Jiao Mingyang, Shuai Ting, Zhao Zhongfang, Wu Yuwei, Yu Linwei, Sun Jingwen, De Caro Raffaele, Macchi Veronica, Porzionato Andrea, Stocco Elena, Jin Chanyuan
Beijing Key Laboratory of Digital Stomatology, NHC Key Laboratory of Digital Stomatology, NMPA Key Laboratory for Dental Materials, Department of Prosthodontics, National Center for Stomatology, National Clinical Research Center for Oral Diseases, National Engineering Research Center of Oral Biomaterials and Digital Medical Devices, Peking University School and Hospital of Stomatology, Beijing, China.
The Second Clinical Division of Peking University School and Hospital of Stomatology, Beijing, China.
Front Med (Lausanne). 2025 Aug 20;12:1606100. doi: 10.3389/fmed.2025.1606100. eCollection 2025.
Bone defects affect many individuals globally and can result in significant suffering and impairment, particularly among the elderly population. In addition, current treatment options for critical-size bone defects, such as autologous or allogeneic bone graft transplantation, present significant challenges. Within this clinical scenario the identification of novel and effective approaches for bone regeneration is urgently needed, and options derived from tissue engineering may be particularly appealing. Bone tissue engineering for bone regeneration involves the application of seed cells, growth factors, and biomaterials to create bioactive substitutes for repairing bone defects. In recent decades, advancements in stem cell research and biological biomaterials have led to remarkable breakthroughs in the field of bone regeneration. In particular, various categories of stem cells have been isolated, characterized, and employed in tissue engineering approaches. This review summarizes the applications of the main types of stem cells currently used for bone regeneration through tissue engineering approaches, and it also pays attention to the most appealing materials for it.
全球有许多人受到骨缺损的影响,这可能导致巨大的痛苦和功能障碍,在老年人群中尤为如此。此外,目前针对临界尺寸骨缺损的治疗选择,如自体或异体骨移植,存在重大挑战。在这种临床情况下,迫切需要找到新的有效的骨再生方法,而组织工程衍生的选择可能特别有吸引力。用于骨再生的骨组织工程涉及应用种子细胞、生长因子和生物材料来创建修复骨缺损的生物活性替代物。近几十年来,干细胞研究和生物生物材料的进展在骨再生领域取得了显著突破。特别是,已分离、表征并将各类干细胞应用于组织工程方法中。本综述总结了目前通过组织工程方法用于骨再生的主要类型干细胞的应用情况,同时也关注了最具吸引力的相关材料。