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Anticancer Efficacy of Photodynamic Therapy with Lung Cancer-Targeted Nanoparticles
Published on: December 1, 2016
Synthesis of Epimedium extract selenium nanoparticles and evaluation their efficacy against lung cancer
1Department of Respiratory Medicine, The Second Affiliated Hospital of Chongqing Medical University, Chongqing, China.
Abstract:
Lung cancer, the foremost cause of cancer-related mortality worldwide, necessitates the exploration for novel anti-lung cancer therapeutics to enhance efficacy and reduce adverse effects. Targeting selenium in the tumor microenvironment has become a new strategy for the treatment of lung cancer. The objective of this study was to synthesize novel selenium nanoparticles (EBM-SeNPs) using aqueous extracts derived from Epimedium brevicornum Maxim and investigate its structural characteristics and inhibitory effects against lung cancer. The physicochemical properties of EBM-SeNPs were characterized from multiple aspects using a variety of methods. The CCK-8, flow cytometry, wound healing assay, Western blot and the cell derived xenograft model were conducted to evaluate the antitumor efficacy in vivo and in vitro. EBM-SeNPs were approximately spherical and exhibited superior dispersivity and stability in water solution. And EBM-SeNPs did not display any specific cytotoxicity against human liver cells. However, they showed outstanding capability to induce apoptosis in lung cancer cells, thereby effectively suppressing their growth and migratory potential. Furthermore, EBM-SeNPs demonstrated a reduction of tumor and an increase in immune organ index of tumor-bearing mice. Collectively, the EBM-SeNPs may be an effective and safe option for the treatment of lung cancer.
Insights
Novel selenium nanoparticles synthesized from Epimedium brevicornum Maxim (EBM-SeNPs) show significant potential against lung cancer. These nanoparticles effectively inhibit lung cancer cell growth and migration without harming healthy liver cells.
Area of Science:
- Nanotechnology
- Oncology
- Pharmacology
Background:
- Lung cancer is a leading cause of cancer mortality globally.
- Novel therapeutic strategies are needed to improve efficacy and reduce side effects.
- Targeting selenium within the tumor microenvironment presents a promising approach.
Purpose of the Study:
- To synthesize novel selenium nanoparticles (EBM-SeNPs) using Epimedium brevicornum Maxim extracts.
- To characterize the physicochemical properties of EBM-SeNPs.
- To evaluate the antitumor efficacy of EBM-SeNPs against lung cancer in vitro and in vivo.
Main Methods:
- Synthesis and characterization of EBM-SeNPs.
- In vitro assays: CCK-8, flow cytometry, wound healing assay, Western blot.
- In vivo studies: Cell-derived xenograft model in mice.
Main Results:
- EBM-SeNPs are spherical with good dispersivity and stability in water.
- No significant cytotoxicity observed in human liver cells.
- EBM-SeNPs effectively induce apoptosis in lung cancer cells, suppressing growth and migration.
- Tumor volume was reduced, and immune organ index increased in tumor-bearing mice.
Conclusions:
- EBM-SeNPs exhibit potent antitumor activity against lung cancer.
- The synthesized nanoparticles demonstrate a favorable safety profile.
- EBM-SeNPs represent a potential novel and safe therapeutic option for lung cancer treatment.
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