聚乙二醇化
光热治疗
纳米载体
药物输送
纳米颗粒
聚乙二醇
化学
PEG比率
纳米囊
纳米技术
材料科学
生物物理学
微乳液
聚合物
有机化学
单体
经济
生物
财务
作者
Jingwei Wang,Zhijun Zhang,Zhe Yu,Youbei Qiao,Chaoli Wang,Tiehong Yang,Hong Wu
标识
DOI:10.1021/acsanm.3c01052
摘要
Hollow mesoporous ruthenium nanoparticles (HMRu NPs) are especially beneficial for drug delivery and photothermal therapy due to their distinguished specific surface area and photothermal properties. However, poor circulation performance in vivo means that the NPs are subject to rapid clearance before reaching the target tissue. Polyethylene glycol (PEG) modified nanoparticles have become the classical standard to extend circulation by reducing protein adsorption and escaping macrophage phagocytosis, but PEGylation tends to have an accelerated blood clearance effect after repeated use. Considering that the hyperbranched polymers exhibit excellent performance in protein shielding, that makes it possible for them to have the potential to replace PEG. Thus, HMRu NPs were decorated by polyglycerol (PG) in this work compared to PEGylation. The antiprotein adsorption capacity and macrophage escape were assayed by the bicinchoninic acid method and confocal microscopy, suggesting that PG-coating could avoid macrophage phagocytosis more efficiently than PEGylation. Finally, the resultant HMRu-PG could be used as drug carrier for synergistic chemotherapy and photothermal therapy in tumor treatment. This work provides a promising multimodal and versatile nanocarrier in tumor therapy.
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