Landi Elena, Sprio Simone, Sandri Monica, Celotti Giancarlo, Tampieri Anna
ISTEC-CNR, Institute of Science and Technology for Ceramics, National Research Council, via Granarolo 64, 48018 Faenza (RA), Italy.
Acta Biomater. 2008 May;4(3):656-63. doi: 10.1016/j.actbio.2007.10.010. Epub 2007 Nov 1.
Sr and CO3 co-substituted hydroxyapatite (SrCHA) nanopowder was synthesized by neutralization. The powder was characterized. The improved solubility in Hanks' balanced solution of SrCHA granules (400-600 microm of dimensional range), potentially usable as bone filler, was assessed and compared with that of an analogous carbonate free granulate. SrCHA porous bodies with interconnected micro- and macro-porosity, which mimic the morphology of spongy bone, were prepared by the impregnation of cellulose sponges with suspensions of the SrCHA powder and controlled sintering. SrCHA porous scaffolds sintered at 850 degrees C, in flowing CO2 atmosphere, showed satisfying compressive strength (4.58+/-0.75 MPa) for a porosity value of 45 vol.% and retained the desired ionic substitutions (Sr/Ca=0.11 and CO3=6.8 wt.%). The possibility of widely modulating, by acting on the chemical-physical-geometrical features of the material, the prolonged in situ release of therapeutic Sr, together with the fundamental (Ca, PO4) and main substituting (CO3) ions that constitute the bone mineral phase, makes the use of SrCHA as resorbable bone filler or bone substitute scaffolds promising, especially when pathologies related with Sr deficiency are present. In vitro and in vivo tests are in progress.
通过中和法合成了锶和碳酸根共取代的羟基磷灰石(SrCHA)纳米粉末。对该粉末进行了表征。评估了尺寸范围为400 - 600微米、潜在可用作骨填充剂的SrCHA颗粒在汉克斯平衡溶液中的溶解性改善情况,并与类似的无碳酸盐颗粒进行了比较。通过用SrCHA粉末悬浮液浸渍纤维素海绵并进行控制烧结,制备了具有相互连通的微孔和大孔、模拟松质骨形态的SrCHA多孔体。在流动的二氧化碳气氛中于850℃烧结的SrCHA多孔支架,对于45体积%的孔隙率值显示出令人满意的抗压强度(4.58±0.75MPa),并保留了所需的离子取代(Sr/Ca = 0.11和CO3 = 6.8重量%)。通过作用于材料的化学 - 物理 - 几何特征来广泛调节治疗性锶以及构成骨矿物相的基本(钙、磷酸根)和主要取代(碳酸根)离子的原位长效释放的可能性,使得将SrCHA用作可吸收骨填充剂或骨替代支架具有前景,特别是当存在与锶缺乏相关的病症时。体外和体内试验正在进行中。