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Neovascularization of Porous Silk Fibroin Films(PSFFs) as Dermis Substitutes Implanted in Rats

机译:植入大鼠皮肤的真皮替代品的多孔丝素蛋白膜(PSFFs)的新血管形成

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Neovascularization in biomaterials plays a key role in wound healing. In this paper, porous silk fibroin films (PSFFs) whose structure was optimized, as dermis substitutes, were implanted in the back skin of rats for recovery of dermis loss. Results showed that a thin layer of loose connective tissue had formed at the interface between PSFFs and subcutaneous tissues, in which abundant blood vessels could be observed at 24 h after surgery. Whereafter the newly formed connective tissue thickened and the number of microvessels in the tissue increased. Furthermore, a few microvessels could be seen in PSFFs at day 5, most of which were capillaries. By day 10, the density of microvessels in PSFFs increased to a peak while the percentage of capillary decreased. At day 23, both the density of microvessels and the percentage of capillary was almost equal to those of normal tissues. In summary, wound healing with PSFFs as dermis substitutes is the neovascularization process of PSFFs. The process includes three major steps: (1) new formation and growth of loose connective tissue into the pores of PSFFs, (2) proliferation and migration of fibroblasts and endothelial cells, and (3) formation of functional microvessels and their networks.
机译:生物材料中的新血管形成在伤口愈合中起关键作用。本文将经过优化结构的多孔丝素蛋白膜(PSFFs)作为真皮替代物植入大鼠的背部皮肤,以恢复真皮流失。结果显示,在PSFF与皮下组织之间的界面处形成了一层薄薄的疏松结缔组织,在术后24小时可以观察到丰富的血管。之后,新形成的结缔组织增厚,组织中的微血管数量增加。此外,在第5天的PSFF中可以看到一些微血管,其中大多数是毛细血管。到第10天,PSFF中的微血管密度增加到峰值,而毛细血管百分率下降。在第23天,微血管的密度和毛细血管百分数几乎等于正常组织的密度。总之,以PSFFs作为真皮替代物的伤口愈合是PSFFs的新血管形成过程。该过程包括三个主要步骤:(1)疏松结缔组织在PSFFs孔中的新形成和生长;(2)成纤维细胞和内皮细胞的增殖和迁移;(3)功能性微血管及其网络的形成。

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