School of Physical Science and Technology, Soochow University, Suzhou, Jiangsu, China.
Department of Pathology, The Second Affiliated Hospital of Soochow University, Suzhou, Jiangsu, China.
J Biophotonics. 2023 Dec;16(12):e202300027. doi: 10.1002/jbio.202300027. Epub 2023 Sep 8.
Recently, fluorescent covalent staining methods have been developed for visualization of anatomical structures in cells and tissues. Coupled with expansion microscopy, these stains revealed various ultrastructural details. However, the covalently stainable chemical groups have been limited to amines, carbohydrates, and thiols. Here, we developed procedures for covalently labeling tissues for carboxylate and phosphate groups, utilizing carbodiimide crosslinker chemistry. In porcine kidney tissues, the carboxylate and phosphate stain provides 1.8-4.8-fold higher signal intensity than those from the three existing stains. In cancer cells, such stain allows 2-8-fold more accurate identification of nucleoli than the amine stain. In expansion microscopy samples, such stain reveals a variety of sub-cellular structures in tissues when combined with the amine stain. Such stain also allows imaging of lipid-based structures in cultured cells. With these advantages, this new covalent staining method further expands the toolset for fluorescent visualization of histology.
最近,已经开发出用于在细胞和组织中可视化解剖结构的荧光共价染色方法。这些染色方法与扩展显微镜结合使用,可以揭示各种超微结构细节。然而,可共价染色的化学基团仅限于胺、碳水化合物和硫醇。在这里,我们开发了利用碳二亚胺交联化学将羧酸盐和磷酸盐基团共价标记到组织上的程序。在猪肾组织中,与三种现有染色剂相比,羧酸盐和磷酸盐染色提供了 1.8-4.8 倍的更高信号强度。在癌细胞中,与胺染色相比,这种染色可以更准确地识别 2-8 倍的核仁。在扩展显微镜样品中,当与胺染色结合使用时,这种染色可以揭示组织中的各种亚细胞结构。这种染色还可以对培养细胞中的基于脂质的结构进行成像。有了这些优势,这种新的共价染色方法进一步扩展了荧光组织学可视化的工具集。