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Gastrointestinal transport of calcium and phosphate in lactating goats

机译:泌乳山羊中钙和磷酸盐的胃肠道运输

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Previous studies gave evidence for the assumption that in contrast to sheep, dairy goats can adapt to lactation-induced challenges of calcium (Ca) homeostasis by effective adaptation of gastrointestinal Ca absorption. Ca and phosphate (P-i) homeostasis are known to be closely related challenged during lactation. However, for both, Ca and P-i homeostasis, the underlying molecular mechanisms and their regulation during lactation in goats have only marginally been investigated so far. Therefore, the present study aimed to investigate the impact of lactation on gastrointestinal Ca and P-i absorption in dairy goats on a functional level using the Ussing chamber technique to determine macromineral fluxes across gastrointestinal epithelia, and on a structural level by analyzing gastrointestinal RNA and protein expression of key genes involved in transcellular Ca and P-i transport. Besides slightly increased functional Ca absorption and elevated expression of transient receptor potential vanilloid channel type 6, calbindin D-9k and plasma membrane Ca2+-ATPase type 1 in jejunum, an upregulation of Ca absorption in lactating goats also occurred in the rumen in terms of increased Ca fluxes. However, the exact molecular and regulatory mechanisms have to be examined in more detail. Interestingly, intestinal Pi absorption in duodenum and jejunum was downregulated by lactation on functional level, and in accordance, sodium-dependent P-i cotransporter type IIb RNA and protein expression were decreased in jejunum. Whether this down regulation of intestinal P-i absorption can be attributed to sufficient P-i supply from endogenous sources or to lactation-induced increased dietary P-i intake has still to be investigated. (C) 2016 Elsevier B.V. All rights reserved.
机译:先前的研究为以下假设提供了证据:与绵羊相反,奶山羊可以通过有效适应胃肠道Ca的吸收来适应泌乳诱导的钙(Ca)稳态挑战。已知钙和磷酸盐(P-i)的体内平衡在泌乳过程中受到密切的挑战。但是,到目前为止,对于山羊泌乳过程中Ca和P-i动态平衡,潜在的分子机制及其调控,仅进行了很少的研究。因此,本研究旨在研究泌乳对乳山羊胃肠中Ca和Pi吸收的影响,方法是使用Ussing chamber技术确定跨胃肠道上皮的宏观矿物质通量,并通过分析胃肠道RNA和蛋白质表达在结构水平上跨细胞Ca和Pi转运的关键基因空肠中功能性钙的吸收略有增加,瞬时受体电位类香草酸通道6型,钙结合蛋白D-9k和质膜Ca2 + -ATPase 1型的表达升高,但瘤胃中钙的吸收也随着瘤胃的增加而上调。钙助熔剂。但是,必须更详细地检查确切的分子和调节机制。有趣的是,十二指肠和空肠中的肠道Pi吸收在功能水平上受到泌乳作用的调节而降低,因此,空肠中钠依赖性P-i共转运蛋白IIb型RNA和蛋白质表达降低。肠道P-i吸收的这种下调是归因于来自内源的足够P-i供应还是归因于泌乳引起的饮食中P-i摄入增加,尚待研究。 (C)2016 Elsevier B.V.保留所有权利。

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