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Investigation of Micro- and Nanostructure of Biocompatible Scaffolds from Regenerated Fibroin of Bombix mori by Scanning Probe Nanotomography

机译:扫描探针纳米层析技术研究家蚕再生丝素蛋白的生物相容性支架的微观和纳米结构

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摘要

This paper presents a study of three-dimensional micro- and nanosctuctures of porous biocom-patible matrices from regenerated fibroin and a quantitative analysis of their microporosity parameters. An analysis of the three-dimensional structure of matrices has been carried out by scanning probe nanoto-mography with the use of an experimental setup combining an ultramicrotome and scanning probe micro-scope. The formation of a three-dimensional network of interconnected pores with characteristic dimensions ranging from 1.7 to 6.0 μm is observed in the bulk volume of studied matrices. The measured mean pore diameter is 3.54 ± 1.23 μm; the mean pore wall thickness is 672 ± 282 nm. The volume porosity of macropore walls is 65.7%, while the volume fraction of pores interconnected in large pore clusters is more than 80% of the whole pore volume. Quantitative characteristics of porous micro- and nanostructures of matrices obtained as a result of the study show a significant degree of porosity and percolation of micropores, which correlates with the reported high efficiency of tissue regeneration on such matrices. The use of scanning probe nanotomog-raphy to analyze three-dimensional morphology characteristics and the topology of micro- and nanopore systems enables us to improve the efficiency of developing new biomaterials.
机译:本文介绍了从再生丝素蛋白对多孔生物相容性基质的三维微观结构和纳米结构的研究,并对其微孔参数进行了定量分析。矩阵的三维结构分析已通过使用超薄切片机和扫描探针显微镜相结合的实验装置,通过扫描探针纳米照相术进行。在研究基质的整体体积中观察到了互连孔的三维网络的形成,其特征尺寸范围为1.7至6.0μm。测得的平均孔径为3.54±1.23μm;平均孔壁厚度为672±282 nm。大孔壁的孔隙率是65.7%,而在大孔簇中互连的孔的体积分数是整个孔体积的80%以上。研究结果表明,基质的多孔微结构和纳米结构的定量特性显示出显着的微孔孔隙率和渗滤程度,这与报道的在此类基质上组织再生的高效性有关。使用扫描探针纳米切片技术分析三维形态特征以及微孔和纳米孔系统的拓扑结构,使我们能够提高开发新生物材料的效率。

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