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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >One-pot doping platinum porphyrin recognition centers in Zr-based MOFs for ratiometric luminescent monitoring of nitric oxide in living cells
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One-pot doping platinum porphyrin recognition centers in Zr-based MOFs for ratiometric luminescent monitoring of nitric oxide in living cells

机译:Zr基MOF的一锅掺杂铂卟啉识别中心,用于活细胞一氧化氮的大率发光监测

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摘要

A new kind of nanoscale MOFs probe for nitric oxide (NO) sensing has been successfully constructed by a one-pot strategy, in which the chemically stable UiO-66 crystal structure was achieved using platinum meso-tetra(4-carboxyphenyl)porphyrin (Pt-TCPP), 1,1,2,2-Tetra(4-carboxylphenyl)ethylene (H4TCPE) and 1,4-dicarboxybenzene (BDC) as co-linkers (Pt-TCPP/H4TCPE@UiO-66). Pt-TCPP was verified to serve as a signal reporter in NO sensing fields for the first time while H4TCPE worked as a luminescence reference to build a ratiometric sensor. The integration of luminescent dyes in nanoscale MOFs effectively avoided their aggregation-caused quenching effect and poor aqueous dispersibility to rationalize NO detection in the aqueous phase. The obtained Pt-TCPP/H4TCPE@UiO-66 nanoparticles (NPs) exhibited an excellent sensing property toward NO with an ultrahigh linear correlation of the Stern-Volmer equation and a rapid response time as short as 2 min. Moreover, the elaborated sensor could work under a wide pH window (7.4, 5.6 and 0) and the limit of detection (LOD) reached as low as 0.1420 mu g mL(-1). The specificity of the obtained Pt-TCPP/H4TCPE@UiO-66 NPs toward NO sensing was scarcely affected by other possibly coexistent species in biological system. The in vitro monitoring for NO in living cells was also testified with these Pt-TCPP/H4TCPE@UiO-66 NPs.
机译:一种新的纳米级MOFS探针(NO)感测已通过单罐策略成功构建,其中使用铂Meso-Tetra(4-羧基苯基)卟啉(PT)实现了化学稳定的UIO-66晶体结构(PT -TCPP),1,1,2,2-四(4-羧基)乙烯(H4TCPE)和1,4-二羧苯(BDC)作为副接头(PT-TCPP / H4TCPE @ UIO-66)。验证PT-TCPP作为第一次感测字段的信号报告器,而H4TCPE作为发光参考以构建比例传感器。纳米级MOF中的发光染料的整合有效地避免了它们的聚集导致的淬火效果和差的水分散性,以在水相中进行检测。获得的PT-TCPP / H4TCPE @ UIO-66纳米颗粒(NPS)表现出优异的传感性能,旨在具有短至2分钟的船尾波动方程的超高线性相关性和快速响应时间。此外,阐述的传感器可以在宽pH窗口(7.4,5.6和0)下工作,并且检测极限(LOD)达到低至0.1420μgmm(-1)。所得PT-TCPP / H4TCPE @ UIO-66 NPS对无感测的特异性几乎受到生物系统中其他可能共存的影响。用这些PT-TCPP / H4TCPE @ UIO-66 NPS,还证明了在活细胞中的体外监测。

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