ArticleScientific reports2023
MAT as a promising therapeutic strategy against triple-negative breast cancer via inhibiting PI3K/AKT pathway.
Article in Scientific reports, 2023. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 8 papers.
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Who cites it
8 citing papers in PubMed.
- Mechanism of matrine inhibiting retinoblastoma cell growth by downregulating NR1D2 to regulate phosphorylation of the PI3K/AKT signaling pathway.Scientific reports · 2026Article
- Genetically bio-engineered PD-L1 targeted exosomes for immunotherapy of resistant triple negative breast cancer.Drug delivery and translational research · 2026Article
- Chinese medicine-based interventions in triple-negative breast cancer: mechanistic evidence, clinical findings, and translational challenges-a narrative review.Frontiers in pharmacology · 2026Review
- Traditional Chinese medicine in the treatment of breast Cancer.Molecular cancer · 2025Review
- Bioinformatics and Omics-based Perspectives on Breast Cancer: Advancing Target Gene Identification for the Development of Anticancer Agents.Asian Pacific journal of cancer prevention : APJCP · 2025Review
- The Potential of Matrine in the Treatment of Breast Cancer: A Review.Biomedicines · 2025Review
- Natural Products as Novel Therapeutic Agents for Triple-Negative Breast Cancer: Current Evidence, Mechanisms, Challenges, and Opportunities.Molecules (Basel, Switzerland) · 2025Review
- Plant metabolites and functional foods in metastatic breast cancer: a supportive strategy for management.Frontiers in pharmacology · 2025Review
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Authors and funding
8 authors.
Funding
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Abstract
Triple-negative breast cancer (TNBC), a highly aggressive and heterogeneous subtype of breast cancer, lacks effective treatment options. Sophora flavescens Aiton, a Chinese medicinal plant, is often used in traditional Chinese medicine to treat cancer. Matrine (MAT) is an alkaloid extracted from Sophora flavescens. It has good anticancer effects, and thus can be explored as a new therapeutic agent in TNBC research. We performed bioinformatics analysis to analyze the differentially expressed genes between normal breast tissues and TNBC tissues, and comprehensive network pharmacology analyses. The activity and invasion ability of TNBC cells treated with MAT were analyzed. Apoptosis and cell cycle progression were determined using cytometry. We used Monodansylcadaverine (MDC) staining to determine the condition of autophagosomes. Finally, the expression levels of the key target proteins of the PI3K/AKT pathway were determined using western blotting. The proliferation and invasion ability of MDA-MB-231 and MDA-MB-468 can be effectively inhibited by MAT. The results of flow cytometry indicated that MAT arrested the TNBC cell cycle and induced apoptosis. In addition, we confirmed that MAT inhibited the expression of BCL-2 while up-regulating the expression of cleaved caspase-3. Moreover, enhanced intensity of MDC staining and high LC3-II expression were observed, which confirmed that MAT induced autophagy in TNBC cells. Western blotting showed that MAT inhibited the PI3K/AKT pathway and downregulated the expressions of PI3K, AKT, p-AKT, and PGK1. This study provides feasible methods, which include bioinformatics analysis and in vitro experiments, for the identification of compounds with anti-TNBC properties. MAT inhibited the PI3K/AKT signaling pathway, arrested cell cycle, as well as promoted cell apoptosis and autophagy. These experiments provide evidence for the anti-TNBC effect of MAT and identified potential targets against TNBC.
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