光热治疗
生物物理学
超分子化学
沉积(地质)
化学
纳米颗粒
巨噬细胞
化学工程
材料科学
纳米技术
生物化学
结晶学
体外
生物
沉积物
古生物学
工程类
晶体结构
作者
Junyan Li,Qian Cheng,Ludan Yue,Gao Cheng,Jianwen Wei,Yuan‐Fu Ding,Yitao Wang,Ying Zheng,Ruibing Wang
出处
期刊:Nanoscale horizons
[Royal Society of Chemistry]
日期:2021-01-01
卷期号:6 (11): 907-912
被引量:47
摘要
In this design, small CuS nanoparticles (NPs) were intracellularly self-assembled into large supramolecular aggregates via host-guest interactions between sequentially internalized β-cyclodextrin-capped CuS NPs and ferrocene-capped CuS NPs inside macrophages, thus the efflux of CuS NPs was significantly inhibited during the macrophage-hitchhiking delivery. Biodistribution studies in mice confirmed the dramatically enhanced deposition of CuS NPs in the tumor tissue of mice injected with macrophages carrying intracellular CuS aggregates, in comparison to that of mice treated with macrophages carrying CuS NPs. In response to the inflammatory tumor microenvironment, the oxidation of ferrocene would dissociate the β-cyclodextrin-ferrocene host-guest pair, driving disassembly of the CuS aggregates and release of small CuS NPs for deep tissue penetration and enhanced photothermal therapy. This precisely controlled intracellular self-assembly and disassembly of the nanomedicine inside macrophages provides a novel cell-hitchhiking delivery strategy that not only minimizes premature leakage of the nanomedicine but also greatly improves the delivery efficiency and tumor penetration for safe, effective tumor therapy.
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