首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Advanced molecular recognition of 3-nitro-L-tyrosine: The use of zwitterion embedded molecularly imprinted mesoporous organosilica with sub-nanomolar sensitivity
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Advanced molecular recognition of 3-nitro-L-tyrosine: The use of zwitterion embedded molecularly imprinted mesoporous organosilica with sub-nanomolar sensitivity

机译:3-硝基-1-酪氨酸的先进分子识别:使用枯草嵌入的分子印迹中孔有机型有机型亚纳米粗溶血性

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摘要

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 (EC50) values with respect to NT. The NTIMO-zQ probe presents an extremely low EC50 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).
机译:制造能够探测具有高精度的任何所选择的靶分子的最先进的系统是分子识别材料的前几目标。在本文中,我们开发了一种使用枯草嵌入的分子印迹介孔有机机的通用靶探针,以填补我们目前能力的差距。将石墨烯量子点包封作为信号换能器以制备荧光探针(NTIMO-ZQ),并通过加入3硝基-L-酪氨酸(NT)来分析浓度依赖性排放变化。 NTIMO-ZQ显示出前所未有的荧光猝灭程度,也表现出NT的亚载敏感性;证明自己是迄今为止报告的最敏感的NT探测。通过研究这种淬火行为的六样形拟合,可以定量分析选择性性能;并采用所得的测量来确定关于NT的有效浓度(EC50)值。与几个其他NT类似物相比,NTIMO-ZQ探针呈现出具有NT(9.7nm)的极低EC50。我们开发的探针既具有令人满意的恢复率(97-102%)可重复和可重复,而且它表现出适当的低检测限(0.0129nm)。

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