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角膜去细胞化和再细胞化:寻找供体替代物的进展。

Decellularization and recellularization of cornea: Progress towards a donor alternative.

机构信息

Dept of Mechanical and Manufacturing Engineering, School of Engineering, Trinity College Dublin, University of Dublin, Ireland; Trinity Centre for Biomedical Engineering, Trinity Biomedical Science Institute, Trinity College Dublin, University of Dublin, Ireland.

Dept of Mechanical and Manufacturing Engineering, School of Engineering, Trinity College Dublin, University of Dublin, Ireland; Trinity Centre for Biomedical Engineering, Trinity Biomedical Science Institute, Trinity College Dublin, University of Dublin, Ireland.

出版信息

Methods. 2020 Jan 15;171:86-96. doi: 10.1016/j.ymeth.2019.05.009. Epub 2019 May 22.

Abstract

The global shortage of donor corneas for transplantation has led to corneal bioengineering being investigated as a method to generate transplantable tissues. Decellularized corneas are among the most promising materials for engineering corneal tissue since they replicate the complex structure and composition of real corneas. Decellularization is a process that aims to remove cells from organs or tissues resulting in a cell-free scaffold consisting of the tissues extracellular matrix. Here different decellularization techniques are described, including physical, chemical and biological methods. Analytical techniques to confirm decellularization efficiency are also discussed. Different cell sources for the recellularization of the three layers of the cornea, recellularization methods used in the literature and techniques used to assess the outcome of the implantation of such scaffolds are examined. Studies involving the application of decellularized corneas in animal models and human clinical studies are discussed. Finally, challenges for this technology are explored involving scalability, automatization and regulatory affairs.

摘要

全球用于移植的供体角膜短缺,促使人们研究角膜生物工程作为生成可移植组织的一种方法。脱细胞角膜是用于工程角膜组织最有前途的材料之一,因为它们复制了真实角膜的复杂结构和组成。脱细胞化是一个旨在从器官或组织中去除细胞的过程,从而产生由组织细胞外基质组成的无细胞支架。这里描述了不同的脱细胞化技术,包括物理、化学和生物学方法。还讨论了用于确认脱细胞化效率的分析技术。检查了用于角膜三层再细胞化的不同细胞来源、文献中使用的再细胞化方法以及用于评估此类支架植入效果的技术。讨论了涉及在动物模型和人体临床研究中应用脱细胞角膜的研究。最后,探讨了该技术面临的挑战,包括可扩展性、自动化和监管事务。

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