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Thio-glucose bound gold nanoparticles enhance radio-cytotoxic targeting of ovarian cancer

机译:巯基葡萄糖结合的金纳米颗粒增强对卵巢癌的放射细胞毒性靶向

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摘要

The treatment of ovarian cancer has traditionally been intractable, and required novel approaches to improve therapeutic efficiency. This paper reports that thio-glucose bound gold nanoparticles (Glu-GNPs) can be used as a sensitizer to enhance ovarian cancer radiotherapy. The human ovarian cancer cells, SK-OV-3, were treated by gold nanoparticles (GNPs) alone, irradiation alone, or GNPs in addition to irradiation. Cell uptake was assayed using inductively coupled plasma atomic emission spectroscopy (ICP-AES), while cytotoxicity induced by radiotherapy was measured using both 3-(4,5)-dimethylthiahiazo (-z-y1)-3,5-di-phenytetrazoliumromide and clonogenic assays. The presence of reactive oxygen species (ROS) was determined using CM-H2-DCFDA confocal microscopy and cell apoptosis was determined by an Annexin V-FITC/propidium iodide (PI) kit with flow cytometry. The cells treated by Glu-GNPs resulted in an approximate 31% increase in nanoparticle uptake compared to naked GNPs (p < 0.005). Compared to the irradiation alone treatment, the intracellular uptake of Glu-GNPs resulted in increased inhibition of cell proliferation by 30.48% for 90kVp and 26.88% for 6MV irradiation. The interaction of x-ray radiation with GNPs induced elevated levels of ROS production, which is one of the mechanisms by which GNPs can enhance radiotherapy on ovarian cancer.
机译:卵巢癌的治疗传统上是棘手的,需要新颖的方法来提高治疗效率。本文报道硫代葡萄糖结合的金纳米颗粒(Glu-GNPs)可用作增强卵巢癌放射治疗的敏化剂。人卵巢癌细胞SK-OV-3单独用金纳米颗粒(GNP),单独照射或除照射外还用GNP处理。使用电感耦合等离子体原子发射光谱法(ICP-AES)测定细胞摄取,同时使用3-(4,5)-二甲基噻唑并(-z-y1)-3,5-di-phenytetrazoliumromide和克隆形成测定。使用CM-H2-DCFDA共聚焦显微镜确定活性氧(ROS)的存在,并通过带有流式细胞仪的Annexin V-FITC /碘化丙啶(PI)试剂盒确定细胞凋亡。与裸露的GNPs相比,用Glu-GNPs处理的细胞导致纳米颗粒吸收量增加了约31%(p <0.005)。与单独照射相比,细胞内摄取Glu-GNPs导致细胞增殖的抑制作用在90kVp时增加了30.48%,在6MV照射时增加了26.88%。 X射线辐射与GNP的相互作用导致ROS产生水平升高,这是GNP可以增强卵巢癌放射疗法的机制之一。

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