首页> 外文期刊>Microporous and mesoporous materials: The offical journal of the International Zeolite Association >Loading carboxyfluorescein into porous SiO2 spheres and UCNPs-cored porous SiO2 spheres: Emission turn-on sensing with a warning signal for tumor-biomarker 5-HIAA urine test
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Loading carboxyfluorescein into porous SiO2 spheres and UCNPs-cored porous SiO2 spheres: Emission turn-on sensing with a warning signal for tumor-biomarker 5-HIAA urine test

机译:将CarboxyFluorescein载入多孔SiO2球体和UCNPS-芯片的多孔SiO2球体:发射开启感测,用警告信号进行肿瘤 - 生物标志物5- Hiaa尿液试验

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摘要

In this paper, a sensing probe (denoted as CFE) for tumor-biomarker 5-hydroxyindoleacetic acid (5-HIAA) was firstly synthesized. Its sensing mechanism was confirmed as the recovery of fluorescein structure via an esterexchange reaction, accompanied with emission turn on effect towards 5-HIAA. To improve photostability and minimize self-quenching/aggregation of CFE molecules, they were loaded into silica based MCM-41 spheres and UCNPs-cored (up-conversion nanoparticles) MCM-41 spheres. Corresponding composite samples, denoted as CFE@MCM-41 and CFE@MCM-41@UCNPs, were carefully discussed to confirm their structure, including XRD, N-2 adsorption and desorption, SEM/TEM and TGA. The energy transfer from secondary excitation source UCNPs to probe CFE was confirmed by Forester radius calculation and emission lifetime comparison. Sensing performance of CFE@MCM-41 and CFE@MCM-41@UCNPs were finally discussed in detail. They showed emission turn on effect towards 5-HIAA with good selectivity. CFE@MCM-41 showed linear response, while CFE@MCM-41@UCNPs showed exponential response, resulting in a warning signal when analyte concentration was higher than a critical level. The reason for this exponential response was discussed and explained. Their practical sensing result for human urine test was compared to HLPC method and literature methods, which confirmed the promising result of CFE@MCM-41 and CFE@MCM-41@UCNPs.
机译:本文首先合成了对肿瘤生物标志物5-羟基戊酸(5-铪)的感测探针(表示为CFE)。通过eStexchange反应确认其传感机制作为荧光素结构的回收率,伴随着5-Hiaa的排放变为效果。为了提高光稳定性并最小化CFE分子的自猝灭/聚集,将它们加载到基于二氧化硅的MCM-41球体和UCNPS-芯(上转化纳米颗粒)MCM-41球体中。仔细讨论了相应的复合样品,表示为CFE @ MCM-41和CFE @ MCM-41 @ UCNP,以确认其结构,包括XRD,N-2吸附和解吸,SEM / TEM和TGA。通过粉末半径计算和发射寿命比较确认了来自二次激发源UCNP至探针CFE的能量转移。最终详细讨论了CFE @ MCM-41和CFE @ MCM-41 @ MCM-41 @ MCM-41的感应性能。他们向5-HIAA效果显示了排放效果,具有良好的选择性。 CFE @ MCM-41显示了线性响应,而CFE @ MCM-41 @ UCNP显示指数响应,当分析物浓度高于临界水平时导致警告信号。讨论和解释了这种指数响应的原因。将人类尿液测试的实际感测结果与HLPC方法和文献方法进行了比较,这证实了CFE @ MCM-41和CFE @ MCM-41 @ UCNP的有希望的结果。

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