Department of Pharmaceutics, Daqing Campus of Harbin Medical University, 1 Xinyang Rd., Daqing 163319, China.
Nanoscale. 2021 Jun 28;13(24):10748-10764. doi: 10.1039/d1nr02065j. Epub 2021 Jun 16.
The rapid development of drug nanocarriers has benefited from the surface hydrophilic polymers of particles, which has improved the pharmacokinetics of the drugs. Polyethylene glycol (PEG) is a kind of polymeric material with unique hydrophilicity and electrical neutrality. PEG coating is a crucial factor to improve the biophysical and chemical properties of nanoparticles and is widely studied. Protein adherence and macrophage removal are effectively relieved due to the existence of PEG on the particles. This review discusses the PEGylation methods of nanoparticles and related techniques that have been used to detect the PEG coverage density and thickness on the surface of the nanoparticles in recent years. The molecular weight (MW) and coverage density of the PEG coating on the surface of nanoparticles are then described to explain the effects on the biophysical and chemical properties of nanoparticles.
药物纳米载体的快速发展得益于颗粒表面的亲水性聚合物,这改善了药物的药代动力学。聚乙二醇(PEG)是一种具有独特亲水性和电中性的聚合物材料。PEG 涂层是改善纳米颗粒的生物物理和化学性质的关键因素,因此受到广泛研究。由于颗粒上存在 PEG,可有效缓解蛋白质黏附和巨噬细胞清除。本文综述了纳米颗粒的 PEG 化方法以及近年来用于检测纳米颗粒表面 PEG 覆盖率和厚度的相关技术。然后描述了纳米颗粒表面 PEG 涂层的分子量(MW)和覆盖率密度,以解释其对纳米颗粒生物物理和化学性质的影响。
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