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Design strategy for germanium-rhodamine based pH-activatable near-infrared fluorescence probes suitable for biological applications

机译:基于锗-rhodamine的PH激活近红外荧光探针的设计策略适用于生物应用

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摘要

Fluorescence probes that can detect pH are useful tools for biological research and clinical diagnosis. Here we report pH-activatable near-infrared fluorescence probes, based on hydroxymethyl germanium-rhodamine (HMGeR), that are suitable for a range of biological applications. The pKa, the ratio of the fluorescent form in an acidic environment, and the absorption/emission wavelengths can all be conveniently optimized. The most promising probe, 2-HM IGeR, offers significant advantages over currently available near-infrared pH probes, notably high quantum efficiency, appropriate pKa value for biological applications, and high photostability. Further, our molecular design strategy allows easy conjugation of the probes to biomolecules without loss of functionality. We illustrate the value of this strategy by developing probe-Herceptin® and probe-avidin conjugates to visualize pH change in cellular vesicles during endocytosis, and to visualize tumors in a mouse model, respectively. We believe 2-HM IGeR is currently among the best-in-class pH-activatable near-infrared probes for biological and medical research. Near-infrared fluorescence probes that respond to pH are effective tools to analyse pH-driven biological processes but share common limitations. Here the authors report a germanium-rhodamine based near-infrared probe with appropriate pKa value for biological applications and improved photostabillity and quantum yield.
机译:可以检测pH值的荧光探针是生物学研究和临床诊断的有用工具。在这里,我们报告基于羟甲基锗 - 罗丹明(HMGER)的pH激活的近红外荧光探针,其适用于一系列生物应用。 PKA,氟荧光形式在酸性环境中的比例以及吸收/发射波长的比例都可以方便地优化。最有前途的探头,2-HM艾格,与目前可用的近红外pH探头相比,显着高的量子效率,适当的生物应用的适当PKA值,以及高光稳定性。此外,我们的分子设计策略可以轻松地将探针与生物分子缀合而不会损失功能。我们通过开发探针-Herceptin®和探针 - 抗生物素蛋白缀合物来描述该策略以在内吞作用中的观察细胞囊泡中的pH变化,并分别在小鼠模型中可视化肿瘤。我们认为,2-HM艾格目前是用于生物和医学研究的最佳pH激活的近红外探头之一。响应pH的近红外荧光探针是分析pH驱动的生物过程但享有常识的有效工具。此处提交人报告了基于锗-rhodamine的近红外探针,具有适当的PKA值的生物应用,并改善了光杆菌和量子产量。

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