ArticleAsian Pacific journal of cancer prevention : APJCP2020
Reversal Effect of Dihydromyricetin on Multiple Drug Resistance in SGC7901/5-FU Cells.
Article in Asian Pacific journal of cancer prevention : APJCP, 2020. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 6 papers.
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6 citing papers in PubMed, 13 citations in OpenAlex.
- Molecular Mechanism Analysis of the Effect of Hederagenin Combined with L-OHP on Chemosensitivity of AGS/L-OHP based on Network Pharmacology.Current computer-aided drug design · 2025Article
- Discovery of drug transporter inhibitors tied to long noncoding RNA in resistant cancer cells; a computational model -in silico- study.Frontiers in immunology · 2025Review
- Multiple molecular and cellular mechanisms of the antitumour effect of dihydromyricetin (Review).Biomedical reports · 2024Review
- Strategic developments in the drug delivery of natural product dihydromyricetin: applications, prospects, and challenges.Drug delivery · 2022Review
- Present Status, Challenges, and Prospects of Dihydromyricetin in the Battle against Cancer.Cancers · 2022Review
- Dihydromyricetin Acts as a Potential Redox Balance Mediator in Cancer Chemoprevention.Mediators of inflammation · 2021Review
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7 authors at 3 institutions in 1 country.
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Abstract
backgroundOne of the most common treatment for gastric cancer is chemotherapy, however, multiple drug resistance (MDR) induce the therapeutic effect which result in the failure of anticancer therapy. Dihydromyricetin (DMY) was reported to have antitumor activities on various human cancer cells in vitro, our previous studies demonstrated that DMY combined with mitomycin has inhibitory effect on proliferation of gastric carcinoma cells. However, the underlying role of DMY reversing the MDR of gastric carcinoma is poor understood. The aim of this study was to evaluate the reversal effect of DMY on MDR and investigate the molecular mechanisms in vitro.
methodsUsing MTT assay, we identified the toxicity of DMY on SGC7901 and SGC7901/5-FU cells. The effect of DMY on 5-FU induced apoptosis was evaluated by flow cytometry analysis. Using RT-PCR and Western blot, we determined the MDR1 mRNA and protein expression.
resultsDMY induced growth inhibition in both SGC7901 and SGC7901/5-FU cells, the IC50 value was 13.64±1.15 µg/mL, 20.69±1.82 µg/mL respectively. DMY treatment sensitized SGC7901/5-FU cells to cytotoxicity of 5-FU. The combination of DMY with 5-FU increased the apoptosis rate (9.91%, 16.67%) comparing with 5-FU alone (5.25%). Comparing with the control group, the MDR1 mRNA and protein expression in SGC7901/5-FU cells after treatment of DMY decreased significantly (P< 0.05).
conclusionIn brief, our study demonstrated that DMY effectively reversed multi-drug resistance occurring in SGC7901/5-FU cells cultured in vitro, and the potential mechanism was involved in the downregulation of the MDR1 expression.
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