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Effects of sea salt intake on metabolites, steroid hormones, and gut microbiota in rats. | LitMetric

Effects of sea salt intake on metabolites, steroid hormones, and gut microbiota in rats.

PLoS One

Department of Food Science and Technology, and Institute of Agriculture and Life Science, Gyeongsang National University, Jinju, Gyeongsang, Republic of Korea.

Published: August 2022

AI Article Synopsis

  • - High salt intake, specifically from mineral-rich sea salt, can lead to several health issues; this study explored its effects on male rats compared to a normal diet.
  • - Rats fed diets with 1% or 4% sea salt experienced weight loss, changes in gut salt content, and shifts in beneficial and harmful gut bacteria, which may affect gut health.
  • - The study found significant alterations in female hormones and reductions in certain compounds related to kidney function due to high sea salt intake, suggesting that these physiological changes might vary by sex.

Article Abstract

High salt intake is positively linked to many health problems, but the effect of mineral-rich sea salt (SS) has rarely been studied. To better understand the physiological effects of SS intake, the changes in general characteristics, metabolites, steroid hormones, and gut microbiota of SS-fed rats were investigated. Male rats were fed either a normal diet (ND, control) or ND containing 1% SS or 4% SS for 5 weeks. SS intake decreased fat, spleen, liver, and body weight, and increased blood urea nitrogen (BUN), water intake, and gut salt content. Accumulated gut salt content led to a decrease in beneficial bacteria, such as Lachnospiraceae and Lactobacillus, but an increase in potentially harmful bacteria, resulting in a change in lipid metabolites associated with gut health. Interestingly, most renal lysophosphatidylcholines (LPCs) associated with many renal functions were dramatically decreased and female hormones, such as estrogens, were significantly more altered than the male hormones by high SS intake. Although further investigation is needed, these data suggest that high SS intake could be positively linked to kidney dysfunction and gut health problems, and salt-related physiological changes may be sex-specific. Additionally, these data will be useful to better under-stand the physiological effects of SS intake.

Download full-text PDF

Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9374251PMC
http://journals.plos.org/plosone/article?id=10.1371/journal.pone.0269014PLOS

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