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首页> 外文期刊>Chemical science >Engineering a nanolab for the determination of lysosomal nitric oxide by the rational design of a pH-activatable fluorescent probe
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Engineering a nanolab for the determination of lysosomal nitric oxide by the rational design of a pH-activatable fluorescent probe

机译:通过合理设计可pH激活的荧光探针来设计一个纳米实验室,用于测定溶酶体一氧化氮

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摘要

Nitric oxide (NO) is often involved in many different physiological processes including the regulation of lysosomal functions. However, it remains a great challenge to explore the variations of NO levels in lysosomes, limiting the understanding behind its biological functions in cellular signaling pathways and various diseases. Herein, a pH-activatable fluorescent probe, Rhod-H-NO, was designed and synthesized for the determination of lysosomal NO, in which the activation response model is beneficial towards getting accurate biological information. To ensure that Rhod-H-NO can accumulate effectively and exist stably in lysosomes without interference and degradation from other active species, Rhod-H-NO was engineered into the nanopores of mesoporous silica nanoparticles (MSNs) with beta-cyclodextrin (beta-CD) as the gatekeeper to obtain a nanolab. The nanolab was successfully applied to detect lysosomal NO in living cells and in vivo with high time and spatial resolution. This nanolab could serve as an excellent molecular tool to exploit and elucidate the function of NO at sub-cellular levels.
机译:一氧化氮(NO)通常参与许多不同的生理过程,包括溶酶体功能的调节。然而,探索溶酶体中NO水平的变化仍然是一项巨大的挑战,这限制了其在细胞信号传导途径和各种疾病中的生物学功能背后的理解。本文中,设计并合成了可pH活化的荧光探针Rhod-H-NO,用于测定溶酶体NO,其中活化反应模型有利于获得准确的生物学信息。为了确保Rhod-H-NO可以有效地积累并稳定地存在于溶酶体中,而不会受到其他活性物质的干扰和降解,将Rhod-H-NO设计成带有β-环糊精(β-CD)的介孔二氧化硅纳米颗粒(MSN)的纳米孔)作为获得nanolab的看门人。纳诺实验室已成功应用于高时间和空间分辨率的活细胞和体内溶酶体NO检测。该纳米实验室可以作为开发和阐明NO在亚细胞水平上的功能的分子工具。

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