Torenia concolor Lindley var. formosana Yamazaki extracts improve inflammatory response and lipid accumulation via PPARs activation

Background/Introduction: At present, human diet is replete with sugar and fat. Abnormal metabolism and hyperglycemia or hyperlipidemia in the body induces the development of an overactive and continuous inflammatory response, resulting in obesity and metabolic syndromes, including hypertension, hype...

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Main Authors: Liang Yu-Chia, Hu Jun-Cheng, Li Pei-Ying, Huang Guan-Jhong, Kuo Yueh-hsiung, Chao Che-Yi
Format: Article
Language:English
Published: China Medical University 2017-09-01
Series:BioMedicine
Subjects:
Online Access:https://doi.org/10.1051/bmdcn/2017070318
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spelling doaj-ca1b62a6e2f948a6a88484d9acd969302020-11-25T03:15:26ZengChina Medical UniversityBioMedicine2211-80392017-09-01731810.1051/bmdcn/2017070318bmdcn2017070318Torenia concolor Lindley var. formosana Yamazaki extracts improve inflammatory response and lipid accumulation via PPARs activationLiang Yu-ChiaHu Jun-ChengLi Pei-YingHuang Guan-JhongKuo Yueh-hsiungChao Che-YiBackground/Introduction: At present, human diet is replete with sugar and fat. Abnormal metabolism and hyperglycemia or hyperlipidemia in the body induces the development of an overactive and continuous inflammatory response, resulting in obesity and metabolic syndromes, including hypertension, hyperlipidemia, and insulin resistance. Torenia concolor Lindley var. formosana Yamazaki (TC), a perennial creeping herbaceous plant, is a traditional Chinese medicinal herb widely used for the treatment of heat stroke, aching muscles and bones, cold, dysentery, and ambustion. Purpose: This study evaluated the influence of TC on inflammation responses and lipid metabolism. Methods: In this study, ground TC powder was extracted with 95% ethanol. The ethanol was removed by vacuum concentration, and the resulting extract was further extracted with a number of solvents of different polarity to produce four final extracts: an ethanol extract (TCEE), an ethyl acetate extract (TCEAE), an n-butanol extract (TCBUE), and a water extract (TCWE). The anti-inflammatory efficacy of the extracts and their capability for lipid metabolism regulation was then explored. Results: TCEE, TCEAE, and TCBUE exhibited good anti-inflammatory efficacy; TCEAE also simultaneously regulated lipid metabolism. In RAW264.7 cells, these three extracts suppressed the expression of iNOS and IL-6 via the signaling pathway activation of the transcription factor peroxisome proliferator activated receptor γ (PPARγ) and thereby showed anti-inflammatory efficacy. In 3T3-L1 cells, these three extracts promoted lipid metabolism and reduced lipid accumulation through the activation of PPARα and the increased expression of adiponectin, thus demonstrating regulation of lipid metabolism. Conclusion: These results indicate that TC possesses anti-inflammatory efficacy and can regulate lipid metabolism through the activation of transcription factor PPARs. We speculate that these nutraceutical effects are attributable to betulin, an active ingredient in this herbal medicine.https://doi.org/10.1051/bmdcn/2017070318Torenia concolor Lindley var. formosana YamazakiAnti-inflammationLipid metabolismPPARs
collection DOAJ
language English
format Article
sources DOAJ
author Liang Yu-Chia
Hu Jun-Cheng
Li Pei-Ying
Huang Guan-Jhong
Kuo Yueh-hsiung
Chao Che-Yi
spellingShingle Liang Yu-Chia
Hu Jun-Cheng
Li Pei-Ying
Huang Guan-Jhong
Kuo Yueh-hsiung
Chao Che-Yi
Torenia concolor Lindley var. formosana Yamazaki extracts improve inflammatory response and lipid accumulation via PPARs activation
BioMedicine
Torenia concolor Lindley var. formosana Yamazaki
Anti-inflammation
Lipid metabolism
PPARs
author_facet Liang Yu-Chia
Hu Jun-Cheng
Li Pei-Ying
Huang Guan-Jhong
Kuo Yueh-hsiung
Chao Che-Yi
author_sort Liang Yu-Chia
title Torenia concolor Lindley var. formosana Yamazaki extracts improve inflammatory response and lipid accumulation via PPARs activation
title_short Torenia concolor Lindley var. formosana Yamazaki extracts improve inflammatory response and lipid accumulation via PPARs activation
title_full Torenia concolor Lindley var. formosana Yamazaki extracts improve inflammatory response and lipid accumulation via PPARs activation
title_fullStr Torenia concolor Lindley var. formosana Yamazaki extracts improve inflammatory response and lipid accumulation via PPARs activation
title_full_unstemmed Torenia concolor Lindley var. formosana Yamazaki extracts improve inflammatory response and lipid accumulation via PPARs activation
title_sort torenia concolor lindley var. formosana yamazaki extracts improve inflammatory response and lipid accumulation via ppars activation
publisher China Medical University
series BioMedicine
issn 2211-8039
publishDate 2017-09-01
description Background/Introduction: At present, human diet is replete with sugar and fat. Abnormal metabolism and hyperglycemia or hyperlipidemia in the body induces the development of an overactive and continuous inflammatory response, resulting in obesity and metabolic syndromes, including hypertension, hyperlipidemia, and insulin resistance. Torenia concolor Lindley var. formosana Yamazaki (TC), a perennial creeping herbaceous plant, is a traditional Chinese medicinal herb widely used for the treatment of heat stroke, aching muscles and bones, cold, dysentery, and ambustion. Purpose: This study evaluated the influence of TC on inflammation responses and lipid metabolism. Methods: In this study, ground TC powder was extracted with 95% ethanol. The ethanol was removed by vacuum concentration, and the resulting extract was further extracted with a number of solvents of different polarity to produce four final extracts: an ethanol extract (TCEE), an ethyl acetate extract (TCEAE), an n-butanol extract (TCBUE), and a water extract (TCWE). The anti-inflammatory efficacy of the extracts and their capability for lipid metabolism regulation was then explored. Results: TCEE, TCEAE, and TCBUE exhibited good anti-inflammatory efficacy; TCEAE also simultaneously regulated lipid metabolism. In RAW264.7 cells, these three extracts suppressed the expression of iNOS and IL-6 via the signaling pathway activation of the transcription factor peroxisome proliferator activated receptor γ (PPARγ) and thereby showed anti-inflammatory efficacy. In 3T3-L1 cells, these three extracts promoted lipid metabolism and reduced lipid accumulation through the activation of PPARα and the increased expression of adiponectin, thus demonstrating regulation of lipid metabolism. Conclusion: These results indicate that TC possesses anti-inflammatory efficacy and can regulate lipid metabolism through the activation of transcription factor PPARs. We speculate that these nutraceutical effects are attributable to betulin, an active ingredient in this herbal medicine.
topic Torenia concolor Lindley var. formosana Yamazaki
Anti-inflammation
Lipid metabolism
PPARs
url https://doi.org/10.1051/bmdcn/2017070318
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