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直接定量测定单个人类细胞中的稀土掺杂二氧化钛纳米颗粒。

Direct quantification of rare earth doped titania nanoparticles in individual human cells.

机构信息

Wellcome Trust Biomedical Modelling and Analysis Centre, University Of Exeter, UK.

出版信息

Nanotechnology. 2016 Jul 15;27(28):285103. doi: 10.1088/0957-4484/27/28/285103. Epub 2016 Jun 3.

Abstract

There are many possible biomedical applications for titania nanoparticles (NPs) doped with rare earth elements (REEs), from dose enhancement and diagnostic imaging in radiotherapy, to biosensing. However, there are concerns that the NPs could disintegrate in the body thus releasing toxic REE ions to undesired locations. As a first step, we investigate how accurately the Ti/REE ratio from the NPs can be measured inside human cells. A quantitative analysis of whole, unsectioned, individual human cells was performed using proton microprobe elemental microscopy. This method is unique in being able to quantitatively analyse all the elements in an unsectioned individual cell with micron resolution, while also scanning large fields of view. We compared the Ti/REE signal inside cells to NPs that were outside the cells, non-specifically absorbed onto the polypropylene substrate. We show that the REE signal in individual cells co-localises with the titanium signal, indicating that the NPs have remained intact. Within the uncertainty of the measurement, there is no difference between the Ti/REE ratio inside and outside the cells. Interestingly, we also show that there is considerable variation in the uptake of the NPs from cell-to-cell, by a factor of more than 10. We conclude that the NPs enter the cells and remain intact. The large heterogeneity in NP concentrations from cell-to-cell should be considered if they are to be used therapeutically.

摘要

掺稀土元素的二氧化钛纳米颗粒(NPs)在医学领域有许多潜在的应用,从放射治疗中的剂量增强和诊断成像到生物传感。然而,人们担心 NPs 可能会在体内分解,从而将有毒的稀土离子释放到不需要的位置。作为第一步,我们研究了 NPs 内部的 Ti/REE 比在人体细胞内的测量精度。使用质子微探针元素显微镜对整个未经切片的单个人类细胞进行了定量分析。这种方法的独特之处在于能够以微米分辨率定量分析未经切片的单个细胞中的所有元素,同时还可以扫描大视场。我们将细胞内的 Ti/REE 信号与细胞外的 NPs 进行了比较,这些 NPs 是非特异性地吸附在聚丙烯基质上的。我们发现单个细胞内的 REE 信号与钛信号共定位,表明 NPs 保持完整。在测量的不确定度范围内,细胞内外的 Ti/REE 比值没有差异。有趣的是,我们还表明,细胞之间 NPs 的摄取存在很大差异,差异因子超过 10。我们得出结论,NPs 进入细胞并保持完整。如果要将它们用于治疗,应该考虑细胞间 NP 浓度的巨大异质性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e75f/5390944/9b6390b1e92c/nanoaa27adf1.jpg

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