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Artificial Cell Membrane-Covered Nanoparticles Embedding Quantum Dots as Stable and Highly Sensitive Fluorescence Bioimaging Probes

机译:嵌入量子点作为稳定和高灵敏度荧光生物成像探针的人工细胞膜覆盖的纳米粒子。

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摘要

To obtain a stable and highly sensitive bioimaging fluorescence probe, polymer nanoparticles with embedded quantum dots were covered with an artificial cell membrane. These nanoparticles were designed by assembling phospholipid polar groups as a platform, and oligopeptide was immobilized as a bioaffinity moiety on the surface of the nanoparticles. The polymer nanoparticles showed resistance to cellular uptake from HeLa cells owing to the nature of the phosphorylcholine groups. When arginine octapeptide was immobilized at the surface of the nanoparticles, they were able to penetrate the membrane of HeLa cells effectively. Cytotoxicty of the nanoparticles was not observed even after immobilization of oligopeptide. Thus, we obtained stable fluorescent polymer nanoparticles covered with an artificial cell membrane, which are useful as an excellent bioimaging probe and as a novel evaluation tool for oligopeptide functions in the target cells.
机译:为了获得稳定且高度灵敏的生物成像荧光探针,将带有嵌入量子点的聚合物纳米颗粒覆盖在人造细胞膜上。通过将磷脂极性基团组装为平台来设计这些纳米颗粒,并将寡肽作为生物亲和部分固定在纳米颗粒的表面上。由于磷酸胆碱基团的性质,聚合物纳米颗粒显示出对从HeLa细胞摄取细胞的抗性。当精氨酸八肽固定在纳米颗粒表面时,它们能够有效穿透HeLa细胞膜。即使在固定寡肽后也未观察到纳米颗粒的细胞毒性。因此,我们获得了覆盖有人工细胞膜的稳定的荧光聚合物纳米粒子,可用作纳米粒子的优秀生物成像探针和靶细胞中寡肽功能的新型评估工具。

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