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Photosensitizer-loaded cell membrane biomimetic nanoparticles for enhanced tumor synergetic targeted therapy

机译:用于增强肿瘤协同靶向治疗的光敏剂加载的细胞膜仿生纳米粒子

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Photodynamic therapy (PDT) has the advantages of low toxicity and specificity, but photosensitizers usually fail to accumulate efficiently at the tumor site. In this study, a new multifunctional nano-drug delivery system was exploited by a biomimetic strategy to improve the PDT effects. The self-assembled methoxy poly(ethylene glycol)-poly(lactide- co -glycolide) (mPEG-PLGA) nanoparticles encapsulated with the photosensitizer chlorin e6 (Ce6) by microfluidics were employed as the nano-core, followed by coating red blood cell (RBC) membranes as the biomimetic agent to prolong the circulation time in vivo . In order to boost the therapeutic effect, doxorubicin (Dox) was preloaded into RBC nanovesicles. The cell membrane surface was modified with folic acid (FA) to further enhance the tumor targeting efficiency. The prepared biomimetic nanoparticles with a homogeneous size (70 nm) can trigger sufficient reactive oxygen species (ROS), leading to significant tumor ablation without side effects. In addition, the system had high tumor targeting efficiency, with an increase of 25% compared with no FA-modified nanoparticles. Therefore, this biomimetic multifunctional nanodrug delivery system possesses a prolonged circulation time and higher tumor targeting efficiency and can exert better tumor cytotoxicity for improved PDT due to homophilic targeting in vivo .
机译:光动力疗法(PDT)具有低毒性和特异性的优点,但光敏剂通常不能在肿瘤部位有效累积。在该研究中,通过生物摩擦策略利用新的多官能纳米药物递送系统来改善PDT效应。用微流体包封与光敏化剂氯E6(CE6)包封的自组装甲氧基聚(乙二醇)(丙基二乙二醇)(MPEG-PLGA)纳米颗粒作为纳米核,然后涂覆红细胞(RBC)膜作为培养剂延长体内循环时间。为了提高治疗效果,将多柔比星(DOX)预加载到RBC纳米粒子中。用叶酸(Fa)改性细胞膜表面,以进一步增强肿瘤靶向效率。具有均匀尺寸(70nm)的制备的仿生纳米颗粒可以引发足够的反应性氧(ROS),导致没有副作用的显着肿瘤消融。此外,该系统具有高肿瘤靶向效率,与没有FA改性的纳米颗粒相比,增加25%。因此,该仿生多功能纳米树脂递送系统具有延长的循环时间和肿瘤靶向效率,并且可以在体内激发靶向改善PDT来施加更好的肿瘤细胞毒性。

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