母体表皮生长因子促进新生儿Claudin-2依赖性小肠钙渗透性增加。

IF 5.1 Q2 CELL BIOLOGY Function (Oxford, England) Pub Date : 2023-06-27 eCollection Date: 2023-01-01 DOI:10.1093/function/zqad033
Megan R Beggs, Kennedi Young, Allen Plain, Debbie D O'Neill, Ahsan Raza, Veit Flockerzi, Henrik Dimke, R Todd Alexander
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引用次数: 1

摘要

母乳中钙的浓度高于血液,有利于细胞旁钙的吸收,从而促进产后发育。我们旨在确定哺乳动物是否具有更大的肠道钙渗透性,以最大限度地吸收钙,并确定潜在的分子机制。我们检测了不同年龄小鼠和人类肠上皮细胞(Caco-2)对激素或母乳的反应中肠claudin的表达。我们还测量了野生型Cldn2和Cldn12 KO小鼠以及Caco-2细胞对激素或母乳的肠道钙渗透性。μCT评价小鼠骨矿化。小鼠空肠和回肠的钙渗透性在2周时比出生后2个月大2倍。在2周时,Cldn2和Cldn12的表达更高,但与野生型相比,只有Cldn2-KO小鼠的钙渗透性降低。这意味着股骨的骨体积、横截面厚度和组织矿物密度降低。母乳断奶导致空肠和回肠中Cldn2的表达减少50%。母乳中的表皮生长因子(EGF)仅特异性增加Caco-2细胞中CLDN2的表达和钙渗透性。这些数据支持claudin-2赋予的肠道对钙的渗透性,在哺乳小鼠中更大,并由母乳中的EGF驱动。CLDN2途径的缺失导致在生命的2周时出现次优的骨矿化。总的来说,EGF介导的肠道claudin-2表达的控制有助于乳动物最大限度地吸收肠道钙。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Maternal Epidermal Growth Factor Promotes Neonatal Claudin-2 Dependent Increases in Small Intestinal Calcium Permeability.

A higher concentration of calcium in breast milk than blood favors paracellular calcium absorption enabling growth during postnatal development. We aimed to determine whether suckling animals have greater intestinal calcium permeability to maximize absorption and to identify the underlying molecular mechanism. We examined intestinal claudin expression at different ages in mice and in human intestinal epithelial (Caco-2) cells in response to hormones or human milk. We also measured intestinal calcium permeability in wildtype, Cldn2 and Cldn12 KO mice and Caco-2 cells in response to hormones or human milk. Bone mineralization in mice was assessed by μCT. Calcium permeability across the jejunum and ileum of mice were 2-fold greater at 2 wk than 2 mo postnatal age. At 2 wk, Cldn2 and Cldn12 expression were greater, but only Cldn2 KO mice had decreased calcium permeability compared to wildtype. This translated to decreased bone volume, cross-sectional thickness, and tissue mineral density of femurs. Weaning from breast milk led to a 50% decrease in Cldn2 expression in the jejunum and ileum. Epidermal growth factor (EGF) in breast milk specifically increased only CLDN2 expression and calcium permeability in Caco-2 cells. These data support intestinal permeability to calcium, conferred by claudin-2, being greater in suckling mice and being driven by EGF in breast milk. Loss of the CLDN2 pathway leads to suboptimal bone mineralization at 2 wk of life. Overall, EGF-mediated control of intestinal claudin-2 expression contributes to maximal intestinal calcium absorption in suckling animals.

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