A bioengineered trachea-like structure improves survival in a rabbit tracheal defect model

Author:

Tang Hai12ORCID,Sun Weiyan12ORCID,Liu Xiucheng12ORCID,Gao Qing34,Chen Yi12ORCID,Xie Chaoqi34,Lin Weikang12,Chen Jiafei12,Wang Long12,Fan Ziwen12,Zhang Lei12,Ren Yijiu12,She Yunlang12ORCID,He Yong34ORCID,Chen Chang12ORCID

Affiliation:

1. Department of Thoracic Surgery, Shanghai Pulmonary Hospital, Tongji University School of Medicine, Shanghai 200433, China.

2. Shanghai Engineering Research Center of Lung Transplantation, Shanghai 200433, China.

3. State Key Laboratory of Fluid Power and Mechatronic Systems, School of Mechanical Engineering, Zhejiang University, Hangzhou 310027, China.

4. Key Laboratory of 3D Printing Process and Equipment of Zhejiang Province, School of Mechanical Engineering, Zhejiang University, Hangzhou 310027, China.

Abstract

A practical strategy for engineering a trachea-like structure that could be used to repair or replace a damaged or injured trachea is an unmet need. Here, we fabricated bioengineered cartilage (BC) rings from three-dimensionally printed fibers of poly(ɛ-caprolactone) (PCL) and rabbit chondrocytes. The extracellular matrix (ECM) secreted by the chondrocytes combined with the PCL fibers formed a “concrete-rebar structure,” with ECM deposited along the PCL fibers, forming a grid similar to that of native cartilage. PCL fiber-hydrogel rings were then fabricated and alternately stacked with BC rings on silicone tubes. This trachea-like structure underwent vascularization after heterotopic transplantation into rabbits for 4 weeks. The vascularized bioengineered trachea-like structure was then orthotopically transplanted by end-to-end anastomosis to native rabbit trachea after a segment of trachea had been resected. The bioengineered trachea-like structure displayed mechanical properties similar to native rabbit trachea and transmural angiogenesis between the rings. The 8-week survival rate in transplanted rabbits was 83.3%, and the respiratory rate of these animals was similar to preoperative levels. This bioengineered trachea-like structure may have potential for treating tracheal stenosis and other tracheal injuries.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

General Medicine

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