Shewring Jonathan R, Cankut Ahmet J, McKenzie Luke K, Crowston Bethany J, Botchway Stanley W, Weinstein Julia A, Edwards Elizabeth, Ward Michael D
Department of Chemistry, University of Sheffield , Sheffield S3 7HF, U.K.
Rutherford Appleton Laboratory, STFC Research Complex at Harwell, Harwell Science and Innovation Campus , Didcot OX11 0FA, U.K.
Inorg Chem. 2017 Dec 18;56(24):15259-15270. doi: 10.1021/acs.inorgchem.7b02633. Epub 2017 Dec 4.
We describe an Ir(III)-based small-molecule, multimodal probe for use in both light and electron microscopy. The direct correlation of data between light- and electron-microscopy-based imaging to investigate cellular processes at the ultrastructure level is a current challenge, requiring both dyes that must be brightly emissive for luminescence imaging and scatter electrons to give contrast for electron microscopy, at a single working concentration suitable for both methods. Here we describe the use of Ir(III) complexes as probes that provide excellent image contrast and quality for both luminescence and electron microscopy imaging, at the same working concentration. Significant contrast enhancement of cellular mitochondria was observed in transmission electron microscopy imaging, with and without the use of typical contrast agents. The specificity for cellular mitochondria was also confirmed with MitoTracker using confocal and 3D-structured illumination microscopy. These phosphorescent dyes are part of a very exclusive group of transition-metal complexes that enable imaging beyond the diffraction limit. Triplet excited-state phosphorescence was also utilized to probe the O concentration at the mitochondria in vitro, using lifetime mapping techniques.
我们描述了一种基于铱(III)的小分子多模态探针,可用于光学显微镜和电子显微镜。基于光学显微镜和电子显微镜成像的数据直接关联以在超微结构水平研究细胞过程是当前的一个挑战,这需要染料在单一适合两种方法的工作浓度下,既要在发光成像时具有明亮的发射,又要散射电子以在电子显微镜下产生对比度。在此,我们描述了使用铱(III)配合物作为探针,其在相同工作浓度下为发光和电子显微镜成像提供了出色的图像对比度和质量。在透射电子显微镜成像中,无论是否使用典型的造影剂,都观察到细胞线粒体的对比度显著增强。使用共聚焦和三维结构照明显微镜的MitoTracker也证实了对细胞线粒体的特异性。这些磷光染料是一组非常独特的过渡金属配合物的一部分,能够实现超越衍射极限的成像。还利用三重态激发态磷光,使用寿命映射技术在体外探测线粒体中的氧浓度。