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Development and characterization of a scintillating cell imaging dish for radioluminescence microscopy

机译:闪闪发光显微镜闪烁细胞成像盘的发展与表征

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摘要

Radioluminescence microscopy is an emerging modality that can be used to image radionuclide probes with micron-scale resolution. This technique is particularly useful as a way to probe the metabolic behavior of single cells and to screen and characterize radiopharmaceuticals, but the quality of the images is critically dependent on the scintillator material used to image the cells. In this paper, we detail the development of a microscopy dish made of a thin-film scintillating material, Lu2O3:Eu, that could be used as the blueprint for a future consumable product. After developing a simple quality control method based on long-lived alpha and beta sources, we characterize the radioluminescence properties of various thin-film scintillator samples. We find consistent performance for most samples, but also identify a few samples that do not meet the specifications, thus stressing the need for routine quality control prior to biological experiments. In addition, we test and quantify the transparency of the material, and demonstrate that transparency correlates with thickness. Finally, we evaluate the biocompatibility of the material and show that the microscopy dish can produce radioluminescent images of live single cells.
机译:辐射发光显微镜是一种新兴的模态,可以用于图像的放射性核素与探针的微米级的分辨率。该技术是作为一种方法来探测单个细胞和屏幕和特征分析放射性药物代谢行为是特别有用的,但图像的质量主要取决于用于成像单元中的闪烁体材料。在本文中,我们详细地薄膜闪烁材料,Lu 2 O 3的显微镜培养皿的发展:Eu的,可以用来作为蓝本未来消费产品。开发基于长寿命的α和β源的简单质量控制方法之后,我们表征各种薄膜闪烁体样品的辐射发光特性。我们发现大多数样品一致的性能,而且之前的生物实验鉴定不符合规格的几样,从而强调了常规质量控制的需要。此外,我们测试并量化的材料的透明性,并证明与厚度透明度相关因素。最后,我们评估材料的生物相容性和表明显微镜菜能产生活的单细胞的辐射发光图像。

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