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Shell Cross-Linked Nanoparticle Based on Poly(ε-caprolactone)-Poly(ethylene glycol) for Photosensitizer Delivery

机译:基于聚(ε-己内酯)的壳交联纳米粒子 - 光敏剂递送的聚(乙二醇)

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Polymeric micelles as drug carriers attract highly concern recent years for their ability to incorporate hydrophobic drugs. Photodynamic therapy (PDT) is a promising new cancer treatment that involves the combination of visible light and a photosensitizer. In this study, protoporphyrin IX (PpIX) was encapsulated into shell crosslinked nanoparticles (SCKs) for photosensitizer delivery to reduce the side effects of PDT. The particle size of the SCKs without drug was about 140 nm, and the size of the SCKs with PpIX were about 240 nm. The cytotoxicity reveals that SCKs/PpIX have some toxicity to normal cell line. As shown in the results of fluorescence microscopy and flow cytometry, the uptake of SCKs with PpIX reach the maximum at the incubation time of 12-24 hours. The PDT effects of SCKs/PpIX show no significant differences with free PpIX. In summary, in vitro characterization and in vitro PDT effect of SCKs encapsulated with PpIX were studies. These results may lead to more successful development on the application of SCKs for photodynamic therapy.
机译:作为药物载体的聚合物胶束吸引了近年来的高度担忧,以便他们包含疏水性药物的能力。光动力疗法(PDT)是一个有前途的新癌症治疗,涉及可见光和光敏剂的组合。在该研究中,将原始卟啉IX(PPIX)包封成壳交联的纳米颗粒(SCK),用于光敏剂递送,以减少PDT的副作用。没有药物的SCK的粒度为约140nm,并且PPIX的SCK的尺寸为约240nm。细胞毒性显示出SCKS / PPIX对正常细胞系具有一些毒性。如荧光显微镜和流式细胞术的结果所示,具有PPIX的SCK的摄取达到培养时间为12-24小时。 SCKS / PPIX的PDT效应显示出与游离PPIX的显着差异。总之,用PPIX包封的SCKS的体外表征和体外PDT效应是研究。这些结果可能导致对光动力治疗的SCK的应用更加成功。

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