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Dynamic analysis of the interactions between Si/SiO2 quantum dots and biomolecules for improving applications based on nano-bio interfaces

机译:Si / SiO2量子点与生物分子之间相互作用的动态分析以改善基于纳米生物界面的应用

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摘要

Due to their outstanding properties, quantum dots (QDs) received a growing interest in the biomedical field, but it is of major importance to investigate and to understand their interaction with the biomolecules. We examined the stability of silicon QDs and the time evolution of QDs – protein corona formation in various biological media (bovine serum albumin, cell culture medium without or supplemented with 10% fetal bovine serum-FBS). Changes in the secondary structure of BSA were also investigated over time. Hydrodynamic size and zeta potential measurements showed an evolution in time indicating the nanoparticle-protein interaction. The protein corona formation was also dependent on time, albumin adsorption reaching the peak level after 1 hour. The silicon QDs adsorbed an important amount of FBS proteins from the first 5 minutes of incubation that was maintained for the next 8 hours, and diminished afterwards. Under protein-free conditions the QDs induced cell membrane damage in a time-dependent manner, however the presence of serum proteins attenuated their hemolytic activity and maintained the integrity of phosphatidylcholine layer. This study provides useful insights regarding the dynamics of BSA adsorption and interaction of silicon QDs with proteins and lipids, in order to understand the role of QDs biocorona.
机译:由于其出色的性能,量子点(QD)在生物医学领域越来越受到关注,但是研究和了解其与生物分子的相互作用至关重要。我们检查了硅量子点的稳定性和量子点的时间演变–在各种生物介质(牛血清白蛋白,不含或补充10%胎牛血清FBS的细胞培养基)中形成蛋白质电晕。随着时间的推移,还对BSA二级结构的变化进行了研究。流体力学大小和ζ电位测量结果显示时间在变化,表明纳米粒子与蛋白质的相互作用。蛋白质电晕的形成也与时间有关,白蛋白的吸附在1小时后达到峰值。从孵育的前5分钟开始,硅QD吸附了大量的FBS蛋白,并在接下来的8小时内保持吸附,然后逐渐减少。在无蛋白条件下,量子点以时间依赖性方式诱导细胞膜损伤,但是血清蛋白的存在减弱了它们的溶血活性并维持了磷脂酰胆碱层的完整性。这项研究提供了有关BSA吸附动力学以及硅量子点与蛋白质和脂质相互作用的有用见解,从而了解量子点生物电晕的作用。

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