[开发具有出色细胞内保留能力的光学探针]。

Minoru Kawatani, Mako Kamiya, Yasuteru Urano
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引用次数: 0

摘要

基于小分子的可活化荧光探针能以高灵敏度检测特定酶的活性,可观察标记基因的表达位点和酶高表达的癌症。然而,酶催化的荧光水解产物很容易从反应部位泄漏和扩散,因此很难进行长期跟踪和免疫组化分析,因为这需要清洗/固定程序。我们的研究小组专注于醌甲醚化学,开发了一系列可活化的荧光探针,这些探针在与酶反应后会转化为醌甲醚或偶氮醌甲醚中间体,然后与细胞内的亲核物(如蛋白质和谷胱甘肽)发生反应,从而保留在细胞内并显著增加荧光。基于这种分子设计,我们开发出了针对 β-半乳糖苷酶和 γ-谷氨酰转肽酶的不同颜色的荧光探针。我们还开发了光功能探针,如可激活的光敏剂和笼状荧光团。这些探针可抑制水解产物从靶细胞中渗出,从而高选择性地观察或杀死表达靶酶的细胞,而且由于即使在洗涤和固定后也能获得高耐受性的荧光信号,因此可以结合免疫染色进行荧光成像。
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[Development of optical probes with excellent intracellular retention].

Small-molecule based activatable fluorescence probes for detecting specific enzyme activity with high sensitivity can visualize the expression site of marker genes and cancers where the enzyme is highly expressed. However, the enzyme-catalyzed fluorescent hydrolysis product easily leaks out and diffuses from the reaction site, making it difficult to perform long-term tracking and immunohistochemical analysis which needs washing/fixation procedure. Our group have focused on quinone methide chemistry and developed series of activatable fluorescence probes with excellent intracellular retention that are converted to quinone-methide or aza-quinone-methide intermediates upon reaction with enzymes, which are then react with intracellular nucleophiles such as proteins and glutathione to be retained in cells and to exhibit significant increase in fluorescence. Based on this molecular design, we have developed fluorescence probes targeting β-galactosidase and γ-glutamyltranspeptidase with different colors. We also developed photo-functional probes such as activatable photosensitizers and caged fluorophores. These probes can visualize or kill target enzyme-expressing cells with high selectivity by suppressing the leakage of hydrolysis products from target cells, and fluorescence imaging in combination with immunostaining was possible due to the high tolerance of the obtained fluorescence signal even after washing and fixation.

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来源期刊
Folia Pharmacologica Japonica
Folia Pharmacologica Japonica Pharmacology, Toxicology and Pharmaceutics-Pharmacology
CiteScore
0.40
自引率
0.00%
发文量
132
期刊最新文献
[Deep brain imaging by using GRIN lens].
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