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首页> 外文期刊>Spectrochimica acta, Part A. Molecular and biomolecular spectroscopy >Development of graphite carbon nitride based fluorescent immune sensor for detection of alpha fetoprotein
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Development of graphite carbon nitride based fluorescent immune sensor for detection of alpha fetoprotein

机译:基于石墨碳氮化物荧光免疫传感器检测的荧光免疫传感器的研制

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A novel fluorescent immunosensor for determination of alpha fetoprotein (AFP) in serum samples has been developed based on the nano graphite carbon nitride (g-C3N4) as fluorophore and immunomagnetic beads (MBs) as separation material. The bulk g-C3N4 was obtained by thermal polymerization of melamine, and then carboxylated and exfoliated to acquire the carboxylated nano g-C3N4 (c-n-g-C3N4), which has been characterized and the results showed that it had excellent fluorescent properties. The antibodies of AFP (Ab(1), Ab(2)) were conjugated to the MBs and the c-n-g-C3N4, respectively. In assay of AFP detection, the magnetic part of the immunosensor, MBs-Ab(1), would form the sandwich type complex with the signal part of the sensor, c-n-g-C3N4-Ab(2). The developed immunosensor could simplify the process of separation due to the MBs. The results illustrated that proposed approach held a good linearity between the fluorescence intensity of the sensor and the AFP concentration ranging from 5-600 ng/mL with the limit of detection as low as 0.43 ng/mL, and its spiking recoveries ranged from 98.2% to 105.9% with RSD from 2.1% to 3.5%. The fabricated fluorescent immunosensor possesses the merits of good sensitivity, excellent selectivity, high biocompatibility and low cost, and the results provide a novel clue to develop immunosensor for determination of the biomarkers in complex matrices. (C) 2018 Elsevier B.V. All rights reserved.
机译:基于含有含有荧光团和免疫磁珠(MBS)的纳米石墨碳氮化物(G-C3N4)开发了一种用于测定血清样品中的α胎儿(AFP)的新型荧光免疫传感器。通过三聚氰胺的热聚合来获得体积G-C3N4,然后羧化和剥离以获取羧化纳米G-C3N4(C-N-G-C3N4),其特征在于,结果表明它具有优异的荧光特性。 AFP(AB(1),AB(2))的抗体分别与MBS和C-N-G-C3N4缀合。在AFP检测的测定中,免疫传感器MBS-AB(1)的磁性部分将形成与传感器的信号部分C-N-G-C3N4-AB(2)形成夹心型复合物。发达的免疫传感器可以简化由于MBS的分离过程。所示结果表明,所提出的方法在传感器的荧光强度与5-600ng / ml的荧光强度之间保持良好的线性度,其检测限为低至0.43ng / ml,其尖刺回收率范围为98.2% 105.9%,RSD从2.1%到3.5%。制造的荧光免疫传感器具有良好敏感性,优异的选择性,高生物相容性和低成本的优点,结果提供了一种新的线索,用于开发用于测定复杂基质中的生物标志物的免疫传感器。 (c)2018年elestvier b.v.保留所有权利。

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