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首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >Novel pyridinecarboxaldehyde thiosemicarbazone conjugated magnetite nanoparticulates (MNPs) promote apoptosis in human lung cancer A549 cells
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Novel pyridinecarboxaldehyde thiosemicarbazone conjugated magnetite nanoparticulates (MNPs) promote apoptosis in human lung cancer A549 cells

机译:新型吡啶癸酰甲醛硫代硫代哌啶缀合磁铁矿纳米颗粒(MNPS)促进人肺癌A549细胞的凋亡

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摘要

The present study highlights the apoptotic activity of magnetic Fe3O4 nanoparticulates functionalized by glutamic acid and 2-pyridinecarboxaldehyde thiosemicarbazone (PTSC) toward human lung epithelial carcinoma A549 cell line. To this aim, the Fe3O4 nanoparticulates were prepared using co-precipitation method. Then, the glutamic acid and Fe3O4 nanoparticulates were conjugated to each other. The product was further functionalized with bio-reactive PTSC moiety. In addition, the synthesized Fe3O4@Glu/PTSC nanoparticulates were characterized by physico-chemical techniques including scanning electron microscope (SEM), energy dispersive X-ray (EDX), X-ray diffraction (XRD), Fourier-transform infrared (FT–IR) spectroscopy and zeta potential analysis. The effects of in vitro cell viability in Fe3O4@Glu/PTSC nanoparticulate indicated the anti-proliferative properties in a dose-dependent manner (IC50?=?135.6?μM/mL). The high selectivity for tumor cells and far below of activity in HEK293 non-tumorigenic cells is considered as an important feature for this complex (SI, 3.48). Based on the results, PTSC failed to reveal any activity against A549 cells alone. However, Fe3O4 nanoparticulates had some effects in inhibiting the growth of lung cancer cell. Furthermore, Bax and Bcl-2 gene expressions were quantified by real-time PCR method. The expression of Bax increased 1.62-fold, while the expression of Bcl-2 decreased 0.76-fold at 135.6?μM/mL concentration of Fe3O4@Glu/PTSC compared to untreated A549 cells. Furthermore, the Fe3O4@Glu/PTSC nanoparticulate-inducing apoptosis properties were evaluated by Hoechst 33258 staining, Caspase-3 activation assay and Annexin V/propidium iodide staining. The results of the present study suggest that Fe3O4@Glu/PTSC nanoparticulates exhibit effective anti-cancer activity against lung cancer cells.
机译:本研究突出了谷氨酸和2-吡啶甲基甲醛硫代哌啶(PTSC)致致脑肺上皮癌A549细胞系官能化的磁Fe3O4纳米颗粒的凋亡活性。为此目的,使用共沉淀法制备Fe3O4纳米颗粒。然后,谷氨酸和Fe3O4纳米颗粒彼此缀合。用生物反应性PTSC部分进一步官能化产物。此外,合成的Fe3O4 @ glu / ptsc纳米颗粒的特征在于,通过物理化学技术,包括扫描电子显微镜(SEM),能量分散X射线(EDX),X射线衍射(XRD),傅里叶变换红外(FT- IR)光谱学和Zeta电位分析。体外细胞活力在Fe3O4 @ glu / ptsc纳米颗粒中的影响表明了一种剂量依赖性方式的抗增殖性质(IC50?=135.6Ω·μm/ ml)。肿瘤细胞的高选择性以及低于HEK293非致荷细胞的活性,被认为是该综合体(Si,3.48)的重要特征。基于结果,PTSC未能揭示针对A549细胞的任何活动。然而,Fe3O4纳米颗粒对抑制肺癌细胞的生长有一些效果。此外,通过实时PCR方法量化Bax和Bcl-2基因表达。 BAX的表达增加1.62倍,而BCL-2的表达与未处理的A549个细胞相比,BCL-2的表达在135.6Ω·μm/ ml浓度的Fe3O4 @ glu / ptsc中降低。此外,通过Hoechst 33258染色,Caspase-3活化测定和碘化乙烯染色来评估Fe3O4 @ glu / ptsc诱导的凋亡性能。本研究的结果表明Fe3O4 @ glu / ptsc纳米颗粒表现出对肺癌细胞的有效抗癌活性。

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