透明质酸
化学
CD44细胞
光热治疗
药物输送
肿瘤微环境
透明质酸酶
纳米颗粒
紫杉醇
癌症研究
葡萄糖醛酸
生物物理学
纳米技术
材料科学
癌症
细胞
生物化学
医学
生物
内科学
有机化学
酶
解剖
肿瘤细胞
多糖
作者
Rui Liu,Wei Xiao,Chuan Hu,Rou Xie,Huile Gao
标识
DOI:10.1016/j.jconrel.2018.04.005
摘要
The size of nanoparticles plays a key role in utilizing enhanced permeability and retention (EPR) effect of tumor, where large-sized nanoparticles possess good retention but poor penetration, while small-sized nanoparticles are on the contrary. Although size-reducible nanoparticles have been designed to partially overcome this dilemma, the initial size and complicated tumor microenvironment remain restricting the tumor distribution of nanoparticles. Herein, we employed tumor-specific CD44 targeted, hyaluronidase-degradable hyaluronic acid (HA) and small-sized, renal-clearable, red emission, cationic bovine serum albumin-protected gold nanocluster ([email protected]) to successfully construct size-reducible nanoplatform ([email protected]@HA). By changing the ratio of HA and [email protected], different initial sizes of [email protected]@HA were prepared and their tumor targeting efficiencies, pharmacokinetic profiles were evaluated. Then 200 nm of [email protected]@HA with optimal EPR effect was screened out to further load paclitaxel (PTX) and indocyanine green (ICG) for chemo- photothermal therapy and nitric oxide (NO) for modulating tumor microenvironment and enhancing drug delivery. The [email protected]@HA-NO3 showed size-reducible ability under triggering by hyaluronidase and high accumulation in breast cancer with homogenous intra-tumor distribution, suppressed 95.3% of in-situ tumor growth and inhibited 88.4% of lung metastasis growth. In conclusion, we provide a strategy that fully satisfied the concerns in drug delivery to tumor for improved antitumor effect.
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