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New capillary optical fiber structure for fluorescence sensors

机译:用于荧光传感器的新型毛细管光纤结构

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Abstract: A multilayer capillary fiber was designed for optical sensor applications and its optical properties were evaluated by using a fluorescent layer immobilized on its inner surface. This fiber structure combines a large interaction surface (the inner wall of the capillary fiber) for binding of fluorescent indicators with evanescent wave fluorescence measurement, which may facilitate the design of pseudohomogeneous assays without separation of the bound from nonbound fluorescent indicator. The inner surface of the capillary was derivatized by aminosilanization, followed by biotinylation and addition of streptavidin. This biotin- streptavidin coating facilities subsequent immobilization of any biotinylated species (e.g. antibodies, antigens, etc.) participating in specific molecular recognition. We have evaluated some properties of this capillary fiber design by using fluorescent proteins immobilized on the inner wall of capillary by biotin-avidin-interaction. Fluorescence was excited by a HeNe-laser (fluorescent indicator APC; $lambda$-em$/ $EQ 660 nm) and by a Ar-laser (fluorescent indicator RPE, $lambda$-em$/ $EQ 578 nm), and measured with a spectrum analyzer.!5
机译:摘要:设计了一种多层毛细管光纤,用于光学传感器应用,并通过使用固定在其内表面的荧光层来评估其光学性能。这种纤维结构结合了一个较大的相互作用表面(毛细管纤维的内壁),用于结合荧光指示剂和e逝波荧光测量,这可以促进假均相测定的设计,而无需将结合物与未结合的荧光指示剂分开。毛细管的内表面通过氨基硅烷化衍生化,然后进行生物素化并添加抗生蛋白链菌素。这种生物素-链霉抗生物素蛋白包被物便于随后固定参与特定分子识别的任何生物素化物质(例如抗体,抗原等)。我们已经通过使用通过生物素-亲和素相互作用固定在毛细管内壁上的荧光蛋白评估了这种毛细管纤维设计的一些特性。 HeNe激光(荧光指示剂APC;λλ-em$ / EQ 660 nm)和Ar激光(荧光指示剂RPE,λlam-em$ / EQ 578 nm)激发荧光。用频谱分析仪测量!! 5

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