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牛初乳胰岛素补充对荷斯坦公牛仔牛小肠形态结构、mRNA 表达和酶活性的影响较小,对周围代谢的影响较小。

Colostrum insulin supplementation to neonatal Holstein bulls affects small intestinal histomorphology, mRNA expression, and enzymatic activity with minor influences on peripheral metabolism.

机构信息

Department of Animal Biosciences, Animal Science and Nutrition, Ontario Agricultural College University of Guelph, Guelph, ON, Canada N1G 1Y2.

Department of Animal Sciences, North Dakota State University, Fargo, ND 58108.

出版信息

J Dairy Sci. 2023 Jul;106(7):5054-5073. doi: 10.3168/jds.2022-22965. Epub 2023 Jun 1.

Abstract

The objectives of this study were to evaluate how varying colostral insulin concentrations influenced small intestinal development and peripheral metabolism in neonatal Holstein bulls. Insulin was supplemented to approximately 5× (70.0 μg/L; n = 16) or 10× (149.7 μg/L; n = 16) the basal colostrum insulin (12.9 μg/L; BI, n = 16) concentration to maintain equivalent macronutrient intake (crude fat: 4.1 ± 0.06%; crude protein: 11.7 ± 0.05%; and lactose: 1.9 ± 0.01%) among treatments. Colostrum was fed at 2, 14, and 26 h postnatal and blood metabolites and insulin concentration were measured at 0, 30, 60, 90, 120, 180, 240, 360, 480, and 600 min postprandial respective to the first and second colostrum meal. At 30 h postnatal, a subset of calves (n = 8/treatment) were killed to excise the gastrointestinal and visceral tissues. Gastrointestinal and visceral gross morphology and dry matter and small intestinal histomorphology, gene expression, and carbohydrase activity were assessed. Insulin supplementation tended to linearly reduce the glucose clearance rate following the first meal, whereas after the second meal, supplementation linearly increased the rate of glucose absorption and nonesterified fatty acid clearance rate, decreased the time to maximum glucose concentrations, and decreased the time to reach minimum nonesterified fatty acid concentrations. Additionally, insulin clearance rate was linearly increased by insulin supplementation following the second colostrum feeding. However, there were no overall differences between treatments in the concentrations of glucose, nonesterified fatty acids, or insulin in plasma or serum. With respect to macroscopic intestinal development, dry rumen tissue mass linearly decreased when insulin was supplemented in colostrum, and supplementation linearly increased duodenal dry tissue density (g dry matter/cm) while tending to increase duodenal dry tissue weight. Increasing the colostrum insulin concentration improved small intestinal histomorphological development in the distal small intestine, as ileal villi height and mucosal-serosal surface area index were increased by supplementing insulin. Lactase enzymatic activity linearly increased in the proximal jejunum while ileal isomaltase activity linearly decreased with insulin supplementation. These data indicate that changes in colostrum insulin concentrations rapidly affect gastrointestinal growth prioritization and carbohydrase activity. The changes in gastrointestinal ontology result in minor changes in postprandial metabolite availability and clearance.

摘要

本研究的目的是评估初乳中胰岛素浓度的变化如何影响荷斯坦公牛犊的小肠发育和外周代谢。通过向基础初乳胰岛素(12.9μg/L;BI,n=16)中添加胰岛素,将胰岛素浓度分别提高约 5 倍(70.0μg/L;n=16)或 10 倍(149.7μg/L;n=16),以维持处理之间等效的宏量营养素摄入量(粗脂肪:4.1±0.06%;粗蛋白:11.7±0.05%;和乳糖:1.9±0.01%)。初乳在产后 2、14 和 26 小时喂养,在第一次和第二次初乳喂养后分别在 0、30、60、90、120、180、240、360、480 和 600 分钟测量血液代谢物和胰岛素浓度。在产后 30 小时,一部分小牛(n=8/处理)被处死以切除胃肠道和内脏组织。评估了胃肠道和内脏的大体形态以及干物质和小肠组织形态学、基因表达和糖酶活性。胰岛素补充后,第一次进食后葡萄糖清除率呈线性下降,而第二次进食后,葡萄糖吸收和非酯化脂肪酸清除率呈线性增加,最大葡萄糖浓度时间缩短,最低非酯化脂肪酸浓度时间缩短。此外,第二次初乳喂养后,胰岛素补充使胰岛素清除率呈线性增加。然而,在血浆或血清中葡萄糖、非酯化脂肪酸或胰岛素的浓度方面,处理之间没有总体差异。就宏观肠道发育而言,初乳中添加胰岛素时,皱胃组织干重呈线性下降,而十二指肠干组织密度(g 干物质/cm)呈线性增加,同时十二指肠干组织重量呈增加趋势。提高初乳胰岛素浓度可改善小肠远端的组织形态发育,因为补充胰岛素可增加回肠绒毛高度和粘膜-浆膜表面面积指数。近端空肠中乳糖酶酶活性呈线性增加,而回肠异麦芽糖酶活性随胰岛素补充呈线性降低。这些数据表明,初乳胰岛素浓度的变化会迅速影响胃肠道生长的优先级和糖酶活性。胃肠道本体的变化导致餐后代谢物可用性和清除率的微小变化。

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