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磁性纳米粒子与 DPPC 模型膜相互作用的研究:天然淀粉和氨化淀粉包覆的磁性纳米粒子。

Probing of Interactions of Magnetite Nanoparticles Coated with Native and Aminated Starch with a DPPC Model Membrane.

机构信息

Faculty of Material Engineering and Technical Physics, Poznan University of Technology, Piotrowo 3, 60-965 Poznan, Poland.

Faculty of Chemistry, Nicolaus Copernicus University in Torun, Gagarina 7, 87-100 Torun, Poland.

出版信息

Int J Mol Sci. 2021 May 31;22(11):5939. doi: 10.3390/ijms22115939.

Abstract

Understanding the mechanism of interactions between magnetite nanoparticles and phospholipids that form cellular membranes at the molecular level is of crucial importance for their safe and effective application in medicine (e.g. magnetic resonance imaging, targeted drug delivery, and hyperthermia-based anticancer therapy). In these interactions, their surface coating plays a crucial role because even a small modification to its structure can cause significant changes to the behaviour of the magnetite nanoparticles that come in contact with a biomembrane. In this work, the influence of the magnetite nanoparticles functionalized with native and aminated starch on the thermodynamics, morphology, and dilatational elasticity of the model cell membranes was studied. The model cell membranes constituted the Langmuir monolayers formed at the air-water interface of dipalmitoylphosphatidylcholine (DPPC). The surface of the aminated starch-coated nanoparticles was enriched in highly reactive amino groups, which allowed more effective binding of drugs and biomolecules suitable for specific nano-bio applications. The studies indicated that the presence of these groups also reduced to some extent the disruptive effect of the magnetite nanoparticles on the model membranes and improved their adsorption.

摘要

了解磁铁矿纳米粒子与磷脂在分子水平上形成细胞膜的相互作用机制对于它们在医学中的安全有效应用(例如磁共振成像、靶向药物输送和基于热疗的抗癌治疗)至关重要。在这些相互作用中,它们的表面涂层起着至关重要的作用,因为即使对其结构进行微小的修改,也会导致与生物膜接触的磁铁矿纳米粒子的行为发生显著变化。在这项工作中,研究了用天然和氨基化淀粉功能化的磁铁矿纳米粒子对模型细胞膜的热力学、形态和扩张弹性的影响。模型细胞膜由二棕榈酰磷脂酰胆碱(DPPC)在气-水界面形成的 Langmuir 单分子层组成。氨基化淀粉涂层纳米粒子的表面富含高反应性的氨基,这使得更有效地结合适合特定纳米生物应用的药物和生物分子成为可能。研究表明,这些基团的存在也在一定程度上降低了磁铁矿纳米粒子对模型膜的破坏作用,并改善了它们的吸附。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5f04/8198464/609d87447649/ijms-22-05939-g001.jpg

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