Hepatic phosphate uptake and subsequent nerve-mediated phosphaturia are crucial for phosphate homeostasis following portal vein passage of phosphate in rats

内科学 内分泌学 磷酸盐 平衡 餐后 排泄 甲状旁腺激素 下腔静脉 化学 医学 生物化学 胰岛素
作者
Seiichi Yasuda,Kazunori Inoue,Isao Matsui,Ayumi Matsumoto,Yusuke Katsuma,Hiroki Okushima,Atsuhiro Imai,Yusuke Sakaguchi,Jun‐Ya Kaimori,Ryohei Yamamoto,Masayuki Mizui,Yoshitaka Isaka
出处
期刊:Scientific Reports [Nature Portfolio]
卷期号:13 (1) 被引量:3
标识
DOI:10.1038/s41598-023-32856-2
摘要

Abstract Fibroblast growth factor 23, parathyroid hormone, and 1,25-dihydroxyvitamin D are critical in phosphate homeostasis. Despite these factors’ importance, regulators of phosphaturia in the acute postprandial phase remain largely unknown. This study investigated the mechanism of acute phosphate regulation in the postprandial phase in rats. Duodenal administration of radiolabeled phosphate ( 32 P) showed that 32 P levels in the inferior vena cava (IVC) blood were lower than those in the portal vein (PV) blood. Serum phosphate concentration transiently increased 5 min after phosphate solution administration through IVC, while it was maintained after the administration through PV. Phosphate administration through both IVC and PV resulted in increased fractional excretion of phosphate (FEPi) at 10 min without elevation of the known circulating factors, but urinary phosphate excretion during the period was 8% of the dose. Experiments using 32 P or partial hepatectomy showed that the liver was one of the phosphate reservoirs. The elevation of FEPi and suppression of sodium-phosphate cotransporter 2a in the kidney at 10 min was attenuated in rats with SCH23390, hepatic denervation, or renal denervation, thus indicating that the liver communicated with the kidney via the nervous system to promote phosphaturia. These results revealed previously unknown mechanisms for serum phosphate maintenance.

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