Cargando…

Decoding the chemical composition and pharmacological mechanisms of Jiedu Tongluo Tiaogan Formula using high-performance liquid chromatography coupled with network pharmacology-based investigation

Type 2 diabetes mellitus (T2DM), a chronic low-grade inflammatory disease with high morbidity and mortality, is a serious threat to public health. Previously we demonstrated that a traditional Chinese medicine formulation, Jiedu Tongluo Tiaogan Formula (JDTL), exerted a favorable hypoglycemic effect...

Descripción completa

Detalles Bibliográficos
Autores principales: Zhang, Qi, Piao, Chunli, Jin, Wenqi, Jin, De, Wang, Han, Tang, Cheng, Zhao, Xiaohua, Zhang, Naiwen, Gao, Shengnan, Lian, Fengmei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8610129/
https://www.ncbi.nlm.nih.gov/pubmed/34740995
http://dx.doi.org/10.18632/aging.203679
_version_ 1784603044665622528
author Zhang, Qi
Piao, Chunli
Jin, Wenqi
Jin, De
Wang, Han
Tang, Cheng
Zhao, Xiaohua
Zhang, Naiwen
Gao, Shengnan
Lian, Fengmei
author_facet Zhang, Qi
Piao, Chunli
Jin, Wenqi
Jin, De
Wang, Han
Tang, Cheng
Zhao, Xiaohua
Zhang, Naiwen
Gao, Shengnan
Lian, Fengmei
author_sort Zhang, Qi
collection PubMed
description Type 2 diabetes mellitus (T2DM), a chronic low-grade inflammatory disease with high morbidity and mortality, is a serious threat to public health. Previously we demonstrated that a traditional Chinese medicine formulation, Jiedu Tongluo Tiaogan Formula (JDTL), exerted a favorable hypoglycemic effect due to unknown molecular mechanisms involving interactions among JDTL compounds and various cellular components. This study aimed to explore JDTL mechanisms for alleviating hyperglycemia using an integrated strategy incorporating system pharmacology, bioinformatics analysis, and experimental verification. This strategy entailed initial elucidation of JDTL chemical composition using fingerprint analysis via high performance liquid chromatography (HPLC). Next, functions of putative shared target genes and associated pathways were deduced using GO and KEGG pathway enrichment and molecular docking analyses. Ultimately, targets associated with JTDL anti-T2DM effects were found to be functionally associated with biological functions related to lipopolysaccharide and cytokine receptor binding. These results implicated PI3K-Akt signaling pathway involvement in JDTL anti-T2DM effects, as this pathway had been previously shown to play significant roles in glucose and lipid metabolism-related diseases. Furthermore, addition of JDTL to INS-1 and HepG2 cell cultures stimulated cellular mRNA-level and protein-level expression leading to enhanced production of IRS1, Akt, and PI3K. In summary, here JDTL bioactive ingredients, potential targets, and molecular mechanisms underlying JDTL anti-T2DM effects were identified using a multi-component, multi-target, and multi-channel analytical approach, thus providing an important scientific foundation to facilitate development of new drugs mechanistic strategies for preventing and treating T2DM.
format Online
Article
Text
id pubmed-8610129
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Impact Journals
record_format MEDLINE/PubMed
spelling pubmed-86101292021-11-24 Decoding the chemical composition and pharmacological mechanisms of Jiedu Tongluo Tiaogan Formula using high-performance liquid chromatography coupled with network pharmacology-based investigation Zhang, Qi Piao, Chunli Jin, Wenqi Jin, De Wang, Han Tang, Cheng Zhao, Xiaohua Zhang, Naiwen Gao, Shengnan Lian, Fengmei Aging (Albany NY) Research Paper Type 2 diabetes mellitus (T2DM), a chronic low-grade inflammatory disease with high morbidity and mortality, is a serious threat to public health. Previously we demonstrated that a traditional Chinese medicine formulation, Jiedu Tongluo Tiaogan Formula (JDTL), exerted a favorable hypoglycemic effect due to unknown molecular mechanisms involving interactions among JDTL compounds and various cellular components. This study aimed to explore JDTL mechanisms for alleviating hyperglycemia using an integrated strategy incorporating system pharmacology, bioinformatics analysis, and experimental verification. This strategy entailed initial elucidation of JDTL chemical composition using fingerprint analysis via high performance liquid chromatography (HPLC). Next, functions of putative shared target genes and associated pathways were deduced using GO and KEGG pathway enrichment and molecular docking analyses. Ultimately, targets associated with JTDL anti-T2DM effects were found to be functionally associated with biological functions related to lipopolysaccharide and cytokine receptor binding. These results implicated PI3K-Akt signaling pathway involvement in JDTL anti-T2DM effects, as this pathway had been previously shown to play significant roles in glucose and lipid metabolism-related diseases. Furthermore, addition of JDTL to INS-1 and HepG2 cell cultures stimulated cellular mRNA-level and protein-level expression leading to enhanced production of IRS1, Akt, and PI3K. In summary, here JDTL bioactive ingredients, potential targets, and molecular mechanisms underlying JDTL anti-T2DM effects were identified using a multi-component, multi-target, and multi-channel analytical approach, thus providing an important scientific foundation to facilitate development of new drugs mechanistic strategies for preventing and treating T2DM. Impact Journals 2021-11-05 /pmc/articles/PMC8610129/ /pubmed/34740995 http://dx.doi.org/10.18632/aging.203679 Text en Copyright: © 2021 Zhang et al. https://creativecommons.org/licenses/by/3.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/3.0/) (CC BY 3.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Zhang, Qi
Piao, Chunli
Jin, Wenqi
Jin, De
Wang, Han
Tang, Cheng
Zhao, Xiaohua
Zhang, Naiwen
Gao, Shengnan
Lian, Fengmei
Decoding the chemical composition and pharmacological mechanisms of Jiedu Tongluo Tiaogan Formula using high-performance liquid chromatography coupled with network pharmacology-based investigation
title Decoding the chemical composition and pharmacological mechanisms of Jiedu Tongluo Tiaogan Formula using high-performance liquid chromatography coupled with network pharmacology-based investigation
title_full Decoding the chemical composition and pharmacological mechanisms of Jiedu Tongluo Tiaogan Formula using high-performance liquid chromatography coupled with network pharmacology-based investigation
title_fullStr Decoding the chemical composition and pharmacological mechanisms of Jiedu Tongluo Tiaogan Formula using high-performance liquid chromatography coupled with network pharmacology-based investigation
title_full_unstemmed Decoding the chemical composition and pharmacological mechanisms of Jiedu Tongluo Tiaogan Formula using high-performance liquid chromatography coupled with network pharmacology-based investigation
title_short Decoding the chemical composition and pharmacological mechanisms of Jiedu Tongluo Tiaogan Formula using high-performance liquid chromatography coupled with network pharmacology-based investigation
title_sort decoding the chemical composition and pharmacological mechanisms of jiedu tongluo tiaogan formula using high-performance liquid chromatography coupled with network pharmacology-based investigation
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8610129/
https://www.ncbi.nlm.nih.gov/pubmed/34740995
http://dx.doi.org/10.18632/aging.203679
work_keys_str_mv AT zhangqi decodingthechemicalcompositionandpharmacologicalmechanismsofjiedutongluotiaoganformulausinghighperformanceliquidchromatographycoupledwithnetworkpharmacologybasedinvestigation
AT piaochunli decodingthechemicalcompositionandpharmacologicalmechanismsofjiedutongluotiaoganformulausinghighperformanceliquidchromatographycoupledwithnetworkpharmacologybasedinvestigation
AT jinwenqi decodingthechemicalcompositionandpharmacologicalmechanismsofjiedutongluotiaoganformulausinghighperformanceliquidchromatographycoupledwithnetworkpharmacologybasedinvestigation
AT jinde decodingthechemicalcompositionandpharmacologicalmechanismsofjiedutongluotiaoganformulausinghighperformanceliquidchromatographycoupledwithnetworkpharmacologybasedinvestigation
AT wanghan decodingthechemicalcompositionandpharmacologicalmechanismsofjiedutongluotiaoganformulausinghighperformanceliquidchromatographycoupledwithnetworkpharmacologybasedinvestigation
AT tangcheng decodingthechemicalcompositionandpharmacologicalmechanismsofjiedutongluotiaoganformulausinghighperformanceliquidchromatographycoupledwithnetworkpharmacologybasedinvestigation
AT zhaoxiaohua decodingthechemicalcompositionandpharmacologicalmechanismsofjiedutongluotiaoganformulausinghighperformanceliquidchromatographycoupledwithnetworkpharmacologybasedinvestigation
AT zhangnaiwen decodingthechemicalcompositionandpharmacologicalmechanismsofjiedutongluotiaoganformulausinghighperformanceliquidchromatographycoupledwithnetworkpharmacologybasedinvestigation
AT gaoshengnan decodingthechemicalcompositionandpharmacologicalmechanismsofjiedutongluotiaoganformulausinghighperformanceliquidchromatographycoupledwithnetworkpharmacologybasedinvestigation
AT lianfengmei decodingthechemicalcompositionandpharmacologicalmechanismsofjiedutongluotiaoganformulausinghighperformanceliquidchromatographycoupledwithnetworkpharmacologybasedinvestigation