Video rate confocal laser scanning reflection microscopy in the investigation of normal and neoplastic living cell dynamics.

Scanning microscopy. Supplement Pub Date : 1996-01-01
P Vesely, A Boyde
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Abstract

The introduction of video rate confocal laser scanning microscopes (VRCLSM) used in reflection mode with high magnification, high aperture objective lenses and with further magnification by a zoom facility allowed the first detailed observations of the activity of living cytoplasm and offered a new tool for investigation of the structural transition from the living state to the specimen fixed for electron microscopy (EM). We used a Noran Odyssey VRCLSM in reflection (backscattered) mode. A greater degree of oversampling and more comfortable viewing of the liver or taped video image was achieved at zoom factor 5, giving a display monitor field width of 10 microns. A series of mesenchyme derived cell lines--from normal cells to sarcoma cells of different malignancy--was used to compare behaviour of the observed intracellular structures and results of fixation. We contrasted the dynamic behaviour of fine features in the cytoplasm of normal and neoplastic living cells and changes induced by various treatments. The tubulomembraneous 3D structure of cytoplasm in living cells is dynamic with motion observable at the new limits of resolution provided by VRCLSM. All organelles appear integrated into one functional compartment supporting the continuous 3D trafficking of small particles (vesicles). This integrated dynamic spatial network (IDSN) was found to be largest in neoplastic cells.

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视频速率共聚焦激光扫描反射显微镜在正常和肿瘤活细胞动力学研究中的应用。
采用高倍率反射模式的视频速率共聚焦激光扫描显微镜(VRCLSM)的引入,采用高孔径物镜,并通过变焦设备进一步放大,可以首次详细观察活细胞质的活性,并为研究从活状态到固定电镜(EM)标本的结构转变提供了新的工具。我们在反射(反向散射)模式下使用诺兰奥德赛VRCLSM。放大倍数为5时,实现了更大程度的过采样和更舒适的肝脏或录像图像观看,显示监视器的视场宽度为10微米。一系列间充质衍生细胞系——从正常细胞到不同恶性肿瘤的肉瘤细胞——被用来比较观察到的细胞内结构和固定结果的行为。我们对比了正常和肿瘤活细胞细胞质中细微特征的动态行为以及各种处理引起的变化。活细胞细胞质的管膜三维结构是动态的,在VRCLSM提供的新分辨率极限下可以观察到运动。所有的细胞器似乎整合在一个功能室中,支持小颗粒(囊泡)的连续3D运输。这种综合动态空间网络(IDSN)在肿瘤细胞中最大。
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