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Untargeted Metabolomics Study of the In Vitro Anti-Hepatoma Effect of Saikosaponin d in Combination with NRP-1 Knockdown

Saikosaponin d (SSd) is one of the main active ingredients in Radix Bupleuri. In our study, network pharmacology databases and metabolomics were used in combination to explore the new targets and reveal the in-depth mechanism of SSd. A total of 35 potential targets were chosen through database searc...

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Autores principales: Lv, Yingtong, Hou, Xiaoying, Zhang, Qianqian, Li, Ruiting, Xu, Lei, Chen, Yadong, Tian, Yuan, Sun, Rong, Zhang, Zunjian, Xu, Fengguo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6480384/
https://www.ncbi.nlm.nih.gov/pubmed/30978940
http://dx.doi.org/10.3390/molecules24071423
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author Lv, Yingtong
Hou, Xiaoying
Zhang, Qianqian
Li, Ruiting
Xu, Lei
Chen, Yadong
Tian, Yuan
Sun, Rong
Zhang, Zunjian
Xu, Fengguo
author_facet Lv, Yingtong
Hou, Xiaoying
Zhang, Qianqian
Li, Ruiting
Xu, Lei
Chen, Yadong
Tian, Yuan
Sun, Rong
Zhang, Zunjian
Xu, Fengguo
author_sort Lv, Yingtong
collection PubMed
description Saikosaponin d (SSd) is one of the main active ingredients in Radix Bupleuri. In our study, network pharmacology databases and metabolomics were used in combination to explore the new targets and reveal the in-depth mechanism of SSd. A total of 35 potential targets were chosen through database searching (HIT and TCMID), literature mining, or chemical similarity predicting (Pubchem). Out of these obtained targets, Neuropilin-1 (NRP-1) was selected for further research based on the degree of molecular docking scores and novelty. Cell viability and wound healing assays demonstrated that SSd combined with NRP-1 knockdown could significantly enhance the damage of HepG2. Metabolomics analysis was then performed to explore the underlying mechanism. The overall difference between groups was quantitatively evaluated by the metabolite deregulation score (MDS). Results showed that NRP-1 knockdown exhibited the lowest MDS, which demonstrated that the metabolic profile experienced the slightest interference. However, SSd alone, or NRP-1 knockdown in combination with SSd, were both significantly influenced. Differential metabolites mainly involved short- or long-chain carnitines and phospholipids. Further metabolic pathway analysis revealed that disturbed lipid transportation and phospholipid metabolism probably contributed to the enhanced anti-hepatoma effect by NRP-1 knockdown in combination with SSd. Taken together, in this study, we provided possible interaction mechanisms between SSd and its predicted target NRP-1.
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spelling pubmed-64803842019-04-30 Untargeted Metabolomics Study of the In Vitro Anti-Hepatoma Effect of Saikosaponin d in Combination with NRP-1 Knockdown Lv, Yingtong Hou, Xiaoying Zhang, Qianqian Li, Ruiting Xu, Lei Chen, Yadong Tian, Yuan Sun, Rong Zhang, Zunjian Xu, Fengguo Molecules Article Saikosaponin d (SSd) is one of the main active ingredients in Radix Bupleuri. In our study, network pharmacology databases and metabolomics were used in combination to explore the new targets and reveal the in-depth mechanism of SSd. A total of 35 potential targets were chosen through database searching (HIT and TCMID), literature mining, or chemical similarity predicting (Pubchem). Out of these obtained targets, Neuropilin-1 (NRP-1) was selected for further research based on the degree of molecular docking scores and novelty. Cell viability and wound healing assays demonstrated that SSd combined with NRP-1 knockdown could significantly enhance the damage of HepG2. Metabolomics analysis was then performed to explore the underlying mechanism. The overall difference between groups was quantitatively evaluated by the metabolite deregulation score (MDS). Results showed that NRP-1 knockdown exhibited the lowest MDS, which demonstrated that the metabolic profile experienced the slightest interference. However, SSd alone, or NRP-1 knockdown in combination with SSd, were both significantly influenced. Differential metabolites mainly involved short- or long-chain carnitines and phospholipids. Further metabolic pathway analysis revealed that disturbed lipid transportation and phospholipid metabolism probably contributed to the enhanced anti-hepatoma effect by NRP-1 knockdown in combination with SSd. Taken together, in this study, we provided possible interaction mechanisms between SSd and its predicted target NRP-1. MDPI 2019-04-11 /pmc/articles/PMC6480384/ /pubmed/30978940 http://dx.doi.org/10.3390/molecules24071423 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Lv, Yingtong
Hou, Xiaoying
Zhang, Qianqian
Li, Ruiting
Xu, Lei
Chen, Yadong
Tian, Yuan
Sun, Rong
Zhang, Zunjian
Xu, Fengguo
Untargeted Metabolomics Study of the In Vitro Anti-Hepatoma Effect of Saikosaponin d in Combination with NRP-1 Knockdown
title Untargeted Metabolomics Study of the In Vitro Anti-Hepatoma Effect of Saikosaponin d in Combination with NRP-1 Knockdown
title_full Untargeted Metabolomics Study of the In Vitro Anti-Hepatoma Effect of Saikosaponin d in Combination with NRP-1 Knockdown
title_fullStr Untargeted Metabolomics Study of the In Vitro Anti-Hepatoma Effect of Saikosaponin d in Combination with NRP-1 Knockdown
title_full_unstemmed Untargeted Metabolomics Study of the In Vitro Anti-Hepatoma Effect of Saikosaponin d in Combination with NRP-1 Knockdown
title_short Untargeted Metabolomics Study of the In Vitro Anti-Hepatoma Effect of Saikosaponin d in Combination with NRP-1 Knockdown
title_sort untargeted metabolomics study of the in vitro anti-hepatoma effect of saikosaponin d in combination with nrp-1 knockdown
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6480384/
https://www.ncbi.nlm.nih.gov/pubmed/30978940
http://dx.doi.org/10.3390/molecules24071423
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