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Citations to this article

Increased salt consumption induces body water conservation and decreases fluid intake
Natalia Rakova, … , Friedrich C. Luft, Jens Titze
Natalia Rakova, … , Friedrich C. Luft, Jens Titze
Published April 17, 2017
Citation Information: J Clin Invest. 2017;127(5):1932-1943. https://doi.org/10.1172/JCI88530.
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Clinical Research and Public Health Metabolism Nephrology Article has an altmetric score of 1088

Increased salt consumption induces body water conservation and decreases fluid intake

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Abstract

BACKGROUND. The idea that increasing salt intake increases drinking and urine volume is widely accepted. We tested the hypothesis that an increase in salt intake of 6 g/d would change fluid balance in men living under ultra-long-term controlled conditions.

METHODS. Over the course of 2 separate space flight simulation studies of 105 and 205 days’ duration, we exposed 10 healthy men to 3 salt intake levels (12, 9, or 6 g/d). All other nutrients were maintained constant. We studied the effect of salt-driven changes in mineralocorticoid and glucocorticoid urinary excretion on day-to-day osmolyte and water balance.

RESULTS. A 6-g/d increase in salt intake increased urine osmolyte excretion, but reduced free-water clearance, indicating endogenous free water accrual by urine concentration. The resulting endogenous water surplus reduced fluid intake at the 12-g/d salt intake level. Across all 3 levels of salt intake, half-weekly and weekly rhythmical mineralocorticoid release promoted free water reabsorption via the renal concentration mechanism. Mineralocorticoid-coupled increases in free water reabsorption were counterbalanced by rhythmical glucocorticoid release, with excretion of endogenous osmolyte and water surplus by relative urine dilution. A 6-g/d increase in salt intake decreased the level of rhythmical mineralocorticoid release and elevated rhythmical glucocorticoid release. The projected effect of salt-driven hormone rhythm modulation corresponded well with the measured decrease in water intake and an increase in urine volume with surplus osmolyte excretion.

CONCLUSION. Humans regulate osmolyte and water balance by rhythmical mineralocorticoid and glucocorticoid release, endogenous accrual of surplus body water, and precise surplus excretion.

FUNDING. Federal Ministry for Economics and Technology/DLR; the Interdisciplinary Centre for Clinical Research; the NIH; the American Heart Association (AHA); the Renal Research Institute; and the TOYOBO Biotechnology Foundation. Food products were donated by APETITO, Coppenrath und Wiese, ENERVIT, HIPP, Katadyn, Kellogg, Molda, and Unilever.

Authors

Natalia Rakova, Kento Kitada, Kathrin Lerchl, Anke Dahlmann, Anna Birukov, Steffen Daub, Christoph Kopp, Tetyana Pedchenko, Yahua Zhang, Luis Beck, Bernd Johannes, Adriana Marton, Dominik N. Müller, Manfred Rauh, Friedrich C. Luft, Jens Titze

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Total citations by year

Year: 2025 2024 2023 2022 2021 2020 2019 2018 2017 Total
Citations: 4 6 10 14 11 14 8 8 3 78
Citation information
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Citations to this article in year 2023 (10)

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Olde Engberink RH, van Oosten PJ, Weber T, Tabury K, Baatout S, Valenti G, Chouker A, Boutouyrie P, Heer M, Jordan J, Goswami N
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Change in Metabolomic Profile Associated with an Average Increase in Plain Water Intake of >+ 1 L/Day, Sustained Over 4 Weeks, in Healthy Young Men with Initial Total Water Intake Below 2 L/Day
Stookey JD, Paulweber B, Felder TK, Lang F, Häussinger D, Killilea DW, Kuypers FA, Ritter M
2023
Sugar, salt, immunity and the cause of primary hypertension
Sánchez-Lozada LG, Madero M, Mazzali M, Feig DI, Nakagawa T, Lanaspa MA, Kanbay M, Kuwabara M, Rodriguez-Iturbe B, Johnson RJ
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The damaging duo: Obesity and excess dietary salt contribute to hypertension and cardiovascular disease
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Obesity reviews : an official journal of the International Association for the Study of Obesity 2023
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Early-life sodium deprivation programs long-term changes in ingestive behaviors and energy expenditure in C57BL/6J mice
Ziegler AA, Lawton SB, Grobe CC, Reho JJ, Freudinger BP, Burnett CM, Nakagawa P, Grobe JL, Segar JL
American Journal of Physiology - Regulatory, Integrative and Comparative Physiology 2023
Melatonin supplementation reduces nighttime blood pressure but does not affect blood pressure reactivity in normotensive adults on a high-sodium diet
Ramos Gonzalez M, Axler MR, Kaseman KE, Lobene AJ, Farquhar WB, Witman MA, Kirkman DL, Lennon SL
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