聚乙二醇
化学
聚合
纳米凝胶
PEG比率
单体
生物物理学
高分子化学
化学工程
药物输送
有机化学
聚合物
财务
生物
工程类
经济
作者
Suman Basak,Harshvardhan A. Khare,Martin Roursgaard,Paul J. Kempen,Jong‐Hyun Lee,Salime Bazban-Shotorbani,Martin K. Kræmer,Sergey Chernyy,Thomas L. Andresen,Kristoffer Almdal,Nazila Kamaly
出处
期刊:Biomacromolecules
[American Chemical Society]
日期:2020-10-30
卷期号:22 (2): 386-398
被引量:13
标识
DOI:10.1021/acs.biomac.0c01238
摘要
A key initiating step in atherosclerosis is the accumulation and retention of apolipoprotein B complexing lipoproteins within the artery walls. In this work, we address this exact initiating mechanism of atherosclerosis, which results from the oxidation of low-density lipoproteins (oxLDL) using therapeutic nanogels. We present the development of biocompatible polyethylene glycol (PEG) cross-linked nanogels formed from a single simultaneous cross-linking and co-polymerization step in water without the requirement for an organic solvent, high temperature, or shear stress. The nanogel synthesis also incorporates in situ noncovalent electrostatically driven template polymerization around an innate anti-inflammatory and anti-oxidizing paraoxonase-1 (PON-1) enzyme payload—the release of which is triggered because of matrix metalloproteinase responsive elements instilled in the PEG cross-linker monomer. The results obtained demonstrate the potential of triggered release of the PON-1 enzyme and its efficacy against the production of ox-LDL, and therefore a reduction in macrophage foam cell and reactive oxygen species formation.
科研通智能强力驱动
Strongly Powered by AbleSci AI