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Citations to this article

Salt and water: not so simple
Mark L. Zeidel
Mark L. Zeidel
Published April 17, 2017
Citation Information: J Clin Invest. 2017;127(5):1625-1626. https://doi.org/10.1172/JCI94004.
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Commentary Article has an altmetric score of 173

Salt and water: not so simple

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Abstract

It has long been viewed that the maintenance of osmotic balance in response to high salt intake is a passive process that is mediated largely by increased water consumption to balance the salt load. Two studies in this issue of the JCI challenge this notion and demonstrate that osmotic balance in response to high salt intake involves a complex regulatory process that is influenced by hormone fluctuation, metabolism, food consumption, water intake, and renal salt and water excretion. Rakova et al. report the unexpected observation that long-term high salt intake did not increase water consumption in humans but instead increased water retention. Moreover, salt and water balance was influenced by glucocorticoid and mineralocorticoid fluctuations. Kitada et al. extend upon these findings in mouse models and determined that increased urea and a corresponding increase in urea transporters in the renal medulla as the result of increased protein intake promote the water retention that is needed to achieve osmotic homeostasis. Together, the results of these two studies lay the groundwork for future studies to determine how, in the face of chronic changes in salt intake, humans maintain volume and osmotic homeostasis.

Authors

Mark L. Zeidel

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Total citations by year

Year: 2025 2024 2022 2020 2018 Total
Citations: 1 1 1 2 1 6
Citation information
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Citations to this article (6)

Title and authors Publication Year
Probiotic Lactobacillus rhamnosus GG Alleviates Prehypertension and Restores Gut Health and Microbiota in NaCl-Induced Prehypertensive Rats.
Zaharuddin AM, Muslim A, Aazmi S, Idorus MY, Almabhouh FA, Lim SY, Loganathan AL, Ayub Q, Chong CW, Khalil KA, Ghani NA, Lim SM, Ramasamy K
Probiotics and antimicrobial proteins 2025
Pharmacological Interventions for Cirrhotic Ascites: From Challenges to Emerging Therapeutic Horizons
Gao Y, Liu X, Gao Y, Duan M, Hou B, Chen Y
Gut and Liver 2024
The modulatory effect of high salt on immune cells and related diseases.
Li X, Alu A, Wei Y, Wei X, Luo M
Cell Proliferation 2022
Effects of Sodium Reduction on Energy, Metabolism, Weight, Thirst, and Urine Volume: Results From the DASH (Dietary Approaches to Stop Hypertension)-Sodium Trial
SP Juraschek, ER Miller, AR Chang, CA Anderson, JE Hall, LJ Appel
Hypertension 2020
Individual differences in biological regulation: Predicting vulnerability to drug addiction, obesity, and other dysregulatory disorders
DS Ramsay, KJ Kaiyala, SC Woods
Experimental and Clinical Psychopharmacology 2020
Betaine Improves Intestinal Functions by Enhancing Digestive Enzymes, Ameliorating Intestinal Morphology, and Enriching Intestinal Microbiota in High-salt stressed Rats
H Wang, S Li, S Fang, X Yang, J Feng
Nutrients 2018

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