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首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Specific targeting of ultrasound contrast agent (USCA) for diagnostic application: an in vitro feasibility study based on SAW biosensor
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Specific targeting of ultrasound contrast agent (USCA) for diagnostic application: an in vitro feasibility study based on SAW biosensor

机译:超声造影剂(USCA)的特异性靶向在诊断中的应用:基于声表面波生物传感器的体外可行性研究

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The present study described a new strategy to examine the interaction between the targeted ultrasound contrast agent (USCA) and its target under flow conditions with a surface acoustic wave (SAW) transducer. The sensing principle is based on the measurement of the phase change on the sensing element upon the binding of specific biomolecules. Love-wave biosensor array was consisting of sensor elements and reference elements. The sensor elements have been prepared by coating the sensor surface with tumor marker EDB-fibronectin by means of SAM technique and carbodiimide chemistry. Reference elements were left blank or coated with fibronectin and used to eliminate thermal drift, unspecific binding, and turbulence from injection of liquids by calculating the differential phase shift with respect to the sensor elements. The binding of targeted USCA to the sensor surface was constantly recorded by monitoring the phase shift on the sensor element. The binding of targeted USCA generated a high phase shift on the sensor elements, but almost no change on the reference elements. Control experiments using non-targeted and isotype-targeted USCA confirmed the specificity of binding due to anti-EDB-fibronectin scFv-antibody-fragment-EDB-fibronectin antigen interaction. The suitability of the SAW technique to monitor the specific binding behavior of targeted micron-sized USCA in real time has been well established. (C) 2004 Elsevier B.V. All rights reserved.
机译:本研究描述了一种新的策略,以利用表面声波(SAW)换能器在流动条件下检查目标超声造影剂(USCA)与目标之间的相互作用。感测原理基于对特定生物分子结合后感测元件上相变的测量。 Love-wave生物传感器阵列由传感器元件和参考元件组成。通过借助于SAM技术和碳二亚胺化学用肿瘤标记物EDB-纤连蛋白涂覆传感器表面来制备传感器元件。将参考元件留空或用纤连蛋白包被,并通过计算相对于传感器元件的相移来消除液体注入中的热漂移,非特异性结合和湍流。通过监测传感器元件上的相移,不断记录目标USCA与传感器表面的结合。靶向USCA的结合在传感器元件上产生了高相移,但在参考元件上几乎没有变化。使用非靶向和同种型靶向USCA的对照实验证实了结合的特异性,这是由于抗EDB-纤连蛋白scFv-抗体片段-EDB-纤连蛋白抗原相互作用所致。声表面波技术适用于实时监测目标微米级USCA的特定结合行为的适用性已广为人知。 (C)2004 Elsevier B.V.保留所有权利。

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