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配体性质和金纳米粒子粒径对蛋白质吸附及相应靶向能力的影响。

Influence of ligands property and particle size of gold nanoparticles on the protein adsorption and corresponding targeting ability.

机构信息

Key Laboratory of Drug Targeting and Drug Delivery Systems, West China School of Pharmacy, Sichuan University, No. 17, Block 3, Southern Renmin Road, Chengdu 610041, China.

Research Center for Public Health and Preventive Medicine, West China School of Public Health, Sichuan University, Chengdu 610041 China.

出版信息

Int J Pharm. 2018 Mar 1;538(1-2):105-111. doi: 10.1016/j.ijpharm.2018.01.011. Epub 2018 Jan 16.


DOI:10.1016/j.ijpharm.2018.01.011
PMID:29341915
Abstract

Nanoparticulated vesicles were widely used for carriers of drugs and imaging probes. To improve the targeting delivery efficiency of these vesicles, ligands were often functionalized onto their surfaces. However, the interaction between vesicles and plasma proteins may cover the ligands and hinder the targeting delivery. It is important to address the potential influence of ligands modification on plasma protein adsorption and the following targeting delivery. In this study, two common used ligands were chosen as the model: transferrin and RGD peptide. Gold nanoparticles were utilized as model particles. Sodium dodecyl sulfate polyacrylamide gel electrophoresis data demonstrated that higher PEG modification and smaller particle size could reduce the plasma protein adsorption, while ligand modification could increase. The cellular uptake results showed that the targeting ability of smaller ligand RGD peptide would be more easily influenced by the proteins corona.

摘要

纳米囊泡被广泛用作药物和成像探针的载体。为了提高这些囊泡的靶向递送效率,通常将配体功能化到它们的表面。然而,囊泡与血浆蛋白之间的相互作用可能会覆盖配体并阻碍靶向递送。因此,有必要解决配体修饰对血浆蛋白吸附及随后靶向递送的潜在影响。在这项研究中,选择了两种常用的配体作为模型:转铁蛋白和 RGD 肽。金纳米颗粒被用作模型颗粒。十二烷基硫酸钠聚丙烯酰胺凝胶电泳数据表明,较高的 PEG 修饰和较小的粒径可以减少血浆蛋白的吸附,而配体修饰则会增加吸附。细胞摄取结果表明,较小的靶向配体 RGD 肽的靶向能力更容易受到蛋白质冠的影响。

相似文献

[1]
Influence of ligands property and particle size of gold nanoparticles on the protein adsorption and corresponding targeting ability.

Int J Pharm. 2018-1-16

[2]
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[3]
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[4]
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[6]
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