Ryu Hyun-Seung, Hong Kug-Sun, Lee Jung-Kun, Kim Deug Joong, Lee Jae Hyup, Chang Bong-Soon, Lee Dong-ho, Lee Choon-Ki, Chung Sung-Soo
School of Materials Science and Engineering, College of Engineering, Seoul National University, Shinrim-dong San 56-1, Kwanack-Ku, Seoul 151-742, South Korea.
Biomaterials. 2004 Feb;25(3):393-401. doi: 10.1016/s0142-9612(03)00538-6.
The sintering behavior, mechanical properties and biocompatibility of magnesia (MgO)-doped HA/TCP biphasic ceramics were studied. Pure HA/TCP ceramics showed poor sinterability due to the phase transformation of beta- to alpha-TCP. MgO-doped HA/TCP ceramics showed high density without any phase transformation of beta-TCP up to 1300 degrees C, for MgO dopants incorporated into the beta-TCP preferably and increased thermal stability of beta-TCP. However, the addition of MgO higher than a critical content, suppressed grain growth of HA/TCP ceramics and lowered sinterability. The optimum amount of MgO doping was 1 wt%, which lead 99% relative density and higher mechanical properties than HA or beta-TCP ceramics. From in vitro test and in vivo test, 1 wt% MgO-doped HA/TCP ceramics showed a good biocompatibility without cytotoxicity. After implantation under the muscle of rabbits, beta-TCP phase was dissolved from the surface and a biological apatite covered the surface. These results proved that MgO addition increased drastically the sintering and mechanical properties of HA/beta-TCP ceramics without altering the biological safety and biocompatibility of the original composite.
研究了氧化镁(MgO)掺杂的HA/TCP双相陶瓷的烧结行为、力学性能和生物相容性。由于β-TCP向α-TCP的相变,纯HA/TCP陶瓷的烧结性较差。MgO掺杂的HA/TCP陶瓷在高达1300℃时显示出高密度,且β-TCP没有任何相变,因为MgO掺杂剂优先掺入β-TCP中并提高了β-TCP的热稳定性。然而,MgO的添加量高于临界含量时,会抑制HA/TCP陶瓷的晶粒生长并降低烧结性。MgO的最佳掺杂量为1 wt%,其导致相对密度达到99%,且力学性能高于HA或β-TCP陶瓷。通过体外试验和体内试验,1 wt% MgO掺杂的HA/TCP陶瓷显示出良好的生物相容性且无细胞毒性。在兔肌肉下植入后,β-TCP相从表面溶解,生物磷灰石覆盖在表面。这些结果证明,添加MgO可显著提高HA/β-TCP陶瓷的烧结性和力学性能,而不会改变原始复合材料的生物安全性和生物相容性。