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Development data associated with effects of stiffness softening of 3D-TIPS elastomer nanohybrid scaffolds on tissue ingrowth vascularization and inflammation in vivo

机译:与3D-TIPS弹性体纳米杂交支架的刚度软化对体内组织向内生长血管化和炎症的影响有关的发展数据

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摘要

This DiB article contains data related to the research article entitled “Cellular responses to thermoresponsive stiffness memory elastomer nanohybrid scaffolds by 3D-TIPS” (Wu et al., 2018). Thermoresponsive poly (urea-urethane) nanohybrid elastomer (PUU-POSS) scaffolds were implanted in rats for up to 3 months. The porous structure and tensile mechanical properties of the scaffolds are listed and compared before and after in vitro and in vivo tests. The details of the histological analysis of the explants with different initial stiffness and porous structures at various time points are presented. The images and data presented support the conclusion about the coupled effects of stiffness softening and the hierarchical porous structure modulating tissue ingrowth, vascularization and macrophage polarization in the article (Wu et al., 2018).
机译:该DiB文章包含与题为“ 3D-TIPS对热敏性刚度记忆弹性体纳米杂化支架的细胞反应”的研究文章相关的数据(Wu等人,2018)。将热响应性聚(脲-尿烷)纳米混合弹性体(PUU-POSS)支架植入大鼠体内长达3个月。在体外和体内测试之前和之后,列出并比较了支架的多孔结构和拉伸机械性能。给出了在不同时间点具有不同初始刚度和多孔结构的外植体的组织学分析细节。所提供的图像和数据支持有关硬度软化和调节组织向内生长,血管化和巨噬细胞极化的分层多孔结构的耦合效应的结论(Wu等人,2018)。

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