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首页> 外文期刊>Nanoscale >Multifunctional nanoscale lanthanide metal-organic framework based ratiometric fluorescence paper microchip for visual dopamine assay
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Multifunctional nanoscale lanthanide metal-organic framework based ratiometric fluorescence paper microchip for visual dopamine assay

机译:多功能纳米镧系元素有机配合基于框架的比率荧光纸微芯片的视觉多巴胺的测定

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Dopamine (DA) plays a significant role in the human body and cerebral nervous system, and the accurate and rapid assay of DA is essential for the diagnosis of related diseases. Herein, we proposed a turn-on ratiometric fluorescent DA assay strategy by integrating a specific DA-resorcinol chemical reaction with a multifunctional lanthanide metal-organic framework (Ln-MOF). First, Eu-BTC (1,3,5-benzenetricarboxylic acid) was synthesized and further modified to obtain Cu@Eu-BTC, which simultaneously plays multiple roles such as fluorescence internal standard, nanoreactor, cooperative catalysis effect and color shift enhancement. The Cu@Eu-BTC dispersion-based method exhibits ultra-sensitive (limit of detection, LOD is 0.01 mu M) and wide-range linear response (0.04-30 mu M) to DA in real serum. More importantly, it has excellent selectivity for DA, even in the presence of epinephrine and norepinephrine analogs. Thus, this method realizes the accurate and precise quantification of DA in serum (recoveries: 98.1%-110.1%, relative standard deviation RSD < 4.6%). Next, Cu@Eu-BTC was prepared into paper microchip, which has good storage stability (RSD < 3.5%, n = 3) in four weeks and achieves point-of-care visual DA assay coupled with smartphone-assisted portable detection device. The MOF paper microchip-based method shows low sample consumption (30 mu L), high accuracy and precision for the quantification of DA in serum (recovery of 92.9%-106.2%, RSD < 5.3%), and gets the same assay results as the MOF dispersion-based method (relative error <= 6.83%). To our knowledge, this is the first time to propose the catalytic fluorescence turn-on detection strategy of DA based on a MOF paper microchip.
机译:多巴胺(DA)中扮演着重要的角色人体和大脑神经系统,准确、快速测定DA是至关重要的相关疾病的诊断。提出了一种刺激比率荧光哒试验通过集成一个特定的策略DA-resorcinol化学反应的多功能镧系元素有机配合框架(Ln-MOF)。(1、3、5-benzenetricarboxylic酸)是合成的并进一步修改,以获得Cu@Eu-BTC,如同时扮演多个角色nanoreactor荧光内标,合作催化效果和颜色转变增强。展品敏感(限制的方法检测、LOD 0.01μM)、宽领域线性响应(0.04 -30μM)在真正哒血清。选择性DA,甚至在的存在肾上腺素和去甲肾上腺素类似物。这种方法实现了准确和精确量化的DA血清(复苏:98.1% - -110.1%,相对标准偏差RSD <4.6%)。芯片,它具有良好的贮存稳定性(相对标准偏差< 3.5%, n = 3)在四个星期和实现医疗点视觉DA化验加上smartphone-assisted便携式检测设备。财政部microchip-based方法显示低样品消耗(30μL),精度高精确的量化DA在血清回收率(92.9% ~ -106.2%,RSD < 5.3%),并获得相同的化验结果是财政部dispersion-based方法(相对误差< =6.83%)。提出了催化荧光刺激检测策略的基于MOF的一篇论文微芯片。

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