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Application of a biotin functionalized QD assay for determining available binding sites on electrospun nanofiber membrane

机译:生物素功能化QD测定法在电纺纳米纤维膜上确定可用结合位点的应用

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The quantification of surface groups attached to non-woven fibers is an important step in developing nanofiber biosensing detection technologies. A method utilizing biotin functionalized quantum dots (QDs) 655 for quantitative analysis of available biotin binding sites within avidin immobilized on electrospun nanofiber membranes was developed. A method for quantifying nanofiber bound avidin using biotin functionalized QDs is presented. Avidin was covalently bound to electrospun fibrous polyvinyl chloride (PVC 1.8% COOH w/w containing 10% w/w carbon black) membranes using primary amine reactive EDC-Sulfo NHS linkage chemistry. After a 12 h exposure of the avidin coated membranes to the biotin-QD complex, fluorescence intensity was measured and the total amount of attached QDs was determined from a standard curve of QD in solution (total fluorescence vs. femtomole of QD 655). Additionally, fluorescence confocal microscopy verified the labeling of avidin coated nanofibers with QDs. The developed method was tested against 2.4, 5.2, 7.3 and 13.7 mg spray weights of electrospun nanofiber mats. Of the spray weight samples tested, maximum fluorescence was measured for a weight of 7.3 mg, not at the highest weight of 13.7 mg. The data of total fluorescence from QDs bound to immobilized avidin on increasing weights of nanofiber membrane was best fit with a second order polynomial equation (R2 = .9973) while the standard curve of total fluorescence vs. femtomole QDs in solution had a linear response (R2 = .999). A QD assay was developed in this study that provides a direct method for quantifying ligand attachment sites of avidin covalently bound to surfaces. The strong fluorescence signal that is a fundamental characteristic of QDs allows for the measurement of small changes in the amount of these particles in solution or attached to surfaces.
机译:附着在非织造纤维上的表面基团的定量是开发纳米纤维生物传感检测技术的重要一步。开发了一种利用生物素功能化量子点(QD)655定量分析固定在电纺纳米纤维膜上的亲和素中可用生物素结合位点的方法。提出了一种使用生物素官能化的量子点对纳米纤维结合的抗生物素蛋白进行定量的方法。使用伯胺反应性EDC-Sulfo NHS键联化学,将抗生物素蛋白共价键合到静电纺丝纤维聚氯乙烯(PVC 1.8%COOH w / w,含10%w / w炭黑)膜上。在将抗生物素蛋白包被的膜暴露于生物素-QD复合物12小时后,测量荧光强度,并根据溶液中QD的标准曲线确定总QD的总量(总荧光对QD 655的fe子)。此外,荧光共聚焦显微镜验证了抗生物素蛋白包被的纳米纤维的量子点标记。针对2.4、5.2、7.3和13.7 mg静电纺丝纳米纤维垫的喷雾重量测试了开发的方法。在测试的喷雾重量样品中,测得的最大荧光量为7.3 mg,而不是最高重量为13.7 mg。纳米纤维膜重量增加时,固定化抗生物素蛋白结合的量子点的总荧光数据最适合二阶多项式方程(R2 = .9973),而溶液中总荧光量与飞摩尔量子点的标准曲线具有线性响应( R2 = .999)。在这项研究中开发了一种QD分析方法,该方法提供了一种直接方法来定量共价结合至表面的抗生物素蛋白的配体附着位点。作为QD的基本特征的强荧光信号可以测量溶液中或附着在表面的这些颗粒的数量的微小变化。

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