Magnetically Enhanced Intracellular Uptake of Superparamagnetic Iron Oxide Nanoparticles for Antitumor Therapy

细胞内 生物物理学 材料科学 磁性纳米粒子 氧化铁纳米粒子 超顺磁性 纳米颗粒 热疗 纳米技术 化学 生物化学 磁场 生物 磁化 物理 古生物学 量子力学
作者
J.Y. Choi,Dong‐In Kim,Jinyoung Kim,Salvador Pané,Bradley J. Nelson,Young‐Tae Chang,Hongsoo Choi
出处
期刊:ACS Nano [American Chemical Society]
卷期号:17 (16): 15857-15870 被引量:23
标识
DOI:10.1021/acsnano.3c03780
摘要

Superparamagnetic iron oxide nanoparticles (SPIONs) have been widely employed in biomedical fields, including targeted delivery of antitumor therapy. Conventional magnetic tumor targeting has used simple static magnetic fields (SMFs), which cause SPIONs to linearly aggregate into a long chain-like shape. Such agglomeration greatly hinders the intracellular targeting of SPIONs into tumors, thus reducing the therapeutic efficacy. In this study, we investigated the enhancement of the intracellular uptake of SPIONs through the application of rotating magnetic fields (RMFs). Based on the physical principles of SPION chain disassembly, we investigated physical parameters to predict the chain length favorable for intracellular uptake. Our prediction was validated by clear visualization of the intracellular distributions of SPIONs in tumor cells at both cellular and three-dimensional microtissue levels. To identify the potential therapeutic effects of enhanced intracellular uptake, magnetic hyperthermia as antitumor therapy was investigated under varying conditions of magnetic hyperthermia and RMFs. The results showed that enhanced intracellular uptake reduced magnetic hyperthermia time and strength as well as particle concentration. The proposed method will be useful in the development of techniques to determine the optimized physical conditions for the enhanced intracellular uptake of SPIONs in antitumor therapy.
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