The Wallace H. Coulter Department of Biomedical Engineering, Georgia Institute of Technology and Emory University, Atlanta, GA, USA.
Department of Mechanical Engineering, Pohang University of Science and Technology (POSTECH), Pohang, South Korea.
Biomaterials. 2018 Dec;185:276-283. doi: 10.1016/j.biomaterials.2018.09.031. Epub 2018 Sep 19.
Extensive circumferential tracheal defects remain a major challenging problem in the field of tracheal reconstruction. In this study, a tissue-engineered tracheal graft based on three-dimensional (3D) printing was developed for extensive circumferential tracheal reconstruction. A native trachea-mimetic bellows scaffold, a framework for a tissue-engineered tracheal graft, was indirectly 3D printed and reinforced with ring-shaped bands made from medical grade silicone rubber. A tissue-engineered tracheal graft was then created by stratifying tracheal mucosa decellularized extracellular matrix (tmdECM) hydrogel on the luminal surface of the scaffold and transferring human inferior turbinate mesenchymal stromal cell (hTMSC) sheets onto the tmdECM hydrogel layer. The tissue-engineered tracheal graft with critical length was anastomosed end-to-end to the native trachea and complete re-epithelialization was achieved on the entire luminal surface within 2 months in a rabbit model with no post-operative complications. With this successful result, the present study reports the preliminary potential of the tissue-engineered tracheal graft as a rational tissue engineering strategy for extensive circumferential tracheal reconstruction.
广泛的环状气管缺损仍然是气管重建领域的一个主要难题。在这项研究中,我们开发了一种基于三维(3D)打印的组织工程气管移植物,用于广泛的环状气管重建。一种天然气管模拟风箱支架,作为组织工程气管移植物的框架,通过间接 3D 打印,并使用医用级硅橡胶制成的环形带进行加固。然后,在支架的内腔表面分层气管黏膜去细胞外基质(tmdECM)水凝胶,并将人下鼻甲间充质基质细胞(hTMSC)片转移到 tmdECM 水凝胶层上,从而构建组织工程气管移植物。具有关键长度的组织工程气管移植物端端吻合到天然气管上,在 2 个月内,在兔模型中,整个内腔表面完全再上皮化,没有术后并发症。有了这个成功的结果,本研究报告了组织工程气管移植物作为一种合理的组织工程策略,用于广泛的环状气管重建的初步潜力。