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Layer by Layer Self-Assembly of Immunoglobulins for Piezoelectric Biosensors

机译:通过层自组装的层自组装,用于压电生物传感器的免疫球蛋白

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The immobilization of two different immunoglobulins by means of the layer by layer self assembly technique (LbL) was studied and evaluated for its use in the development of piezoelectric biosensors. Namely an antibody specific to Transforming Growth Factor β1 (anti-TGF-β1) and one specific to taxol were immobilized onto the surface of piezoelectric crystals by the LbL technique and their performance was characterized. The quartz crystal microbalance technique was employed to characterize both the step by step immobilization procedure and the response to the specific analytes. Atomic force microscopy was used to measure the roughness of the crystals before and after immunoglobulin immobilization. The results showed that the proposed immunosensors offer a promising alternative to classical analytical methods for a fast and easy determination of analytes of clinical interest.
机译:通过层自组装技术(LBL)通过层固定两种不同免疫球蛋白,并评估其在压电生物传感器的发育中的应用。即通过LBL技术将特异性转化生长因子β1(抗TGF-β1)和特定于紫杉醇的特定于压电晶体的表面的抗体,其性能表征。使用石英晶微相技术,以表征逐步固定方法和对特定分析物的响应。原子力显微镜用于测量免疫球蛋白固定前后晶体的粗糙度。结果表明,拟议的免疫传感器提供了有希望的替代典型分析方法,以便快速简便地确定临床兴趣的分析。

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