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首页> 外文期刊>ACS applied materials & interfaces >The Intracellular Number of Magnetic Nanoparticles Modulates the Apoptotic Death Pathway after Magnetic Hyperthermia Treatment
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The Intracellular Number of Magnetic Nanoparticles Modulates the Apoptotic Death Pathway after Magnetic Hyperthermia Treatment

机译:磁性热疗治疗后,磁性纳米粒子的细胞内数量调节凋亡死亡途径

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Magnetic hyperthermia is a cancer treatment based on the exposure of magnetic nanoparticles to an alternating magnetic field in order to generate local heat. In this work, 3D cell culture models were prepared to observe the effect that a different number of internalized particles had on the mechanisms of cell death triggered upon the magnetic hyperthermia treatment. Macrophages were selected by their high capacity to uptake nanoparticles. Intracellular nanoparticle concentrations up to 7.5 pg Fe/cell were measured both by elemental analysis and magnetic characterization techniques. Cell viability after the magnetic hyperthermia treatment was decreased to <25% for intracellular iron contents above 1 pg per cell. Theoretical calculations of the intracellular thermal effects that occurred during the alternating magnetic field application indicated a very low increase in the global cell temperature. Different apoptotic routes were triggered depending on the number of internalized particles. At low intracellular magnetic nanoparticle amounts (below 1 pg Fe/cell), the intrinsic route was the main mechanism to induce apoptosis, as observed by the high Bax/Bcl-2 mRNA ratio and low caspase-8 activity. In contrast, at higher concentrations of internalized magnetic nanoparticles (1-7.5 pg Fe/cell), the extrinsic route was observed through the increased activity of caspase-8. Nevertheless, both mechanisms may coexist at intermediate iron concentrations. Knowledge on the different mechanisms of cell death triggered after the magnetic hyperthermia treatment is fundamental to understand the biological events activated by this procedure and their role in its effectiveness.
机译:磁体热疗是基于磁性纳米颗粒暴露于交变磁场的癌症处理,以产生局部热量。在这项工作中,准备3D细胞培养模型观察到不同数量的内化颗粒对在磁体热疗治疗时触发的细胞死亡机制的影响。巨噬细胞通过它们的高容量来吸收纳米颗粒选择。通过元素分析和磁性表征技术测量高达7.5pg Fe /细胞的细胞内纳米粒子浓度。在每种细胞1pg以上1 pg以上的细胞内铁含量下降至<25%后,细胞活力降低至<25%。交替磁场施加期间发生的细胞内热效应的理论计算表明全局细胞温度的大幅增加。根据内化颗粒的数量触发不同的凋亡路线。在低细胞内磁性纳米颗粒量(低于1pg Fe / Cell),本型途径是诱导凋亡的主要机制,如通过高Bax / Bcl-2 mRNA比和低Caspase-8活性所观察到的。相反,在较高浓度的内化磁性纳米颗粒(1-7.5pg Fe / Cell),通过增加Caspase-8的活性观察到外部途径。然而,这两种机制可能适用于中间铁浓度。关于磁体热疗治疗后触发的细胞死亡机制的知识是理解该程序激活的生物事件的基础及其在其有效性中的作用。

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