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首页> 外文期刊>Biomaterials >Tumor-homing photosensitizer-conjugated glycol chitosan nanoparticles for synchronous photodynamic imaging and therapy based on cellular on/off system.
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Tumor-homing photosensitizer-conjugated glycol chitosan nanoparticles for synchronous photodynamic imaging and therapy based on cellular on/off system.

机译:基于细胞开/关系统的肿瘤归巢光敏剂-缀合的乙二醇壳聚糖纳米粒子,用于同步光动力成像和治疗。

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Herein, we developed the photosensitizer, protoporphyrin IX (PpIX), conjugated glycol chitosan (GC) nanoparticles (PpIX-GC-NPs) as tumor-homing drug carriers with cellular on/off system for photodynamic imaging and therapy, simultaneously. In order to prepare PpIX-GC-NPs, hydrophobic PpIXs were chemically conjugated to GC polymer and the amphiphilic PpIX-GC conjugates formed a stable nanoparticle structure in aqueous condition, wherein conjugated PpIX molecules formed hydrophobic inner-cores and they were covered by the hydrophilic GC polymer shell. Based on the nanoparticle structure, PpIX-GC-NPs showed the self-quenching effect that is 'off' state with no fluorescence signal and phototoxicity with light exposure. It is due to the compact crystallized PpIX molecules in the nanoparticles as confirmed by dynamic light scattering and X-ray diffraction methods. However, after cellular uptake, compact nanoparticle structure gradually decreased to generate strong fluorescence signal and singlet oxygen generation when irradiated. Importantly, PpIX-GC-NPs-treated mice presented prolonged blood circulation, enhanced tumor targeting ability, and improved in vivo therapeutic efficiency in tumor-bearing mice, compared to that of free PpIX-treated mice. These results proved that this tumor-homing cellular 'on/off' nanoparticle system of PpIX-GC-NPs has a great potential for synchronous photodynamic imaging and therapy in cancer treatment.
机译:本文中,我们开发了光敏剂,原卟啉IX(PpIX),共轭乙二醇壳聚糖(GC)纳米颗粒(PpIX-GC-NPs)作为具有细胞归位/关闭系统的肿瘤归巢药物载体,用于光动力成像和治疗。为了制备PpIX-GC-NP,将疏水性PpIXs与GC聚合物化学偶联,两亲性PpIX-GC偶联物在水性条件下形成稳定的纳米颗粒结构,其中偶联的PpIX分子形成疏水性内核,并且被亲水性物质覆盖GC聚合物外壳。基于纳米颗粒的结构,PpIX-GC-NPs表现出自熄灭状态,处于“关闭”状态,没有荧光信号,并且在曝光时具有光毒性。这是由于通过动态光散射和X射线衍射方法证实了纳米颗粒中紧密的结晶PpIX分子。但是,细胞摄取后,致密的纳米颗粒结构逐渐降低,以产生强烈的荧光信号并在照射时产生单线态氧。重要的是,与免费的PpIX处理的小鼠相比,PpIX-GC-NPs处理的小鼠在荷瘤小鼠中表现出更长的血液循环,增强的肿瘤靶向能力和更高的体内治疗效率。这些结果证明,该PpIX-GC-NPs归巢于肿瘤的细胞“开/关”纳米粒子系统在同步光动力成像和癌症治疗中具有巨大的潜力。

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