首页> 美国卫生研究院文献>Scientific Reports >Upconverting SrF2 nanoparticles doped with Yb3+/Ho3+ Yb3+/Er3+ and Yb3+/Tm3+ ions – optimisation of synthesis method structural spectroscopic and cytotoxicity studies
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Upconverting SrF2 nanoparticles doped with Yb3+/Ho3+ Yb3+/Er3+ and Yb3+/Tm3+ ions – optimisation of synthesis method structural spectroscopic and cytotoxicity studies

机译:上转换掺杂Yb3 + / Ho3 +Yb3 + / Er3 +和Yb3 + / Tm3 +离子的SrF2纳米颗粒–合成方法结构光谱和细胞毒性研究的优化

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摘要

For a number of years nanomaterials have been continuously devised and comprehensively investigated because of the growing demand for them and their multifarious applications, especially in medicine. This paper reports on the properties of SrF2 nanoparticles (NPs) for applications in biomedicine, showing effective ways of their synthesis and luminescence under near infrared radiation - upconversion. NPs doped with lanthanide, Ln3+ ions (where Ln = Yb, Ho, Er, Tm) were prepared by the hydrothermal method and subjected to comprehensive studies, from determination of their structure and morphology, revealing small, 15 nm structures, through spectroscopic properties, to cytotoxicity in vitro. The effects of such factors as the reaction time, type and amount of precipitating compounds and complexing agents on the properties of products were characterized. The cytotoxicity of the synthesized and functionalized NPs was investigated, using human fibroblast cell line (MSU-1.1). The synthesized structures may decrease cells’ proliferation in a dose-dependent manner in the measured concentration range (up to 100 µg/mL). However, the cells remain alive according to the fluorescent assay. Moreover, the treated cells were imaged using confocal laser scanning microscopy. Cellular uptake was confirmed by the presence of upconversion luminescence in the cells.
机译:多年来,由于对纳米材料及其日益广泛的需求(尤其是在医学领域)的需求不断增长,纳米材料已得到不断设计和全面研究。这篇论文报告了SrF2纳米粒子(NPs)在生物医学中的应用性能,显示了其在近红外辐射下合成和发光的有效方法-上转换。通过水热法制备了掺杂有镧系元素,Ln 3 + 离子的NPs(其中Ln = Yb,Ho,Er,Tm),并对其结构和形态进行了全面研究,发现小15纳米结构,通过光谱性质,对体外细胞毒性。表征了反应时间,沉淀化合物和络合剂的类型和数量等因素对产物性能的影响。使用人成纤维细胞系(MSU-1.1)研究了合成和功能化NP的细胞毒性。合成的结构可能在所测量的浓度范围(最高100μg/ mL)中以剂量依赖的方式降低细胞的增殖。然而,根据荧光测定,细胞保持存活。此外,使用共聚焦激光扫描显微镜对处理的细胞成像。细胞中上转换发光的存在证实了细胞摄取。

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