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利用磁性纳米颗粒构建具有细胞外基质组装的三维细胞多层结构

Construction of 3-D Cellular Multi-Layers with Extracellular Matrix Assembly Using Magnetic Nanoparticles.

作者信息

Lee Yu Bin, Lee Joong-Yup, Ahmad Taufiq, Bak Seongwoo, Lee Jinkyu, Kim Hwan D, Park Tai Hyun, Hwang Nathaniel S, Lim Youn Mook, Shin Heungsoo

出版信息

J Biomed Nanotechnol. 2016 Oct;12(10):1916-28. doi: 10.1166/jbn.2016.2303.

DOI:10.1166/jbn.2016.2303
PMID:29360334
Abstract

Construction of 3-dimensional (3-D) engineered tissue is increasingly being investigated for use in drug discovery and regenerative medicine. Here, we developed multi-layered 3-D cellular assembly by using magnetic nanoparticles (MNP) isolated from Magnetospirillum sp. AMB-1 magnetotactic bacteria. Magnetized human dermal fibroblasts (HDFBs) were prepared by treatment with the MNP, induced to form 3-D assembly under a magnetic field. Analyses including LIVE/DEAD assay, transmission electron microscopy revealed that the MNP were internalized via clathrin-mediated endocytosis without cytotoxicity. The magnetized HDFBs could build 3-D structure as a function of seeding density. When the highest seeding density (5 × 105 cells/mm2 was used, the thickness of assembly was 41.90 ± 1.69 μm, with approximately 9.3 ± 1.6 cell layers being formed. Immunofluorescence staining confirmed homogeneous distribution of ECM and junction proteins throughout the 3-D assembly. Real-time PCR analysis showed decrease in expression levels of collagen types I and IV but increase in that of connexin 43 in the 3-D assembly compared with the 2-D culture. Finally, we demonstrated that the discernible layers can be formed hierarchically by serial assembly. In conclusion, our study showed that a multi-layered structure can be easily prepared using magnetically-assisted cellular assembly with highlighting cell-cell and cell-ECM communication.

摘要

三维(3-D)工程组织的构建正越来越多地被研究用于药物发现和再生医学。在此,我们利用从趋磁螺菌AMB-1磁趋细菌中分离出的磁性纳米颗粒(MNP)开发了多层3-D细胞组装体。通过用MNP处理制备磁化的人皮肤成纤维细胞(HDFB),使其在磁场下诱导形成3-D组装体。包括活/死检测、透射电子显微镜在内的分析表明,MNP通过网格蛋白介导的内吞作用内化且无细胞毒性。磁化的HDFB可以根据接种密度构建3-D结构。当使用最高接种密度(5×105个细胞/mm2)时,组装体的厚度为41.90±1.69μm,形成了约9.3±1.6个细胞层。免疫荧光染色证实细胞外基质(ECM)和连接蛋白在整个3-D组装体中均匀分布。实时聚合酶链反应(PCR)分析表明,与二维培养相比,3-D组装体中I型和IV型胶原蛋白的表达水平降低,但连接蛋白43的表达水平升高。最后,我们证明了通过连续组装可以分层形成可辨别的层。总之,我们的研究表明,利用磁辅助细胞组装可以轻松制备多层结构,突出了细胞间和细胞与ECM之间的通讯。

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