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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 >Highly sensitive photoelectrochemical biosensor for kinase activity detection and inhibition based on the surface defect recognition and multiple signal amplification of metal-organic frameworks
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Highly sensitive photoelectrochemical biosensor for kinase activity detection and inhibition based on the surface defect recognition and multiple signal amplification of metal-organic frameworks

机译:基于表面缺陷识别的激酶活性检测和抑制高度敏感的光电化学生物传感器和金属有机框架的多个信号放大

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摘要

A turn-on photoelectrochemical (PEC) biosensor based on the surface defect recognition and multiple signal amplification of metal-organic frameworks (MOFs) was proposed for highly sensitive protein kinase activity analysis and inhibitor evaluation. In this strategy, based on the phosphorylation reaction in the presence of protein kinase A (PKA), the Zr-based metal-organic frameworks (UiO-66) accommodated with [Ru(bpy)(3)](2+) photoactive dyes in the pores were linked to the phosphorylated kemptide modified TiO2/1TO electrode through the chelation between the Zr4+ defects on the surface of UiO-66 and the phosphate groups in kemptide. Under visible light irradiation, the excited electrons from [Ru(bpy)(3)](2+) adsorbed in the pores of UiO-66 injected into the TiO2 conduction band to generate photocurrent, which could be utilized for protein kinase activities detection. The large surface area and high porosities of UiO-66 facilitated a large number of [Ru(bpy)(3)](2+) that increased the photocurrent significantly, and afforded a highly sensitive PEC analysis of kinase activity. The detection limit of the as-proposed PEC biosensor was 0.0049 U mL(-1) (S/N!=!3). The biosensor was also applied for quantitative kinase inhibitor evaluation and PKA activities detection in MCF-7 cell lysates. The developed visible-light PEC biosensor provides a simple detection procedure and a cost-effective manner for PKA activity assays, and shows great potential in clinical diagnosis and drug discoveries.
机译:提出了一种基于表面缺陷识别和多个信号放大的金属 - 有机骨架(MOF)的开启光电化学(PEC)生物传感器,用于高敏感的蛋白激酶活性分析和抑制剂评估。在该策略中,基于蛋白激酶A(PKA)存在的磷酸化反应,适用于[Ru(BPY)(3)](2+)光活性染料的Zr基金属 - 有机框架(UIO-66)在孔中通过UIO-66表面的Zr4 +缺陷与尿磷酸盐的缺陷之间的螯合,与磷酸化刺肽改性的TiO2 / 1连接到电极。在可见光照射下,从[Ru(BPY)(3)](2 +)中吸附在UIO-66的孔中的激发电子,所述UIO-66注入到TiO 2导航带中以产生光电流,其可用于蛋白激酶活性检测。 UIO-66的大表面积和高孔隙率促进了大量的[Ru(BPY)(3)](2+)显着增加了光电流,并提供了激酶活性的高度敏感的PEC分析。所提出的PEC生物传感器的检测限为0.0049u mL(-1)(S / N!=!3)。生物传感器也用于MCF-7细胞裂解物中的定量激酶抑制剂评估和PKA活性检测。开发的可见光PEC生物传感器提供了简单的检测程序和PKA活性测定的成本有效的方式,并且在临床诊断和药物发现中表现出巨大的潜力。

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