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Development of vascularized nerve scaffold using perfusion-decellularization and recellularization

机译:使用灌注 - 脱细胞化和透速发展的血管化神经支架的开发

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摘要

Introduction: Vascularized nerve grafts (VNG) may offer an advantage in peripheral nerve regeneration by avoiding ischemic damage and central necrosis observed in non-VNG, particularly for the treatment of large and long nerve defects. However, surgical complexity, donor site morbidity and limited nerve availability remain important drawbacks for the clinical use of VNG. Here we explore the potential of perfusion-decellularization for bioengineering a VNG to be used in peripheral nerve reconstruction.Methods: Porcine sciatic nerves were surgically procured along with their vascular pedicle attached. The specimens were decellularized via perfusion-decellularization and preservation of the extracellular matrix (ECM), vascular patency and tissue cytokine contents were examined. Scaffold reendothelialization was conducted with porcine aortic endothelial cells in a perfusion-bioreactor.Results: Morphologic examination of decellularized VNG and analysis of the DNA content demonstrated cell clearance whereas ECM content and structures of the nerve fascicles were preserved. Using 3D micro-computed tomography imaging we observed optimal vasculature preservation in decellularized scaffolds, down to the capillary level. Cytokine quantification demonstrated measurable levels of growth factors after decellularization. Endothelial cell engraftment of the large caliber vessels was observed in reendothelialized scaffolds.Conclusions: In this study we provide evidence that perfusion-decellularization can be used to create vascularized nerve scaffolds in which the vasculature and the ECM component are well preserved. As compared to non-vascularized conduits, engineered vascularized nerve scaffolds may represent an ideal approach for promoting better nerve regeneration in larger nerve defect reconstructions.
机译:介绍:血管化神经移植物(VNG)可以通过避免在非vng中观察到的缺血性损伤和中央坏死,特别是用于治疗大而长的神经缺陷的缺血性损伤。然而,手术复杂性,供体部位发病率和有限的神经可用性仍然是VNG临床应用的重要缺点。在这里,我们探讨灌注 - 脱叶的潜力 - 用于生物工程的vng,用于在外周神经重建中使用。方法:猪坐骨神经和附着的血管椎弓根一起采购。通过灌注 - 脱细胞化和保护细胞外基质(ECM),检查试​​样,检查血管通畅和组织细胞因子含量。灌注 - 生物反应器中的猪主动脉内皮细胞进行支架进行了修道型。结果:脱细胞的形态学检查和DNA含量的分析显示细胞清除,而ECM含量和神经束的结构被保存。使用3D微计算机断层扫描成像,我们观察到脱细胞化支架的最佳血管系统保存,降至毛细管水平。细胞因子量化在脱细胞化后显示出可测量的生长因子水平。在Reendithelialized支架中观察到大口径血管的内皮细胞植入。结论:在这项研究中,我们提供了灌注 - 脱细胞化可用于产生血管化神经支架,其中脉管系统和ECM组分完全保存。与非血管化导管相比,工程化血管化神经支架可以代表促进较大神经缺陷重建中更好的神经再生的理想方法。

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  • 来源
    《Materials science & engineering》 |2020年第12期|111311.1-111311.11|共11页
  • 作者单位

    Univ Bern Dept BioMed Res Bern Switzerland;

    Univ Bern Dept BioMed Res Bern Switzerland|Univ Bern Univ Hosp Dept Plast & Hand Surg Inselspital Bern Switzerland;

    Univ Bern Inst Anat Bern Switzerland;

    Univ Bern Inst Anat Bern Switzerland;

    Univ Bern Inst Anat Bern Switzerland;

    Univ Bern Inst Pathol Bern Switzerland;

    Catholic Univ Louvain Inst Rech Expt & Clin IREC Louvain Belgium;

    Catholic Univ Louvain Inst Rech Expt & Clin IREC Louvain Belgium;

    Catholic Univ Louvain Inst Rech Expt & Clin IREC Louvain Belgium|Clin Univ St Luc Dept Plast & Reconstruct Surg Brussels Belgium;

    Univ Bern Dept BioMed Res Bern Switzerland;

    Univ Bern Dept BioMed Res Bern Switzerland|Univ Bern Univ Hosp Dept Plast & Hand Surg Inselspital Bern Switzerland;

    Univ Bern Dept BioMed Res Bern Switzerland|Univ Bern Univ Hosp Dept Plast & Hand Surg Inselspital Bern Switzerland;

    Catholic Univ Louvain Inst Rech Expt & Clin IREC Louvain Belgium|Clin Univ St Luc Dept Plast & Reconstruct Surg Brussels Belgium;

    Univ Bern Dept BioMed Res Bern Switzerland|Univ Bern Univ Hosp Dept Plast & Hand Surg Inselspital Bern Switzerland|Inst Virol & Immunol IVI Sensemattstr 293 CH-3147 Mittelhausern Switzerland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Vascularized nerve; Perfusion-decellularization; Extracellular matrix; Peripheral nerve injuries; Tissue engineering;

    机译:血管化神经;灌注 - 脱细胞化;细胞外基质;周围神经损伤;组织工程;

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