Age differences in the impact of dietary salt on metabolism, blood pressure and cognitive function in male rats

The influence of salt consumption on physiological processes, especially blood pressure (BP), metabolism, and cognition, remains a topical concern. While guidelines endorse reduced salt diets, there are gaps in understanding the age-specific implications and challenges in adherence. The present stud...

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Published inFood & function Vol. 15; no. 2; pp. 689 - 73
Main Authors Sun, Fen, Zhang, Jin-Yang, Zhao, Lu-Ping, Jin, Qi, Jin, Chao, Wang, Qiu-Xiang, Xu, Jun-Tao, Yin, Meng-Jia
Format Journal Article
LanguageEnglish
Published England Royal Society of Chemistry 22.01.2024
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Abstract The influence of salt consumption on physiological processes, especially blood pressure (BP), metabolism, and cognition, remains a topical concern. While guidelines endorse reduced salt diets, there are gaps in understanding the age-specific implications and challenges in adherence. The present study delved into the differential effects of salt intake on young adult and aged male rats over a 12-week period, using control, low-, and high-salt diets. Key metrics, such as BP, cognition, and general parameters, were monitored. Our findings revealed significant age-dependent effects of salt intake on survival rates, body weight, blood sodium, blood glucose, blood lipids, BP, heart rates, and cognition. Notably, young adult rats did not show significant sodium level changes on a high-salt diet, whereas aged rats experienced increased sodium levels even on a normal salt diet. Blood glucose levels decreased significantly in aged rats on a high-salt diet but remained stable in young adults. Aged rats had the highest survival rates on low-salt diets. Low-salt diets led to reduced BP in both age groups, more significantly in young adults. Young adult rats displayed increased BP variability on both high- and low-salt diets, while a decrease in BP variability was exclusive to aged rats on a low-salt diet. There were significant differences across age groups in short-term memory, but not in long-term memory. The study provides a nuanced understanding of the age-dependent physiological effects of salt intake, suggesting the necessity of age-specific guidelines for public health. There are age differences in the effects of varying salt intake on the metabolism, survival rate, blood pressure levels, blood pressure variability, heart rate, and cognition in male rats.
AbstractList The influence of salt consumption on physiological processes, especially blood pressure (BP), metabolism, and cognition, remains a topical concern. While guidelines endorse reduced salt diets, there are gaps in understanding the age-specific implications and challenges in adherence. The present study delved into the differential effects of salt intake on young adult and aged male rats over a 12-week period, using control, low-, and high-salt diets. Key metrics, such as BP, cognition, and general parameters, were monitored. Our findings revealed significant age-dependent effects of salt intake on survival rates, body weight, blood sodium, blood glucose, blood lipids, BP, heart rates, and cognition. Notably, young adult rats did not show significant sodium level changes on a high-salt diet, whereas aged rats experienced increased sodium levels even on a normal salt diet. Blood glucose levels decreased significantly in aged rats on a high-salt diet but remained stable in young adults. Aged rats had the highest survival rates on low-salt diets. Low-salt diets led to reduced BP in both age groups, more significantly in young adults. Young adult rats displayed increased BP variability on both high- and low-salt diets, while a decrease in BP variability was exclusive to aged rats on a low-salt diet. There were significant differences across age groups in short-term memory, but not in long-term memory. The study provides a nuanced understanding of the age-dependent physiological effects of salt intake, suggesting the necessity of age-specific guidelines for public health.
The influence of salt consumption on physiological processes, especially blood pressure (BP), metabolism, and cognition, remains a topical concern. While guidelines endorse reduced salt diets, there are gaps in understanding the age-specific implications and challenges in adherence. The present study delved into the differential effects of salt intake on young adult and aged male rats over a 12-week period, using control, low-, and high-salt diets. Key metrics, such as BP, cognition, and general parameters, were monitored. Our findings revealed significant age-dependent effects of salt intake on survival rates, body weight, blood sodium, blood glucose, blood lipids, BP, heart rates, and cognition. Notably, young adult rats did not show significant sodium level changes on a high-salt diet, whereas aged rats experienced increased sodium levels even on a normal salt diet. Blood glucose levels decreased significantly in aged rats on a high-salt diet but remained stable in young adults. Aged rats had the highest survival rates on low-salt diets. Low-salt diets led to reduced BP in both age groups, more significantly in young adults. Young adult rats displayed increased BP variability on both high- and low-salt diets, while a decrease in BP variability was exclusive to aged rats on a low-salt diet. There were significant differences across age groups in short-term memory, but not in long-term memory. The study provides a nuanced understanding of the age-dependent physiological effects of salt intake, suggesting the necessity of age-specific guidelines for public health. There are age differences in the effects of varying salt intake on the metabolism, survival rate, blood pressure levels, blood pressure variability, heart rate, and cognition in male rats.
Author Zhao, Lu-Ping
Sun, Fen
Jin, Qi
Zhang, Jin-Yang
Xu, Jun-Tao
Yin, Meng-Jia
Wang, Qiu-Xiang
Jin, Chao
AuthorAffiliation Hangzhou Normal University
College of Basic Medicine
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Snippet The influence of salt consumption on physiological processes, especially blood pressure (BP), metabolism, and cognition, remains a topical concern. While...
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SubjectTerms Adults
Age
Age differences
Age groups
Animals
Blood glucose
Blood levels
Blood Pressure
Body weight
Cognition
Cognition & reasoning
Cognitive ability
Diet
Diet, Sodium-Restricted
Glucose
Guidelines
Heart rate
Hypertension
Lipids
Long term memory
Male
Males
Memory
Metabolism
Nutrient deficiency
Physiological effects
Physiology
Public health
Rats
Salt
Salts
Short term memory
Sodium
Sodium Chloride
Sodium Chloride, Dietary
Survival
Variability
Young adults
Title Age differences in the impact of dietary salt on metabolism, blood pressure and cognitive function in male rats
URI https://www.ncbi.nlm.nih.gov/pubmed/38108607
https://www.proquest.com/docview/2917229692
https://search.proquest.com/docview/2903325068
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