ISSN 1006-298X      CN 32-1425/R

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肾脏病与透析肾移植杂志 ›› 2013, Vol. 22 ›› Issue (6): 560-565.

• 论文 • 上一篇    下一篇

钠磷协同转运蛋白与慢性肾脏病的矿物质和骨异常

  

  • 出版日期:2013-12-28 发布日期:2013-12-28

Sodium-Phosphate Cotransporter Proteins and Chronic Kidney Disease-Mineral and Bone Disorders

  • Online:2013-12-28 Published:2013-12-28

摘要:

摘 要 矿物质和骨代谢紊乱是慢性肾脏病常见的并发症。以往对慢性肾脏病的矿物质和骨代谢紊乱(CKD-MBD)的研究主要集中在钙离子代谢紊乱,并证实血钙水平主要受PTH和1,25(OH)2VitD3的调控。近年的研究发现CKD患者血清磷水平与血管钙化、心血管死亡风险存在明显相关性。无机磷参与细胞结构组成和许多重要的生物功能,在细胞中活跃地进行逆化学和电势梯度跨细胞膜运输。无机磷的转运由钠磷协同转运蛋白(Npt)完成。位于细胞膜的Npt利用Na+浓度梯度所提供的自由能作为驱动力,增加磷的摄入。目前至少已从哺乳动物细胞分离出三种Npt。成骨细胞和破骨细胞表面都有Npt的表达。Npt是体内无机磷的一种重要转运蛋白,通过对Npt参与体内磷代谢调控机制的研究,可能为矿物质和骨代谢紊乱的治疗带来新的切入靶点。

关键词: 钠磷协同转运蛋白, 矿物质和骨代谢紊乱

Abstract:

Mineral and bone disorders (MBD) is a common complication of chronic kidney disease (CKD). Previous studies of CKD-MBD were mainly concentrated in calcium metabolism disorder, and have confirmed that the serum calcium levels of CKD patients were regulated by PTH and 1,25 (OH) 2VitD3. In recent years, it have been found that hyperphosphorus is obviously associated with vascular calcification and cardiovascular death risk in end stage renal disease patients. Inorganic phosphorus participates in the composition of cell structures and many important biological functions in the cells. It is actively transported in inverse electrochemical and potential gradient across the cell membrane, and by sodium phosphorus cotransporter (Npt) which in the plasma membrane utilize the free energy provided by Na+ concentration gradient as a driving force to increase the phosphorus intake. Now three types of Npt are isolated from the mammalian cells at least. Npt is an important transport protein to inorganic phosphorus in the body and is also expressed in the membrane of osteoblast and osteoclast. Through the research of Npt involved in phosphate metabolism regulatory mechanism, it may bring a new target for the treatment of CKD-MBD.

Key words: Sodium-Phosphate Cotransporter Proteins,  , CKD-MBD