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3D printing of personalized polylactic acid scaffold laden with GelMA/autologous auricle cartilage to promote ear reconstruction

摘要At present,the clinical reconstruction of the auricle usually adopts the strategy of taking autologous costal cartilage.This method has great trauma to patients,poor plasticity and inaccurate shaping.Three-dimensional(3D)printing technology has made a great breakthrough in the clinical application of orthopedic implants.This study explored the combination of 3D printing and tissue engineering to precisely reconstruct the auricle.First,a polylactic acid(PLA)polymer scaffold with a precisely customized patient appearance was fabricated,and then auricle cartilage fragments were loaded into the 3D-printed porous PLA scaffold to promote auricle reconstruction.In vitro,gelatin methacrylamide(GelMA)hydrogels loaded with different sizes of rabbit ear cartilage fragments were studied to assess the regenerative activity of various autologous cartilage fragments.In vivo,rat ear cartilage fragments were placed in an accurately designed porous PLA polymer ear scaffold to promote auricle reconstruction.The results indicated that the chondrocytes in the cartilage fragments could maintain the morphological phenotype in vitro.After three months of implantation observation,it was conducive to promoting the subsequent regeneration of cartilage in vivo.The autologous cartilage fragments combined with 3D printing technology show promising potential in auricle reconstruction.

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作者 Xingyu Gui [1] Zhiyu Peng [2] Ping Song [1] Li Chen [3] Xiujuan Xu [1] Hairui Li [4] Pei Tang [4] Yixi Wang [4] Zixuan Su [1] Qingquan Kong [5] Zhenyu Zhang [4] Zhengyong Li [4] Ying Cen [4] Changchun Zhou [1] Yujiang Fan [1] Xingdong Zhang [1] 学术成果认领
作者单位 National Engineering Research Center for Biomaterials,Sichuan University,Chengdu 610064,China;College of Biomedical Engineering,Sichuan University,Chengdu 610064,China [1] Department of Thoracic Surgery,West China Hospital,Sichuan University,Chengdu 610041,China [2] Analytical and Testing Center,Sichuan University,Chengdu 610064,China [3] Department of Burn and Plastic Surgery,West China Hospital,Sichuan University,Chengdu 610041,China [4] Department of Orthopedics,West China Hospital,Sichuan University,Chengdu 610041,China [5]
栏目名称 RESEARCH ARTICLES
DOI 10.1007/s42242-023-00242-6
发布时间 2023-07-28
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