Dai-Scott Nguyen and Minh-Kevin Nguyen David Geffen School of Medicine at UCLA, Los Angeles, California, USA.
Nephron. 2021;145(4):388-391. doi: 10.1159/000515726. Epub 2021 Apr 19.
Alterations in the plasma sodium concentration ([Na+]p) is predicted based on changes in the mass balance of Na+, K+, and H2O. However, it is well appreciated that Na+ retention results in both osmotically active and osmotically inactive Na+ storage and that only osmotically active Na+ contributes to the modulation of the [Na+]p. Subject of Review: Recent clinical studies suggested that prediction of changes in the [Na+]p based on the mass balance of Na+, K+, and H2O is inaccurate since the osmotically inactive Na+ storage pool is dynamically regulated. In contrast, animal studies demonstrated that changes in the [Na+]p can be predicted if the total body Na+, K+, and H2O were to be accurately accounted for. Second Opinion: Our analysis demonstrated that alterations in the [Na+]p are predictable at the total body level if all sources of input and output of Na+, K+, and H2O can be accurately accounted for despite the paradoxical finding that there are changes in the osmotically inactive Na+ storage pool at the tissue level. However, future prospective clinical studies are needed to corroborate the findings in the animal studies. We proposed that the fundamental question as to whether changes in the [Na+]p can be predicted in the face of osmotically inactive sodium storage is best addressed by serial measurements of total body exchangeable Na+ and K+ and total body water by isotope dilution at different time intervals.
血浆钠浓度 ([Na+]p) 的变化是基于钠、钾和 H2O 的质量平衡预测的。然而,人们充分认识到,钠潴留会导致渗透压活性和非渗透压活性的钠储存,并且只有渗透压活性的钠才会对 [Na+]p 的调节产生影响。
最近的临床研究表明,基于钠、钾和 H2O 的质量平衡来预测 [Na+]p 的变化是不准确的,因为非渗透压活性的钠储存池是动态调节的。相比之下,动物研究表明,如果准确考虑全身钠、钾和 H2O,则可以预测 [Na+]p 的变化。
我们的分析表明,如果可以准确地计算钠、钾和 H2O 的所有输入和输出来源,那么全身水平的 [Na+]p 变化是可以预测的,尽管在组织水平上存在渗透压非活性钠储存池的变化存在矛盾的发现。然而,需要进行未来的前瞻性临床研究来证实动物研究中的发现。我们提出,在面对渗透压非活性钠储存的情况下,[Na+]p 是否可以预测的基本问题,最好通过在不同时间间隔通过同位素稀释法对全身可交换钠和 K+以及全身水进行连续测量来解决。