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锌-锶烧结真骨陶瓷促进骨修复和再生。

Zn-Sr-sintered true bone ceramics enhance bone repair and regeneration.

机构信息

Department of Orthopedics, Zhongnan Hospital of Wuhan University, Wuhan, China.

Department of Orthopedics, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, China.

出版信息

Biomater Sci. 2023 May 16;11(10):3486-3501. doi: 10.1039/d3bm00030c.

Abstract

Bone defects are one of the toughest challenges faced by orthopedic surgeons worldwide, especially at critical sizes, which are caused by severe trauma, malignancy, or congenital disease. The ideal bone tissue-engineered scaffold for bone regeneration is the one that has good osteoconductivity, osteoinductivity, pore structure, and antibacterial properties. Metal ions have been recognized in recent years to be essential regulators of bone metabolism, and they are widely used for bone tissue engineering. In particular, zinc ions are of interest because of their ideal biocompatibility, osteogenesis-promoting properties, and antibacterial properties. Moreover, the dual role of strontium (Sr) in promoting osteogenesis and inhibiting osteolysis provides academic support for Zn-Sr co-doped scaffolds. Based on true bone ceramics (TBC), Zn-Sr-sintered scaffolds with good pore structures were prepared using immersion-calcination. The biocompatibility, cell adhesion, osteogenic properties, and antibacterial activity of Zn-Sr-sintered TBC scaffolds in bone marrow mesenchymal stem cells (BMSCs) are superior to those of control TBC scaffolds. The Zn-Sr-sintered TBC scaffold was used to repair rat cranial defects. Its good repair performance was confirmed by osseointegration and inward bone growth compared with that of the control TBC scaffold. ZnSr-TBC is an ideal material for bone repair because of its good biocompatibility and favorable osteogenic properties.

摘要

骨缺损是全球骨科医生面临的最严峻挑战之一,尤其是在严重创伤、恶性肿瘤或先天性疾病导致的临界尺寸骨缺损。理想的用于骨再生的组织工程化骨支架应具有良好的骨传导性、成骨诱导性、孔隙结构和抗菌性能。近年来,金属离子已被认为是骨骼代谢的必需调节剂,被广泛应用于骨组织工程。特别是锌离子因其理想的生物相容性、促骨生成特性和抗菌性能而备受关注。此外,锶(Sr)在促进成骨和抑制骨溶解方面的双重作用为 Zn-Sr 共掺杂支架提供了学术支持。基于真正的骨陶瓷(TBC),采用浸渍-煅烧法制备了具有良好孔隙结构的 Zn-Sr 烧结 TBC 支架。Zn-Sr 烧结 TBC 支架在骨髓间充质干细胞(BMSCs)中的生物相容性、细胞黏附、成骨性能和抗菌活性均优于对照 TBC 支架。Zn-Sr 烧结 TBC 支架用于修复大鼠颅缺损,与对照 TBC 支架相比,其具有良好的骨整合和向内骨生长,证实了其良好的修复性能。ZnSr-TBC 因其良好的生物相容性和有利的成骨特性,是一种理想的骨修复材料。

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