Biological Efficacy of Ionizing Radiation Sources on 3D Organotypic Tissue Slices Assessed by Fluorescence Microscopy.

IF 1.5 4区 医学 Q3 PHARMACOLOGY & PHARMACY
Victoria Shestakova, Anna Smirnova, Anna Yakimova, Sergey Koryakin, Denis Baranovskii, Vyacheslav Saburov, Elena Yatsenko, Alexander Moiseev, Sergey Ivanov, Ekaterina Smirnova, Svetlana Belkina, Grigory Demyashkin, Lyudmila Komarova, Peter Shegay, Andrey Kaprin, Ilya Klabukov
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引用次数: 0

Abstract

Objective: Traditional cell-based radiobiological methods are inadequate for assessing the toxicity of ionizing radiation exposure in relation to the microstructure of the extracellular matrix. Organotypic tissue slices preserve the spatial organization observed in vivo, making the tissue easily accessible for visualization and staining. This study aims to explore the use of fluorescence microscopy of physiologically compatible 3D tissue cultures to assess the effects of ionizing radiation.

Methods: Organotypic tissue slices were obtained by vibratome, and their mechanical properties were studied. Slices were exposed by two ionizing radiation sources; electron beams (80 Gy and 4 Gy), and soft gamma irradiation (80 Gy and 4 Gy). Two tissue culture protocols were used: the standard (37°C), and hypothermic (30°C) conditions. A qualitative analysis of cell viability in organotypic tissue slices was performed using fluorescent dyes and standard laser confocal microscopy.

Results: Biological dosimetry is represented by differentially stained 200-µm thick organotypic tissue sections related to living and dead cells and cell metabolic activity.

Conclusion: Our results underscore the ability of fluorescence laser scanning confocal microscopy to rapidly assess the radiobiological effects of ionizing radiation in vitro on 3D organotypic tissue slices.

用荧光显微镜评估电离辐射源对三维有机组织切片的生物效应
目的:传统的基于细胞的放射生物学方法不足以评估电离辐射照射与细胞外基质微观结构有关的毒性。有机组织切片保留了在体内观察到的空间组织结构,使组织易于观察和染色。本研究旨在探索如何利用荧光显微镜观察生理兼容的三维组织培养物,以评估电离辐射的影响:方法:用振荡器获得有机组织切片,并研究其机械性能。切片受到两种电离辐射源的照射:电子束(80 Gy 和 4 Gy)和软伽马辐照(80 Gy 和 4 Gy)。使用了两种组织培养方案:标准(37°C)和低温(30°C)条件。使用荧光染料和标准激光共聚焦显微镜对有机组织切片中的细胞存活率进行了定性分析:结果:生物剂量测定体现在 200 微米厚的有机组织切片上,活细胞和死细胞以及细胞代谢活动受到不同程度的染色:我们的研究结果表明,荧光激光扫描共聚焦显微镜能够快速评估电离辐射对三维有机组织切片的体外放射生物学效应。
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来源期刊
Current radiopharmaceuticals
Current radiopharmaceuticals PHARMACOLOGY & PHARMACY-
CiteScore
3.20
自引率
4.30%
发文量
43
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