4.4 Article

The Optimized Formulation of Tamoxifen-Loaded Niosomes Efficiently Induced Apoptosis and Cell Cycle Arrest in Breast Cancer Cells

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AAPS PHARMSCITECH
卷 23, 期 1, 页码 -

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SPRINGER
DOI: 10.1208/s12249-022-02212-0

关键词

nano drug-delivery; breast cancer; tamoxifen; apoptosis induction

资金

  1. Bahar Tashkhis Teb [BTT9903]
  2. Ministry of Science and Higher Education of the Russian Federation [075-15-2020-917]

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The study aimed to optimize niosomal formulations of tamoxifen for the treatment of breast cancer. The optimized formulation showed improved stability and pH-dependent drug release, making it a promising candidate for drug delivery in breast cancer treatment. The tamoxifen-loaded niosomes exhibited high biocompatibility with healthy cells and remarkable inhibitory effects on cancer cells, as well as changes in gene expression patterns associated with cell cycle arrest, decreased migration capacity, increased caspase activity, and apoptosis induction.
The aim, as proof of concept, was to optimize niosomal formulations of tamoxifen in terms of size, morphology, encapsulation efficiency, and release kinetics for further treatment of the breast cancer (BC). Different assays were carried out to evaluate the pro-apoptotic and cytotoxicity impact of tamoxifen-loaded niosomes in two BC cells, MDA-MB-231 and SKBR3. In this study, tamoxifen was loaded in niosomes after optimization in the formulation. The formulation of niosomes supported maximized drug entrapment and minimized their size. The novel formulation showed improvement in storage stability, and after 60 days only, small changes in size, polydispersity index, and drug entrapment were observed. Besides, a pH-dependent release pattern of formulated niosomes displayed slow release at physiological pH (7.4) and a considerable increase of release at acidic pH (5.4), making them a promising candidate for drug delivery in the BC treatment. The cytotoxicity study exhibited high biocompatibility with MCF10A healthy cells, while remarkable inhibitory effects were observed after treatment of cancerous lines, MDA-MB-231, and SKBR3 cells. The IC50 values for the tamoxifen-loaded niosomes were significantly less than other groups. Moreover, treatment with drug-loaded niosomes significantly changed the gene expression pattern of BC cells. Statistically significant down-regulation of cyclin D, cyclin E, VEGFR-1, MMP-2, and MMP-9 genes and up-regulation of caspase-3 and caspase-9 were observed. These results were in correlation with cell cycle arrest, lessoned migration capacity, and increased caspase activity and apoptosis induction in cancerous cells. Optimization in the formulation of tamoxifen-loaded niosomes can make them a novel candidate for drug delivery in BC treatment.

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