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Nanofibers Doped with Dendritic Fluorophores for Protein Detection

机译:掺杂树枝状荧光团的纳米纤维用于蛋白质检测

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We report a solid-state, nanofiber-based optical sensor for detecting proteins with an anionic fluorescent dendrimer (AFD). The AFD was encapsulated in cellulose acetate (CA).electrospun nanofibers, which were deacetylated to cellulose to generate secondary porous structures that are desirable For enhancing molecular interactions, and thus better signaling. The protein sensing properties oF the fibers were characterized by monitoring the fluorescence response oF cytochrome c (cyt c), hemoglobin (Hgb), and bovine serum albumin (BSA) as a Function oF concentration. Effective quenching was observed For the metalloproteins, cyt c and Hgb. The efFect was primarily due to energy transFer of the imbedded fluorescent dendrimers to the protein, as both proteins contain heme portions, Electron transFer, caused through the electrostatic eFFects in the binding oF the anionic dendrimer to the positive patches oF globular proteins, could be responsible as well. BSA, on the other hand, triggered a "turn-on" response in fluorescence, suggesting the negatively charged BSA reduces the p-p stacking of the partially dispersed, negatively charged dendritic fluorophores through repulsion Forces, which results in an increase in fluorescence. Stern梀olmer constants (K_(sv)) of the electrospun fibers were Found to be 3.4 x 10~5 and 1.7 x 10~6 M~(-1) for cyt c and Hgb, respectively. The reusability of the nanofibers is excellent: the nanofibers demonstrated less than i 5% change oF Fluorescence intensity signal in a 5-cycle test.
机译:我们报告了一种固态的,基于纳米纤维的光学传感器,用于通过阴离子荧光树状聚合物(AFD)检测蛋白质。 AFD封装在醋酸纤维素(CA)。电纺纳米纤维中,将其脱乙酰基化成纤维素以生成二级多孔结构,该结构对于增强分子相互作用并改善信号传导是必不可少的。通过监测作为细胞功能浓度的细胞色素c(cyt c),血红蛋白(Hgb)和牛血清白蛋白(BSA)的荧光响应来表征纤维的蛋白质传感特性。对于金属蛋白cyt c和Hgb,观察到有效的淬灭。该效应主要是由于嵌入的荧光树状聚合物向蛋白质的能量转移,因为两种蛋白质均包含血红素部分,电子转移因子,是由于阴离子树状聚合物与球状蛋白质的阳性斑块结合中的静电作用引起的静电作用所致也一样另一方面,BSA触发了荧光的“开启”响应,表明带负电荷的BSA通过排斥力降低了部分分散的带负电荷的树突状荧光团的p-p堆积,从而导致了荧光的增加。发现电纺丝纤维的Sternolol常数(K_(sv))对于cyt c和Hgb分别为3.4 x 10〜5和1.7 x 10〜6 M〜(-1)。纳米纤维的可重复使用性极好:在5个循环的测试中,纳米纤维的荧光强度信号变化不到5%。

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