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Development of small molecule inhibitor-based fluorescent probes for highly specific super-resolution imaging

机译:小分子inhibitor-based的发展荧光探针非常具体超分辨率成像

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摘要

To ensure the ultimate high-quality imaging of super-resolution fluorescence microscopy with increasingly high resolution, it is significant to use small specific fluorescent probes. Compared with the common biological fluorescent labeling technology, because of small size, strong specificity, abundance and special binding sites, single-targeted small-molecule inhibitors (SMIs) can link with organic dyes to form small fluorescent probes for various biomolecules. Herein, to confirm the feasibility of the SMI-probes, epidermal growth factor (EGF) receptor (EGFR)-targeted tyrosine kinase inhibitor Gefitinib was selected for modification with the fluorescent dye to form Gefitinib-probe. Then, the labeling superiority of Gefitinib-probe was revealed by comparing the direct stochastic optical reconstruction microscopy (dSTORM) images of EGFR labeled with different probes. Additionally, a high co-localization of fluorescent points from Gefitinib-probe and EGF-probe labeling indicated a high specificity of Gefitinib-probe to EGFR. Finally, higher co-localization of EGFR and HER3 labeled with the probe pair containing Gefitinib-probe than with the antibody-probe pair suggested that Gefitinib-probe with a cytoplasmic binding site benefited dual-color imaging. These results indicate that the SMI-probes are able to serve as versatile labeling tools for high-quality super-resolution imaging.
机译:以确保最终的高质量的成像超分辨率荧光显微镜与越来越多的高分辨率,它是重要的使用小型特定的荧光探针。较常见的生物荧光标签技术,因为体积小,特异性强、丰富和特殊绑定网站,打小分子抑制剂(重度)可以与有机染料形成小为各种生物分子荧光探针。在此,以确认的可行性SMI-probes,表皮生长因子(EGF)有针对性的酪氨酸激酶受体(EGFR)抑制剂吉非替尼被选为修改与荧光染料Gefitinib-probe形式。然后,Gefitinib-probe的标签的优势比较了直接随机光学显微镜(dSTORM)重建图像表皮生长因子受体贴上不同的探针。此外,co-localization高从Gefitinib-probe和荧光点EGF-probe标签显示高特异性Gefitinib-probe EGFR。co-localization HER3 EGFR和标记的调查包含Gefitinib-probe而不是一对antibody-probe对建议Gefitinib-probe细胞质结合位点既成像中受益。表明SMI-probes能够担任通用标签高质量的工具超分辨率成像。

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