Regenerative Orthopaedics Program, AO Research Institute Davos, Davos, Platz, Switzerland.
Department of Health Sciences and Techonology, Institute for Biomechanics, ETH Zürich, Zürich, Switzerland.
Clin Transl Med. 2022 Feb;12(2):e690. doi: 10.1002/ctm2.690.
Bone tissue engineering is a rapidly developing field with potential for the regeneration of craniomaxillofacial (CMF) bones, with 3D printing being a suitable fabrication tool for patient-specific implants. The CMF region includes a variety of different bones with distinct functions. The clinical implementation of tissue engineering concepts is currently poor, likely due to multiple reasons including the complexity of the CMF anatomy and biology, and the limited relevance of the currently used preclinical models. The 'recapitulation of a human disease' is a core requisite of preclinical animal models, but this aspect is often neglected, with a vast majority of studies failing to identify the specific clinical indication they are targeting and/or the rationale for choosing one animal model over another. Currently, there are no suitable guidelines that propose the most appropriate animal model to address a specific CMF pathology and no standards are established to test the efficacy of biomaterials or tissue engineered constructs in the CMF field. This review reports the current clinical scenario of CMF reconstruction, then discusses the numerous limitations of currently used preclinical animal models employed for validating 3D-printed tissue engineered constructs and the need to reduce animal work that does not address a specific clinical question. We will highlight critical research aspects to consider, to pave a clinically driven path for the development of new tissue engineered materials for CMF reconstruction.
骨组织工程是一个快速发展的领域,具有颅颌面(CMF)骨骼再生的潜力,3D 打印是制造患者特异性植入物的合适制造工具。CMF 区域包括各种具有不同功能的不同骨骼。组织工程概念的临床实施目前效果不佳,可能是由于多种原因造成的,包括 CMF 解剖学和生物学的复杂性,以及目前使用的临床前模型的相关性有限。“重现人类疾病”是临床前动物模型的核心要求,但这一方面往往被忽视,绝大多数研究未能确定他们所针对的具体临床指征,也未能确定选择一种动物模型而不是另一种动物模型的理由。目前,尚无合适的指南提出最适合解决特定 CMF 病理的动物模型,也没有建立标准来测试 CMF 领域中生物材料或组织工程构建体的疗效。这篇综述报告了 CMF 重建的当前临床情况,然后讨论了目前用于验证 3D 打印组织工程构建体的临床前动物模型的许多局限性,以及减少不能解决特定临床问题的动物工作的必要性。我们将强调需要考虑的关键研究方面,为 CMF 重建的新型组织工程材料的开发开辟一条临床驱动的道路。