Morimoto Akihiro, Matsunaga Sachihiro, Kurihara Daisuke, Fukui Kiichi
Department of Biotechnology, Graduate School of Engineering, Osaka University, Suita, Osaka, Japan.
Micron. 2008 Jul;39(5):635-8. doi: 10.1016/j.micron.2007.05.001. Epub 2007 May 10.
The conventional polarized light imaging system can observe sub-microscopic molecular order non-destructively, quantitatively and without labeling or staining. Recently, a more sophisticated version, Abrio imaging system, than the conventional polarized light imaging system, was developed. This advanced polarized light imaging system has simplified the process of birefringent imaging, higher sensitivity and accuracy irrespective of sample orientation. By performing time-lapse observations using the advanced polarized light microscopy, we visualized mitotic spindles, especially kinetochore microtubules, of HeLa cells. Moreover, we successfully visualized the detailed structure of several filament bundles, which possibly are components of the contractile ring. Here, we report the potential of advanced polarized light imaging systems for imaging mitotic HeLa cells and the new insights obtained during this microscopic study.
传统的偏振光成像系统能够无损、定量且无需标记或染色地观察亚微观分子排列。最近,一种比传统偏振光成像系统更先进的版本——Abrio成像系统被开发出来。这种先进的偏振光成像系统简化了双折射成像过程,无论样品方向如何,都具有更高的灵敏度和准确性。通过使用先进的偏振光显微镜进行延时观察,我们可视化了HeLa细胞的有丝分裂纺锤体,特别是动粒微管。此外,我们成功地可视化了几个细丝束的详细结构,这些细丝束可能是收缩环的组成部分。在此,我们报告先进偏振光成像系统对HeLa细胞有丝分裂成像的潜力以及在此微观研究中获得的新见解。