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树枝状金纳米颗粒作为gp160(HIV-1)肽的载体:对复合物形成的生物物理洞察

Dendronized Gold Nanoparticles as Carriers for gp160 (HIV-1) Peptides: Biophysical Insight into Complex Formation.

作者信息

Garaiova Zuzana, Melikishvili Sopio, Michlewska Sylwia, Ionov Maksim, Pedziwiatr-Werbicka Elzbieta, Waczulikova Iveta, Hianik Tibor, Gomez-Ramirez Rafael, de la Mata Francisco Javier, Bryszewska Maria

机构信息

Department of Nuclear Physics and Biophysics, Faculty of Mathematics, Physics and Informatics, Comenius University, Bratislava 842 48, Slovakia.

Laboratory of Microscopic Imaging and Specialized Biological Techniques, Faculty of Biology and Environmental Protection, University of Lodz, Lodz 90-237, Poland.

出版信息

Langmuir. 2021 Feb 2;37(4):1542-1550. doi: 10.1021/acs.langmuir.0c03159. Epub 2021 Jan 21.

Abstract

The unavailability of effective and safe human immunodeficiency virus (HIV) vaccines incites several approaches for development of the efficient antigen/adjuvant vaccination composite. In this study, three different dendronized gold nanoparticles (AuNPs 13-15) were investigated for a complexation ability with gp160 synthetic peptides derived from an HIV envelope. It has been shown that HIV peptides interacted with nanoparticles as evident from the changes in their secondary structures, restricted the mobility of the attached fluorescence dye, and enhanced peptide helicity confirmed by the fluorescence polarization and circular dichroism results. Transmission electron microscopy visualized complexes as cloud-like structures with attached nanoparticles. AuNP 13-15 nanoparticles bind negatively charged peptides depending on the number of functional groups; the fastest saturation and peptide retardation were observed for the most dendronized nanoparticle as indicated from dynamic light scattering, laser Doppler velocimetry, and agarose gel electrophoresis experiments. Dendronized gold nanoparticles can be considered one of the potential HIV peptide-based vaccination platforms.

摘要

有效且安全的人类免疫缺陷病毒(HIV)疫苗的缺乏促使人们采用多种方法来开发高效的抗原/佐剂疫苗复合物。在本研究中,研究了三种不同的树枝状金纳米颗粒(AuNPs 13 - 15)与源自HIV包膜的gp160合成肽的络合能力。研究表明,HIV肽与纳米颗粒相互作用,这从它们二级结构的变化中可以明显看出,限制了附着荧光染料的流动性,并通过荧光偏振和圆二色性结果证实增强了肽的螺旋度。透射电子显微镜将复合物可视化为带有附着纳米颗粒的云状结构。AuNP 13 - 15纳米颗粒根据官能团的数量与带负电荷的肽结合;动态光散射、激光多普勒测速和琼脂糖凝胶电泳实验表明,对于树枝状程度最高的纳米颗粒观察到最快的饱和和肽阻滞现象。树枝状金纳米颗粒可被视为基于HIV肽的潜在疫苗接种平台之一。

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