Valizadeh Roya, Amirazad Halimeh, Fayeghi Tahura, Mousazadeh Hanieh, Zarghami Nosratollah, Ebrahimi-Kalan Abbas, Alizadeh Effat
Endocrine Research Center, Tabriz University of Medical Sciences, Tabriz, Iran.
Department of Medical Biotechnology, Faculty of Advanced Medical Sciences, Tabriz University of Medical Sciences, Tabriz, Iran.
J Mater Sci Mater Med. 2025 May 20;36(1):44. doi: 10.1007/s10856-025-06865-8.
The metal-based devices may corrode, degrade, or release metal ions and fragments after being implanted in the body, exhibiting their own consequences on hosting organs/tissues. The biocompatibility of metal implants has been investigated in various studies using a number of cell types. Mesenchymal stem cells (MSCs) are more relevant cells than others for evaluating the cytocompatibility of metal-based orthopedic implants because they are essential cells for bone regeneration and a promising cell population in regenerative medicine. In this regard, stemness preservation of MSCs is a key property in both body's own repair process and success of renewing/compensating approaches. In general, MSCs adhesion, viability, and function at the cell-metal interface is directly dependent on the metal alloys composing elements, which, along with consideration of compatibility, could guarantee the success of implants. This review scrutinizes the effects of orthopedic metal materials on the biocompatibility and stemness of MSCs at metal interface. Additionally, in vivo, host responses to metal implants are investigated.
金属基装置植入体内后可能会发生腐蚀、降解或释放金属离子和碎片,对宿主器官/组织产生相应影响。众多研究已使用多种细胞类型对金属植入物的生物相容性展开了调查。间充质干细胞(MSCs)在评估金属基骨科植入物的细胞相容性方面比其他细胞更为相关,因为它们是骨再生的关键细胞,也是再生医学中很有前景的细胞群体。在这方面,MSCs的干性维持在机体自身修复过程以及更新/补偿方法的成功中都是关键特性。一般来说,MSCs在细胞-金属界面的黏附、活力和功能直接取决于金属合金的组成元素,在考虑兼容性的同时,这些元素能够确保植入物的成功。本综述仔细研究了骨科金属材料对金属界面处MSCs生物相容性和干性的影响。此外,还对体内宿主对金属植入物的反应进行了研究。