P <0.05)的表达分别与管腔丁酸和总SCFA呈正相关,表明β-葡聚糖可能部分修饰通过增加SCFA生成来表达基因。总之,β-葡聚糖和CaP的水平调节了断奶后所选基因的表达和形态,但其作用特定于肠段。本结果进一步表明,除了作为骨骼增生的必需营养素外,日粮CaP水平还可以改变小猪的肠道组织反应。

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