Institute of Life Science, School of Medicine, Swansea University, Swansea, UK.
J Microsc. 2010 Nov;240(2):111-21. doi: 10.1111/j.1365-2818.2010.03392.x.
Atomic force microscopy enables the simultaneous acquisition of high-resolution topographical and biophysical data allowing integrated analysis of cell surfaces during development and pathogenesis, and, critically, can link molecular and biophysical events. Here we used atomic force microscopy to analyse endometrial epithelial cells and neuronally differentiated P19 cells. Optimized reproducible sample preparation techniques enabled micro- and nanoscale multi-parameter analysis. Comparative analysis using atomic force microscopy and scanning electron microscopy demonstrated the utility of atomic force microscopy for examining tissue morphology, and its ability to generate data allowing differentiation of cells from different origins to be monitored. At low resolution atomic force microscopy produced topographic data complementary to scanning electron microscopy images, whilst at high resolution atomic force microscopy captured novel cell surface structural detail for both epithelial and neuronal cell types. Analysis of surface roughness provided biophysical data which enabled qualitative and quantitative differences between samples to be measured. This study provides an important optimization of sample preparation enabling more generalized atomic force microscopy utilization for cellular analysis required for advanced cell surface morphological studies.
原子力显微镜能够同时获取高分辨率形貌和生物物理数据,允许在细胞发育和发病过程中对细胞表面进行综合分析,并且能够将分子和生物物理事件联系起来。在这里,我们使用原子力显微镜分析了子宫内膜上皮细胞和神经分化的 P19 细胞。优化的可重复的样品制备技术使得能够进行微观和纳米多参数分析。使用原子力显微镜和扫描电子显微镜进行的比较分析证明了原子力显微镜在检查组织形态方面的实用性,以及它生成数据的能力,这些数据允许监测来自不同来源的细胞的分化。在低分辨率下,原子力显微镜产生的形貌数据与扫描电子显微镜图像互补,而在高分辨率下,原子力显微镜捕捉到了上皮细胞和神经元细胞类型的新型细胞表面结构细节。表面粗糙度分析提供了生物物理数据,使我们能够测量样品之间的定性和定量差异。这项研究提供了对样品制备的重要优化,使原子力显微镜能够更广泛地应用于细胞分析,从而满足高级细胞表面形态学研究的需要。