Bakhtiary Negar, Liu Chaozong, Ghorbani Farnaz
Department of Biomaterials, Faculty of Interdisciplinary Science and Technology, Tarbiat Modares University, Tehran 14115-114, Iran.
Institute of Orthopaedic & Musculoskeletal Science, University College London, Royal National Orthopaedic Hospital, Stanmore HA7 4LP, UK.
Gels. 2021 Dec 18;7(4):274. doi: 10.3390/gels7040274.
Nowadays, a prevalent joint disease affecting both cartilage and subchondral bone is osteoarthritis. Osteochondral tissue, a complex tissue unit, exhibited limited self-renewal potential. Furthermore, its gradient properties, including mechanical property, bio-compositions, and cellular behaviors, present a challenge in repairing and regenerating damaged osteochondral tissues. Here, tissue engineering and translational medicine development using bioprinting technology provided a promising strategy for osteochondral tissue repair. In this regard, personalized stratified scaffolds, which play an influential role in osteochondral regeneration, can provide potential treatment options in early-stage osteoarthritis to delay or avoid the use of joint replacements. Accordingly, bioactive scaffolds with possible integration with surrounding tissue and controlling inflammatory responses have promising future tissue engineering perspectives. This minireview focuses on introducing biologically active inks for bioprinting the hierarchical scaffolds, containing growth factors and bioactive materials for 3D printing of regenerative osteochondral substitutes.
如今,一种影响软骨和软骨下骨的常见关节疾病是骨关节炎。骨软骨组织是一种复杂的组织单元,其自我更新潜力有限。此外,其梯度特性,包括力学性能、生物组成和细胞行为,给受损骨软骨组织的修复和再生带来了挑战。在此,利用生物打印技术进行组织工程和转化医学发展为骨软骨组织修复提供了一种有前景的策略。在这方面,在骨软骨再生中发挥重要作用的个性化分层支架可以为早期骨关节炎提供潜在的治疗选择,以延迟或避免使用关节置换。因此,具有与周围组织可能整合并控制炎症反应的生物活性支架具有广阔的未来组织工程前景。本综述聚焦于介绍用于生物打印分层支架的生物活性墨水,其包含用于再生骨软骨替代物3D打印的生长因子和生物活性材料。