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用于骨组织再生的锶钙基生物材料的微环境构建:钙对锶的平衡效应

Microenvironment construction of strontium-calcium-based biomaterials for bone tissue regeneration: the equilibrium effect of calcium to strontium.

作者信息

Xie Huixu, Gu Zhipeng, He Yan, Xu Jia, Xu Chun, Li Longjiang, Ye Qingsong

机构信息

State Key Laboratory of Oral Diseases & National Clinical Research Center for Oral Diseases, Sichuan University, Chengdu 610041, China.

出版信息

J Mater Chem B. 2018 Apr 21;6(15):2332-2339. doi: 10.1039/c8tb00306h. Epub 2018 Apr 3.

Abstract

Strontium-doped calcium phosphate-based biomaterials have gained increased recognition due to their beneficial effects on bone formation. However, the underlying mechanism is still not clear. In this study, we detected the calcification effects of strontium-based materials on osteoblasts in vitro and bone formation in vivo. The results showed that strontium may inhibit bone cell function in osteoblasts under a standard calcium concentration (1.8 mM) by both reducing alkaline phosphatase activity and inhibiting absorption of osteopontin and osteocalcin. In contrast, a high calcium concentration (9 mM) enhances the bone regeneration effect of strontium-based materials. Cultured osteoblasts underwent increased proliferation, calcification and alkaline phosphatase activity upon increasing calcium concentrations. An experimental animal model was utilized to simulate a high calcium concentration microenvironment in bone tissue and low calcium concentration in the subcutaneous part and the in vivo results are similar to the in vitro results. These findings suggest that strontium only promoted an anabolic effect on osteoblasts to enhance osteogenesis in a calcium rich microenvironment. Strontium would inhibit bone regeneration under a low dose of calcium in vivo. Therefore, strontium seems to be a potentially effective therapeutic option for bone regeneration in combination with a high concentration environment of calcium ions. These results would provide an in-depth knowledge of an ion-based bone tissue substitute for bone regeneration.

摘要

锶掺杂的磷酸钙基生物材料因其对骨形成的有益作用而越来越受到认可。然而,其潜在机制仍不清楚。在本研究中,我们检测了锶基材料在体外对成骨细胞的钙化作用以及在体内对骨形成的影响。结果表明,在标准钙浓度(1.8 mM)下,锶可能通过降低碱性磷酸酶活性以及抑制骨桥蛋白和骨钙素的吸收来抑制成骨细胞中的骨细胞功能。相反,高钙浓度(9 mM)可增强锶基材料的骨再生效果。随着钙浓度的增加,培养的成骨细胞增殖、钙化及碱性磷酸酶活性均增强。利用实验动物模型模拟骨组织中的高钙浓度微环境和皮下部分的低钙浓度,体内结果与体外结果相似。这些发现表明,锶仅在富含钙的微环境中对成骨细胞产生合成代谢作用以增强骨生成。在体内低剂量钙的情况下,锶会抑制骨再生。因此,锶似乎是与高浓度钙离子环境联合用于骨再生的一种潜在有效治疗选择。这些结果将为基于离子的骨组织替代物用于骨再生提供深入的认识。

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