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POLYMER-FILLED CALCIUM PHOSPHATE CEMENT: MECHANICAL PROPERTIES AND CONTROLLED RELEASE OF GROWTH FACTOR

机译:聚合物填充磷酸钙水泥的力学性能和生长因子的控制释放

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Novel calcium phosphate cement (CPC) was developed by incorporating pore-forming participates (porogens) to induce macropores and proteins to stimulate bone growth. A paste was made from CPC powder (0.15g, equimolar mixture of tetracalcium phosphate and dicalcium phosphate), biodegradable polymer microspheres [0.1 g, volume fraction of 0.6, (0.17 to 0.36) mm in diameter], and 0.062 g of water. Disks for determining diametral tensile strength (DTS) and mass loss were prepared from the paste in a mold at 37℃. Disks for the release of a protein were similarly prepared using a solution of the protein, and biodegradable polymer microspheres or water-soluble crystals (mannitol or salicylic acid) as porogens. The disks were immersed at 37℃ in an aqueous solution in order to quantify the effects of the solution on DTS and mass loss, as well as the release of the protein into the solution. The initial DTS value for the disks was (6.4 +- 0.9) MPa. The release of the protein from the CPC/porogen disks persisted for at least 300 h. The release rate of Protein A from the CPC/mannitol disks increased with the volume fraction of mannitol crystals. At a fixed volume fraction of porogens, the release rate of TGF-β1 from the CPC/porogen disks increased with the dissolution rate of the porogens. Thus, the release of a protein from composite grafts consisting of CPC and porogens can be modulated by the volume fraction and the dissolution rate of the porogens.
机译:新型磷酸钙水泥(CPC)通过结合成孔参与物(致孔剂)来诱导大孔和蛋白质来刺激骨骼生长。由CPC粉末(0.15g,磷酸四钙和磷酸二钙的等摩尔混合物),可生物降解的聚合物微球[0.1g,体积分数为0.6,直径为(0.17至0.36)mm]和0.062g水制成糊剂。由糊状物在37℃的模具中制备用于确定径向拉伸强度(DTS)和质量损失的盘。类似地,使用蛋白质溶液和可生物降解的聚合物微球或水溶性晶体(甘露醇或水杨酸)作为致孔剂,制备释放蛋白质的圆盘。将圆盘浸入37℃的水溶液中,以量化溶液对DTS和质量损失以及蛋白质向溶液中释放的影响。磁盘的初始DTS值为(6.4±0.9)MPa。从CPC /孔原盘释放出的蛋白质持续至少300小时。蛋白A从CPC /甘露醇片中的释放速率随甘露醇晶体的体积分数增加而增加。在成孔剂的固定体积分数下,TGF-β1从CPC /成孔剂盘中的释放速率随成孔剂的溶解速率而增加。因此,可以通过成孔剂的体积分数和溶解速率来调节由CPC和成孔剂组成的复合移植物中蛋白质的释放。

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