吲哚青绿
生物相容性
光热治疗
材料科学
光动力疗法
生物医学工程
纳米技术
医学
生物物理学
生物材料
癌症研究
化学
病理
生物
有机化学
冶金
作者
Wenjun Shan,Ronghe Chen,Qiang Zhang,Jie Zhao,Binbin Chen,Xi Zhou,Shefang Ye,Shengli Bi,Liming Nie,Lei Ren
标识
DOI:10.1002/adma.201707567
摘要
In recent years, hepatitis B core protein virus-like particle (HBc VLP) is an impressive biomaterial, which has attracted considerable attention due to favorable properties such as structural stability, high uptake efficiency, and biocompatibility in biomedical applications. Heretofore, only a few attempts have been made to apply it in physical, chemical, and biological therapy for cancer. In this study, a tumor-targeting RGD-HBc VLP is first fabricated through genetic engineering. For image-guided cancer phototherapy, indocyanine green (ICG) is loaded into RGD-HBc VLP via a disassembly/reassembly pathway and electrostatic attraction with high efficiency. The self-assembled stable RGD-HBc VLP significantly improves body retention (fourfold longer), aqueous stability, and target specificity of ICG. Remarkably, these positive reformations promote more accurate and sensitive imaging of U87MG tumor, as well as prolonged tumor destruction in comparison with free ICG. Moreover, the photothermal and photodynamic effect on tumors are quantitatively differentiated by multiple linear regression analysis. Overall, less-potent medicinal ICG can be perfectly rescued by bioengineered HBc VLP to realize enhanced cancer optotheranostics.
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