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Optical Methodology For Detecting Histologically Unapparent Nanoscale Consequences Of Genetic Alterations In Biological Cells

机译:用于检测生物细胞中遗传改变的组织学上不明显的纳米级后果的光学方法

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摘要

Recently, there has been a major thrust to understand biological processes at the nanoscale. Optical microscopy has been exceedingly useful in imaging cell microarchitecture. Characterization of cell organization at the nanoscale, however, has been stymied by the lack of practical means of cell analysis at these small scales. To address this need, we developed a microscopic spectroscopy technique, single-cell partial-wave spectroscopy (PWS), which provides insights into the statistical properties of the nanoscale architecture of biological cells beyond what conventional microscopy reveals. Coupled with the mesoscopic light transport theory, PWS quantifies the disorder strength of intracellular architecture. As an illustration of the potential of the technique, in the experiments with cell lines and an animal model of colon carcinogenesis we show that increase in the degree of disorder in cell nanoarchitecture parallels genetic events in the early stages of carcinogenesis in otherwise microscopically/histologically normal-appearing cells. These data indicate that this advance in single-cell optics represented by PWS may have significant biomedical applications.
机译:近来,已经有一个主要的方向来理解纳米级的生物过程。光学显微镜在细胞微结构成像中已经非常有用。然而,由于缺乏在这些小规模下进行细胞分析的实用手段,纳米级细胞组织的表征受到了阻碍。为了满足这一需求,我们开发了一种显微光谱技术,即单细胞部分波光谱法(PWS),该技术提供了超越常规显微镜所能揭示的生物细胞纳米级结构统计特性的见解。结合介观的光传输理论,PWS量化了细胞内结构的无序强度。为了说明这项技术的潜力,在用细胞系和结肠癌发生动物模型进行的实验中,我们表明,在微观/组织学正常的情况下,细胞纳米结构紊乱程度的增加与癌发生早期的遗传事件平行-出现的细胞。这些数据表明,以PWS为代表的单细胞光学技术的这一进步可能具有重要的生物医学应用。

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