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Synthesis and Characterization of Water-Soluble Polythiophene Derivatives for Cell Imaging

机译:用于细胞成像的水溶性聚噻吩衍生物的合成与表征

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摘要

In this work, four water-soluble polythiophene derivatives (PT, PT-DDA, PT-ADA, and PT-ADA-PPR) with different pendant moieties were synthesized via oxidative copolymerization by FeCl3. By increasing the hydrophobic ability of side chain moieties, there is a gradually blue shift for the maximum absorption wavelength and red shift for the maximum emission wavelength, a reducing trend for fluorescence quantum yields, a growing trend for Stokes shift, and an increasing trend for the mean sizes in the order of PT, PT-ADA, and PT-DDA. All the synthesized polymers show low toxicity and good photostability and accumulate in the lysosomes of A549 cells. Furthermore, the introduction of porphyrin group to PT-ADA side chain (PT-ADA-PPR) broadens the absorption and emission ranges of PT-ADA. PT-ADA-PPR could be excited at two different excitation wavelengths (488 nm and 559 nm) and exhibits two emission pathways, and dual-color fluorescence images (orange and red) of PT-ADA-PPR accumulated in A549 cells are observed. Thus, PT-ADA-PPR could be used as an excellent dual-color fluorescent and lysosome-specific imaging material.
机译:在这项工作中,通过FeCl3的氧化共聚反应合成了四个具有不同侧基的水溶性聚噻吩衍生物(PT,PT-DDA,PT-ADA和PT-ADA-PPR)。通过增加侧链部分的疏水性,最大吸收波长会出现蓝移,最大发射波长会发生红移,荧光量子产率下降,斯托克斯频移增长,并且平均大小按PT,PT-ADA和PT-DDA的顺序排列。所有合成的聚合物均显示出低毒性和良好的光稳定性,并在A549细胞的溶酶体中积累。此外,将卟啉基引入PT-ADA侧链(PT-ADA-PPR)拓宽了PT-ADA的吸收和发射范围。 PT-ADA-PPR可以在两种不同的激发波长(488 nm和559 nm)处激发,并呈现出两种发射途径,并且观察到A549细胞中积累的PT-ADA-PPR的双色荧光图像(橙色和红色)。因此,PT-ADA-PPR可用作出色的双色荧光和溶酶体特异性成像材料。

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