UCL Institute of Child Health, London, UK.
Expert Opin Biol Ther. 2011 Dec;11(12):1623-35. doi: 10.1517/14712598.2011.623696. Epub 2011 Oct 6.
Prosthetic replacements, autologous tissue transfer and allografts have so far failed to offer functional solutions for the treatment of long circumferential tracheal defects and loss of a functioning larynx. Interest has therefore turned increasingly to the field of tissue-engineering which applies the principles and methods of bioengineering, material science, cell transplantation and life sciences in an effort to develop in vitro biological substitutes able to restore, maintain or improve tissue and organ function.
This article gives an overview of the tissue-engineering approach to airway replacement and will describe the encouraging results obtained so far in tracheal regeneration. The recent advances in the field of tissue-engineering have provided a new attractive approach towards the concept of functional substitutes and may represent an alternative to the shortage of suitable grafts for reconstructive airway surgery. We summarize fundamental questions, as well as future directions in airway tissue engineering.
The replacement of active movement, as would be necessary to replace an entire larynx introduces another order of magnitude of complexity, although progress in this area is starting to bear fruit. In addition, the stem cell field is advancing rapidly, opening new avenues for this type of therapy.
迄今为止,假体置换、自体组织移植和同种异体移植物都未能为长环形气管缺损和丧失功能的喉部提供功能性解决方案。因此,人们越来越关注组织工程学领域,该领域应用生物工程、材料科学、细胞移植和生命科学的原理和方法,努力开发体外生物替代品,以恢复、维持或改善组织和器官功能。
本文概述了气道替代的组织工程方法,并将描述迄今为止在气管再生方面取得的令人鼓舞的结果。组织工程学领域的最新进展为功能性替代品的概念提供了一个新的有吸引力的方法,可能代表了重建性气道手术中合适移植物短缺的替代方案。我们总结了气道组织工程学中的基本问题和未来方向。
尽管该领域的进展开始取得成果,但替代整个喉部所需的主动运动的替换引入了另一个数量级的复杂性。此外,干细胞领域正在迅速发展,为这种治疗类型开辟了新的途径。