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Using fluorine-containing amphiphilic random copolymers to manipulate the quantum yields of aggregation-induced emission fluorophores in aqueous solutions and the use of these polymers for fluorescent bioimaging

机译:使用含氟的两亲性的无规共聚物来操纵在水溶液中聚合诱导的发射荧光团的量子产率和荧光生物成像中使用这些聚合物的

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摘要

Two new series of aggregation-induced emission (AIE) fluorophore-containing amphiphilic copolymers possessing the segments of a monomeric AIE fluorophore, N-(2-hydroxypropyl)methacrylamide (HPMA), [2-(methacryloyloxy)ethyl]trimethylammonium chloride (MATMA), and/or 2,2,2-trifluoroethyl methacrylate (TFEMA) were synthesized. Photophysical properties were investigated using UV-Vis absorbance and fluorescence spectrofluorometry. The increases of molar fractions of the hydrophobic AIE fluorophores and/or the trifluoroethyl moieties result in the higher quantum yields of the AIE fluorophores in the polymers. Using 1-mol% of AIE fluorophores with the tuning of molar fractions of TFEMA, 40% quantum yield was achieved, whereas only less than 10% quantum yield was obtained for the polymers without the TFEMA segments. The quantum yield difference indicates the importance of the fluorine segments for getting high quantum yields of the AIE fluorophores. These polymers were explored for fluorescent bioimaging using human brain glioblastoma U87MG and human esophagus premalignant CP-A cell lines. All the polymers are cell permeable and located in the cellular cytoplasma area. Cellular uptake was demonstrated to be through endocytosis, which is time and energy dependent. The polymers are non-cytotoxic to the two cell lines. Because the polymers contain 19F segments, we studied the spin-lattice relaxation time (T1) and spin-spin relaxation time (T2) of these polymers. T1 and T2 are the two important parameters for the evaluations of the capacity of these polymers for further applications in 19F magnetic resonance imaging (19F MRI). Structure influence on T1 and T2, especially for T2, was observed. These new multifunctional materials are the first series of fluorinated polymers with AIE fluorophores for bioapplications.
机译:两种新系列聚集诱导的发射(AIE)含荧光团的两亲性共聚物,其具有单体AIE荧光团,N-(2-羟丙基)甲基丙烯酰胺(HPMA),[2-(甲基丙烯酰氧基)乙基]三甲基氯化铵(Matma)合成/或2,2,2-三氟乙酯(TFEMA)被合成。使用UV-Vis吸光度和荧光光谱荧光测定法研究了光学性质。疏水性AIE荧光团和/或三氟乙基部分的摩尔级分的增加导致聚合物中AIE荧光团的量子产率较高。使用TFEMA的摩尔级分的1mol%的AIE荧光团,实现了40%的量子产率,而没有TFEMA段的聚合物,仅获得小于10%的量子产率。量子屈服差表明氟区的重要性获得高量子产率的AIE荧光团。使用人脑胶质母细胞瘤U87MG和人食道急性化合物CP-A细胞系来探索这些聚合物的荧光生物成像。所有聚合物都是渗透和位于细胞细胞面积的细胞。蜂窝摄取被证明是通过内吞作用,即时间和能量依赖。聚合物是两种细胞系的非细胞毒性。因为聚合物含有 19 f段,所以我们研究了这些聚合物的旋转晶格弛豫时间(T1)和旋转自旋弛豫时间(T2)。 T1和T2是这些聚合物的容量评估的两个重要参数,用于在 19 f磁共振成像( 19 f mri)中的进一步应用。观察到对T1和T2的结构影响,特别是对于T2。这些新的多功能材料是第一系列氟化聚合物,具有用于生物缺像的AIE荧光团。

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