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1.
Article in Chinese | WPRIM (Western Pacific) | ID: wpr-927962

ABSTRACT

The present study explored the main active ingredients and the underlying mechanism of Spatholobi Caulisin the treatment of ovarian cancer(OC) by network pharmacology, molecular docking, and in vitro cell experiments. The active ingredients and their predicted targets(AITs) were first acquired online with the Traditional Chinese Medicine Systems Pharmacology Database and Analysis Platform(TCMSP). Theoretical disease targets(DTs) were obtained through professional databases including GeneCards, OMIM, PharmGkb, TTD, and DrugBank. The common targets in the intersection of AITs and DTs were used for the construction of a "drug-ingredient-disease-target" network by Cytoscape 3.7.1. STRING database was used to construct a protein-protein interaction(PPI) network. R 4.0.5 was used for GO and KEGG functional enrichment analyses. Schr9 dinger Maestro was used to perform and optimize the molecular docking and virtual screening.Twenty-three active ingredients of Spatholobi Caulis were screened out, involving 75 OC targets and 178 signaling pathways.Network analysis revealed that Spatholobi Caulis presumedly exerted an anti-OC effect by acting on key protein targets such as GSK-3β, Bcl-2, and Bax. Molecular docking showed that GSK-3β possessed goodbinding activity to prunetin. In vitro cell experiments preliminarily verified the core targets and pathways of prunetin, the active ingredient of Spatholobi Caulis against human OC SKOV3 cells.CCK-8 assay was used to detect the cell proliferation, and flow cytometry was used to detect the effect of prunetin on apoptosis of human OC SKOV3 cells.The expression of prunetin targets and related regulatory proteins was detected by Western blot.In vitro cell experiments demonstrated that prunetindisplayed significant inhibitory effects on the proliferation of OC cells and could induce apoptosis of SKOV3 cells. Western blot showed that prunetin could induce SKOV3 cell apoptosis by inhibiting GSK-3β phosphorylation and regulating the expression of downstream Bcl-2 and Bax proteins. This study reveals the scientific nature of network pharmacology in the prediction and guidance of experimental design, confirming that prunetin can treat OC by blocking the GSK-3β/Bcl-2/Bax cell signal transduction pathway. The findings are expected to provide a basis for the investigation of the mechanism of Spatholobi Caulis in the treatment of OC.


Subject(s)
Humans , Drugs, Chinese Herbal/pharmacology , Glycogen Synthase Kinase 3 beta/genetics , Medicine, Chinese Traditional , Molecular Docking Simulation , Network Pharmacology , Ovarian Neoplasms/genetics
2.
Preprint in English | bioRxiv | ID: ppbiorxiv-428007

ABSTRACT

The SARS-CoV-2 spike protein (S) is the sole viral protein responsible for both viral binding to a host cell and the membrane fusion event needed for cell entry. In addition to facilitating fusion needed for viral entry, S can also drive cell-cell fusion, a pathogenic effect observed in the lungs of SARS-CoV-2 infected patients. While several studies have investigated S requirements involved in viral particle entry, examination of S stability and factors involved in S cell-cell fusion remain limited. We demonstrate that S must be processed at the S1/S2 border in order to mediate cell-cell fusion, and that mutations at potential cleavage sites within the S2 subunit alter S processing at the S1/S2 border, thus preventing cell-cell fusion. We also identify residues within the internal fusion peptide and the cytoplasmic tail that modulate S cell-cell fusion. Additionally, we examine S stability and protein cleavage kinetics in a variety of mammalian cell lines, including a bat cell line related to the likely reservoir species for SARS-CoV-2, and provide evidence that proteolytic processing alters the stability of the S trimer. This work therefore offers insight into S stability, proteolytic processing, and factors that mediate S cell-cell fusion, all of which help give a more comprehensive understanding of this highly sought-after therapeutic target.

3.
Article in Chinese | MEDLINE | ID: mdl-22263499

ABSTRACT

OBJECTIVE: To evaluate the effect of a comprehensive control model for soil-transmitted nematodiasis. METHODS: Danling County was selected as a demonstration county carrying out the comprehensive prevention model centering on health education, nematode deworming, and drinking water and lavatories changing. On the other side, Hejiang was selected as a control. The effects were evaluated by comparing some indicators such as the infection rates of soil-transmitted nematodiasis and so on. RESULTS: The infection rates of soil-transmitted nematodiasis declined obviously from 2006 to 2009 in the demonstration county. The infection rates of Ascaris lumbricoides, hookworms, Trichiuris trichiura decreased by 91.14%, 81.65% and 65.77%. In the control county, those rates did not have downward tendency. In 2006, those rates in the demonstration county were higher than those in the control, but in 2009 those rates in the demonstration county were lower than those in the control. CONCLUSIONS: Through the three-year comprehensive prevention, the infection rates of soil-transmitted nematodiasis declined obviously in the demonstration county. The epidemic situation of soil-transmitted nematodiasis could be controlled effectively by the comprehensive prevention model.


Subject(s)
Nematode Infections/prevention & control , Soil/parasitology , China/epidemiology , Humans , Nematode Infections/epidemiology , Nematode Infections/transmission , Public Health , Sanitation
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