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Preparation of Cross-Linked, Multi layer-Coated Fluorescent Microspheres with Functional Groups on the Surface for Bioconjugation

机译:制备表面具有官能团的生物共轭交联多层涂层荧光微球

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摘要

This study is to develop a method for preparing fluorescent microspheres with steady and strong fluorescence as well as the surface functionality for bioconjugation. Layer-by-layer technique was employed to introduce poly-(phenylenevinylene) (PPV) precursor, diazoresin (DAR); and polyanion, including poly(acrylic acid) (PAA) and, poly(sodium-p-styrenesulfonate) (PSS), onto the substrate polystyrene-divinylbenzene microspheres with sulfonic groups on the surface. (SPSDVB) The conversion of PPV precursor into fluorescent PPV as well as the dross-linking reaction, between DAR and polyanion, were accomplished simultaneously in the following thermal treatment. After optimizing the DAR concentration, the Selection of polyelectrolytes and the coating sequence, the cross-linked multilayer coated PPV microspheres, SPSDVB-(PPV/PSS/DAR/PAA) spheres, were prepared. These spheres were found to have uniform size with a clear core shell structure and display even and strong fluorescence, based on the, characterization by flow cytometry, microscopy, and photophysics. They were found to be stable and highly resistant to common solvents and even "dissociation agent", as well as possess good thermal stability and photostability. The feasibility of conjugating biomolecules on the surface of spheres was also demonstrated.
机译:这项研究是要开发一种方法来制备具有稳定和强荧光以及生物共轭表面功能的荧光微球。采用逐层技术引入聚(亚苯基亚乙烯基)(PPV)前体重氮树脂(DAR)。将包括聚丙烯酸(PAA)和聚对苯乙烯磺酸钠(PSS)在内的聚阴离子加到表面带有磺酸基的聚苯乙烯-二乙烯基苯微球上。 (SPSDVB)在随后的热处理中,同时完成了PPV前体向荧光PPV的转化以及DAR与聚阴离子之间的锡渣键合反应。在优化DAR浓度后,制备了聚电解质,并选择了涂层顺序,制备了交联的多层涂层PPV微球SPSDVB-(PPV / PSS / DAR / PAA)球。根据流式细胞仪,显微镜和光物理的表征,发现这些球体大小均一,具有清晰的核壳结构,并显示出均匀而强烈的荧光。发现它们是稳定的,并且对普通溶剂甚至“离解剂”具有高度耐受性,并且具有良好的热稳定性和光稳定性。还证明了在球体表面缀合生物分子的可行性。

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