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Effects of Addition of Mannitol Crystals on the Porosity and Dissolution Rates of a Calcium Phosphate Cement

机译:甘露醇晶体的添加对磷酸钙水泥孔隙率和溶解速率的影响

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摘要

The bone defect repair functions of calcium phosphate cement (CPC) are related to its osteoconductivity and its gradual replacement by new bone. Adding mannitol to CPC may enhance its bone repair potential by increasing CPCs macroporosity and dissolution rate. The objective of the study was to assess microporosity and macroporosity and dissolution rates for CPC mixed with mannitol. Three groups of CPC discs were prepared by combining an equimolar mixture of tetracalcium phosphate and anhydrous dicalcium phosphate with (0 %, 10 %, or 50 %) mass fraction (hereafter expressed as mass %) of mannitol. Macroporosity and microporosity of the samples were calculated from volume and mass measurements of the discs. Discs were then placed in a pH 3.0 demineralizing solution simulating acidified physiological solution, and dissolution rates were measured by a previously described constant-composition titration method. Pure CPC exhibited no macropores and microporosity (mean ± s.d.; n = 5) of (46.8 ± 0.8) % volume fraction (hereafter expressed as vol %). Adding 10 mass % mannitol resulted in 15.6 ± 3.9 vol % macroporosity and 39.4 ± 1.8 vol % microporosity, and adding 50 mass % mannitol produced 54.7 ± 0.8 vol % macroporosity and 21.1 ± 0.4 vol % microporosity. The dissolution rates (mean ± s.d.; n = 5) of CPC with (0, 10, and 50) mass % mannitol incorporation were (30.6 ± 3.4, 44.8 ± 10.2, and 54.7 ± 3.6, respectively) μg · cm−2 · min−1, or (0.018 ± 0.002, 0.032 ± 0.007, and 0.072 ± 0.005, respectively) μL · cm−2 · min−1. Adding either 10 mass % or 50 mass % mannitol into CPC significantly (p < 0.05) increased CPC dissolution rates. Adding mannitol readily increased macroporosity and dissolution rate of CPC, which may enhance the capacity of CPC to be osteoconductive.
机译:磷酸钙骨水泥(CPC)的骨缺损修复功能与其骨传导性和逐渐被新骨替代有关。将甘露醇添加到CPC中可以通过增加CPCs大孔率和溶出度来增强其骨修复潜力。该研究的目的是评估CPC和甘露醇混合后的微孔和大孔以及溶出率。通过将等摩尔的磷酸四钙和无水磷酸二钙的混合物与(0%,10%或50%)质量分数(以下表示为质量%)的甘露醇混合,制备三组CPC圆盘。从圆盘的体积和质量测量值计算出样品的大孔和微孔。然后将圆盘置于模拟酸化的生理溶液的pH 3.0脱盐溶液中,并通过前述的恒定组成滴定法测量溶出速率。纯CPC没有表现出(46.8±0.8)%体积分数(以下表示为体积%)的大孔和微孔率(平均±s.d。; n = 5)。添加10质量%的甘露糖醇产生15.6±3.9vol%的大孔率和39.4±1.8vol%的微孔率,并且添加50质量%的甘露醇产生54.7±0.8vol%的大孔率和21.1±0.4vol%的微孔率。结合质量分数为(0、10和50)甘露醇的CPC的溶出度(平均值±sd; n = 5)为(30.6±3.4、44.8±10.2和54.7±3.6)μg·cm −2 ·min -1 或(分别为0.018±0.002、0.032±0.007和0.072±0.005)μL·cm −2 ·min < sup> -1 。将10质量%或50质量%甘露醇添加到CPC中会显着提高(p <0.05),提高CPC溶解率。加入甘露醇容易增加CPC的大孔率和溶解速率,这可以增强CPC具有骨传导性的能力。

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