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用于刺激细胞黏附与分化的水凝胶上的磁活性纳米拓扑结构

Magnetoactive Nanotopography on Hydrogels for Stimulated Cell Adhesion and Differentiation.

作者信息

Islam Md Shariful, Molley Thomas G, Jalandhra Gagan K, Fang Jason, Kruzic Jamie J, Kilian Kristopher A

机构信息

School of Materials Science and Engineering University of New South Wales (UNSW Sydney) Sydney NSW 2052 Australia.

School of Mechanical and Manufacturing Engineering University of New South Wales (UNSW Sydney) Sydney NSW 2052 Australia.

出版信息

Small Sci. 2025 Jan 27;5(4):2400468. doi: 10.1002/smsc.202400468. eCollection 2025 Apr.

Abstract

Advanced cell culture platforms that vary the biophysical microenvironment are useful tools for mechanobiology studies and for directing the differentiation of adherent cells to therapeutically relevant phenotypes. Herein, the fabrication of magnetoactive nanofiber mats for integration with hydrogels as a platform for dynamic stimulation at the cell-biomaterial interface is demonstrated. Electrospinning is used to form iron oxide-loaded gelatin-based nanofibers that are stabilized and cross-linked to the surface of gelatin methacryloyl hydrogels. The presence of a magnetic field stimulates focal adhesion formation and maturation in adherent adipose-derived stromal cells, with concurrent changes in cell and nuclear morphology. Adding lineage guiding supplements has been shown to complement biophysical cues, providing optimal conditions for differentiation into osteogenic and adipogenic lineages. The presence of nanofibers at the interface is beneficial to both lineages, but stiffening through an applied magnetic field encourages further osteogenesis while inhibiting adipogenesis. The system is further demonstrated with skeletal myoblasts, where nanotopography and stiffening promote the formation of mature multinucleated muscle cells. This magnetoactive nanofiber platform could prove useful in a wide array of mechanically sensitive cell systems for fundamental studies and for cell production, with flexibility for use with virtually any hydrogel cell culture system.

摘要

能够改变生物物理微环境的先进细胞培养平台是机械生物学研究以及引导贴壁细胞分化为具有治疗意义表型的有用工具。在此,展示了用于与水凝胶整合的磁活性纳米纤维垫的制造,作为细胞 - 生物材料界面动态刺激的平台。静电纺丝用于形成负载氧化铁的明胶基纳米纤维,这些纳米纤维被稳定并交联到甲基丙烯酰化明胶水凝胶的表面。磁场的存在刺激贴壁脂肪来源的基质细胞中粘着斑的形成和成熟,同时细胞和细胞核形态发生变化。已表明添加谱系引导补充剂可补充生物物理线索,为分化为成骨和成脂谱系提供最佳条件。界面处纳米纤维的存在对两个谱系都有益,但通过施加磁场变硬会促进进一步的成骨,同时抑制脂肪生成。该系统在骨骼肌成肌细胞中得到进一步验证,其中纳米拓扑结构和变硬促进成熟多核肌肉细胞的形成。这种磁活性纳米纤维平台在用于基础研究和细胞生产的各种机械敏感细胞系统中可能证明是有用的,并且具有与几乎任何水凝胶细胞培养系统一起使用的灵活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2984/12244508/a3ea47f2e4ae/SMSC-5-2400468-g003.jpg

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