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  1. AU="Cai, Jie-Qi"
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  3. AU=Yellapu Nanda Kumar
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  1. Artikel: Corrigendum: Detecting key functional components group and speculating the potential mechanism of Xiao-Xu-Ming decoction in treating stroke.

    Chen, Yu-Peng / Wang, Ke-Xin / Cai, Jie-Qi / Li, Yi / Yu, Hai-Lang / Wu, Qi / Meng, Wei / Wang, Han-Duo / Yin, Chuan-Hui / Wu, Jie / Huang, Mian-Bo / Li, Rong / Guan, Dao-Gang

    Frontiers in cell and developmental biology

    2023  Band 10, Seite(n) 1107236

    Abstract: This corrects the article DOI: 10.3389/fcell.2022.753425.]. ...

    Abstract [This corrects the article DOI: 10.3389/fcell.2022.753425.].
    Sprache Englisch
    Erscheinungsdatum 2023-01-20
    Erscheinungsland Switzerland
    Dokumenttyp Published Erratum
    ZDB-ID 2737824-X
    ISSN 2296-634X
    ISSN 2296-634X
    DOI 10.3389/fcell.2022.1107236
    Datenquelle MEDical Literature Analysis and Retrieval System OnLINE

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  2. Artikel: Detecting Key Functional Components Group and Speculating the Potential Mechanism of Xiao-Xu-Ming Decoction in Treating Stroke.

    Chen, Yu-Peng / Wang, Ke-Xin / Cai, Jie-Qi / Li, Yi / Yu, Hai-Lang / Wu, Qi / Meng, Wei / Wang, Han-Duo / Yin, Chuan-Hui / Wu, Jie / Huang, Mian-Bo / Li, Rong / Guan, Dao-Gang

    Frontiers in cell and developmental biology

    2022  Band 10, Seite(n) 753425

    Abstract: Stroke is a cerebrovascular event with cerebral blood flow interruption which is caused by occlusion or bursting of cerebral vessels. At present, the main methods in treating stroke are surgical treatment, statins, and recombinant tissue-type plasminogen ...

    Abstract Stroke is a cerebrovascular event with cerebral blood flow interruption which is caused by occlusion or bursting of cerebral vessels. At present, the main methods in treating stroke are surgical treatment, statins, and recombinant tissue-type plasminogen activator (rt-PA). Relatively, traditional Chinese medicine (TCM) has widely been used at clinical level in China and some countries in Asia. Xiao-Xu-Ming decoction (XXMD) is a classical and widely used prescription in treating stroke in China. However, the material basis of effect and the action principle of XXMD are still not clear. To solve this issue, we designed a new system pharmacology strategy that combined targets of XXMD and the pathogenetic genes of stroke to construct a functional response space (FRS). The effective proteins from this space were determined by using a novel node importance calculation method, and then the key functional components group (KFCG) that could mediate the effective proteins was selected based on the dynamic programming strategy. The results showed that enriched pathways of effective proteins selected from FRS could cover 99.10% of enriched pathways of reference targets, which were defined by overlapping of component targets and pathogenetic genes. Targets of optimized KFCG with 56 components can be enriched into 166 pathways that covered 80.43% of 138 pathways of 1,012 pathogenetic genes. A component potential effect score (PES) calculation model was constructed to calculate the comprehensive effective score of components in the components-targets-pathways (C-T-P) network of KFCGs, and showed that ferulic acid, zingerone, and vanillic acid had the highest PESs. Prediction and docking simulations show that these components can affect stroke synergistically through genes such as MEK, NFκB, and PI3K in PI3K-Akt, cAMP, and MAPK cascade signals. Finally, ferulic acid, zingerone, and vanillic acid were tested to be protective for PC12 cells and HT22 cells in increasing cell viabilities after oxygen and glucose deprivation (OGD). Our proposed strategy could improve the accuracy on decoding KFCGs of XXMD and provide a methodologic reference for the optimization, mechanism analysis, and secondary development of the formula in TCM.
    Sprache Englisch
    Erscheinungsdatum 2022-05-12
    Erscheinungsland Switzerland
    Dokumenttyp Journal Article
    ZDB-ID 2737824-X
    ISSN 2296-634X
    ISSN 2296-634X
    DOI 10.3389/fcell.2022.753425
    Datenquelle MEDical Literature Analysis and Retrieval System OnLINE

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  3. Artikel: Detecting Critical Functional Ingredients Group and Mechanism of Xuebijing Injection in Treating Sepsis.

    Wu, Qi- / Yin, Chuan-Hui / Li, Yi / Cai, Jie-Qi / Yang, Han-Yun / Huang, Ying-Ying / Zheng, Yi-Xu / Xiong, Ke / Yu, Hai-Lang / Lu, Ai-Ping / Wang, Ke-Xin / Guan, Dao-Gang / Chen, Yu-Peng

    Frontiers in pharmacology

    2021  Band 12, Seite(n) 769190

    Abstract: Sepsis is a systemic inflammatory reaction caused by various infectious or noninfectious factors, which can lead to shock, multiple organ dysfunction syndrome, and death. It is one of the common complications and a main cause of death in critically ill ... ...

    Abstract Sepsis is a systemic inflammatory reaction caused by various infectious or noninfectious factors, which can lead to shock, multiple organ dysfunction syndrome, and death. It is one of the common complications and a main cause of death in critically ill patients. At present, the treatments of sepsis are mainly focused on the controlling of inflammatory response and reduction of various organ function damage, including anti-infection, hormones, mechanical ventilation, nutritional support, and traditional Chinese medicine (TCM). Among them, Xuebijing injection (XBJI) is an important derivative of TCM, which is widely used in clinical research. However, the molecular mechanism of XBJI on sepsis is still not clear. The mechanism of treatment of "bacteria, poison and inflammation" and the effects of multi-ingredient, multi-target, and multi-pathway have still not been clarified. For solving this issue, we designed a new systems pharmacology strategy which combines target genes of XBJI and the pathogenetic genes of sepsis to construct functional response space (FRS). The key response proteins in the FRS were determined by using a novel node importance calculation method and were condensed by a dynamic programming strategy to conduct the critical functional ingredients group (CFIG). The results showed that enriched pathways of key response proteins selected from FRS could cover 95.83% of the enriched pathways of reference targets, which were defined as the intersections of ingredient targets and pathogenetic genes. The targets of the optimized CFIG with 60 ingredients could be enriched into 182 pathways which covered 81.58% of 152 pathways of 1,606 pathogenetic genes. The prediction of CFIG targets showed that the CFIG of XBJI could affect sepsis synergistically through genes such as TAK1, TNF-α, IL-1β, and MEK1 in the pathways of MAPK, NF-κB, PI3K-AKT, Toll-like receptor, and tumor necrosis factor signaling. Finally, the effects of apigenin, baicalein, and luteolin were evaluated by
    Sprache Englisch
    Erscheinungsdatum 2021-12-06
    Erscheinungsland Switzerland
    Dokumenttyp Journal Article
    ZDB-ID 2587355-6
    ISSN 1663-9812
    ISSN 1663-9812
    DOI 10.3389/fphar.2021.769190
    Datenquelle MEDical Literature Analysis and Retrieval System OnLINE

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