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首页> 外文期刊>Journal of the American Chemical Society >Design and Synthesis of Monofunctionalized, Water-Soluble Conjugated Polymers for Biosensing and Imaging Applications
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Design and Synthesis of Monofunctionalized, Water-Soluble Conjugated Polymers for Biosensing and Imaging Applications

机译:用于生物传感和成像应用的单官能团水溶性共轭聚合物的设计与合成

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摘要

Water-soluble conjugated polymers with controlled molecular weight characteristics, absence of ionic groups, high emission quantum yields, and end groups capable of selective reactions of wide scope are desirable for improving their performance in various applications and, in particular, fluorescent biosensor schemes. The synthesis of such a structure is described herein. 2-Bromo-7-iodofluorene with octakis(ethylene glycol) monomethyl ether chains at the 9,9'-positions, i.e., compound 4, was prepared as the reactive premonomer. A high-yielding synthesis of the organometallic initiator (dppe)Ni(Ph)Br (dppe = l,2-bis(diphenylphosphino)ethane) was designed and implemented, and the resulting product was characterized by single-crystal X-ray diffraction techniques. Polymerization of 4 by (dppe)Ni(Ph)Br can be carried out in less than 30 s, affording excellent control over the average molecular weight and polydispersity of the product. Quenching of the polymerization with [2-(trimethylsilyl)ethynyl]magnesium bromide yields silylacetylene-terminated water-soluble poly(fluorene) with a photoluminescence quantum efficiency of 8096. Desilylation, followed by copper-catalyzed azide-alkyne cycloaddition reaction, yields a straightforward route to introduce a wide range of specific end group functionalities. Biotin was used as an example. The resulting biotinylated conjugated polymer binds to streptavidin and acts as a light-harvesting chromophore to optically amplify the emission of Alexa Fluor-488 chromophores bound onto the streptavidin. Furthermore, the biotin end group makes it possible to bind the polymer onto streptavidin-functionalized cross-linked agarose beads and thereby incorporate a large number of optically active segments.
机译:为了改善其在各种应用中尤其是在荧光生物传感器方案中的性能,期望具有可控制的分子量特性,不存在离子基团,高发射量子产率和能够进行广泛选择反应的端基的水溶性共轭聚合物。本文描述了这种结构的合成。制备在9,9'-位具有八(乙二醇)单甲基醚链的2-溴-7-碘芴,即化合物4,作为反应性前单体。设计并实现了有机金属引发剂(dppe)Ni(Ph)Br(dppe = 1,2-双(二苯基膦基)乙烷)的高产率合成,并通过单晶X射线衍射技术对所得产物进行了表征。由(dppe)Ni(Ph)Br聚合4可以在不到30 s的时间内完成,从而可以很好地控制产品的平均分子量和多分散性。用[2-(三甲基甲硅烷基)乙炔基]溴化镁淬灭聚合反应可制得甲硅烷基乙炔封端的水溶性聚芴,其光致发光量子效率为8096。进行甲硅烷基化反应,然后进行铜催化的叠氮化物-炔烃环加成反应,可直接制得引入广泛的特定端基功能的途径。以生物素为例。所得的生物素化的共轭聚合物与链霉亲和素结合并充当集光生色团,以光学放大结合在链霉亲和素上的Alexa Fluor-488生色团的发射。此外,生物素端基使得可以将聚合物结合到链霉亲和素官能化的交联琼脂糖珠上,从而并入大量光学活性链段。

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  • 来源
    《Journal of the American Chemical Society》 |2011年第32期|p.12600-12607|共8页
  • 作者单位

    Department of Materials and Chemistry and Biochemistry, Center for Polymers and Organic Solids, University of California, Santa Barbara, California 93106, United States;

    Department of Materials and Chemistry and Biochemistry, Center for Polymers and Organic Solids, University of California, Santa Barbara, California 93106, United States;

    Department of Materials and Chemistry and Biochemistry, Center for Polymers and Organic Solids, University of California, Santa Barbara, California 93106, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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