Serum metabonomic analysis of protective effects of Curcuma aromatica oil on renal fibrosis rats.

BACKGROUND: Curcuma aromatica oil is a traditional herbal medicine demonstrating protective and anti-fibrosis activities in renal fibrosis patients. However, study of its mechanism of action is challenged by its multiple components and multiple targets that its active agent acts on. METHODOLOGY/PRIN...

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Main Authors: Liangcai Zhao, Haiyan Zhang, Yunjun Yang, Yongquan Zheng, Minjian Dong, Yaqiang Wang, Guanghui Bai, Xinjian Ye, Zhihan Yan, Hongchang Gao
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4181651?pdf=render
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spelling doaj-f28bade0b57943b1a6c83d30d66cf9b72020-11-25T01:46:01ZengPublic Library of Science (PLoS)PLoS ONE1932-62032014-01-0199e10867810.1371/journal.pone.0108678Serum metabonomic analysis of protective effects of Curcuma aromatica oil on renal fibrosis rats.Liangcai ZhaoHaiyan ZhangYunjun YangYongquan ZhengMinjian DongYaqiang WangGuanghui BaiXinjian YeZhihan YanHongchang GaoBACKGROUND: Curcuma aromatica oil is a traditional herbal medicine demonstrating protective and anti-fibrosis activities in renal fibrosis patients. However, study of its mechanism of action is challenged by its multiple components and multiple targets that its active agent acts on. METHODOLOGY/PRINCIPAL FINDINGS: Nuclear magnetic resonance (NMR)-based metabonomics combined with clinical chemistry and histopathology examination were performed to evaluate intervening effects of Curcuma aromatica oil on renal interstitial fibrosis rats induced by unilateral ureteral obstruction. The metabolite levels were compared based on integral values of serum 1H NMR spectra from rats on 3, 7, 14, and 28 days after the medicine administration. Time trajectory analysis demonstrated that metabolic profiles of the agent-treated rats were restored to control levels after 7 days of dosage. The results confirmed that the agent would be an effective anti-fibrosis medicine in a time-dependent manner, especially in early renal fibrosis stage. Targeted metabolite analysis showed that the medicine could lower levels of lipid, acetoacetate, glucose, phosphorylcholine/choline, trimethylamine oxide and raise levels of pyruvate, glycine in the serum of the rats. Serum clinical chemistry and kidney histopathology examination dovetailed well with the metabonomics data. CONCLUSIONS/SIGNIFICANCES: The results substantiated that Curcuma aromatica oil administration can ameliorate renal fibrosis symptoms by inhibiting some metabolic pathways, including lipids metabolism, glycolysis and methylamine metabolism, which are dominating targets of the agent working in vivo. This study further strengthens the novel analytical approach for evaluating the effect of traditional herbal medicine and elucidating its molecular mechanism.http://europepmc.org/articles/PMC4181651?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Liangcai Zhao
Haiyan Zhang
Yunjun Yang
Yongquan Zheng
Minjian Dong
Yaqiang Wang
Guanghui Bai
Xinjian Ye
Zhihan Yan
Hongchang Gao
spellingShingle Liangcai Zhao
Haiyan Zhang
Yunjun Yang
Yongquan Zheng
Minjian Dong
Yaqiang Wang
Guanghui Bai
Xinjian Ye
Zhihan Yan
Hongchang Gao
Serum metabonomic analysis of protective effects of Curcuma aromatica oil on renal fibrosis rats.
PLoS ONE
author_facet Liangcai Zhao
Haiyan Zhang
Yunjun Yang
Yongquan Zheng
Minjian Dong
Yaqiang Wang
Guanghui Bai
Xinjian Ye
Zhihan Yan
Hongchang Gao
author_sort Liangcai Zhao
title Serum metabonomic analysis of protective effects of Curcuma aromatica oil on renal fibrosis rats.
title_short Serum metabonomic analysis of protective effects of Curcuma aromatica oil on renal fibrosis rats.
title_full Serum metabonomic analysis of protective effects of Curcuma aromatica oil on renal fibrosis rats.
title_fullStr Serum metabonomic analysis of protective effects of Curcuma aromatica oil on renal fibrosis rats.
title_full_unstemmed Serum metabonomic analysis of protective effects of Curcuma aromatica oil on renal fibrosis rats.
title_sort serum metabonomic analysis of protective effects of curcuma aromatica oil on renal fibrosis rats.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2014-01-01
description BACKGROUND: Curcuma aromatica oil is a traditional herbal medicine demonstrating protective and anti-fibrosis activities in renal fibrosis patients. However, study of its mechanism of action is challenged by its multiple components and multiple targets that its active agent acts on. METHODOLOGY/PRINCIPAL FINDINGS: Nuclear magnetic resonance (NMR)-based metabonomics combined with clinical chemistry and histopathology examination were performed to evaluate intervening effects of Curcuma aromatica oil on renal interstitial fibrosis rats induced by unilateral ureteral obstruction. The metabolite levels were compared based on integral values of serum 1H NMR spectra from rats on 3, 7, 14, and 28 days after the medicine administration. Time trajectory analysis demonstrated that metabolic profiles of the agent-treated rats were restored to control levels after 7 days of dosage. The results confirmed that the agent would be an effective anti-fibrosis medicine in a time-dependent manner, especially in early renal fibrosis stage. Targeted metabolite analysis showed that the medicine could lower levels of lipid, acetoacetate, glucose, phosphorylcholine/choline, trimethylamine oxide and raise levels of pyruvate, glycine in the serum of the rats. Serum clinical chemistry and kidney histopathology examination dovetailed well with the metabonomics data. CONCLUSIONS/SIGNIFICANCES: The results substantiated that Curcuma aromatica oil administration can ameliorate renal fibrosis symptoms by inhibiting some metabolic pathways, including lipids metabolism, glycolysis and methylamine metabolism, which are dominating targets of the agent working in vivo. This study further strengthens the novel analytical approach for evaluating the effect of traditional herbal medicine and elucidating its molecular mechanism.
url http://europepmc.org/articles/PMC4181651?pdf=render
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