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◆ Saudi pharmaceutical journal : SPJ : the official publication of the Saudi Pharmaceutical Society2026-09-02

In vitro study and in silico reveal Teucrium Polium L. methanolic extract as an apoptosis inducer and a potential Bcl-2 inhibitor for breast cancer.

Monira Alaujan, Sabine Matou-Nasri, Fatimah G Albani, Sahar S Alghamdi, Rasha S Suliman, Rehab AlRoshody, Sarah Huwaizi, Aljawharah Almogren, Mikhlid H Almutairi, Zeyad Alehaideb

原始摘要(英文原文)· Original abstract
Therapy of breast cancer (BC) overexpressing the pro-survival protein Bcl-2 remains a major clinical challenge. The discovery of natural anticancer drugs with potential as Bcl-2 inhibitors has generated increasing interest. The medicinal plant Teucrium polium L. (TPL) exhibits pharmacological properties, including anticancer activities. This study aimed to assess the antiproliferative and pro-apoptotic effects of TPL extracts on BC cells and to predict the potential of TPL extract-derived metabolites as Bcl-2 inhibitors. Plant extraction was performed using several solvents, and cell viability was determined. The expression of proteins and genes related to apoptosis was evaluated using Western blot, the Proteome Profiler™ Human Apoptosis Array Kit, and qPCR, respectively. Caspase-3/7 and mitochondrial permeability transition pore opening (mPTPO) activities were visualized. GC/MS analysis, molecular docking, and in silico modeling were used for metabolite identification, prediction of their molecular interactions with Bcl-2, and their pharmacokinetic profiles. Among extracts, TPL methanolic extract (TPLME) dose-dependently reduced hormone-dependent and triple-negative BC cell viability, while sparing normal mammary epithelial cells. TPLME induced apoptosis by increasing caspase-3/7 activity, activating distinct apoptotic pathways, and modulating BAX, TP53, and BCL-2 gene expression. Differential BCL-2 expression levels in TPLME-treated BC cells were confirmed by variations in mPTPO activity. After TPLME-derived metabolite identification, molecular docking revealed interactions between key metabolites and the active site of Bcl-2. Predictive analysis revealed the safe pharmacokinetic profiles of TPLME-derived metabolites. These findings highlight the promising potential of TPLME-derived metabolites for the development of novel Bcl-2 inhibitors for BC cells, requiring further chemical development and preclinical investigations using in vivo BC models.
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In vitro study and in silico reveal Teucrium Polium L. methanolic extract as an apoptosis inducer and a potential Bcl-2 inhibitor for breast cancer. — 科研速览 Science Skim