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首页> 外文期刊>RSC Advances >Fabrication, biofunctionalization, and simultaneous multicolor emission of hybrid 'dots-on-spheres' structures for specific targeted imaging of cancer cells
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Fabrication, biofunctionalization, and simultaneous multicolor emission of hybrid 'dots-on-spheres' structures for specific targeted imaging of cancer cells

机译:混合,“圆点”结构的制造,生物功能化和同时多色发射,用于癌细胞的特异性靶向成像

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摘要

We report a simple technique for the fabrication of dots-on-spheres (DoS) structures in which conjugated polymer dots (CPdots) are immobilized on the surface of silica spheres via charged interaction. Red-, green-, and blue-emissive conjugated polymers were synthesized and employed to validate the feasibility of an approach to develop a DoS system with emission across the visible range. The robust binding of CPdots to silica particles provides a buffer resistance and good stability to photoirradiation and mechanical agitation. Further bioconjugation of the DoS system is achieved by the introduction of polyarginine and neu antibody that is specific for the HER2 receptor, leading to their successful application to targeted imaging of SKBR-3 breast cancer cells overexpressing HER2. Moreover, DoS with simultaneous multicolor emissions of red, green, and blue can be easily synthesized and used to demonstrate the versatility of this strategy for multicolor cellular imaging based upon a single excitation source. We believe that this hybrid DoS strategy and the easy fabrication of organic polymer nanoparticles with silica substrates will facilitate their effective integration of organic and inorganic materials into versatile applications.
机译:我们报告了一种简单的技术,用于制造点对球(DoS)结构,其中通过电荷相互作用将共轭聚合物点(CPdot)固定在二氧化硅球表面上。合成了红色,绿色和蓝色发射共轭聚合物,并用于验证开发可见光范围内的DoS系统的方法的可行性。 CPdot与二氧化硅颗粒的牢固结合提供了耐缓冲性以及对光辐照和机械搅拌的良好稳定性。通过引入对HER2受体具有特异性的聚精氨酸和neu抗体,可以实现DoS系统的进一步生物共轭,从而使其成功应用于过表达HER2的SKBR-3乳腺癌细胞的靶向成像。此外,具有红色,绿色和蓝色同时发多色发射的DoS可以轻松合成,并用于证明基于单个激发源的多色细胞成像策略的多功能性。我们相信,这种混合DoS策略以及具有二氧化硅底物的有机聚合物纳米颗粒的容易制造将有助于将有机和无机材料有效地集成到各种应用中。

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