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◆ Results in Chemistry2025-12-03· Paclitaxel

Eugenol-loaded zinc oxide nanoparticles enhance paclitaxel sensitivity in breast Cancer cells: A combined synergistic nanomedicine and theoretical approach

Yaas Rowhani, Somayeh Reiisi, Mehran Feizi‐Dehnayebi

原始摘要(英文原文)· Original abstract
Zinc oxide nanoparticles (ZnO NPs) have emerged as promising nanocarriers for enhancing drug delivery efficiency and reducing the side effects of conventional chemotherapy. Eugenol, a bioactive phenolic compound with anti-inflammatory, antioxidant, and anticancer properties, has shown potential as a therapeutic adjuvant. This study aimed to compare the anticancer efficacy of eugenol-loaded ZnO NPs (ZnO@Eug), alone and in combination with paclitaxel, against breast cancer cells. ZnO NPs were synthesized and characterized using FTIR, XRD, DLS, Zeta potential, FE-SEM, and TEM. The average particle size was 183 nm with a polydispersity index of 0.5 and a zeta potential of −45 mV. Eugenol loading efficiency reached ∼91 %, with a pH-dependent release profile showing enhanced release at pH 4.5. MCF7 and MDA-MB-231 breast cancer cell lines were treated with free eugenol, ZnO NPs, ZnO@Eug, paclitaxel, and their combination. Cell viability (MTT assay), migration (scratch assay), apoptosis (flow cytometry, caspase 3/7), colony formation, and gene expression (KRAS, CDC25A via RT-qPCR) were evaluated. Results showed that ZnO@Eug combined with paclitaxel significantly decreased cell viability, migration, and clonogenic potential while enhancing apoptosis, compared to monotherapies. The combination index (CI < 1) indicated a synergistic effect between ZnO@Eug and paclitaxel. These findings highlight the potential of ZnO NPs as a delivery platform for eugenol and support the use of this combination strategy to improve chemotherapy outcomes in breast cancer. Furthermore, the ground-state configurations and electronic characteristics of ZnO@Eug were optimized using DFT at the B3LYP level. To explore the anticancer activity of ZnO@Eug and paclitaxel, a molecular docking study was carried out targeting the HER2 protein.
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Eugenol-loaded zinc oxide nanoparticles enhance paclitaxel sensitivity in breast Cancer cells: A combined synergistic nanomedicine and theoretical approach — 科研速览 Science Skim