Barrère Florence, van der Valk Chantal M, Dalmeijer Remco A J, Meijer Gert, van Blitterswijk Clemens A, de Groot Klaas, Layrolle Pierre
IsoTis NV, Prof Bronkhorstlaan 10, PO Box 98, 3720 AB Bilthoven, The Netherlands.
J Biomed Mater Res A. 2003 Sep 15;66(4):779-88. doi: 10.1002/jbm.a.10454.
The biomimetic route allows the homogeneous deposition of calcium phosphate (Ca-P) coatings on porous implants by immersion in simulated physiologic solution. In addition, various Ca-P phases, such as octacalcium phosphate (OCP) or bone-like carbonated apatite (BCA), which are stable only at low temperatures, can be deposited. In this pilot study, experiments were designed with a twofold-purpose: (1) to investigate the osteoinduction of OCP-coated and noncoated porous tantalum cylinders and of dense titanium alloy cylinders (5 mm in diameter and 10 mm in length) in the back muscle of goats at 12 and 24 weeks (n = 4); and (2) to compare the osteogenic potentials of BCA-coated, OCP-coated, and bare porous tantalum cylinders in a gap of 1 mm created in the femoral condyle of a goat at 12 weeks (n = 2). In the goat muscle, after 12 weeks the OCP-coated porous cylinder had induced ectopic bone as well as bone within the cavity of the OCP-coated dense titanium cylinder. In the femoral condyle, bone did not fill the gap in any of the porous implants. In contrast with the two other groups, OCP-coated porous cylinders exhibited bone formation in the center of the implant. The nature of the Ca-P coating, via its microstructure, its dissolution rate, and its specific interactions with body fluids, may influence the osteogenecity of the Ca-P biomaterial.
仿生途径可通过将多孔植入物浸入模拟生理溶液中,实现磷酸钙(Ca-P)涂层的均匀沉积。此外,还可以沉积各种仅在低温下稳定的Ca-P相,如磷酸八钙(OCP)或类骨碳酸磷灰石(BCA)。在这项初步研究中,实验设计具有双重目的:(1)研究12周和24周时,OCP涂层和未涂层的多孔钽圆柱体以及致密钛合金圆柱体(直径5毫米,长度10毫米)在山羊背部肌肉中的骨诱导作用(n = 4);(2)比较12周时,BCA涂层、OCP涂层和裸露的多孔钽圆柱体在山羊股骨髁上形成的1毫米间隙中的成骨潜力(n = 2)。在山羊肌肉中,12周后,OCP涂层的多孔圆柱体诱导了异位骨以及OCP涂层致密钛圆柱体腔内的骨形成。在股骨髁中,任何多孔植入物的间隙中都没有骨填充。与其他两组相比,OCP涂层的多孔圆柱体在植入物中心表现出骨形成。Ca-P涂层的性质,通过其微观结构、溶解速率以及与体液的特定相互作用,可能会影响Ca-P生物材料的成骨能力。