Institute of Physiology, University of Zurich, Zurich, Switzerland.
Institute of Physiology, Kiel University, Kiel, Germany.
Pflugers Arch. 2024 Oct;476(10):1597-1612. doi: 10.1007/s00424-024-02998-x. Epub 2024 Aug 8.
Intestinal absorption of phosphate is bimodal, consisting of a transcellular pathway and a poorly characterized paracellular mode, even though the latter one contributes to the bulk of absorption under normal dietary conditions. Claudin-3 (Cldn3), a tight junction protein present along the whole intestine in mice, has been proposed to tighten the paracellular pathway for phosphate. The aim of this work was to characterize the phosphate-related phenotype of Cldn3-deficient mice. Cldn3-deficient mice and wildtype littermates were fed standard diet or challenged for 3 days with high dietary phosphate. Feces, urine, blood, intestinal segments and kidneys were collected. Measurements included fecal, urinary, and plasma concentrations of phosphate and calcium, plasma levels of phosphate-regulating hormones, evaluation of trans- and paracellular phosphate transport across jejunum and ileum, and analysis of intestinal phosphate and calcium permeabilities. Fecal and urinary excretion of phosphate as well as its plasma concentration was similar in both genotypes, under standard and high-phosphate diet. However, Cldn3-deficient mice challenged with high dietary phosphate had a reduced urinary calcium excretion and increased plasma levels of calcitriol. Intact FGF23 concentration was also similar in both groups, regardless of the dietary conditions. We found no differences either in intestinal phosphate transport (trans- or paracellular) and phosphate and calcium permeabilities between genotypes. The intestinal expression of claudin-7 remained unaltered in Cldn3-deficient mice. Our data do not provide evidence for a decisive role of Cldn3 for intestinal phosphate absorption and phosphate homeostasis. In addition, our data suggest a novel role of Cldn3 in regulating calcitriol levels.
肠道对磷酸盐的吸收呈双峰模式,包括细胞旁途径和一种特征不明显的细胞旁途径,尽管在后一种途径在正常饮食条件下对大部分吸收起作用。 Claudin-3(Cldn3)是一种紧密连接蛋白,在小鼠整个肠道中都存在,它被认为可以使磷酸盐的细胞旁途径变紧。本研究的目的是描述 Cldn3 缺陷型小鼠的磷酸盐相关表型。Cldn3 缺陷型小鼠和野生型同窝仔鼠分别喂食标准饮食或高磷饮食 3 天。收集粪便、尿液、血液、肠段和肾脏。测量包括粪便、尿液和血浆中磷酸盐和钙的浓度、调节磷酸盐的激素的血浆水平、评估空肠和回肠的跨细胞和细胞旁磷酸盐转运、以及分析肠道磷酸盐和钙通透性。在标准和高磷饮食下,两种基因型的粪便和尿液磷酸盐排泄以及其血浆浓度相似。然而,在高磷饮食下,Cldn3 缺陷型小鼠的尿钙排泄减少,血浆中 1,25-二羟维生素 D3(calcitriol)水平升高。无论饮食条件如何,两组的 intact FGF23 浓度也相似。我们发现两种基因型之间的肠道磷酸盐转运(细胞旁或跨细胞)和磷酸盐及钙通透性没有差异。Cldn3 缺陷型小鼠的 claudin-7 肠道表达保持不变。我们的数据没有提供 Cldn3 对肠道磷酸盐吸收和磷酸盐平衡起决定性作用的证据。此外,我们的数据表明 Cldn3 在调节 calcitriol 水平方面具有新的作用。