College of Osteopedics & Traumatology, Fujian University of Traditional Chinese Medicine, Fuzhou, China.
Biomaterials. 2011 Dec;32(34):8743-52. doi: 10.1016/j.biomaterials.2011.08.007. Epub 2011 Aug 23.
Biocalcification of collagen matrices with calcium phosphate and biosilicification of diatom frustules with amorphous silica are two discrete processes that have intrigued biologists and materials scientists for decades. Recent advancements in the understanding of the mechanisms involved in these two biomineralisation processes have resulted in the use of biomimetic strategies to replicate these processes separately using polyanionic, polycationic or zwitterionic analogues of extracellular matrix proteins to stabilise amorphous mineral precursor phases. To date, there is a lack of a universal model that enables the subtleties of these two apparently dissimilar biomineralisation processes to be studied together. Here, we utilise the eggshell membrane as a universal model for differential biomimetic calcification and silicification. By manipulating the eggshell membrane to render it permeable to stabilised mineral precursors, it is possible to introduce nanostructured calcium phosphate or silica into eggshell membrane fibre cores or mantles. We provide a model for infiltrating the two compartmental niches of a biopolymer membrane with different intrafibre minerals to obtain materials with potentially improved structure-property relationships.
胶原基质的生物钙化和硅藻壳的生物硅化是两个不同的过程,几十年来一直令生物学家和材料科学家感到好奇。最近对这两个生物矿化过程中涉及的机制的理解的进展,导致了使用仿生策略来分别使用细胞外基质蛋白的聚阴离子、聚阳离子或两性离子类似物来复制这些过程,以稳定无定形矿物前体相。迄今为止,缺乏一种通用模型来研究这两个明显不同的生物矿化过程的细微差别。在这里,我们利用蛋壳膜作为差异化仿生钙化和硅化的通用模型。通过操纵蛋壳膜使其对稳定的矿物前体具有渗透性,可以将纳米结构的磷酸钙或二氧化硅引入蛋壳膜纤维芯或壳中。我们提供了一种模型,用于用不同的纤维内矿物质渗透生物聚合物膜的两个隔室龛,以获得具有潜在改善结构-性能关系的材料。