4.7 Article

A Network Pharmacology-Based Strategy For Predicting Active Ingredients And Potential Targets Of LiuWei DiHuang Pill In Treating Type 2 Diabetes Mellitus

期刊

DRUG DESIGN DEVELOPMENT AND THERAPY
卷 13, 期 -, 页码 3989-4005

出版社

DOVE MEDICAL PRESS LTD
DOI: 10.2147/DDDT.S216644

关键词

LWDH Pill; type 2 diabetes mellitus; T2DM; network pharmacology

资金

  1. Natural Science Foundation of China [81603400, 81673585]
  2. China Postdoctoral Science Foundation [2019M652776]
  3. National key R&D program of China [2018YFC1703400, 2018YFC170 4400]
  4. Training Program for Excellent Young Innovators of Changsha [kq1802017]
  5. Science Foundation of Hunan Province [2019JJ50345]
  6. Program of Survey of ChineseMedicines of China [[2017]66]
  7. Hunan Province Traditional Chinese Medicine Preparation and Quality Traceability Engineering and Technology Center
  8. Collaboration and Innovation Center for Digital Chinese Medicine in Hunan

向作者/读者索取更多资源

Background: Traditional Chinese medicine (TCM) formulations have proven to be advantageous in clinical treatment and prevention of disease. LiuWei DiHuang Pill (LWDH Pill) is a TCM that was employed to treat type 2 diabetes mellitus (T2DM). However, a holistic network pharmacology approach to understanding the active ingredients and the therapeutic mechanisms underlying T2DM has not been pursued. Methods: A network pharmacology approach including drug-likeness evaluation, oral bioavailability prediction, virtual docking, and network analysis has been used to predict the active ingredients and potential targets of LWDH Pill in the treatment of type 2 diabetes. Results: The comprehensive network pharmacology approach was successfully to identify 45 active ingredients in LWDH Pill. 45 active ingredients hit by 163 potential targets related to T2DM. Ten of the more highly predictive components (such as :quercetin, Kaempferol, Stigmasterol, beta-sitosterol, Kadsurenone, Diosgenin, hancinone C, Hederagenin, Garcinone B, Isofucosterol) are involved in anti-inflammatory, anti-oxidative stress, and the reduction of beta cell damage. LWDH Pill may play a role in the treatment of T2DM and its complications (atherosclerosis and nephropathy) through the AGE-RAGE signaling pathway, TNF signaling pathway, and NF-kappa B signaling pathway. Conclusion: Based on a systematic network pharmacology approach, our works successfully predict the active ingredients and potential targets of LWDH Pill for application to T2DM and helps to illustrate mechanism of action on a comprehensive level. This study provides identify key genes and pathway associated with the prognosis and pathogenesis of T2DM from new insights, which also demonstrates a feasible method for the research of chemical basis and pharmacology in LWDH Pill.

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