Cargando…
The Effects of Radix Astragali Water Abstract on Energy Metabolism in Rat Yang-Deficiency Cold Syndrome Model through PPAR Signaling Pathway
Radix Astragali (RA) herb with warm property and significant “tonifying qi” effects is indicated for the syndrome of internal cold due to Yang deficiency. The purpose of this research was to explore effects of Radix Astragali (RA) through PPAR signaling pathway on gene expression profiles related to...
Autores principales: | , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Hindawi
2018
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6241352/ https://www.ncbi.nlm.nih.gov/pubmed/30519272 http://dx.doi.org/10.1155/2018/9194362 |
_version_ | 1783371765475442688 |
---|---|
author | Yu, Wanchen Zhao, Haijun Zong, Xin Ji, Xuming Han, Xiaochun Wang, Yanfang Zhang, Yanan Ma, Ke Cui, Ning Wang, Shijun |
author_facet | Yu, Wanchen Zhao, Haijun Zong, Xin Ji, Xuming Han, Xiaochun Wang, Yanfang Zhang, Yanan Ma, Ke Cui, Ning Wang, Shijun |
author_sort | Yu, Wanchen |
collection | PubMed |
description | Radix Astragali (RA) herb with warm property and significant “tonifying qi” effects is indicated for the syndrome of internal cold due to Yang deficiency. The purpose of this research was to explore effects of Radix Astragali (RA) through PPAR signaling pathway on gene expression profiles related to energy metabolism in rats with the Yang-deficiency cold (YDC) syndrome, for identifying the pathological mechanism of Yang-deficiency cold (YDC) syndrome and the effects mechanism of RA. The results indicated that RA could significantly increase body weight (BM), cold and heat tendency (CT), overall temperature (OT), rectum temperature (RT), toe temperature (TT), energy intake (EI), and V(O(2))/V(CO(2)) ratio (which indicates basal metabolism, BM) (P<0.05), enhancing the depressed metabolic function in YDC syndrome model rat. Our data also indicated differentially expressed genes (DEGs) related to energy metabolism involving lipids, carbohydrates, and amino acids metabolic process; the expression of CPT-1 and FABP4 (ap2) was improved; PPAR, Glycolysis, Wnt, cAMP, MAPK, AMPK, and fatty acid degradation signaling pathway may be related to energy metabolism. However, the Chinese herbal medicine RA plays a certain role in promoting the metabolism of substances and energy in rats by its warming and beneficial effect. Our results suggest that the mechanism underlying the function of RA may take effect through the regulation of PPAR signaling pathway and related gene expression. Lipids, carbohydrates, and amino acids metabolic process may be affected to adjust the reduced metabolic function in the model animals. In general, results indicate that RA could promote energy metabolism in rats with the YDC syndrome via PPAR signaling pathway regulating the expression of CPT-1 and FABP4 (ap2), which reflected the warm and qi tonifying properties of RA. |
format | Online Article Text |
id | pubmed-6241352 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2018 |
publisher | Hindawi |
record_format | MEDLINE/PubMed |
spelling | pubmed-62413522018-12-05 The Effects of Radix Astragali Water Abstract on Energy Metabolism in Rat Yang-Deficiency Cold Syndrome Model through PPAR Signaling Pathway Yu, Wanchen Zhao, Haijun Zong, Xin Ji, Xuming Han, Xiaochun Wang, Yanfang Zhang, Yanan Ma, Ke Cui, Ning Wang, Shijun Evid Based Complement Alternat Med Research Article Radix Astragali (RA) herb with warm property and significant “tonifying qi” effects is indicated for the syndrome of internal cold due to Yang deficiency. The purpose of this research was to explore effects of Radix Astragali (RA) through PPAR signaling pathway on gene expression profiles related to energy metabolism in rats with the Yang-deficiency cold (YDC) syndrome, for identifying the pathological mechanism of Yang-deficiency cold (YDC) syndrome and the effects mechanism of RA. The results indicated that RA could significantly increase body weight (BM), cold and heat tendency (CT), overall temperature (OT), rectum temperature (RT), toe temperature (TT), energy intake (EI), and V(O(2))/V(CO(2)) ratio (which indicates basal metabolism, BM) (P<0.05), enhancing the depressed metabolic function in YDC syndrome model rat. Our data also indicated differentially expressed genes (DEGs) related to energy metabolism involving lipids, carbohydrates, and amino acids metabolic process; the expression of CPT-1 and FABP4 (ap2) was improved; PPAR, Glycolysis, Wnt, cAMP, MAPK, AMPK, and fatty acid degradation signaling pathway may be related to energy metabolism. However, the Chinese herbal medicine RA plays a certain role in promoting the metabolism of substances and energy in rats by its warming and beneficial effect. Our results suggest that the mechanism underlying the function of RA may take effect through the regulation of PPAR signaling pathway and related gene expression. Lipids, carbohydrates, and amino acids metabolic process may be affected to adjust the reduced metabolic function in the model animals. In general, results indicate that RA could promote energy metabolism in rats with the YDC syndrome via PPAR signaling pathway regulating the expression of CPT-1 and FABP4 (ap2), which reflected the warm and qi tonifying properties of RA. Hindawi 2018-11-01 /pmc/articles/PMC6241352/ /pubmed/30519272 http://dx.doi.org/10.1155/2018/9194362 Text en Copyright © 2018 Wanchen Yu et al. https://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited. |
spellingShingle | Research Article Yu, Wanchen Zhao, Haijun Zong, Xin Ji, Xuming Han, Xiaochun Wang, Yanfang Zhang, Yanan Ma, Ke Cui, Ning Wang, Shijun The Effects of Radix Astragali Water Abstract on Energy Metabolism in Rat Yang-Deficiency Cold Syndrome Model through PPAR Signaling Pathway |
title | The Effects of Radix Astragali Water Abstract on Energy Metabolism in Rat Yang-Deficiency Cold Syndrome Model through PPAR Signaling Pathway |
title_full | The Effects of Radix Astragali Water Abstract on Energy Metabolism in Rat Yang-Deficiency Cold Syndrome Model through PPAR Signaling Pathway |
title_fullStr | The Effects of Radix Astragali Water Abstract on Energy Metabolism in Rat Yang-Deficiency Cold Syndrome Model through PPAR Signaling Pathway |
title_full_unstemmed | The Effects of Radix Astragali Water Abstract on Energy Metabolism in Rat Yang-Deficiency Cold Syndrome Model through PPAR Signaling Pathway |
title_short | The Effects of Radix Astragali Water Abstract on Energy Metabolism in Rat Yang-Deficiency Cold Syndrome Model through PPAR Signaling Pathway |
title_sort | effects of radix astragali water abstract on energy metabolism in rat yang-deficiency cold syndrome model through ppar signaling pathway |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6241352/ https://www.ncbi.nlm.nih.gov/pubmed/30519272 http://dx.doi.org/10.1155/2018/9194362 |
work_keys_str_mv | AT yuwanchen theeffectsofradixastragaliwaterabstractonenergymetabolisminratyangdeficiencycoldsyndromemodelthroughpparsignalingpathway AT zhaohaijun theeffectsofradixastragaliwaterabstractonenergymetabolisminratyangdeficiencycoldsyndromemodelthroughpparsignalingpathway AT zongxin theeffectsofradixastragaliwaterabstractonenergymetabolisminratyangdeficiencycoldsyndromemodelthroughpparsignalingpathway AT jixuming theeffectsofradixastragaliwaterabstractonenergymetabolisminratyangdeficiencycoldsyndromemodelthroughpparsignalingpathway AT hanxiaochun theeffectsofradixastragaliwaterabstractonenergymetabolisminratyangdeficiencycoldsyndromemodelthroughpparsignalingpathway AT wangyanfang theeffectsofradixastragaliwaterabstractonenergymetabolisminratyangdeficiencycoldsyndromemodelthroughpparsignalingpathway AT zhangyanan theeffectsofradixastragaliwaterabstractonenergymetabolisminratyangdeficiencycoldsyndromemodelthroughpparsignalingpathway AT make theeffectsofradixastragaliwaterabstractonenergymetabolisminratyangdeficiencycoldsyndromemodelthroughpparsignalingpathway AT cuining theeffectsofradixastragaliwaterabstractonenergymetabolisminratyangdeficiencycoldsyndromemodelthroughpparsignalingpathway AT wangshijun theeffectsofradixastragaliwaterabstractonenergymetabolisminratyangdeficiencycoldsyndromemodelthroughpparsignalingpathway AT yuwanchen effectsofradixastragaliwaterabstractonenergymetabolisminratyangdeficiencycoldsyndromemodelthroughpparsignalingpathway AT zhaohaijun effectsofradixastragaliwaterabstractonenergymetabolisminratyangdeficiencycoldsyndromemodelthroughpparsignalingpathway AT zongxin effectsofradixastragaliwaterabstractonenergymetabolisminratyangdeficiencycoldsyndromemodelthroughpparsignalingpathway AT jixuming effectsofradixastragaliwaterabstractonenergymetabolisminratyangdeficiencycoldsyndromemodelthroughpparsignalingpathway AT hanxiaochun effectsofradixastragaliwaterabstractonenergymetabolisminratyangdeficiencycoldsyndromemodelthroughpparsignalingpathway AT wangyanfang effectsofradixastragaliwaterabstractonenergymetabolisminratyangdeficiencycoldsyndromemodelthroughpparsignalingpathway AT zhangyanan effectsofradixastragaliwaterabstractonenergymetabolisminratyangdeficiencycoldsyndromemodelthroughpparsignalingpathway AT make effectsofradixastragaliwaterabstractonenergymetabolisminratyangdeficiencycoldsyndromemodelthroughpparsignalingpathway AT cuining effectsofradixastragaliwaterabstractonenergymetabolisminratyangdeficiencycoldsyndromemodelthroughpparsignalingpathway AT wangshijun effectsofradixastragaliwaterabstractonenergymetabolisminratyangdeficiencycoldsyndromemodelthroughpparsignalingpathway |