Department of Otolaryngology, University of Iowa Hospitals and Clinics, Iowa City, IA, 52252, USA.
Department of Pharmaceutical Sciences and Experimental Therapeutics, College of Pharmacy, University of Iowa, Iowa City, IA, 52242, USA.
Adv Healthc Mater. 2023 Jul;12(19):e2203268. doi: 10.1002/adhm.202203268. Epub 2023 Mar 31.
The evolution of tissue engineering and 3D bioprinting has allowed for increased opportunities to generate musculoskeletal tissue grafts that can enhance functional and aesthetic outcomes in otolaryngology-head and neck surgery. Despite literature reporting successes in the fabrication of cartilage and bone scaffolds for applications in the head and neck, the full potential of this technology has yet to be realized. Otolaryngology as a field has always been at the forefront of new advancements and technology and is well poised to spearhead clinical application of these engineered tissues. In this review, current 3D bioprinting methods are described and an overview of potential cell types, bioinks, and bioactive factors available for musculoskeletal engineering using this technology is presented. The otologic, nasal, tracheal, and craniofacial bone applications of 3D bioprinting with a focus on engineered graft implantation in animal models to highlight the status of functional outcomes in vivo; a necessary step to future clinical translation are reviewed. Continued multidisciplinary efforts between material chemistry, biological sciences, and otolaryngologists will play a key role in the translation of engineered, 3D bioprinted constructs for head and neck surgery.
组织工程和 3D 生物打印的发展为生成肌肉骨骼组织移植物提供了更多机会,从而可以改善耳鼻喉头颈外科手术的功能和美学效果。尽管文献报道了在头颈部应用中制造软骨和骨支架的成功,但该技术的全部潜力尚未实现。耳鼻喉科一直处于新技术的前沿,并且非常适合率先将这些工程组织应用于临床。在这篇综述中,描述了当前的 3D 生物打印方法,并概述了可用于使用该技术进行肌肉骨骼工程的潜在细胞类型、生物墨水和生物活性因子。重点介绍了 3D 生物打印在耳科学、鼻腔、气管和颅面骨中的应用,以及在动物模型中进行工程移植物植入以突出体内功能结果的状态;这是未来临床转化的必要步骤。材料化学、生物科学和耳鼻喉科医生之间的持续多学科努力将在头颈部手术的工程 3D 生物打印构建体的转化中发挥关键作用。