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The lamellar structure and biomimetic properties of a fish scale matrix

机译:鱼鳞基质的层状结构和仿生特性

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The chemical composition of scaffolds is similar to the extracellular matrix of the target tissue, but sometimes scaffolds cannot meet the special functional requirements for the initial stage of engineering tissue, such as mechanical and optical properties. Bionic scaffolds require certain levels of supramolecular structure, textile structure and liquid crystal structure. Here, we will focus our attention on animal tissues with a similar high-level structure to that of the target organization and we hope to achieve the desired results through new technical means. In this study, we have developed a method to obtain a fish scale lamellar matrix from grass carp scales. The fine structure of the scale matrix has been studied, and it was found that the grass carp scale matrix is a textured structure consisting of multiple collagen sheets, which have a double-twisted spiral structure similar to a liquid crystal, thus correcting the literature reports of a single twisted spiral structure. Interestingly, this structure has many similarities with the cornea, cementum and tibial matrix. At the same time, the correlation between the etching time and the optical properties of the scaffold was also studied, and the scale matrix can reach light transmission and refraction levels similar to those of the corneal stroma. Moreover, the matrix has good mechanical properties, in vitro anti-enzymatic abilities and compatibility with human corneal epithelial cells. Therefore, this kind of scaffold material and preparation method, with a lamellar structure and special physical parameters, may provide new hope for corneal prosthesis.
机译:支架的化学组成类似于靶组织的细胞外基质,但有时支架不能满足工程组织初始阶段的特殊功能要求,例如机械和光学性能。仿生支架需要一定水平的超分子结构,纺织品结构和液晶结构。在这里,我们将注意力集中在具有与目标组织相似的高级结构的动物组织上,并且我们希望通过新的技术手段来达到预期的效果。在这项研究中,我们开发了一种从草鱼鳞获得鱼鳞片状基质的方法。研究了鳞片基质的精细结构,发现草鱼鳞片基质是由多个胶原片组成的纹理结构,其具有类似于液晶的双扭曲螺旋结构,因此对文献报道进行了纠正扭曲的螺旋结构。有趣的是,这种结构与角膜,牙骨质和胫骨基质有许多相似之处。同时,还研究了刻蚀时间与支架的光学性能之间的相关性,并且鳞片基质可以达到与角膜基质相似的透光和折射水平。此外,该基质具有良好的机械性能,体外抗酶能力以及与人角膜上皮细胞的相容性。因此,这种具有层状结构和特殊物理参数的支架材料及其制备方法,可能为角膜修复提供新的希望。

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