Department of Biotechnology, School of Applied and Life Sciences, Uttaranchal University, Dehradun, India.
J Tissue Eng Regen Med. 2020 May;14(5):653-672. doi: 10.1002/term.3019. Epub 2020 Mar 19.
Airway system is a vital part of the living being body. Trachea is the upper respiratory portion that connects nostril and lungs and has multiple functions such as breathing and entrapment of dust/pathogen particles. Tracheal reconstruction by artificial prosthesis, stents, and grafts are performed clinically for the repairing of damaged tissue. Although these (above-mentioned) methods repair the damaged parts, they have limited applicability like small area wounds and lack of functional tissue regeneration. Tissue engineering helps to overcome the above-mentioned problems by modifying the traditional used stents and grafts, not only repair but also regenerate the damaged area to functional tissue. Bioengineered tracheal replacements are biocompatible, nontoxic, porous, and having 3D biomimetic ultrastructure with good mechanical strength, which results in faster and better tissue regeneration. Till date, the bioengineered tracheal replacements studies have been going on preclinical and clinical levels. Besides that, still many researchers are working at advance level to make extracellular matrix-based acellular, 3D printed, cell-seeded grafts including living cells to overcome the demand of tissue or organ and making the ready to use tracheal reconstructs for clinical application. Thus, in this review, we summarized the tracheal tissue engineering aspects and their outcomes.
气道系统是生命体的重要组成部分。气管是连接鼻腔和肺部的上呼吸道部分,具有呼吸和捕获灰尘/病原体颗粒等多种功能。临床上通过人工假体、支架和移植物进行气管重建,以修复受损组织。尽管这些(上述)方法可以修复受损部位,但它们的适用性有限,如小面积伤口和缺乏功能性组织再生。组织工程通过改进传统使用的支架和移植物来克服上述问题,不仅可以修复,还可以再生受损区域为功能性组织。生物工程气管替代品具有生物相容性、无毒、多孔,并且具有 3D 仿生超微结构,具有良好的机械强度,可实现更快、更好的组织再生。迄今为止,生物工程气管替代品的研究一直在临床前和临床水平进行。除此之外,仍有许多研究人员在高级水平上进行工作,以制造基于细胞外基质的去细胞化、3D 打印、细胞接种移植物,包括活细胞,以满足组织或器官的需求,并制造可用于临床应用的现成气管重建物。因此,在这篇综述中,我们总结了气管组织工程方面及其结果。