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焦磷酸镁改性磷酸四钙/透钙磷石生物水泥的表征

Characterization of Tetracalcium Phosphate/Monetite Biocement Modified by Magnesium Pyrophosphate.

作者信息

Stulajterova Radoslava, Medvecky Lubomir, Giretova Maria, Sopcak Tibor, Luptakova Lenka, Bures Radovan, Szekiova Eva

机构信息

Division of Functional and Hybrid Systems, Institute of Materials Research of SAS, Watsonova 47, 040 01 Kosice, Slovakia.

Department of Biology and Physiology, University of Veterinary Medicine and Pharmacy in Kosice, Komenskeho 73, 041 81 Kosice, Slovakia.

出版信息

Materials (Basel). 2022 Mar 31;15(7):2586. doi: 10.3390/ma15072586.

Abstract

Magnesium pyrophosphate modified tetracalcium phosphate/monetite cement mixtures (MgTTCPM) were prepared by simple mechanical homogenization of compounds in a ball mill. The MgPO was chosen due to the suitable setting properties of the final cements, in contrast to cements with the addition of amorphous (Ca, Mg) CO or newberite, which significantly extended the setting time even in small amounts (corresponding ~to 1 wt% of Mg in final cements). The results showed the gradual dissolution of the same amount of MgPO phase, regardless of its content in the cement mixtures, and the refinement of formed HAP nanoparticles, which were joined into weakly and mutually bound spherical agglomerates. The compressive strength of composite cements was reduced to 14 MPa and the setting time was 5-10 min depending on the composition. Cytotoxicity of cements or their extracts was not detected and increased proliferative activity of mesenchymal stem cells with upregulation of osteopontin and osteonectin genes was verified in cells cultured for 7 and 15 days in cement extracts. The above facts, including insignificant changes in the pH of simulated body fluid solution and mechanical strength close to cancellous bone, indicate that MgTTCPM cement mixtures could be suitable biomaterials for use in the treatment of bone defects.

摘要

通过在球磨机中对化合物进行简单的机械均化,制备了焦磷酸镁改性的磷酸四钙/透钙磷石水泥混合物(MgTTCPM)。选择MgPO是因为最终水泥具有合适的凝结性能,这与添加无定形(Ca,Mg)CO或新磷钙石的水泥形成对比,后者即使少量添加(相当于最终水泥中约1 wt%的Mg)也会显著延长凝结时间。结果表明,无论MgPO相在水泥混合物中的含量如何,相同量的MgPO相都会逐渐溶解,并且形成的HAP纳米颗粒会细化,这些纳米颗粒结合成弱结合且相互连接的球形团聚体。复合水泥的抗压强度降至14 MPa,凝结时间根据组成不同为5 - 10分钟。未检测到水泥或其提取物的细胞毒性,并且在水泥提取物中培养7天和15天的细胞中,验证了间充质干细胞的增殖活性增加,同时骨桥蛋白和骨粘连蛋白基因上调。上述事实,包括模拟体液溶液pH值变化不显著以及机械强度接近松质骨,表明MgTTCPM水泥混合物可能是用于治疗骨缺损的合适生物材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aef7/9000233/3afd76904ca9/materials-15-02586-g001.jpg

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