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间充质干细胞摄取磁性纳米颗粒研究中的非线性磁响应测量

Nonlinear Magnetic Response Measurements in Study of Magnetic Nanoparticles Uptake by Mesenchymal Stem Cells.

作者信息

Ryzhov Vyacheslav, Marchenko Yaroslav, Deriglazov Vladimir, Yudintceva Natalia, Smirnov Oleg, Arutyunyan Alexandr, Shtam Tatiana, Ivanov Evgenii, Combs Stephanie E, Shevtsov Maxim

机构信息

Petersburg Nuclear Physics Institute Named by B.P. Konstantinov of National Research Centre «Kurchatov Institute», Orlova Roscha 1, 188300 Gatchina, Russia.

Laboratory of Biomedical Nanotechnologies, Institute of Cytology of the Russian Academy of Sciences (RAS), 194064 St. Petersburg, Russia.

出版信息

Nanomaterials (Basel). 2025 Apr 29;15(9):675. doi: 10.3390/nano15090675.

Abstract

Stem cells therapies offer a promising approach in translational oncology, as well as in regenerative medicine due to the tropism of these cells to the damage site. To track the distribution of stem cells, the latter could be labeled by MRI-sensitive superparamagnetic (SPM) iron oxide nanoparticles. In the current study, magnetic properties of the magnetic nanoparticles (MNPs) incorporated into the bone marrow-derived fetal mesenchymal stem cells (FetMSCs) were evaluated employing nonlinear magnetic response measurements. Synthesized dextran-coated iron oxide nanoparticles were additionally characterized by X-ray diffraction, transmission electron microscopy, and dynamic light scattering. The MNP uptake by the FetMSCs 24 h following coincubation was studied by longitudinal nonlinear response to weak alternating magnetic field with registration of the second harmonic of magnetization. Subsequent data processing using a formalism based on the numerical solution of the Fokker-Planck kinetic equation allowed us to determine magnetic and dynamic parameters and the state of MNPs in the cells, as well as in the culture medium. It was found that MNPs formed aggregates in the culture medium; they were absorbed by the cells during coincubation. The aggregates exhibited SPM regime in the medium, and the parameters of the MNP aggregates remained virtually unchanged in the cells, indicating the preservation of the aggregation state of MNPs inside the cells. This implies also the preservation of the organic shell of the nanoparticles inside FetMSCs. The accumulation of MNPs by mesenchymal stem cells gradually increased with the concentration of MNPs. Thus, the study confirmed that the labeling of MSCs with MNPs is an effective method for subsequent cell tracking as incorporated nanoparticles retain their magnetic properties.

摘要

干细胞疗法在转化肿瘤学以及再生医学中提供了一种有前景的方法,这归因于这些细胞对损伤部位的趋向性。为了追踪干细胞的分布,可通过对MRI敏感的超顺磁性(SPM)氧化铁纳米颗粒对其进行标记。在当前研究中,采用非线性磁响应测量评估了掺入骨髓来源的胎儿间充质干细胞(FetMSCs)中的磁性纳米颗粒(MNPs)的磁性。合成的葡聚糖包被的氧化铁纳米颗粒还通过X射线衍射、透射电子显微镜和动态光散射进行了表征。通过对弱交变磁场的纵向非线性响应以及对磁化二次谐波的记录,研究了共孵育24小时后FetMSCs对MNP的摄取情况。随后使用基于福克-普朗克动力学方程数值解的形式进行数据处理,使我们能够确定细胞以及培养基中MNPs的磁性和动态参数以及状态。结果发现,MNPs在培养基中形成聚集体;在共孵育过程中它们被细胞吸收。聚集体在培养基中呈现超顺磁状态,并且MNPs聚集体的参数在细胞中几乎保持不变,这表明MNPs在细胞内的聚集状态得以保留。这也意味着纳米颗粒的有机壳在FetMSCs内得以保留。间充质干细胞对MNPs的积累随着MNPs浓度的增加而逐渐增加。因此,该研究证实用MNPs标记MSCs是后续细胞追踪的一种有效方法,因为掺入的纳米颗粒保留了它们的磁性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7376/12073591/3196be7c6c8c/nanomaterials-15-00675-g001.jpg

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