Department of Clinical Biochemistry, University Hospital Southampton NHS Foundation Trust, Southampton General Hospital, Southampton S016 6YD, UK.
Int J Mol Sci. 2024 Apr 25;25(9):4684. doi: 10.3390/ijms25094684.
To maintain an optimal body content of phosphorus throughout postnatal life, variable phosphate absorption from food must be finely matched with urinary excretion. This amazing feat is accomplished through synchronised phosphate transport by myriads of ciliated cells lining the renal proximal tubules. These respond in real time to changes in phosphate and composition of the renal filtrate and to hormonal instructions. How they do this has stimulated decades of research. New analytical techniques, coupled with incredible advances in computer technology, have opened new avenues for investigation at a sub-cellular level. There has been a surge of research into different aspects of the process. These have verified long-held beliefs and are also dramatically extending our vision of the intense, integrated, intracellular activity which mediates phosphate absorption. Already, some have indicated new approaches for pharmacological intervention to regulate phosphate in common conditions, including chronic renal failure and osteoporosis, as well as rare inherited biochemical disorders. It is a rapidly evolving field. The aim here is to provide an overview of our current knowledge, to show where it is leading, and where there are uncertainties. Hopefully, this will raise questions and stimulate new ideas for further research.
为了在整个产后生命中维持最佳的磷体含量,食物中可变的磷吸收必须与尿排泄精确匹配。这一惊人的壮举是通过排列在肾近端小管的无数纤毛细胞同步进行的磷转运来完成的。这些细胞会实时响应磷和肾滤液成分的变化以及激素指令。它们是如何做到这一点的,这激发了数十年的研究。新的分析技术,加上计算机技术的令人难以置信的进步,为在亚细胞水平进行调查开辟了新途径。人们对该过程的不同方面进行了大量研究。这些研究证实了长期以来的信念,也极大地扩展了我们对调节磷吸收的强烈、综合、细胞内活动的认识。已经有一些研究表明,在包括慢性肾衰竭和骨质疏松症在内的常见疾病以及罕见的遗传性生化紊乱中,通过药理学干预来调节磷的新方法。这是一个快速发展的领域。本文旨在提供我们当前知识的概述,展示其发展方向和存在的不确定性。希望这将引发问题,并为进一步研究激发新的想法。