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Conjugated Polymer Loaded Nanospheres with Surface Functionalization for Simultaneous Discrimination of Different Live Cancer Cells under Single Wavelength Excitation

机译:具有表面功能的共轭聚合物负载纳米球,用于在单波长激发下同时区分不同的活癌细胞

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Two conjugated polymers, poly[9,9-bis(2-(2-(2-methoxyethoxy)ethoxy)ethyl) fluorenyldivinylene] (PFV) and the PFV derivative containing 10 mol percent 2,1,3-benzothiadiazole (BT) units (PFVBT), have been synthesized and employed to fabricate conjugated polymer loaded nanospheres for simultaneous discrimination of mixed live cancer cells in one solution. The incorporation of BT units into the PFV backbone leads to PFVBT with a similar absorption maximum but significantly red-shifted emission in film state as compared to those of PFV, due to aggregation enhanced energy transfer from the fluorenevinylene segments to electron-deficient BT units. Both conjugated polymer loaded nanospheres have shown optical features that are similar to their film states, which allow simultaneous multichannel signal collection with negligible interference upon excitation at a single wavelength. After further surface functionalization with antihuman epidermal growth factor receptor 2 (HER2) affibody or arginine-glycine-aspartic acid (RGD) peptide, the distinct fluorescence from PFV or PFVBT loaded nanospheres allows differentiation of SKBR-3 breast cancer cells (HER2 overexpression) from HT-29 colon cancer cells (integrin receptor overexpression) in live cell mixtures. The conjugated polymer loaded nanospheres with high quantum yield, low cytotoxicity, and multiple color emission upon single laser excitation are ideal for simultaneous multiple-target imaging and detection.
机译:两种共轭聚合物,聚[9,9-双(2-(2-(2-(2-甲氧基乙氧基)乙氧基)乙基)芴基二亚乙烯基](PFV)和含有10 mol%2,1,3-苯并噻二唑(BT)单元的PFV衍生物(PFVBT),已经合成并用于制造负载共轭聚合物的纳米球,用于同时分辨一种溶液中的混合活癌细胞。与PFV相比,将BT单元并入PFV主链会导致PFVBT具有最大的吸收最大值,但在薄膜状态下的发射态会明显红移,这是由于从芴乙烯片段到缺乏电子的BT单元的聚集增强了的能量转移。两种共轭聚合物负载的纳米球均显示出与其薄膜状态相似的光学特征,这些特征允许同时进行多通道信号采集,并且在单个波长激发时的干扰可忽略不计。用抗人表皮生长因子受体2(HER2)亲和体或精氨酸-甘氨酸-天冬氨酸(RGD)肽进一步表面官能化后,PFV或PFVBT负载的纳米球发出的独特荧光使SKBR-3乳腺癌细胞(HER2过表达)从活细胞混合物中的HT-29结肠癌细胞(整合素受体过表达)。具有高量子产率,低细胞毒性和单次激光激发时发出多种颜色的共轭聚合物负载纳米球是同时进行多目标成像和检测的理想选择。

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