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气道组织工程:最新进展

Airway tissue engineering: an update.

作者信息

Fishman Jonathan M, Wiles Katherine, Lowdell Mark W, De Coppi Paolo, Elliott Martin J, Atala Anthony, Birchall Martin A

机构信息

UCL Institute of Child Health, Department of Surgery , 30 Guilford Street, London WC1N 1EH , UK +44 07989 331573 ;

出版信息

Expert Opin Biol Ther. 2014 Oct;14(10):1477-91. doi: 10.1517/14712598.2014.938631. Epub 2014 Aug 7.

Abstract

INTRODUCTION

Prosthetic materials, autologous tissues, cryopreserved homografts and allogeneic tissues have thus far proven unsuccessful in providing long-term functional solutions to extensive upper airway disease and damage. Research is therefore focusing on the rapidly expanding fields of regenerative medicine and tissue engineering in order to provide stem cell-based constructs for airway reconstruction, substitution and/or regeneration.

AREAS COVERED

Advances in stem cell technology, biomaterials and growth factor interactions have been instrumental in guiding optimization of tissue-engineered airways, leading to several first-in-man studies investigating stem cell-based tissue-engineered tracheal transplants in patients. Here, we summarize current progress, outstanding research questions, as well as future directions within the field.

EXPERT OPINION

The complex immune interaction between the transplant and host in vivo is only beginning to be untangled. Recent progress in our understanding of stem cell biology, decellularization techniques, biomaterials and transplantation immunobiology offers the prospect of transplanting airways without the need for lifelong immunosuppression. In addition, progress in airway revascularization, reinnervation and ever-increasingly sophisticated bioreactor design is opening up new avenues for the construction of a tissue-engineered larynx. Finally, 3D printing is a novel technique with the potential to render microscopic control over how cells are incorporated and grown onto the tissue-engineered airway.

摘要

引言

迄今为止,假体材料、自体组织、冷冻保存的同种异体移植物和异体组织在为广泛的上呼吸道疾病和损伤提供长期功能解决方案方面均未成功。因此,研究正聚焦于再生医学和组织工程这两个迅速发展的领域,以便提供基于干细胞的构建物用于气道重建、替代和/或再生。

涵盖领域

干细胞技术、生物材料和生长因子相互作用方面的进展有助于指导组织工程气道的优化,从而催生了多项针对患者进行基于干细胞的组织工程气管移植的首例人体研究。在此,我们总结该领域目前的进展、悬而未决的研究问题以及未来方向。

专家观点

移植体与宿主体内复杂的免疫相互作用才刚刚开始被梳理清楚。我们在干细胞生物学、脱细胞技术、生物材料和移植免疫生物学方面的最新进展为无需终身免疫抑制就能移植气道带来了希望。此外,气道血管再生、神经再支配方面的进展以及日益复杂的生物反应器设计为组织工程喉的构建开辟了新途径。最后,3D打印是一项新技术,有可能实现对细胞如何整合并生长到组织工程气道上进行微观控制。

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