蛋白质组学
化学
小泡
纳米颗粒
生物物理学
纳米载体
共焦显微镜
ADP核糖基化因子
细胞内
氧化铁纳米粒子
细胞器
药物输送
纳米技术
细胞生物学
生物化学
材料科学
生物
细胞
高尔基体
基因
膜
作者
Daniel Hofmann,Stefan Tenzer,Markus B. Bannwarth,Claudia Messerschmidt,Simone F. Glaser,Hansjörg Schild,Katharina Landfester,Volker Mailänder
出处
期刊:ACS Nano
[American Chemical Society]
日期:2014-09-29
卷期号:8 (10): 10077-10088
被引量:96
摘要
Rational design of nanocarriers for drug delivery approaches requires an unbiased knowledge of uptake mechanisms and intracellular trafficking pathways. Here we dissected these processes using a quantitative proteomics approach. We isolated intracellular vesicles containing superparamagnetic iron oxide polystyrene nanoparticles and analyzed their protein composition by label-free quantitative mass spectrometry. The proteomic snapshot of organelle marker proteins revealed that an atypical macropinocytic-like mechanism mediated the entry of nanoparticles. We show that the entry mechanism is controlled by actin reorganization, atypical macropinocytic signaling, and ADP-ribosylation factor 1. Additionally, our proteomics data demonstrated a central role for multivesicular bodies and multilamellar lysosomes in trafficking and final nanoparticle storage. This was confirmed by confocal microscopy and cryo-TEM measurements. By quantitatively analyzing the protein composition of nanoparticle-containing vesicles, our study clearly defines the routes of nanoparticle entry, intracellular trafficking, and the proteomic milieu of a nanoparticle-containing vesicle.
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