Park Jin-Sung, Lee Il-Buem, Moon Hyeon-Min, Joo Jong-Hyeon, Kim Kyoung-Hoon, Hong Seok-Cheol, Cho Minhaeng
Center for Molecular Spectroscopy and Dynamics , Institute for Basic Science , Seoul 02841 , Korea.
Department of Physics , Korea University , Seoul 02841 , Korea . Email:
Chem Sci. 2018 Feb 9;9(10):2690-2697. doi: 10.1039/c7sc04733a. eCollection 2018 Mar 14.
Despite recent remarkable advances in microscopic techniques, it still remains very challenging to directly observe the complex structure of cytoplasmic organelles in live cells without a fluorescent label. Here we report label-free and live-cell imaging of mammalian cell, , and yeast, using interferometric scattering microscopy, which reveals the underlying structures of a variety of cytoplasmic organelles as well as the underside structure of the cells. The contact areas of the cells attached onto a glass substrate, , focal adhesions and filopodia, are clearly discernible. We also found a variety of fringe-like features in the cytoplasmic area, which may reflect the folded structures of cytoplasmic organelles. We thus anticipate that the label-free interferometric scattering microscopy can be used as a powerful tool to shed interferometric light on structures and dynamics of various intracellular phenomena.
尽管近年来显微镜技术取得了显著进展,但在不使用荧光标记的情况下直接观察活细胞中细胞质细胞器的复杂结构仍然极具挑战性。在此,我们报告了使用干涉散射显微镜对哺乳动物细胞、植物细胞和酵母进行无标记活细胞成像,该技术揭示了各种细胞质细胞器的潜在结构以及细胞的底面结构。附着在玻璃基板上的细胞的接触区域,即粘着斑和丝状伪足,清晰可见。我们还在细胞质区域发现了各种条纹状特征,这可能反映了细胞质细胞器的折叠结构。因此,我们预计无标记干涉散射显微镜可作为一种强大的工具,为各种细胞内现象的结构和动力学提供干涉光。