Reversible Alignment of Nanoparticles and Intracellular Vesicles During Magnetic Hyperthermia Experiments

材料科学 磁性纳米粒子 小泡 磁场 胶体 磁热疗 纳米颗粒 生物物理学 纳米技术 细胞内 化学物理 软物质 领域(数学) 化学 物理 生物 生物化学 物理化学 数学 量子力学 纯数学
作者
Yilian Fernández‐Afonso,Sergiu Ruta,Amira Páez‐Rodríguez,Thomas S. van Zanten,Sian Gleadhall,Raluca M. Fratila,María Moros,M. P. Morales,Akira Satoh,R.W. Chantrell,David Serantes,Lucía Gutiérrez
出处
期刊:Advanced Functional Materials [Wiley]
标识
DOI:10.1002/adfm.202405334
摘要

Abstract Heating magnetic nanoparticles (MNPs) with AC (Alternating Current) magnetic fields has received significant attention in recent years, particularly for biomedical uses. However, most studies focus on characterizing the heat release, overlooking the fact that the MNPs in the viscous cell environment constitute a dynamic magnetic colloid whose configuration may evolve over time, particularly if a driving force as the AC field is applied. Aiming to shed light on this matter, in this workthe dynamics of the colloid structure during hyperthermia experiments are studied. By combining various experimental and theoretical tools, it is concluded that the AC field may drive the formation of aligned structures, and the impact that such structures may have on the associated heating is assessed. Remarkably, the results show that those field‐driven structures are highly unstable for small particle sizes, rapidly disassembling upon field removal. Moreover, an analogous behavior in vitro is found, with the AC magnetic field also promoting a reversible alignment of vesicles containing the MNPs within the cells. The results suggest that the observed alignment, both of MNPs and intracellular vesicles, may be a common phenomenon in usual hyperthermia experiments, but unnoticed because of the intrinsic unstable nature of the aligned structures.

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