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A reduced graphene oxide-Au based electrochemical biosensor for ultrasensitive detection of enzymatic activity of botulinum neurotoxin A

机译:还原型氧化石墨烯-金基电化学生物传感器,用于肉毒杆菌神经毒素A酶活性的超灵敏检测

摘要

Botulinum neurotoxin serotype A (BoNT/A) is a type of neurotoxin which is able to cause fatal paralytic illness botulism in a low dosage. Therefore, there is a great need to develop an ultrasensitive bioassay to detect its active state for early diagnostics and prevention. This paper presents a reduced graphene oxide (rGO)/Au electrode based electrochemical biosensor for ultrasensitive detection of BoNT serotype A light chain (BoNT-LcA) protease activity. The fabricated rGO/Au electrode provides a robust and biocompatible platform with enhanced electron transfer capability and large area for peptide immobilization. SNAP-25-GFP peptide substrate is firstly immobilized on rGO surface via pyrenebutyric acid (PA) linker. The addition of BoNT-LcA could specifically cut SNAP-25-GFP at the cleavage sites to release the cut section from the electrode surface. This enzymatic activity of BoNT-LcA on SNAP-25-GFP peptide substrate could be detected by monitoring the enhanced redox probe transfer rate by differential pulse voltammetry (DPV) with a linear detection range from 1 pg/mL to 1 ng/mL and the limit of detection (LOD) for BoNT-LcA is around 8.6 pg/mL. The specificity of this biosensor is demonstrated with BoNT-LcB and heat-treated BoNT-LcA. Moreover, the experiments for BoNT-LcA detection in milk samples demonstrate the feasibility of this biosensor in complex matrix.
机译:肉毒杆菌神经毒素血清型A(BoNT / A)是一种神经毒素,能够以低剂量引起致命性麻痹性肉毒中毒。因此,迫切需要开发一种超灵敏的生物测定法以检测其活性状态,以进行早期诊断和预防。本文提出了一种基于氧化石墨烯(rGO)/ Au电极的电化学生物传感器,用于超灵敏地检测BoNT血清A型轻链(BoNT-LcA)蛋白酶的活性。制成的rGO / Au电极提供了强大的生物相容性平台,具有增强的电子转移能力和大面积的肽固定化能力。 SNAP-25-GFP肽底物首先通过pyr丁酸(PA)接头固定在rGO表面。 BoNT-LcA的添加可以在切割位点特异性切割SNAP-25-GFP,以从电极表面释放切割的部分。 BoNT-LcA在SNAP-25-GFP肽底物上的这种酶活性可以通过用差分脉冲伏安法(DPV)监测线性范围从1 pg / mL到1 ng / mL的氧化还原探针转移速率的提高来检测。 BoNT-LcA的检出限(LOD)约为8.6 pg / mL。 BoNT-LcB和热处理的BoNT-LcA证明了这种生物传感器的特异性。此外,牛奶样品中BoNT-LcA检测的实验证明了这种生物传感器在复杂基质中的可行性。

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