纳米载体
胶束
生物物理学
体内分布
PEG比率
乙二醇
材料科学
药物输送
单核吞噬细胞系统
体内
寡核苷酸
化学
生物化学
纳米技术
体外
生物
DNA
有机化学
水溶液
生物技术
经济
免疫学
财务
作者
Wanling Foo,Zoltán Cseresnyés,Carsten Rössel,Yingfeng Teng,Anuradha Ramoji,Mingzhe Chi,Walter Hauswald,Sophie Huschke,Stephanie Hoeppener,Jürgen Popp,Felix H. Schacher,Marek Sierka,Marc Thilo Figge,Adrian T. Press,Michael Bauer
出处
期刊:Biomaterials
[Elsevier BV]
日期:2023-01-21
卷期号:294: 122016-122016
被引量:8
标识
DOI:10.1016/j.biomaterials.2023.122016
摘要
Targeted delivery of oligonucleotides or small molecular drugs to hepatocytes, the liver's parenchymal cells, is challenging without targeting moiety due to the highly efficient mononuclear phagocyte system (MPS) of the liver. The MPS comprises Kupffer cells and specialized sinusoidal endothelial cells, efficiently clearing nanocarriers regardless of their size and surface properties. Physiologically, this non-parenchymal shield protects hepatocytes; however, these local barriers must be overcome for drug delivery. Nanocarrier structural properties strongly influence tissue penetration, in vivo pharmacokinetics, and biodistribution profile. Here we demonstrate the in vivo biodistribution of polyplex micelles formed by polyion complexation of short interfering (si)RNA with modified poly(ethylene glycol)-block-poly(allyl glycidyl ether) (PEG-b-PAGE) diblock copolymer that carries amino moieties in the side chain. The ratio between PEG corona and siRNA complexed PAGE core of polyplex micelles was chemically varied by altering the degree of polymerization of PAGE. Applying Raman-spectroscopy and dynamic in silico modeling on the polyplex micelles, we determined the corona-core ratio (CCR) and visualized the possible micellar structure with varying CCR. The results for this model system reveal that polyplex micelles with higher CCR, i.e., better PEG coverage, exclusively accumulate and thus allow passive cell-type-specific targeting towards hepatocytes, overcoming the macrophage-rich reticuloendothelial barrier of the liver.
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