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不同末端的超小碳化硅纳米颗粒的免疫调节潜力

Immunomodulatory Potential of Differently-Terminated Ultra-Small Silicon Carbide Nanoparticles.

作者信息

Bělinová Tereza, Machová Iva, Beke David, Fučíková Anna, Gali Adam, Humlová Zuzana, Valenta Jan, Hubálek Kalbáčová Marie

机构信息

Biomedical Center, Faculty of Medicine in Pilsen, Charles University, 323 00 Pilsen, Czech Republic.

Wigner Research Centre for Physics, 1121 Budapest, Hungary.

出版信息

Nanomaterials (Basel). 2020 Mar 22;10(3):573. doi: 10.3390/nano10030573.

Abstract

Ultra-small nanoparticles with sizes comparable to those of pores in the cellular membrane possess significant potential for application in the field of biomedicine. Silicon carbide ultra-small nanoparticles with varying surface termination were tested for the biological system represented by different human cells (using a human osteoblastic cell line as the reference system and a monocyte/macrophage cell line as immune cells). The three tested nanoparticle surface terminations resulted in the observation of different effects on cell metabolic activity. These effects were mostly noticeable in cases of monocytic cells, where each type of particle caused a completely different response ('as-prepared' particles, i.e., were highly cytotoxic, -OH terminated particles slightly increased the metabolic activity, while -NH terminated particles caused an almost doubled metabolic activity) after 24 h of incubation. Subsequently, the release of cytokines from such treated monocytes and their differentiation into activated cells was determined. The results revealed the potential modulation of immune cell behavior following stimulation with particular ultra-small nanoparticles, thus opening up new fields for novel silicon carbide nanoparticle biomedical applications.

摘要

尺寸与细胞膜孔相当的超小纳米颗粒在生物医学领域具有巨大的应用潜力。对具有不同表面终端的碳化硅超小纳米颗粒进行了测试,以不同人类细胞代表的生物系统(使用人类成骨细胞系作为参考系统,单核细胞/巨噬细胞系作为免疫细胞)。三种测试的纳米颗粒表面终端对细胞代谢活性产生了不同的影响。这些影响在单核细胞中最为明显,在孵育24小时后,每种类型的颗粒都引起了完全不同的反应(“原样制备”的颗粒具有高度细胞毒性,-OH终端颗粒略微增加了代谢活性,而-NH终端颗粒使代谢活性几乎翻倍)。随后,测定了此类处理过的单核细胞中细胞因子的释放及其向活化细胞的分化。结果揭示了用特定超小纳米颗粒刺激后免疫细胞行为的潜在调节作用,从而为新型碳化硅纳米颗粒生物医学应用开辟了新领域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/47bb/7153366/3b91af8e0468/nanomaterials-10-00573-g001.jpg

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