补体系统
纳米颗粒
生物物理学
化学
C3转化酶
配对
PEG比率
经典补体途径
先天免疫系统
替代补体途径
纳米技术
材料科学
生物化学
生物
免疫学
免疫系统
受体
经济
物理
量子力学
超导电性
财务
作者
Martina Pannuzzo,Sara Esposito,Linping Wu,Jaehong Key,Santosh Aryal,Christian Celia,Luisa di Marzio,S. Moein Moghimi,Paolo Decuzzi
出处
期刊:Nano Letters
[American Chemical Society]
日期:2020-04-07
卷期号:20 (6): 4312-4321
被引量:100
标识
DOI:10.1021/acs.nanolett.0c01011
摘要
Many PEGylated nanoparticles activate the complement system, which is an integral component of innate immunity. This is of concern as uncontrolled complement activation is potentially detrimental and contributes to disease pathogenesis. Here, it is demonstrated that, in contrast to carboxyPEG 2000 -stabilized poly(lactic- co -glycolic acid) nanoparticles, surface camouflaging with appropriate combinations and proportions of carboxyPEG 2000 and methoxyPEG 550 can largely suppress nanoparticle-mediated complement activation through the lectin pathway. This is attributed to the ability of the short, rigid methoxyPEG 550 chains to laterally compress carboxyPEG 2000 molecules to become more stretched and assume an extended, random coil configuration. As supported by coarse-grained molecular dynamics simulations, these conformational attributes minimize statistical protein binding/intercalation, thereby affecting sequential dynamic processes in complement convertase assembly. Furthermore, PEG pairing has no additional effect on nanoparticle longevity in the blood and macrophage uptake. PEG pairing significantly overcomes nanoparticle-mediated complement activation without the need for surface functionalization with complement inhibitors.
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