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The Roles of Sodium-Independent Inorganic Phosphate Transporters in Inorganic Phosphate Homeostasis and in Cancer and Other Diseases

机译:含钠无机磷酸铁运输器在无机磷酸盐稳态和癌症等疾病中的作用

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摘要

Inorganic phosphate (Pi) is an essential nutrient for the maintenance of cells. In healthy mammals, extracellular Pi is maintained within a narrow concentration range of 0.70 to 1.55 mM. Mammalian cells depend on Na+/Pi cotransporters for Pi absorption, which have been well studied. However, a new type of sodium-independent Pi transporter has been identified. This transporter assists in the absorption of Pi by intestinal cells and renal proximal tubule cells and in the reabsorption of Pi by osteoclasts and capillaries of the blood–brain barrier (BBB). Hyperphosphatemia is a risk factor for mineral deposition, the development of diseases such as osteoarthritis, and vascular calcifications (VCs). Na+-independent Pi transporters have been identified and biochemically characterized in vascular smooth muscle cells (VSMCs), chondrocytes, and matrix vesicles, and their involvement in mineral deposition in the extracellular microenvironment has been suggested. According to the growth rate hypothesis, cancer cells require more phosphate than healthy cells due to their rapid growth rates. Recently, it was demonstrated that breast cancer cells (MDA-MB-231) respond to high Pi concentration (2 mM) by decreasing Na+-dependent Pi transport activity concomitant with an increase in Na+-independent (H+-dependent) Pi transport. This Pi H+-dependent transport has a fundamental role in the proliferation and migratory capacity of MDA-MB-231 cells. The purpose of this review is to discuss experimental findings regarding Na+-independent inorganic phosphate transporters and summarize their roles in Pi homeostasis, cancers and other diseases, such as osteoarthritis, and in processes such as VC.
机译:无机磷酸盐(PI)是维持细胞的必要营养素。在健康的哺乳动物中,细胞外PI保持在0.70至1.55mm的窄浓度范围内。哺乳动物细胞依赖于对PI吸收的Na + / Pi Cot转移剂,这已经很好地研究。然而,已经确定了一种新型的无关的PI转运蛋白。该转运仪通过肠细胞和肾近端小管细胞和血脑屏障(BBB)的骨质细胞和毛细管的PI重吸收,有助于肠细胞和肾近端小管细胞的吸收。高渗血症是矿物沉积的危险因素,患骨关节炎等疾病的发展,以及血管钙化(VCS)。已经鉴定了Na + -Indepepent Pi转运蛋白,并在血管平滑肌细胞(VSMC),软骨细胞和基质囊泡中生物化学表征,并提出了它们在细胞外微环境中的矿物沉积中的参与。根据增长率假设,由于它们的快速增长率,癌细胞比健康细胞更多的磷酸盐。最近,证明乳腺癌细胞(MDA-MB-231)通过降低Na +依赖性PI传输活性伴随Na + -Incependent(H +依赖性)PI转运而响应高PI浓度(2mM)。该PI H +依赖性转运在MDA-MB-231细胞的增殖和迁移能力中具有基本作用。本综述的目的是讨论有关Na + -Independent无机磷酸盐转运蛋白的实验结果,并总结其在PI稳态,癌症和其他疾病中的作用,如骨关节炎,以及VC等过程。

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