NT-proBNP免疫传感器碳电极电沉积金的优势及其在心力衰竭检测试剂盒开发中的应用

Pongsakorn Aiemderm, Kanchana Monkhang, Sureeporn Wongjard, Kiattawee Choowongkomon, Napachanok Mongkoldhumrongkul Swainson, Chaiya Prasittichai, Charoenkwan Kraiya
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引用次数: 0

摘要

准确测定血清n端前b型利钠肽(NT-proBNP)对心力衰竭(HF)的诊断具有重要意义。比较了氧化石墨烯(GO)或金(Au)修饰的碳丝网印刷电极(SPCEs)用于构建NT-proBNP免疫传感器。表达并纯化了NT-proBNP及其识别单元——与碱性磷酸酶融合的单链可变片段(scFv-AP)。在磷酸盐缓冲盐水(PBS)或人血清中加入乙醇胺(ETA)、空白和NT-proBNP后,测量scFv-AP固定电极的电流。在PBS和血清的所有测量中,SPCE/Au的平均基线斜率都低于SPCE/GO,表明SPCE/Au的准确性更高。PBS中SPCE/GO和SPCE/Au的峰值电流均无统计学差异;但与血清有显著性差异。应用血清空白后SPCE/GO峰值电流的显著降低意味着表面的非特异性吸收。SPCE/Au检测血清中NT-proBNP的峰值电流为300 pg/mL,显著高于SPCE/GO(三倍),提示使用SPCE/Au检测更高浓度NT-proBNP的可能性。scFv-AP与NT-proBNP的结合效率不依赖于电极,如相似的δ峰电流(Blank-Target)所示。因此,固定在SPCE/Au电极上的scFv-AP具有准确检测血清中NT-proBNP的良好潜力,可用于制作HF检测试剂盒。
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Advantages of Electro-deposited Gold on Carbon Electrodes for NT-proBNP Immunosensor for Development of Heart Failure Test Kit
Accurate measurement of the N-terminal pro B-type natriuretic peptide (NT-proBNP) in serum is important for the diagnosis of heart failure (HF). Carbon screen-printed electrodes (SPCEs) modified with graphene oxide (GO) or gold (Au) were compared for the construction of NT-proBNP immunosensors. NT-proBNP and its recognition unit, a single-chain variable fragment fused with alkaline phosphatase (scFv-AP), were expressed and purified. The currents of the electrodes immobilized with scFv-AP were measured after adding an ethanolamine (ETA), blank and NT-proBNP in either phosphate buffer saline (PBS) or human serum. SPCE/Au had lower mean baseline slopes than for SPCE/GO for all measurements, in both PBS and serum, indicating greater accuracy for SPCE/Au. None of the measurements in PBS had statistically different peak currents between SPCE/GO and SPCE/Au; however, there was a significant difference with the serum. The significant reduction of SPCE/GO peak currents after applying serum blank implied non-specific absorption on the surface. The peak current of 300 pg/mL of NT-proBNP in the serum measured on SPCE/Au was significantly higher (by a factor of three) than on SPCE/GO, suggesting the possibility of using SPCE/Au to detect NT-proBNP at higher concentrations. The binding efficiency of scFv-AP to NT-proBNP did not depend on the electrodes, as shown by the similar delta peak-currents (Blank-Target). Thus, immobilized scFv-AP on SPCE/Au electrodes had good potential to accurately detect NT-proBNP in serum, for use in the fabrication of an HF test kit.
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来源期刊
Applied Science and Engineering Progress
Applied Science and Engineering Progress Engineering-Engineering (all)
CiteScore
4.70
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0.00%
发文量
56
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