Habibovic Pamela, Gbureck Uwe, Doillon Charles J, Bassett David C, van Blitterswijk Clemens A, Barralet Jake E
Faculty of Dentistry, McGill University, Strathcona Anatomy and Dentistry Building, 3640 University Street, Montréal, Québec, Canada H3A 2B2.
Biomaterials. 2008 Mar;29(7):944-53. doi: 10.1016/j.biomaterials.2007.10.023. Epub 2007 Dec 4.
Rapid prototyping is a valuable implant production tool that enables the investigation of individual geometric parameters, such as shape, porosity, pore size and permeability, on the biological performance of synthetic bone graft substitutes. In the present study, we have employed low-temperature direct 3D printing to produce brushite and monetite implants with different geometries. Blocks predominantly consisting of brushite with channels either open or closed to the exterior were implanted on the decorticated lumbar transverse processes of goats for 12 weeks. In addition, similar blocks with closed channel geometry, consisting of either brushite or monetite were implanted intramuscularly. The design of the channels allowed investigation of the effect of macropore geometry (open and closed pores) and osteoinduction on bone formation orthotopically. Intramuscular implantation resulted in bone formation within the channels of both monetite and brushite, indicating osteoinductivity of these resorbable materials. Inside the blocks mounted on the transverse processes, initial channel shape did not seem to significantly influence the final amount of formed bone and osteoinduction was suggested to contribute to bone formation.
快速成型是一种有价值的植入物生产工具,它能够研究诸如形状、孔隙率、孔径和渗透性等个体几何参数对合成骨移植替代物生物学性能的影响。在本研究中,我们采用低温直接3D打印技术来制造具有不同几何形状的透钙磷石和一水磷酸氢钙植入物。将主要由带有向外部开放或封闭通道的透钙磷石组成的块状物植入山羊去皮质的腰椎横突上12周。此外,将由透钙磷石或一水磷酸氢钙组成的具有封闭通道几何形状的类似块状物进行肌肉内植入。通道的设计允许研究大孔几何形状(开放孔和封闭孔)以及骨诱导对原位骨形成的影响。肌肉内植入导致一水磷酸氢钙和透钙磷石的通道内均形成骨,表明这些可吸收材料具有骨诱导性。在安装在横突上的块状物内部,初始通道形状似乎并未显著影响最终形成骨的量,并且提示骨诱导作用有助于骨形成。