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Influence of matrix rigidity on the internal twisting of electronically excited thioflavin T in polymer nanostructures

机译:基质刚度对聚合物纳米结构中电子激发的硫代黄素T内部扭曲的影响

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摘要

Thioflavin T (ThT) exhibits an enormous increase in fluorescence intensity (or lifetime) upon binding to β-sheet rich protein aggregates. In this letter, we measured the fluorescence lifetimes of ThT in poly (ethylene oxide) (PEO) and poly (acrylic acid) (PAA) polymer films and nanofibers and observed that the excited-state motion of ThT is slowed down as the mechanical rigidity of medium increases. Using ThT as a rigidity sensor, we first demonstrate that the fluorescence lifetime imaging microscopy (FLIM) can easily distinguish the PEO and PAA nanofiber structures, which were not discernable by electron microscopy.
机译:硫黄素T(ThT)与富含β-折叠的蛋白质聚集体结合后,荧光强度(或寿命)显着增加。在这封信中,我们测量了ThT在聚环氧乙烷(PEO)和聚丙烯酸(PAA)聚合物薄膜和纳米纤维中的荧光寿命,并观察到ThT的激发态运动随着机械刚度的增加而减慢。的媒介增加。使用ThT作为刚度传感器,我们首先证明了荧光寿命成像显微镜(FLIM)可以轻松区分PEO和PAA纳米纤维结构,这是电子显微镜无法分辨的。

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