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Development and Bone Regeneration Capacity of Premixed Magnesium Phosphate Cement Pastes

机译:预混磷酸镁水泥浆料的开发和骨再生能力

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摘要

Magnesium phosphate cements (MPC) have been demonstrated to have a superior bone regeneration capacity due to their good solubility under in vivo conditions. While in the past only aqueous MPC pastes have been applied, the current study describes the fabrication and in vitro/in vivo testing of an oil-based calcium doped magnesium phosphate (CaMgP) cement paste. Premixed oil-based pastes with CaMgP chemistry combine the advantages of conventional MPC such as high mechanical strength and good resorbability with a prolonged shelf-life and an easier clinical handling. The pastes set in an aqueous environment and predominantly form struvite and achieve a compressive strength of ~8−10 MPa after setting. The implantation into a drill-hole defect at the distal femoral condyle of New Zealand white rabbits over a course of 6 and 12 weeks demonstrated good biocompatibility of the materials without the formation of soft connective tissue or any signs of inflammation. In contrast to a hydroxyapatite forming reference paste, the premixed CaMgP pastes showed subsequent degradation and bony regeneration. The CaMgP cement pastes presented herein are promising bone replacement materials with excellent material properties for an improved and facilitated clinical application.
机译:已经证明磷酸镁水泥(MPC)具有优异的骨再生能力,由于其在体内条件下的良好溶解度。虽然在过去仅应用了含水MPC水浆料,但目前的研究描述了制造和体内/体内测试的油基钙掺杂磷酸镁(CAMGP)水泥浆料。具有CAMGP化学的预混合油粘贴结合了常规MPC的优点,如高机械强度和良好的可再吸收性,延长的保质期和更容易的临床处理。糊状物在含水环境中设定,主要形成斯特鲁维特并在设置后达到8-10MPa的抗压强度。在6和12周的过程中植入新西兰白兔的远端股骨髁上的钻孔缺陷表明了材料的良好生物相容性,而不形成软结缔组织或任何炎症的任何迹象。与形成参考浆料的羟基磷灰石相反,预混合的CAMGP浆料显示出随后的降解和骨肉再生。本文呈现的CAMGP水泥浆料是有前途的骨置换材料,具有优异的材料特性,可改进和促进的临床应用。

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