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首页> 外文期刊>Journal of nanoscience and nanotechnology >Catechin Loaded Poly(lactic-co-glycolic acid) Nanoparticles: Characterization, Antioxidant and Cytotoxic Activity Against MCF-7 Breast Cancer Cells
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Catechin Loaded Poly(lactic-co-glycolic acid) Nanoparticles: Characterization, Antioxidant and Cytotoxic Activity Against MCF-7 Breast Cancer Cells

机译:儿茶素负载的聚(乳酸 - 共乙醇酸)纳米颗粒:表征,抗氧化剂和对MCF-7乳腺癌细胞的细胞毒性活性

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Here we evaluate the cytotoxic and antioxidant properties of Catechin (Cat) loaded nanoparticles (CatNps) on breast cancer cell lines. CatNps were prepared by the modified single emulsion solvent evaporation method. The structural, physical and chemical properties of the CatNps including PLGA-Cat interactions, and surface characteristics, were analyzed by dynamic light scattering (DLS), Fourier transform infrared (FT-IR), and Scanning Electron Microscopy (SEM). The average particle size of CatNps was 190.5 +/- 1.762 nm with an encapsulation efficiency of 10% and zeta potential value of 13.7 +/- 1.258 mV. The CatNps had reaction yield of 43.47 +/- 1.1% and loading capacity of 3.710 +/- 2.6% Treating MCF-7 cells with CatNps for 48 h led to a decrease in cell viability with an of IC50 22.59 mu g/mL. The antioxidant behavior of CatNps was evaluated by the DPPH method in various pH environments (pH 3-, 6-, 7.4-, 9- and 12). Despite the low encapsulation efficiency, CatNps showed significant antioxidant efficacy against DPPH radicals relative to Cat. Our results revealed that CatNps could be used as promising anti-cancer agents due to their enhanced cytotoxic activity, increased bioavailability, and antioxidant properties.
机译:在这里,我们评估儿茶素(猫)纳米颗粒(CATNP)对乳腺癌细胞系的细胞毒性和抗氧化性能。通过改性的单乳液溶剂蒸发方法制备CATNP。通过动态光散射(DLS),傅里叶变换红外(FT-IR)和扫描电子显微镜(SEM)分析包括PLGA-CAT相互作用和表面特性的CATNP的结构,物理和化学性质。 CATNP的平均粒径为190.5 +/- 1.762nm,封装效率为10%,Zeta电位值为13.7 +/- 1.258 mV。 CATNPS的反应产率为43.47 +/- 1.1%,加载能力为3.710 +/- 2.6%,用CATNP处理48小时的MCF-7细胞导致IC5022.59μg/ ml的细胞活力降低。通过DPPH方法在各种pH环境中评价CATNP的抗氧化行为(pH3,6-,7.4-,9-和12)。尽管封装效率低,但CATNPS相对于猫对DPPH激进的显着抗氧化效果显示出显着的抗氧化效果。我们的研究结果表明,由于其增强的细胞毒性活性,增加的生物利用度和抗氧化性能,CATNP可以用作有前途的抗癌剂。

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