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生物源和非生物源磁性纳米颗粒在血管组织中的链状结构。

Chain-Like Structures of Biogenic and Nonbiogenic Magnetic Nanoparticles in Vascular Tissues.

机构信息

National Technical University of Ukraine "Igor Sikorsky Kyiv Polytechnic Institute", Kyiv, Ukraine.

Institute of Magnetism NAS of Ukraine and MES of Ukraine, Kyiv, Ukraine.

出版信息

Bioelectromagnetics. 2022 Feb;43(2):119-143. doi: 10.1002/bem.22390.

Abstract

In this paper, slices of organs from various organisms (animals, plants, fungi) were investigated by using atomic force microscopy and magnetic force microscopy to identify common features of localization of both biogenic and nonbiogenic magnetic nanoparticles. It was revealed that both biogenic and nonbiogenic magnetic nanoparticles are localized in the form of chains of separate nanoparticles or chains of conglomerates of nanoparticles in the walls of the capillaries of animals and the walls of the conducting tissue of plants and fungi. Both biogenic and nonbiogenic magnetic nanoparticles are embedded as a part of the transport system in multicellular organisms. In connection with this, a new idea of the function of biogenic magnetic nanoparticles is discussed, that the chains of biogenic magnetic nanoparticles and chains of conglomerates of biogenic magnetic nanoparticles represent ferrimagnetic organelles of a specific purpose. Besides, magnetic dipole-dipole interaction of biogenic magnetic nanoparticles with magnetically labeled drugs or contrast agents for magnetic resonance imaging should be considered when designing the drug delivery and other medical systems because biogenic magnetic nanoparticles in capillary walls will serve as the trapping centers for the artificial magnetic nanoparticles. The aggregates of both artificial and biogenic magnetic nanoparticles can be formed, contributing to the risk of vascular occlusion. Bioelectromagnetics. 43:119-143, 2022. © 2021 Bioelectromagnetics Society.

摘要

本文使用原子力显微镜和磁力显微镜研究了来自各种生物体(动物、植物、真菌)的器官切片,以确定生物源和非生物源磁性纳米粒子定位的共同特征。结果表明,生物源和非生物源磁性纳米粒子都以单独纳米粒子链或纳米粒子聚集体链的形式存在于动物毛细血管壁和植物及真菌的传导组织壁中。生物源和非生物源磁性纳米粒子都作为多细胞生物中运输系统的一部分被嵌入。因此,讨论了生物磁性纳米粒子功能的新观点,即生物磁性纳米粒子链和生物磁性纳米粒子聚集体链代表了具有特定用途的亚铁磁细胞器。此外,在设计药物输送和其他医疗系统时,应考虑生物磁性纳米粒子与用于磁共振成像的磁性标记药物或对比剂之间的磁偶极-偶极相互作用,因为毛细血管壁中的生物磁性纳米粒子将作为人工磁性纳米粒子的捕获中心。人工和生物磁性纳米粒子的聚集体可以形成,导致血管阻塞的风险增加。生物电磁学。43:119-143, 2022. © 2021 生物电磁学学会。

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