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March 10, 2026Letters in Drug Design & Discovery0 citationsOpen Access

Eco-friendly synthesis of CUO-Ag nanoparticles using Mentha Longifolia and their anticancer efficacy in breast and gastric cancer cells

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HPHoda PahlevanhosseiniFKFatemeh Siahmansuor KhorinAMAzadeh Mohammadgholi

Key Points

  • The research aims to evaluate the anticancer effects of Mentha longifolia-derived Ag-CuO nanoparticles on breast and gastric cancer cell lines.
  • Synthesize Ag-CuO-NPs using Mentha longifolia extract.
  • Characterize nanoparticles with techniques like FESEM, TEM, XRD, and FTIR.
  • Conduct MTT assays and measure apoptotic markers using RT-PCR and flow cytometry.
  • Quantify levels of nitric oxide and reactive oxygen species in treated cells.
  • Spherical shaped Ag-CuO-NPs were synthesized with sizes between 50 and 90 nm.
  • Late apoptosis was observed in 24.4% of MCF-7 and 20.8% of AGS cells, with low necrosis rates.
  • Increased levels of NO and ROS in nanoparticle-treated cells compared to extract alone were recorded.
  • Bax and Caspase-3 showed up-regulation, while Bcl2 was down-regulated in treated cells.

Abstract

Breast and gastric cancers continue to pose significant global health challenges due to the limitations of existing therapies. Anticancer effect of biometallic copper oxide-silver nanoparticles (Ag-CuO-NPs) synthesized via a green method using Mentha longifolia ( M. longifolia ) extract on MCF-7 (breast) and AGS (gastric) cancer cell lines was aimed. The synthesized nanoparticles were characterized using field emission scanning electron microscopy (FESEM), transmission electron microscopy (TEM), X-ray diffraction (XRD), and Fourier transform infrared spectroscopy (FTIR) techniques. MTT assay, necrotic quantification, as well as measurement of intracellular nitric oxide (NO) and reactive oxygen species (ROS) levels were done. Additionally, RT-PCR was used to evaluate the apoptotic gene expression levels of Bax , Bcl2 , P53 , and Caspase-3 . The synthesized Ag-CuO-NPs showed a spherical shape and sizes between 50 and 90-nm. DLS analysis resulted in an average size of 111.2 nm with PDI 0.284. EDX, FTIR, UV-Vis. XRD confirmed the elemental composition (Ag/Cu/O), surface functional groups, and crystalline structure of the nanoparticles. Flow cytometry showed exposures to Ag-CuO-NPs resulted in 24.4 % and 20.8 % late apoptosis and 6.63 % and 6.88 % necrosis for MCF-7 and AGS cells, respectively, compared to extract-treated groups. Up-regulation for Bax , Caspase-3 , and P53 and down-regulation of the Bcl2 in NPs treated cells compared to the extract alone were detected. Both NO and ROS levels increased significantly in NPs treated cells compared to extract alone. Our findings demonstrate that M. longifolia -mediated Ag-CuO-NPs effectively induce apoptosis through oxidative stress signaling and represent a promising natural, dual-metal-based therapeutic strategy for breast and gastric cancers.

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Cite This Study

Pahlevanhosseini et al. (2026) studied this question.

synapsesocial.com/papers/69af944f70916d39fea4b674https://doi.org/10.1016/j.lddd.2026.100335
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