Xue Hao, Chen Shengjia, Hu Yi, Huang Juntao, Shen Yi
Ningbo Institute of Innovation for Combined Medicine and Engineering, The Affiliated Lihuili Hospital of Ningbo University, Ningbo, Zhejiang, China.
School of Medicine, Ningbo University, Ningbo, Zhejiang, China.
Front Bioeng Biotechnol. 2024 Aug 12;12:1439499. doi: 10.3389/fbioe.2024.1439499. eCollection 2024.
Tympanic membrane perforation (TMP) is one of the most common conditions in otolaryngology worldwide, and hearing damage caused by inadequate or prolonged healing can be distressing for patients. This article examines the rationale for utilizing three-dimensional (3D) printing to produce scaffolds for repairing TMP, compares the advantages and disadvantages of 3D printed and bioprinted grafts with traditional autologous materials and other tissue engineering materials in TMP repair, and highlights the practical and clinical significance of 3D printing in TMP repair while discussing the current progress and promising future of 3D printing and bioprinting. There is a limited number of reviews specifically dedicated to 3D printing for TMP repair. The majority of reviews offer a general overview of the applications of 3D printing in the broader realm of tissue regeneration, with some mention of TMP repair. Alternatively, they explore the biopolymers, cells, and drug molecules utilized for TMP repair. However, more in-depth analysis is needed on the strategies for selecting bio-inks that integrate biopolymers, cells, and drug molecules for tympanic membrane repair.
鼓膜穿孔(TMP)是全球耳鼻喉科最常见的病症之一,愈合不足或时间过长所导致的听力损伤会令患者苦恼不已。本文探讨了利用三维(3D)打印制作修复TMP支架的基本原理,比较了3D打印移植物和生物打印移植物与传统自体材料及其他组织工程材料在TMP修复中的优缺点,突出了3D打印在TMP修复中的实际和临床意义,同时讨论了3D打印和生物打印的当前进展及光明前景。专门针对3D打印用于TMP修复的综述数量有限。大多数综述对3D打印在更广泛的组织再生领域的应用进行了概述,其中一些提到了TMP修复。或者,它们探讨了用于TMP修复的生物聚合物、细胞和药物分子。然而,对于选择整合生物聚合物、细胞和药物分子用于鼓膜修复的生物墨水的策略,还需要更深入的分析。