Selection of DNA Aptamers Against Parathyroid Hormone for Electrochemical Impedimetric Biosensor System Development

IF 2.7 4区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Biotechnology and applied biochemistry Pub Date : 2025-03-19 DOI:10.1002/bab.2745
Reza Didarian, Saharnaz Bargh, Almina Gülerman, Veli Cengiz Özalp, Özcan Erel, Nimet Yildirim-Tirgil
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Abstract

This work presents the pioneering development of an aptamer-based electrochemical biosensor for real-time monitoring of parathyroid hormone (PTH) levels, with a focus on intraoperative assessment during parathyroid surgery. It introduces, for the first time, the selection and characterization of aptamers targeting distinct segments of the PTH peptide. The study demonstrates the feasibility and efficacy of the biosensing platform through a precisely designed experimental framework, including SELEX-based aptamer selection, aptamer–peptide interaction analysis, and biosensor fabrication. The SELEX process yields aptamers with notable binding affinities to different fragments of PTH, with the PTH (53–84) aptamer showing particularly sensitive binding to the hormone's C terminus, allowing for precise PTH analysis. Electrochemical characterization reveals significant changes in electrochemical impedance spectroscopy (EIS) signals upon exposure to varying PTH concentrations, highlighting the sensor's sensitivity and selectivity. The increase in charge transfer resistance (Rct) values with rising PTH concentrations underscores the biosensor's capability to detect PTH-induced structural changes, validating its potential for accurate measurement. The biosensor shows remarkable selectivity in the presence of common interferents in serum samples, ensuring precise PTH detection. Stability assessments over a 45-day storage period demonstrate the biosensor's robustness and long-term reliability, affirming its practical suitability. In summary, the developed aptamer-based biosensor represents a promising tool for sensitive and selective PTH detection, with potential applications in biomedical research and clinical diagnostics, particularly for intraoperative PTH analysis during parathyroidectomy. Continued research and optimization efforts hold promise for enhancing its performance and expanding its utility in diverse healthcare settings.

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抗甲状旁腺激素DNA适体的选择及其电化学阻抗生物传感器系统的开发。
这项工作提出了一种基于适配体的电化学生物传感器的开创性发展,用于实时监测甲状旁腺激素(PTH)水平,重点是甲状旁腺手术期间的术中评估。它首次介绍了针对PTH肽不同片段的适体的选择和表征。该研究通过精确设计的实验框架,包括基于selex的适配体选择,适配体-肽相互作用分析和生物传感器制造,证明了生物传感平台的可行性和有效性。SELEX过程产生的适体与PTH的不同片段具有显著的结合亲和力,其中PTH(53-84)适体与激素的C端结合特别敏感,允许精确的PTH分析。电化学表征揭示了暴露于不同PTH浓度时电化学阻抗谱(EIS)信号的显著变化,突出了传感器的灵敏度和选择性。随着PTH浓度的升高,电荷转移电阻(Rct)值的增加强调了生物传感器检测PTH引起的结构变化的能力,验证了其精确测量的潜力。该生物传感器在血清样品中常见干扰物的存在下显示出显著的选择性,确保精确的甲状旁腺激素检测。45天存储期的稳定性评估证明了生物传感器的鲁棒性和长期可靠性,确认了其实际适用性。总之,所开发的基于适配体的生物传感器代表了一种有前景的敏感和选择性PTH检测工具,在生物医学研究和临床诊断中具有潜在的应用,特别是在甲状旁腺切除术中术中PTH分析。持续的研究和优化工作有望提高其性能并扩大其在各种医疗保健环境中的效用。
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来源期刊
Biotechnology and applied biochemistry
Biotechnology and applied biochemistry 工程技术-生化与分子生物学
CiteScore
6.00
自引率
7.10%
发文量
117
审稿时长
3 months
期刊介绍: Published since 1979, Biotechnology and Applied Biochemistry is dedicated to the rapid publication of high quality, significant research at the interface between life sciences and their technological exploitation. The Editors will consider papers for publication based on their novelty and impact as well as their contribution to the advancement of medical biotechnology and industrial biotechnology, covering cutting-edge research in synthetic biology, systems biology, metabolic engineering, bioengineering, biomaterials, biosensing, and nano-biotechnology.
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