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发展和评估基于肽的 QCM 生物传感器在 VOCs 分析应用中的再生方法。

Development and Assessment of Regeneration Methods for Peptide-Based QCM Biosensors in VOCs Analysis Applications.

机构信息

Department of Inorganic Chemistry, Faculty of Pharmacy, Medical University of Gdańsk, Hallera 107, 80-416 Gdansk, Poland.

Department of Process Engineering and Chemical Technology, Chemical Faculty, Gdańsk University of Technology, Gabriela Narutowicza 11/12, 80-233 Gdansk, Poland.

出版信息

Biosensors (Basel). 2022 May 7;12(5):309. doi: 10.3390/bios12050309.

Abstract

Cleaning a quartz crystal microbalance (QCM) plays a crucial role in the regeneration of its biosensors for reuse. Imprecise removal of a receptor layer from a transducer's surface can lead to unsteady operation during measurements. This article compares three approaches to regeneration of the piezoelectric transducers using the electrochemical, oxygen plasma and Piranha solution methods. Optimization of the cleaning method allowed for evaluation of the influence of cleaning on the surface of regenerated biosensors. The effectiveness of cleaning the QCM transducers with a receptor layer in the form of a peptide with the KLLFDSLTDLKKKMSEC-NH sequence was described. Preliminary cleaning was tested for new electrodes to check the potential impact of the cleaning on deposition and the transducer's operation parameters. The effectiveness of the cleaning was assessed via the measurement of a resonant frequency of the QCM transducers. Based on changes in the resonant frequency and the Sauerbrey equation, it was possible to evaluate the changes in mass adsorption on the transducer's surface. Moreover, the morphology of the QCM transducer's surface subjected to the selected cleaning techniques was presented with AFM imaging. The presented results confirm that each method is suitable for peptide-based biosensors cleaning. However, the most invasive seems to be the Piranha method, with the greatest decrease in performance after regeneration cycles (25% after three cycles). The presented techniques were evaluated for their efficiency with respect to a selected volatile compound, which in the future should allow reuse of the biosensors in particular applications, contributing to cost reduction and extension of the sensors' lifetime.

摘要

清洁石英晶体微天平 (QCM) 在其生物传感器的再生中起着至关重要的作用,以便重复使用。如果不能精确地从换能器表面去除受体层,可能会导致测量过程中不稳定。本文比较了使用电化学、氧等离子体和 Piranha 溶液三种方法对压电换能器进行再生的效果。通过优化清洗方法,可以评估清洗对再生生物传感器表面的影响。本文描述了用具有 KLLFDSLTDLKKKMSEC-NH 序列的肽形式的受体层清洁 QCM 换能器的效果。初步清洁测试了新电极,以检查清洗对沉积和换能器操作参数的潜在影响。通过测量 QCM 换能器的谐振频率来评估清洗的效果。基于谐振频率和 Sauerbrey 方程的变化,可以评估在换能器表面上的质量吸附变化。此外,还通过 AFM 成像呈现了经过选定清洗技术处理的 QCM 换能器表面的形貌。所呈现的结果证实,每种方法都适用于基于肽的生物传感器的清洁。然而,最具侵入性的似乎是 Piranha 方法,再生循环后性能下降最大(三个循环后下降 25%)。评估了所选挥发性化合物的效率,这将有助于在特定应用中重复使用生物传感器,从而降低成本并延长传感器的寿命。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/423e/9138522/22d0747ed1cf/biosensors-12-00309-g001.jpg

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