化学
体内
掩蔽
DNA
纳米技术
生物物理学
DNA纳米技术
癌症研究
细胞生物学
分子生物学
生物化学
生物
材料科学
光电子学
超材料
生物技术
作者
Yan Zhao,Junjun Hou,Linjie Guo,Shitai Zhu,Wenzhao Wang,Shuting Cao,Mo Zhou,Jiye Shi,Li Jiang,Kai Liu,Hongjie Zhang,Lihua Wang,Chunhai Fan,Ying Zhu
摘要
Nanoparticle (NP) delivery systems have been actively exploited for cancer therapy and vaccine development. Nevertheless, the major obstacle to targeted delivery lies in the substantial liver sequestration of NPs. Here we report a DNA-engineered approach to circumvent liver phagocytosis for enhanced tumor-targeted delivery of nanoagents in vivo. We find that a monolayer of DNA molecules on the NP can preferentially adsorb a dysopsonin protein in the serum to induce functionally invisibility to livers; whereas the tumor-specific uptake is triggered by the subsequent degradation of the DNA shell in vivo. The degradation rate of DNA shells is readily tunable by the length of coated DNA molecules. This DNA-engineered invisibility cloaking (DEIC) is potentially generic as manifested in both Ag2S quantum dot- and nanoliposome-based tumor-targeted delivery in mice. Near-infrared-II imaging reveals a high tumor-to-liver ratio of up to ∼5.1, approximately 18-fold higher than those with conventional nanomaterials. This approach may provide a universal strategy for high-efficiency targeted delivery of theranostic agents in vivo.
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