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A novel fasting regimen revealed protein reservation and complement C3 down-regulation after 14-day’s continual dietary deprivation

OBJECTIVES: The aim is to evaluate the effect of a novel 14-day fasting regimen on the balance between skeletal muscle and adipose tissue composition which might associate with inflammatory factors. Our analysis includes basic physical examinations, clinical laboratory analysis, bioelectrical impeda...

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Autores principales: Hao, Yaqian, Fu, Yu, Sun, Liangliang, Yu, Yaying, Min, Xia, Wei, Qiannan, Huang, Shuangjian, Zhao, Sen, Wang, Li, Wang, YuanYuan, Li, Yangyang, Zheng, Xia, Zhang, Chenlu, Xu, Hongxia, Wang, Xiaoxue, Lee, Garrick D.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10359884/
https://www.ncbi.nlm.nih.gov/pubmed/37484967
http://dx.doi.org/10.3389/fendo.2023.1150547
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author Hao, Yaqian
Fu, Yu
Sun, Liangliang
Yu, Yaying
Min, Xia
Wei, Qiannan
Huang, Shuangjian
Zhao, Sen
Wang, Li
Wang, YuanYuan
Li, Yangyang
Zheng, Xia
Zhang, Chenlu
Xu, Hongxia
Wang, Xiaoxue
Lee, Garrick D.
author_facet Hao, Yaqian
Fu, Yu
Sun, Liangliang
Yu, Yaying
Min, Xia
Wei, Qiannan
Huang, Shuangjian
Zhao, Sen
Wang, Li
Wang, YuanYuan
Li, Yangyang
Zheng, Xia
Zhang, Chenlu
Xu, Hongxia
Wang, Xiaoxue
Lee, Garrick D.
author_sort Hao, Yaqian
collection PubMed
description OBJECTIVES: The aim is to evaluate the effect of a novel 14-day fasting regimen on the balance between skeletal muscle and adipose tissue composition which might associate with inflammatory factors. Our analysis includes basic physical examinations, clinical laboratory analysis, bioelectrical impedance and biochemical analytic assessments of healthy volunteers. METHODS: Eight healthy subjects were randomly selected from a pool of volunteers to undergo a continual dietary deprivation (CDD) regimen. Individuals were assigned to take Flexible Abrosia (FA, prebiotic combination) plus appropriate mineral supplement of potassium and magnesium at 3 mealtime every day to prevent potential injury from starved intestinal flora and avoid spasms of smooth muscle due to hunger. Physical and medical examinations were conducted and blood samples were collected at following timepoints: before CDD as self-control (0D), day 7 and day 14 during fasting, and 7-21days and/or 2~3mo after refeeding. RESULTS: The combination of FA and mineral supplements significantly decreased self-reported physical response of starvation, with tolerable hunger-mediated sensations experienced during CDD. Bioelectrical and biochemical results indicated significant reduction in both muscle lean and fat mass on day 7. Meanwhile, markers related to fat composition consistently decreased during and after CDD. In addition, most biochemical marker levels, including serum proteins, reached their inflection points at the 7th day of CDD as compared to the control measurements. Levels of these factors started to show a relative plateau, or reversed direction upon the 14th day of CDD. The exceptions of above factors were myostatin and complement protein C3, which remained at lower concentrations in the blood throughout CDD, and were unable to fully recover toward baseline levels even after 3 months’ refeeding. CONCLUSION: Our results indicated that human subjects undergoing prolonged dietary restriction were well protected by FA and mineral ions from gut injury or physical discomfort of starvation. Most factors showed a relative plateau response at the end of 14D-CDD. The muscle tissues were well preserved during prolonged fasting, and an improved protein/lipid ratio was observed. Upon refeeding, constant lower levels of myostatin and complement C3 were maintained after CDD implies a long-term beneficial effect in dealing with anti-aging and inflammation.
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spelling pubmed-103598842023-07-22 A novel fasting regimen revealed protein reservation and complement C3 down-regulation after 14-day’s continual dietary deprivation Hao, Yaqian Fu, Yu Sun, Liangliang Yu, Yaying Min, Xia Wei, Qiannan Huang, Shuangjian Zhao, Sen Wang, Li Wang, YuanYuan Li, Yangyang Zheng, Xia Zhang, Chenlu Xu, Hongxia Wang, Xiaoxue Lee, Garrick D. Front Endocrinol (Lausanne) Endocrinology OBJECTIVES: The aim is to evaluate the effect of a novel 14-day fasting regimen on the balance between skeletal muscle and adipose tissue composition which might associate with inflammatory factors. Our analysis includes basic physical examinations, clinical laboratory analysis, bioelectrical impedance and biochemical analytic assessments of healthy volunteers. METHODS: Eight healthy subjects were randomly selected from a pool of volunteers to undergo a continual dietary deprivation (CDD) regimen. Individuals were assigned to take Flexible Abrosia (FA, prebiotic combination) plus appropriate mineral supplement of potassium and magnesium at 3 mealtime every day to prevent potential injury from starved intestinal flora and avoid spasms of smooth muscle due to hunger. Physical and medical examinations were conducted and blood samples were collected at following timepoints: before CDD as self-control (0D), day 7 and day 14 during fasting, and 7-21days and/or 2~3mo after refeeding. RESULTS: The combination of FA and mineral supplements significantly decreased self-reported physical response of starvation, with tolerable hunger-mediated sensations experienced during CDD. Bioelectrical and biochemical results indicated significant reduction in both muscle lean and fat mass on day 7. Meanwhile, markers related to fat composition consistently decreased during and after CDD. In addition, most biochemical marker levels, including serum proteins, reached their inflection points at the 7th day of CDD as compared to the control measurements. Levels of these factors started to show a relative plateau, or reversed direction upon the 14th day of CDD. The exceptions of above factors were myostatin and complement protein C3, which remained at lower concentrations in the blood throughout CDD, and were unable to fully recover toward baseline levels even after 3 months’ refeeding. CONCLUSION: Our results indicated that human subjects undergoing prolonged dietary restriction were well protected by FA and mineral ions from gut injury or physical discomfort of starvation. Most factors showed a relative plateau response at the end of 14D-CDD. The muscle tissues were well preserved during prolonged fasting, and an improved protein/lipid ratio was observed. Upon refeeding, constant lower levels of myostatin and complement C3 were maintained after CDD implies a long-term beneficial effect in dealing with anti-aging and inflammation. Frontiers Media S.A. 2023-07-06 /pmc/articles/PMC10359884/ /pubmed/37484967 http://dx.doi.org/10.3389/fendo.2023.1150547 Text en Copyright © 2023 Hao, Fu, Sun, Yu, Min, Wei, Huang, Zhao, Wang, Wang, Li, Zheng, Zhang, Xu, Wang and Lee https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Endocrinology
Hao, Yaqian
Fu, Yu
Sun, Liangliang
Yu, Yaying
Min, Xia
Wei, Qiannan
Huang, Shuangjian
Zhao, Sen
Wang, Li
Wang, YuanYuan
Li, Yangyang
Zheng, Xia
Zhang, Chenlu
Xu, Hongxia
Wang, Xiaoxue
Lee, Garrick D.
A novel fasting regimen revealed protein reservation and complement C3 down-regulation after 14-day’s continual dietary deprivation
title A novel fasting regimen revealed protein reservation and complement C3 down-regulation after 14-day’s continual dietary deprivation
title_full A novel fasting regimen revealed protein reservation and complement C3 down-regulation after 14-day’s continual dietary deprivation
title_fullStr A novel fasting regimen revealed protein reservation and complement C3 down-regulation after 14-day’s continual dietary deprivation
title_full_unstemmed A novel fasting regimen revealed protein reservation and complement C3 down-regulation after 14-day’s continual dietary deprivation
title_short A novel fasting regimen revealed protein reservation and complement C3 down-regulation after 14-day’s continual dietary deprivation
title_sort novel fasting regimen revealed protein reservation and complement c3 down-regulation after 14-day’s continual dietary deprivation
topic Endocrinology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10359884/
https://www.ncbi.nlm.nih.gov/pubmed/37484967
http://dx.doi.org/10.3389/fendo.2023.1150547
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