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基于香豆素的荧光探针用于选择性靶向和成像哺乳动物细胞中的内质网。

Coumarin-based Fluorescent Probes for Selectively Targeting and Imaging the Endoplasmic Reticulum in Mammalian Cells.

机构信息

Department of Chemistry, Iowa State University, Ames, IA.

Department of Chemistry and Biochemistry, Ohio Northern University, Ada, OH.

出版信息

Photochem Photobiol. 2019 Mar;95(2):556-562. doi: 10.1111/php.12985. Epub 2018 Aug 20.

Abstract

Developing improved fluorescent probes for imaging the endoplasmic reticulum (ER) is necessary for structure-activity studies of this dynamic organelle. Two coumarin-based compounds with sulfonamide side groups were synthesized and characterized as ER-targeting probes. Their selectivity to target the ER in HeLa and GM07373 mammalian cells was shown with co-localization experiments using commercially available probes that localize in the ER, mitochondria, or lysozymes. The hydrophobicity of the coumarin-based probes was comparable to known probes that partition into the ER membrane. Their cytotoxicity in mammalian cells was low with IC50 values that range from 205 to 252 μm. The fluorescent quantum yields of the coumarin-based probes when excited with 400 nm light were 0.60, and they have a much narrower emission spectrum (from 435 to 525 nm in methanol) than that of the only commercially available ER probe that is exited with 400 nm light (ER-Tracker™ Blue-White DPX). Thus, the coumarin-based probes are more useful for multicolor imaging with yellow and red emitting fluorophores. In addition to the above benefits, ER labeling was achieved with the coumarin-based probes in both live cells and fixed cells, revealing their versatility for a wide range of cellular imaging applications.

摘要

开发用于内质网(ER)成像的改良荧光探针对于该动态细胞器的结构-活性研究是必要的。合成了两种带有磺酰胺侧基的香豆素基化合物,并将其表征为靶向 ER 的探针。通过使用定位于 ER、线粒体或溶酶体的商业上可用的探针进行共定位实验,证明了它们对 HeLa 和 GM07373 哺乳动物细胞中 ER 的选择性。基于香豆素的探针的疏水性与分配到 ER 膜中的已知探针相当。它们在哺乳动物细胞中的细胞毒性较低,IC50 值范围为 205 至 252 µm。当用 400nm 光激发时,基于香豆素的探针的荧光量子产率为 0.60,并且它们的发射光谱比仅有的一种用 400nm 光激发的商业 ER 探针(ER-Tracker™ Blue-White DPX)窄得多(在甲醇中从 435nm 到 525nm)。因此,基于香豆素的探针对于用黄色和红色发射荧光团进行多色成像更有用。除了上述优点之外,基于香豆素的探针在活细胞和固定细胞中都实现了 ER 标记,这表明它们在广泛的细胞成像应用中具有多功能性。

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