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Quartz crystal microbalance biosensor for recombinant human interferon-β detection based on antisense peptide approach

机译:基于反义肽法的重组人β-干扰素检测用石英晶体微天平生物传感器

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Quartz crystal microbalance (QCM) biosensors for recombinant human interferon-β (rhIFN-β) were constructed by utilizing antisense peptides adhering to the QCM gold surfaces. Two antisense peptides, both corresponding to the N-terminal fragment 1–14 of rhIFN-β, were used in this study. Antisense peptide AS-1 was the original antisense peptide and AS-2 was the modified antisense peptide based on the antisense peptide degeneracy. Both antisense peptides were immobilized on the gold electrodes of piezoelectric crystals, respectively, via a self-assembling monolayer of 1,2-ethanedithiol. The binding affinity between rhIFN-β and each immobilized antisense peptide in solution was evaluated using a quartz crystal microbalance-flow injection analysis (QCM-FIA) system. The dissociation constant of rhIFN-β on the antisense peptide AS-1 and AS-2 biosensor was (1.89 ± 0.101) × 10-4 and (1.22 ± 0.0479) ×10-5 mol L-1, respectively. The results suggested that AS-2 had a higher binding affinity to rhIFN-β than AS-1. The detection for rhIFN-β using each biosensor was precise and reproducible. The linear response ranges of rhIFN-β binding to both biosensors were same with a concentration range of 0.12–0.96 mg mL-1. The results demonstrated the successful construction of highly selective QCM biosensors using antisense peptide approach, and also confirmed the feasibility of increasing antisense peptide binding affinity by appropriate sequence modification.
机译:利用粘附在QCM金表面的反义肽构建了用于重组人干扰素-β(rhIFN-β)的石英晶体微天平(QCM)生物传感器。在这项研究中使用了两种反义肽,均对应于rhIFN-β的N端片段1-14。反义肽AS-1是原始的反义肽,而AS-2是基于反义肽简并性的修饰反义肽。两种反义肽均通过1,2-乙二硫醇的自组装单层固定在压电晶体的金电极上。使用石英晶体微量天平-流动注射分析(QCM-FIA)系统评估rhIFN-β与溶液中每个固定的反义肽之间的结合亲和力。 rhIFN-β在反义肽AS-1和AS-2生物传感器上的解离常数分别为(1.89±0.101)×10-4和(1.22±0.0479)×10-5 mol L-1。结果表明,AS-2对rhIFN-β的结合亲和力高于AS-1。使用每个生物传感器对rhIFN-β的检测都是精确且可重复的。与两种生物传感器结合的rhIFN-β的线性响应范围相同,浓度范围为0.12-0.96 mg mL-1。结果证明了使用反义肽方法成功构建了高度选择性的QCM生物传感器,并且还证实了通过适当的序列修饰来增加反义肽结合亲和力的可行性。

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