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3-硝基-L-酪氨酸的高级分子识别:亚纳摩尔灵敏度的内带电嵌入分子印迹中孔有机硅的应用。

Advanced molecular recognition of 3-nitro-L-tyrosine: The use of zwitterion embedded molecularly imprinted mesoporous organosilica with sub-nanomolar sensitivity.

机构信息

Biosensor Group, Korea Institute of Science and Technology Europe, Campus E7-1, 66123, Saarbrücken, Germany.

出版信息

Biosens Bioelectron. 2020 Jul 15;160:112216. doi: 10.1016/j.bios.2020.112216. Epub 2020 Apr 18.

DOI:10.1016/j.bios.2020.112216
PMID:32339152
Abstract

Fabricating a state-of-the-art system capable of probing any chosen target molecule with a high degree of selectivity is the foremost objective of molecular recognition materials. In this paper, we developed a versatile target-probe utilizing zwitterion embedded molecularly imprinted mesoporous organosilica to fill the gap in our current capabilities. Graphene quantum dots were encapsulated as a signal transducer to prepare the fluorescent probe (NTIMO-zQ), and the concentration-dependent emission change was analyzed by adding 3-nitro-L-tyrosine (NT). The NTIMO-zQ showed an unprecedented degree of fluorescence quenching which also exhibited a sub-nanomolar sensitivity for NT; proving itself to be the most sensitive NT probe reported to date. By investigating the sigmoidal fitting of this quenching behavior, the selectivity performance can be quantitatively analyzed; and the resulting measurements are taken to determine the effective concentration (EC) values with respect to NT. The NTIMO-zQ probe presents an extremely low EC with NT (9.7 nM) compared to several other NT analogues. The probe we have developed is both reproducible and repeatable with a satisfactory recovery rate (97-102%), and moreover, it exhibits suitably low detection limit (0.0129 nM).

摘要

制造一种能够高度选择性地探测任何选定目标分子的最先进系统是分子识别材料的首要目标。在本文中,我们开发了一种多功能的靶标探针,利用嵌入两性离子的介孔有机硅来填补我们目前能力的空白。将石墨烯量子点作为信号转导剂封装,以制备荧光探针(NTIMO-zQ),并通过添加 3-硝基-L-酪氨酸(NT)分析浓度依赖性的发射变化。NTIMO-zQ 表现出前所未有的荧光猝灭程度,对 NT 也表现出亚纳摩尔级的灵敏度;证明它是迄今为止报道的最灵敏的 NT 探针。通过研究这种猝灭行为的 S 形拟合,可以对选择性性能进行定量分析;并根据 NT 来确定有效浓度(EC)值。与几种其他 NT 类似物相比,我们开发的 NTIMO-zQ 探针对 NT 的 EC 值非常低(9.7 nM)。该探针具有良好的重现性和重复性,回收率令人满意(97-102%),而且检测限也较低(0.0129 nM)。

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