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基于金纳米粒子杂化巯基-β-环糊精-Pb(II) 金属有机框架的载脂蛋白 A1 的新型三明治式阻抗免疫传感器

A novel sandwich impedimetric immunosensor for detection of apolipoprotein-A1 based on the gold nanoparticle-hybridized mercapto-β-cyclodextrin-Pb(II) metal-organic framework.

机构信息

Key Laboratory of Drug Quality Control and Pharmacovigilance, Ministry of Education, School of Pharmacy, China Pharmaceutical University, Nanjing, 211198, People's Republic of China.

Department of TCMs Pharmaceuticals, China Pharmaceutical University, Nanjing, 211198, People's Republic of China.

出版信息

Mikrochim Acta. 2022 Dec 20;190(1):33. doi: 10.1007/s00604-022-05618-6.

Abstract

A novel sandwich electrochemical impedimetric immunosensor was proposed to detect apolipoprotein-A1 (Apo-A1), a common biomarker for bladder cancer. The molybdenum disulfide/graphene quantum dot (MoS/GQD) nanocomposites were modified on the surface of a glassy carbon electrode (GCE) and used to immobilize the biotinylated antibody (Ab) with the help of chitosan and glutaraldehyde (denoted as BSA/Ab/CHIT/MoS/GQD/GCE). Pb(II)-thiol-β-cyclodextrin metal-organic framework (denoted as Pb-MOF) was synthesized with lead metal ions and thiol-β-cyclodextrin ligands by a one-pot solvothermal method, and then, gold nanoparticles were modified on the surface of Pb-MOF (Pb-MOF-AuNPs) by Au-S bond, which was used as signal label for the recombinant antibody (Ab). When the immunosensor of BSA/Ab/CHIT/MoS/GQD/GCE reacted with Apo-A1, Pb-MOF-AuNPs-Ab/BSA was connected to the electrode when immunoreaction occurred, and an immune sandwich structure was formed, which led to significantly increased charge transfer resistance of electrochemical probe for ferrocyanide (II)/(III) within the frequency range 10 ~ 10 Hz at 5 mV amplitude and the potential of 0.180 V (vs. SCE). Based on this principle, the quantitative detection of Apo-A1 was established. The relative change of electrochemical resistance and the logarithmic value of Apo-A1 concentration showed a linear relationship with a linear coefficient of 0.9989 in the range 1.00 pg mL and 1.00 μg mL with the limit of detection of 0.30 pg mL. The selectivity, repeatability, and other performance of the proposed immunosensor were also investigated. The immunosensor was successfully applied to the detection of real serum and urine samples with recovery in the range 96.4 ~ 109.1% (RSD < 3.8%), indicating that it could be helpful for the clinical diagnosis of bladder cancer.

摘要

一种新型夹心电化学阻抗免疫传感器被提出用于检测载脂蛋白-A1(Apo-A1),Apo-A1 是膀胱癌的常见生物标志物。二硫化钼/石墨烯量子点(MoS/GQD)纳米复合材料修饰在玻碳电极(GCE)表面,并在壳聚糖和戊二醛的帮助下固定生物素化抗体(Ab)(表示为 BSA/Ab/CHIT/MoS/GQD/GCE)。Pb(II)-巯基-β-环糊精金属有机骨架(表示为 Pb-MOF)通过一锅溶剂热法用金属铅离子和巯基-β-环糊精配体合成,然后,金纳米粒子通过 Au-S 键修饰在 Pb-MOF 表面(Pb-MOF-AuNPs),用作重组抗体(Ab)的信号标记。当 BSA/Ab/CHIT/MoS/GQD/GCE 免疫传感器与 Apo-A1 反应时,当免疫反应发生时,Pb-MOF-AuNPs-Ab/BSA 连接到电极上,形成免疫夹心结构,这导致在 5 mV 幅度和 0.180 V(相对于 SCE)的电势下,电化学探针对亚铁氰化物(II)/(III)的电荷转移电阻显著增加。基于这一原理,建立了 Apo-A1 的定量检测方法。电化学电阻的相对变化与 Apo-A1 浓度的对数值在 1.00 pg mL 和 1.00 μg mL 的范围内呈线性关系,线性系数为 0.9989,检出限为 0.30 pg mL。还研究了所提出的免疫传感器的选择性、重复性等性能。该免疫传感器成功应用于实际血清和尿液样品的检测,回收率在 96.4%~109.1%(RSD<3.8%)范围内,表明它有助于膀胱癌的临床诊断。

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