School of Chemistry & Chemical Engineering, Queen's University, Belfast, UK.
Biomedical Engineering Department, Northwestern University, Evanston, Illinois, USA.
Sci Rep. 2017 Oct 26;7(1):14138. doi: 10.1038/s41598-017-13285-4.
Porous silica is an attractive biomaterial in many applications, including drug-delivery systems, bone-graft fillers and medical devices. The issue with porous silica biomaterials is the rate at which they resorb and the significant role played by interfacial chemistry on the host response in vivo. This paper explores the potential of diatom-biosilica as a model tool to assist in the task of mapping and quantifying the role of surface topography and chemical cues on cell fate. Diatoms are unicellular microalgae whose cell walls are composed of, amorphous nanopatterned biosilica that cannot be replicated synthetically. Their unique nanotopography has the potential to improve understanding of interface reactions between materials and cells. This study used Cyclotella meneghiniana as a test subject to assess cytotoxicity and pro-inflammatory reactions to diatom-biosilica. The results suggest that diatom-biosilica is non-cytotoxic to J774.2 macrophage cells, and supports cell proliferation and growth. The addition of amine and thiol linkers have shown a significant effect on cytotoxicity, growth and cytokine response, thus warranting further investigation into the interfacial effects of small chemical modifications to substrate surfaces. The overall findings suggest diatom-biosilica offers a unique platform for in-depth investigation of the role played by nanotopography and chemistry in biomedical applications.
多孔硅材料在许多应用中都是一种有吸引力的生物材料,包括药物输送系统、骨移植填充物和医疗器械。多孔硅生物材料的问题在于它们的吸收速度以及界面化学在体内宿主反应中所起的重要作用。本文探讨了硅藻生物硅作为一种模型工具的潜力,以协助绘制和量化表面形貌和化学线索对细胞命运的作用。硅藻是一种单细胞微藻,其细胞壁由无定形纳米图案化的生物硅组成,无法通过合成方法复制。它们独特的纳米形貌有可能增进对材料与细胞之间界面反应的理解。本研究使用 Cyclotella meneghiniana 作为测试对象,评估硅藻生物硅的细胞毒性和促炎反应。结果表明,硅藻生物硅对 J774.2 巨噬细胞无细胞毒性,并支持细胞增殖和生长。胺和硫醇连接剂的添加对细胞毒性、生长和细胞因子反应有显著影响,因此需要进一步研究小化学修饰对基底表面的界面效应。总体研究结果表明,硅藻生物硅为深入研究纳米形貌和化学在生物医学应用中的作用提供了一个独特的平台。