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Impact of gold nanoparticles shape on their cytotoxicity against human osteoblast and osteosarcoma in in vitro model. Evaluation of the safety of use and anti-cancer potential

机译:在体外模型中金纳米颗粒形状对其对人成骨细胞和骨肉瘤的细胞毒性的影响。评估使用安全性和抗癌潜力

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摘要

Due to development of nanotechnology and gold nanoparticles (AuNPs) increasing use in different areas of medicine, especially in oncology, better understanding of their potential cytotoxicity is necessary to protect patients safety. Shape and size of AuNPs is an important modulator of their cytotoxicity. Therefore, we investigated the cytotoxicity of AuNPs rods (≈39 nm length, 18 nm width), AuNPs stars (≈ 215 nm) and AuNPs spheres (≈ 6.3 nm) against human fetal osteoblast (hFOB 1.19), osteosarcoma (143B, MG63) and pancreatic duct cell (hTERT-HPNE) lines by MTT and neutral-red uptake assay. Moreover, influence of AuNPs on level of proapoptotic protein (Bax) and anti-apoptotic protein (Bcl-2) was measured by western blot. Cellular uptake of nanoparticles and ultrastructure changes were examined by transmission electron microscopy (TEM). In the present study we have proven that AuNPs stars are the most cytotoxic against human cells. We observed that cancer cells are more susceptible to AuNPs cytotoxic effect. Furthermore, AuNPs rods and AuNPs stars caused increased expression of Bax and decreased expression of Bcl-2 protein in osteosarcoma cells. We found that AuNPs penetrated through the cell membrane and caused ultrastructural changes. Our results clearly demonstrated that the cytotoxicity of AuNPs was shape-dependent. AuNPs stars with the highest anti-cancer potential were also the most cytotoxic type of tested NPs, whereas AuNPs spheres which appears to be the safest one had small anti-cancer potential.
机译:由于纳米技术的发展和金纳米颗粒(AuNPs)在医学的不同领域(尤其是在肿瘤学中)的越来越多的使用,必须更好地了解其潜在的细胞毒性以保护患者的安全。 AuNPs的形状和大小是其细胞毒性的重要调节剂。因此,我们研究了AuNPs棒(≈39nm长,18 nm宽),AuNPs星(≈215 nm)和AuNPs球体(≈6.3 nm)对人胎儿成骨细胞(hFOB 1.19),骨肉瘤(143B,MG63)的细胞毒性。 MTT和中性红吸收法检测胰腺管细胞(hTERT-HPNE)。此外,通过蛋白质印迹法测量了AuNPs对促凋亡蛋白(Bax)和抗凋亡蛋白(Bcl-2)水平的影响。通过透射电子显微镜(TEM)检查了纳米颗粒的细胞摄取和超微结构变化。在本研究中,我们已经证明AuNPs恒星对人类细胞最具细胞毒性。我们观察到癌细胞对AuNPs的细胞毒性作用更敏感。此外,AuNPs杆和AuNPs星导致骨肉瘤细胞中Bax表达增加,Bcl-2蛋白表达减少。我们发现AuNPs穿透细胞膜并引起超微结构变化。我们的结果清楚地证明了AuNPs的细胞毒性是形状依赖性的。具有最高抗癌潜力的AuNPs恒星也是测试的NPs最具细胞毒性的类型,而看似最安全的AuNPs球具有较小的抗癌潜力。

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