首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >In vitro degradation and cytocompatibility of dicalcium phosphate dihydrate cements prepared using the monocalcium phosphate monohydrate/hydroxyapatite system reveals rapid conversion to HA as a key mechanism.
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In vitro degradation and cytocompatibility of dicalcium phosphate dihydrate cements prepared using the monocalcium phosphate monohydrate/hydroxyapatite system reveals rapid conversion to HA as a key mechanism.

机译:使用磷酸一钙一水合物/羟基磷灰石系统制备的磷酸二钙二水合物水泥的体外降解和细胞相容性显示出快速转化为HA是关键机制。

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We previously showed that dicalcium phosphate dihydrate (DCPD) cements can be prepared using monocalcium phosphate monohydrate (MCPM) and hydroxyapatite (HA). In this study, we have characterized the degradation properties and biocompatibility of these novel cements. To study the degradation properties, cements were prepared using MCPM:HA molar ratios of 4:1, 2:1, 2:3, and 2:5. Degradation was evaluated in vitro by static soaking in PBS, and changes in pH, mass, compressive strength, and composition were monitored. Conversion of DCPD to HA was noted in the 4:1 group, which initially consisted of pure DCPD. However, the 2:1 group, which initially consisted of DCPD and an intermediate amount of unreacted HA, underwent rapid conversion to HA associated with significantly greater pH drop and mass loss as well as a complete loss of mechanical integrity. On the basis of these results, we directly compared the cytocompatibility of 2:1 MCPM:HA cements to DCPD cements prepared with an equivalent percent molar excess of β-tricalcium phosphate (β-TCP) using an in vitro cell viability assay. Viability of cells co-cultured with 2:1 MCPM:HA cements was significantly reduced after just 48 h, while viability of cells cultured with the β-TCP-based cements was no different from control cells. In conclusion, this study demonstrates that conversion to HA plays an important role in the degradation of DCPD cements prepared with the MCPM/HA system, affecting both physical properties and cytocompatibility. These results could have important clinical implications for MCPM/HA cements.
机译:我们以前表明,可以使用磷酸一钙一水合物(MCPM)和羟基磷灰石(HA)来制备磷酸二钙二水合物(DCPD)水泥。在这项研究中,我们已经表征了这些新型水泥的降解性能和生物相容性。为了研究降解性能,使用MCPM:HA摩尔比为4:1、2:1、2:3和2:5制备水泥。通过将其静态浸泡在PBS中进行体外降解评估,并监测pH,质量,抗压强度和组成的变化。在4:1组中注意到了DCPD向HA的转化,最初由纯DCPD组成。但是,最初由DCPD和中等量的未反应HA组成的2:1组经历了向PH的快速转化,这与pH值下降和质量损失显着增加以及机械完整性完全丧失有关。基于这些结果,我们使用体外细胞活力测定法直接比较了2:1 MCPM:HA水泥与DCPD水泥的细胞相容性,DCPD水泥使用等摩尔百分比过量的β-磷酸三钙(β-TCP)。仅仅48小时后,与2:1 MCPM:HA水泥共培养的细胞的活力就显着降低,而与基于β-TCP的水泥共培养的细胞的活力与对照细胞没有什么不同。总之,这项研究表明,向HA的转化在用MCPM / HA系统制备的DCPD水泥的降解中起着重要作用,同时影响物理性质和细胞相容性。这些结果可能对MCPM / HA水泥具有重要的临床意义。

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