Cargando…

L‐citrulline inhibits body weight gain and hepatic fat accumulation by improving lipid metabolism in a rat nonalcoholic fatty liver disease model

BACKGROUND: Body weight gain is a social issue all over the world. When body weight increased, hepatic fat accumulation also increased and it causes fatty liver disease. Therefore, developing a new treatment method and elucidating its mechanism is necessary. L‐citrulline (L‐Cit) is a free amino acid...

Descripción completa

Detalles Bibliográficos
Autores principales: Kudo, Maya, Yamagishi, Yoshie, Suguro, Shiori, Nishihara, Masaaki, Yoshitomi, Hisae, Hayashi, Misa, Gao, Ming
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8441368/
https://www.ncbi.nlm.nih.gov/pubmed/34532001
http://dx.doi.org/10.1002/fsn3.2439
_version_ 1783752859568832512
author Kudo, Maya
Yamagishi, Yoshie
Suguro, Shiori
Nishihara, Masaaki
Yoshitomi, Hisae
Hayashi, Misa
Gao, Ming
author_facet Kudo, Maya
Yamagishi, Yoshie
Suguro, Shiori
Nishihara, Masaaki
Yoshitomi, Hisae
Hayashi, Misa
Gao, Ming
author_sort Kudo, Maya
collection PubMed
description BACKGROUND: Body weight gain is a social issue all over the world. When body weight increased, hepatic fat accumulation also increased and it causes fatty liver disease. Therefore, developing a new treatment method and elucidating its mechanism is necessary. L‐citrulline (L‐Cit) is a free amino acid found mainly in watermelon. No reports regarding its effects on the improvement of hepatic steatosis and fibrogenesis are currently available. The aim of this study was to clarify the effect and the mechanism of L‐Cit on inhibition of body weight gain and hepatic fat accumulation in high‐fat and high‐cholesterol fed SHRSP5/Dmcr rats. METHODS: L‐Cit or water (controls) was administered to six‐week‐old male SHRSP5/Dmcr rats by gavage for nine weeks. We recorded the level of body weight and food intake while performing the administration and sacrificed rats. After that, the blood and lipid metabolism‐related organs and tissues were collected and analyzed. RESULTS: L‐Cit treatment reduced body weight gain and hepatic TC and TG levels, and serum levels of AST and ALT. L‐Cit enhanced AMPK, LKB1, PKA, and hormone‐sensitive lipase (HSL) protein phosphorylation levels in the epididymal fat. L‐Cit treatment improved steatosis as revealed by HE staining of liver tissues and enhanced AMPK and LKB1 phosphorylation levels. Moreover, activation of Sirt1 was higher, while the liver fatty acid synthase (FAS) level was lower. Azan staining of liver sections revealed a reduction in fibrogenesis following L‐Cit treatment. Further, the liver levels of TGF‐β, Smad2/3, and α‐SMA, fibrogenesis‐related proteins and genes, were lower in the L‐Cit‐treated group. CONCLUSIONS: From the results of analysis of the epididymal fat and the liver, L‐Cit inhibits body weight gain and hepatic fat accumulation by activating lipid metabolism and promoting fatty acid β‐oxidation in SHRSP5/Dmcr rats.
format Online
Article
Text
id pubmed-8441368
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-84413682021-09-15 L‐citrulline inhibits body weight gain and hepatic fat accumulation by improving lipid metabolism in a rat nonalcoholic fatty liver disease model Kudo, Maya Yamagishi, Yoshie Suguro, Shiori Nishihara, Masaaki Yoshitomi, Hisae Hayashi, Misa Gao, Ming Food Sci Nutr Original Research BACKGROUND: Body weight gain is a social issue all over the world. When body weight increased, hepatic fat accumulation also increased and it causes fatty liver disease. Therefore, developing a new treatment method and elucidating its mechanism is necessary. L‐citrulline (L‐Cit) is a free amino acid found mainly in watermelon. No reports regarding its effects on the improvement of hepatic steatosis and fibrogenesis are currently available. The aim of this study was to clarify the effect and the mechanism of L‐Cit on inhibition of body weight gain and hepatic fat accumulation in high‐fat and high‐cholesterol fed SHRSP5/Dmcr rats. METHODS: L‐Cit or water (controls) was administered to six‐week‐old male SHRSP5/Dmcr rats by gavage for nine weeks. We recorded the level of body weight and food intake while performing the administration and sacrificed rats. After that, the blood and lipid metabolism‐related organs and tissues were collected and analyzed. RESULTS: L‐Cit treatment reduced body weight gain and hepatic TC and TG levels, and serum levels of AST and ALT. L‐Cit enhanced AMPK, LKB1, PKA, and hormone‐sensitive lipase (HSL) protein phosphorylation levels in the epididymal fat. L‐Cit treatment improved steatosis as revealed by HE staining of liver tissues and enhanced AMPK and LKB1 phosphorylation levels. Moreover, activation of Sirt1 was higher, while the liver fatty acid synthase (FAS) level was lower. Azan staining of liver sections revealed a reduction in fibrogenesis following L‐Cit treatment. Further, the liver levels of TGF‐β, Smad2/3, and α‐SMA, fibrogenesis‐related proteins and genes, were lower in the L‐Cit‐treated group. CONCLUSIONS: From the results of analysis of the epididymal fat and the liver, L‐Cit inhibits body weight gain and hepatic fat accumulation by activating lipid metabolism and promoting fatty acid β‐oxidation in SHRSP5/Dmcr rats. John Wiley and Sons Inc. 2021-07-16 /pmc/articles/PMC8441368/ /pubmed/34532001 http://dx.doi.org/10.1002/fsn3.2439 Text en © 2021 The Authors. Food Science & Nutrition published by Wiley Periodicals LLC. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Research
Kudo, Maya
Yamagishi, Yoshie
Suguro, Shiori
Nishihara, Masaaki
Yoshitomi, Hisae
Hayashi, Misa
Gao, Ming
L‐citrulline inhibits body weight gain and hepatic fat accumulation by improving lipid metabolism in a rat nonalcoholic fatty liver disease model
title L‐citrulline inhibits body weight gain and hepatic fat accumulation by improving lipid metabolism in a rat nonalcoholic fatty liver disease model
title_full L‐citrulline inhibits body weight gain and hepatic fat accumulation by improving lipid metabolism in a rat nonalcoholic fatty liver disease model
title_fullStr L‐citrulline inhibits body weight gain and hepatic fat accumulation by improving lipid metabolism in a rat nonalcoholic fatty liver disease model
title_full_unstemmed L‐citrulline inhibits body weight gain and hepatic fat accumulation by improving lipid metabolism in a rat nonalcoholic fatty liver disease model
title_short L‐citrulline inhibits body weight gain and hepatic fat accumulation by improving lipid metabolism in a rat nonalcoholic fatty liver disease model
title_sort l‐citrulline inhibits body weight gain and hepatic fat accumulation by improving lipid metabolism in a rat nonalcoholic fatty liver disease model
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8441368/
https://www.ncbi.nlm.nih.gov/pubmed/34532001
http://dx.doi.org/10.1002/fsn3.2439
work_keys_str_mv AT kudomaya lcitrullineinhibitsbodyweightgainandhepaticfataccumulationbyimprovinglipidmetabolisminaratnonalcoholicfattyliverdiseasemodel
AT yamagishiyoshie lcitrullineinhibitsbodyweightgainandhepaticfataccumulationbyimprovinglipidmetabolisminaratnonalcoholicfattyliverdiseasemodel
AT suguroshiori lcitrullineinhibitsbodyweightgainandhepaticfataccumulationbyimprovinglipidmetabolisminaratnonalcoholicfattyliverdiseasemodel
AT nishiharamasaaki lcitrullineinhibitsbodyweightgainandhepaticfataccumulationbyimprovinglipidmetabolisminaratnonalcoholicfattyliverdiseasemodel
AT yoshitomihisae lcitrullineinhibitsbodyweightgainandhepaticfataccumulationbyimprovinglipidmetabolisminaratnonalcoholicfattyliverdiseasemodel
AT hayashimisa lcitrullineinhibitsbodyweightgainandhepaticfataccumulationbyimprovinglipidmetabolisminaratnonalcoholicfattyliverdiseasemodel
AT gaoming lcitrullineinhibitsbodyweightgainandhepaticfataccumulationbyimprovinglipidmetabolisminaratnonalcoholicfattyliverdiseasemodel