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Dynamics of tissue ingrowth in SIKVAV-modified highly superporous PHEMA scaffolds with oriented pores after bridging a spinal cord transection

机译:桥接脊髓横断后SIKVAV修饰的具有定向孔的高度超多孔PHEMA支架中组织向内生长的动力学

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摘要

While many types of biomaterials have been evaluated in experimental spinal cord injury (SCI) research, little is known about the time-related dynamics of the tissue infiltration of these scaffolds. We analyzed the ingrowth of connective tissue, axons and blood vessels inside the superporous poly (2-hydroxyethyl methacrylate) hydrogel with oriented pores. The hydrogels, either plain or seeded with mesenchymal stem cells (MSCs), were implanted in spinal cord transection at the level of Th8. The animals were sacrificed at days 2, 7, 14, 28, 49 and 6 months after SCI and histologically evaluated. We found that within the first week, the hydrogels were already infiltrated with connective tissue and blood vessels, which remained stable for the next 6 weeks. Axons slowly and gradually infiltrated the hydrogel within the first month, after which the numbers became stable. Six months after SCI we observed rare axons crossing the hydrogel bridge and infiltrating the caudal stump. There was no difference in the tissue infiltration between the plain hydrogels and those seeded with MSCs. We conclude that while connective tissue and blood vessels quickly infiltrate the scaffold within the first week, axons show a rather gradual infiltration over the first month, and this is not facilitated by the presence of MSCs inside the hydrogel pores. Further research which is focused on the permissive micro-environment of the hydrogel scaffold is needed, to promote continuous and long-lasting tissue regeneration across the spinal cord lesion.
机译:尽管在实验性脊髓损伤(SCI)研究中已经评估了多种类型的生物材料,但对于这些支架的组织浸润的时间相关动力学知之甚少。我们分析了具有定向孔的超多孔聚(甲基丙烯酸2-羟乙酯)水凝胶内部结缔组织,轴突和血管的向内生长。将普通或接种间充质干细胞(MSC)的水凝胶植入Th8水平的脊髓横断。在SCI后第2、7、14、28、49和6个月处死动物并进行组织学评估。我们发现,在第一周内,水凝胶已经被结缔组织和血管浸润,在接下来的6周内保持稳定。在第一个月内,轴突缓慢并逐渐渗透到水凝胶中,此后数量稳定。 SCI六个月后,我们观察到稀有的轴突穿过水凝胶桥并浸入尾端。普通水凝胶与接种MSC的水凝胶之间的组织浸润没有差异。我们得出的结论是,尽管结缔组织和血管在第一周内迅速渗透到支架中,但轴突在第一个月中显示出相当逐渐的浸润,而水凝胶孔内MSC的存在并不能促进这种浸润。需要进一步的研究集中在水凝胶支架的允许的微环境上,以促进贯穿脊髓损伤的连续且持久的组织再生。

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  • 来源
    《Journal of materials science》 |2018年第7期|89.1-89.12|共12页
  • 作者单位

    Acad Sci Czech Republ, Inst Expt Med, Videnska 1083, Prague 14220, Czech Republic;

    Acad Sci Czech Republ, Inst Expt Med, Videnska 1083, Prague 14220, Czech Republic;

    Acad Sci Czech Republ, Inst Macromol Chem, Heyrovskeho Nam 2, Prague 16206 6, Brevnov, Czech Republic;

    Acad Sci Czech Republ, Inst Macromol Chem, Heyrovskeho Nam 2, Prague 16206 6, Brevnov, Czech Republic;

    Acad Sci Czech Republ, Inst Expt Med, Videnska 1083, Prague 14220, Czech Republic;

    Motol Univ Hosp, Dept Neurosurg, V Uvalu 84, Prague 15006 5, Czech Republic;

    Univ JE Purkyne, Dept Math, Fac Sci, Ceske Mladeze 8, Usti Nad Labem 40096, Czech Republic;

    Acad Sci Czech Republ, Inst Macromol Chem, Heyrovskeho Nam 2, Prague 16206 6, Brevnov, Czech Republic;

    Acad Sci Czech Republ, Inst Expt Med, Videnska 1083, Prague 14220, Czech Republic;

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