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应用宽带介电谱(BDS)对多种细胞应激下的哺乳动物组织进行生物物理特性表征。

Applying Broadband Dielectric Spectroscopy (BDS) for the Biophysical Characterization of Mammalian Tissues under a Variety of Cellular Stresses.

作者信息

Souli Maria P, Klonos Panagiotis, Fragopoulou Adamantia F, Mavragani Ifigeneia V, Pateras Ioannis S, Kostomitsopoulos Nikolaos, Margaritis Lukas H, Zoumpoulis Pavlos, Kaklamanis Loukas, Kletsas Dimitris, Gorgoulis Vassilis G, Kyritsis Apostolos, Pissis Polycarpos, Georgakilas Alexandros G

机构信息

Physics Department, School of Applied Mathematical and Physical Sciences, National Technical University of Athens, Zografou Campus, 15780 Athens, Greece.

Department of Cell Biology and Biophysics, Faculty of Biology, University of Athens, 15701 Athens, Greece.

出版信息

Int J Mol Sci. 2017 Apr 15;18(4):838. doi: 10.3390/ijms18040838.

Abstract

The dielectric properties of biological tissues can contribute non-invasively to a better characterization and understanding of the structural properties and physiology of living organisms. The question we asked, is whether these induced changes are effected by an endogenous or exogenous cellular stress, and can they be detected non-invasively in the form of a dielectric response, e.g., an AC conductivity switch in the broadband frequency spectrum. This study constitutes the first methodological approach for the detection of environmental stress-induced damage in mammalian tissues by the means of broadband dielectric spectroscopy (BDS) at the frequencies of 1-10⁶ Hz. Firstly, we used non-ionizing (NIR) and ionizing radiation (IR) as a typical environmental stress. Specifically, rats were exposed to either digital enhanced cordless telecommunication (DECT) radio frequency electromagnetic radiation or to γ-radiation, respectively. The other type of stress, characterized usually by high genomic instability, was the pathophysiological state of human cancer (lung and prostate). Analyzing the results of isothermal dielectric measurements provided information on the tissues' water fraction. In most cases, our methodology proved sufficient in detecting structural changes, especially in the case of IR and malignancy. Useful specific dielectric response patterns are detected and correlated with each type of stress. Our results point towards the development of a dielectric-based methodology for better understanding and, in a relatively invasive way, the biological and structural changes effected by radiation and developing lung or prostate cancer often associated with genomic instability.

摘要

生物组织的介电特性可以非侵入性地有助于更好地表征和理解生物体的结构特性和生理学。我们提出的问题是,这些诱导变化是由内源性还是外源性细胞应激引起的,以及它们是否可以以介电响应的形式非侵入性地检测到,例如宽带频谱中的交流电导率切换。本研究构成了通过1-10⁶Hz频率的宽带介电谱(BDS)检测哺乳动物组织中环境应激诱导损伤的第一种方法。首先,我们使用非电离(NIR)和电离辐射(IR)作为典型的环境应激。具体而言,大鼠分别暴露于数字增强无绳通信(DECT)射频电磁辐射或γ辐射。另一种通常以高基因组不稳定性为特征的应激类型是人类癌症(肺癌和前列腺癌)的病理生理状态。分析等温介电测量结果提供了有关组织水分含量的信息。在大多数情况下,我们的方法被证明足以检测结构变化,特别是在IR和恶性肿瘤的情况下。检测到有用的特定介电响应模式并将其与每种应激类型相关联。我们的结果表明,开发一种基于介电的方法,以更好地理解以及以相对侵入性的方式理解由辐射以及发展通常与基因组不稳定性相关的肺癌或前列腺癌所引起的生物学和结构变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9908/5412422/e9a0c0cb877b/ijms-18-00838-g001.jpg

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