European Laboratory for Non-linear Spectroscopy, LENS, 50019 Sesto Fiorentino, Italy.
Department of Physics and Astronomy, University of Florence, 50019 Florence, Italy.
Int J Mol Sci. 2023 Apr 4;24(7):6747. doi: 10.3390/ijms24076747.
The analysis of histological alterations in all types of tissue is of primary importance in pathology for highly accurate and robust diagnosis. Recent advances in tissue clearing and fluorescence microscopy made the study of the anatomy of biological tissue possible in three dimensions. The combination of these techniques with classical hematoxylin and eosin (H&E) staining has led to the birth of three-dimensional (3D) histology. Here, we present an overview of the state-of-the-art methods, highlighting the optimal combinations of different clearing methods and advanced fluorescence microscopy techniques for the investigation of all types of biological tissues. We employed fluorescence nuclear and eosin Y staining that enabled us to obtain hematoxylin and eosin pseudo-coloring comparable with the gold standard H&E analysis. The computational reconstructions obtained with 3D optical imaging can be analyzed by a pathologist without any specific training in volumetric microscopy, paving the way for new biomedical applications in clinical pathology.
对所有类型组织的组织学改变进行分析在病理学中具有至关重要的作用,因为这对于高度准确和稳健的诊断至关重要。最近在组织透明化和荧光显微镜方面的进展使得在三维空间中研究生物组织的解剖结构成为可能。将这些技术与经典的苏木精和伊红(H&E)染色相结合,导致了三维(3D)组织学的诞生。在这里,我们对最先进的方法进行了概述,重点介绍了不同透明化方法和先进的荧光显微镜技术的最佳组合,以研究所有类型的生物组织。我们采用了荧光核和伊红 Y 染色,使我们能够获得与金标准 H&E 分析相当的苏木精和伊红伪彩色。通过 3D 光学成像获得的计算重建可以由没有体积显微镜特定培训的病理学家进行分析,为临床病理学中的新的生物医学应用铺平了道路。