Efimov Anton E, Tonevitsky Alexander G, Dittrich Maria, Matsko Nadezda B
NT-MDT Co., Moscow, Russia.
J Microsc. 2007 Jun;226(Pt 3):207-17. doi: 10.1111/j.1365-2818.2007.01773.x.
A new device (NTEGRA Tomo) that is based on the integration of the scanning probe microscope (SPM) (NT-MDT NTEGRA SPM) and the Ultramicrotome (Leica UC6NT) is presented. This integration enables the direct monitoring of a block face surface immediately following each sectioning cycle of ultramicrotome sectioning procedure. Consequently, this device can be applied for a serial section tomography of the wide range of biological and polymer materials. The automation of the sectioning/scanning cycle allows one to acquire up to 10 consecutive sectioned layer images per hour. It also permits to build a 3-D nanotomography image reconstructed from several tens of layer images within one measurement session. The thickness of the layers can be varied from 20 to 2000 nm, and can be controlled directly by its interference colour in water. Additionally, the NTEGRA Tomo with its nanometer resolution is a valid instrument narrowing and highlighting an area of special interest within volume of the sample. For embedded biological objects the ultimate resolution of SPM mostly depends on the quality of macromolecular preservation of the biomaterial during sample preparation procedure. For most polymer materials it is comparable to transmission electron microscopy (TEM). The NTEGRA Tomo can routinely collect complementary AFM and TEM images. The block face of biological or polymer sample is investigated by AFM, whereas the last ultrathin section is analyzed with TEM after a staining procedure. Using the combination of both of these ultrastructural methods for the analysis of the same particular organelle or polymer constituent leads to a breakthrough in AFM/TEM image interpretation. Finally, new complementary aspects of the object's ultrastructure can be revealed.
本文介绍了一种新型设备(NTEGRA Tomo),它是基于扫描探针显微镜(SPM)(NT-MDT NTEGRA SPM)与超薄切片机(徕卡UC6NT)集成而成。这种集成使得在超薄切片机切片程序的每个切片周期之后,能够立即直接监测块面表面。因此,该设备可应用于对多种生物和聚合物材料进行连续切片断层扫描。切片/扫描周期的自动化使得每小时能够获取多达10个连续的切片层图像。它还允许在一次测量过程中,根据几十层图像重建三维纳米断层扫描图像。这些层的厚度可以在20至2000纳米之间变化,并且可以通过其在水中的干涉颜色直接控制。此外,具有纳米分辨率的NTEGRA Tomo是一种有效的仪器,可在样品体积内缩小并突出显示感兴趣的特定区域。对于包埋的生物物体,SPM的最终分辨率主要取决于样品制备过程中生物材料大分子保存的质量。对于大多数聚合物材料,其分辨率与透射电子显微镜(TEM)相当。NTEGRA Tomo可以常规收集互补的原子力显微镜(AFM)和TEM图像。生物或聚合物样品的块面通过AFM进行研究,而最后一个超薄切片在染色后用TEM进行分析。将这两种超微结构方法结合用于分析同一特定细胞器或聚合物成分,在AFM/TEM图像解释方面取得了突破。最后,可以揭示物体超微结构的新的互补方面。