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1.
Artículo en Chino | WPRIM | ID: wpr-1019847

RESUMEN

Traditional Chinese medicine(TCM)plays a unique role in preventive treatment of disease,treatment of chronic disease and recovery.Integrating modern science and technology and methods to carry out integrated and innovative research will help to bring the value of traditional Chinese medicine into full play.In recent years,with the rapid development of digital therapeutics such as artificial intelligence and wearable devices,digital therapeutics have emerged.Under the guidance of TCM theory,TCM integrates digital therapeutics technology methods,personalized treatment of patients through advanced program-driven software or combined with hardware devices,and improves patient compliance,gives full play to the advantages of TCM.This paper uses CiteSpace to visualize the research hotspots of digital therapeutics,combined with the literature and the website data of the Food and Drug Administration and the National Medical Products Administration,to sort out the application of digital therapeutics in the prevention,treatment and recovery of diseases,analyze the key technologies and core theories in the current application of digital therapeutics.And taking TCM pentatotherapy,kinesiatrics and aromatherapy as examples,this paper discusses the application forms of digital therapeutics under the guidance of TCM theory,and provides a preliminary paradigm for TCM digital therapeutics.

2.
Acta Pharmaceutica Sinica B ; (6): 590-595, 2015.
Artículo en Inglés | WPRIM | ID: wpr-309991

RESUMEN

Curcumin, the medically active component from Curcuma longa (Turmeric), is widely used to treat inflammatory diseases. Protein interaction network (PIN) analysis was used to predict its mechanisms of molecular action. Targets of curcumin were obtained based on ChEMBL and STITCH databases. Protein-protein interactions (PPIs) were extracted from the String database. The PIN of curcumin was constructed by Cytoscape and the function modules identified by gene ontology (GO) enrichment analysis based on molecular complex detection (MCODE). A PIN of curcumin with 482 nodes and 1688 interactions was constructed, which has scale-free, small world and modular properties. Based on analysis of these function modules, the mechanism of curcumin is proposed. Two modules were found to be intimately associated with inflammation. With function modules analysis, the anti-inflammatory effects of curcumin were related to SMAD, ERG and mediation by the TLR family. TLR9 may be a potential target of curcumin to treat inflammation.

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