首页> 外文期刊>International journal of hyperthermia: The official journal of European Society for Hyperthermic Oncology, North American Hyperthermia Group >Efficacy of microwave hyperthermia and chemotherapy in the presence of gold nanoparticles: An in?vitro study on osteosarcoma
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Efficacy of microwave hyperthermia and chemotherapy in the presence of gold nanoparticles: An in?vitro study on osteosarcoma

机译:金纳米粒子存在下微波热疗和化疗的功效:骨肉瘤的体外研究

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Objective: Hyperthermia, generated using microwave (MW), infrared, ultrasound and other methods, is often utilised as an adjuvant technique to sensitise cancer lesions to radiation therapy and chemotherapy. In the current research, MW hyperthermia efficacy in synergism with chemotherapy was investigated in the presence and absence of gold nanoparticles (GNPs). Materials and methods: Saos-2 cell line derived from human osteogenic sarcoma was used in the study. Various experiments were performed on the cells in the presence of doxorubicin and GNPs with MW hyperthermia. All required control groups were also considered. The in?vitro experiments were conducted for GNPs of 20 and 40?nm, each at two concentrations of 13.2 and 26.4?μg/mL. After 48 hours, MTT assay was performed in order to evaluate the effectiveness of therapeutic parameters on cell survival. Results: In groups with GNP-incubated cells, the cell survival was more than 95%. After chemotherapy, survival was determined as 37.1% and 62.8% with and without 40?nm GNPs, respectively. Following the combined treatment of hyperthermia and chemotherapy, survival declined to 17% and 4.1% in the presence of 20 and 40?nm GNPs, respectively. GNPs of 40?nm diameter and 26.4?μg/mL concentration showed the highest synergistic effect on MW hyperthermia, combination of MW hyperthermia and chemotherapy, and chemotherapy, respectively. Dox with 40?nm GNPs had a higher cell destruction rate in comparison to chemotherapy alone. Conclusion: Although no cytotoxicity was observed from GNP incubation alone, their presence along with MW led to a decrease in survival rate, such that the lethal effects of MW hyperthermia with GNPs were comparable with that of doxorubicin. All combined treatments in the presence of 40?nm GNPs produced a higher efficiency in comparison to similar groups without GNPs and with 20?nm GNPs.
机译:目的:利用微波(MW),红外线,超声波和其他方法产生的体温过高通常被用作辅助技术,使癌症病变对放射疗法和化学疗法敏感。在当前的研究中,在存在和不存在金纳米颗粒(GNP)的情况下,研究了MW高温与化疗协同作用的功效。材料与方法:本研究采用人成骨肉瘤来源的Saos-2细胞系。在阿霉素和GNPs存在MW高温的情况下,对细胞进行了各种实验。还考虑了所有必需的对照组。进行了GNP分别为20和40?nm的体外实验,每种浓度分别为13.2和26.4?g / mL。 48小时后,进行MTT测定以评估治疗参数对细胞存活的有效性。结果:在具有GNP孵育细胞的组中,细胞存活率超过95%。化疗后,有和没有40?nm GNP的存活率分别确定为37.1%和62.8%。热疗和化学疗法联合治疗后,在存在20和40 nm GNP的情况下,存活率分别下降至17%和4.1%。直径40?nm的GNP和浓度为26.4?μg/ mL的GNP对MW热疗,MW热疗和化学疗法以及化学疗法的协同作用最高。与单独化疗相比,具有40?nm GNP的Dox具有更高的细胞破坏率。结论:尽管仅通过GNP孵育未观察到细胞毒性,但它们与MW一起存在会导致存活率降低,因此MW高温对GNP的致死作用与阿霉素相当。与没有GNPs和有20?nm GNPs的类似组相比,在40?nm GNPs存在下的所有联合治疗产生了更高的效率。

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