Cengiz Ibrahim Fatih, Pereira Hélder, de Girolamo Laura, Cucchiarini Magali, Espregueira-Mendes João, Reis Rui L, Oliveira Joaquim Miguel
3B's Research Group, I3Bs - Research Institute on Biomaterials, Biodegradables and Biomimetics, University of Minho, Headquarters of the European Institute of Excellence on Tissue Engineering and Regenerative Medicine, AvePark, Parque de Ciência e Tecnologia, Zona Industrial da Gandra, 4805-017 Barco, Guimarães, Portugal.
ICVS/3B's - PT Government Associate Laboratory, Braga/Guimarães, Portugal.
J Exp Orthop. 2018 May 22;5(1):14. doi: 10.1186/s40634-018-0133-9.
Orthopaedic disorders are very frequent, globally found and often partially unresolved despite the substantial advances in science and medicine. Their surgical intervention is multifarious and the most favourable treatment is chosen by the orthopaedic surgeon on a case-by-case basis depending on a number of factors related with the patient and the lesion. Numerous regenerative tissue engineering strategies have been developed and studied extensively in laboratory through in vitro experiments and preclinical in vivo trials with various established animal models, while a small proportion of them reached the operating room. However, based on the available literature, the current strategies have not yet achieved to fully solve the clinical problems. Thus, the gold standards, if existing, remain unchanged in the clinics, notwithstanding the known limitations and drawbacks. Herein, the involvement of regenerative tissue engineering in the clinical orthopaedics is reviewed. The current challenges are indicated and discussed in order to describe the current disequilibrium between the needs and solutions made available in the operating room. Regenerative tissue engineering is a very dynamic field that has a high growth rate and a great openness and ability to incorporate new technologies with passion to edge towards the Holy Grail that is functional tissue regeneration. Thus, the future of clinical solutions making use of regenerative tissue engineering principles for the management of orthopaedic disorders is firmly supported by the clinical need.
骨科疾病非常常见,在全球范围内都有发现,尽管科学和医学取得了重大进展,但这些疾病往往仍有部分未得到解决。其手术干预方式多种多样,骨科医生会根据与患者和病变相关的多种因素,逐案选择最有利的治疗方法。众多再生组织工程策略已在实验室中通过体外实验以及利用各种成熟动物模型进行的临床前体内试验得到广泛开发和研究,其中一小部分进入了手术室。然而,根据现有文献,目前的策略尚未完全解决临床问题。因此,即便存在已知的局限性和缺点,但如果有金标准的话,在临床上仍保持不变。在此,本文对再生组织工程在临床骨科中的应用进行综述。指出并讨论了当前面临的挑战,以描述目前手术室中需求与可用解决方案之间的不平衡。再生组织工程是一个非常活跃的领域,具有高增长率、很强的开放性以及积极融入新技术以迈向功能性组织再生这一圣杯的能力。因此,临床需求坚定地支持了利用再生组织工程原理来解决骨科疾病的临床解决方案的未来发展。