Cunha Marcelo Rodrigues, Santos Arnaldo Rodrigues, Goissis Gilberto, Genari Selma C
Department of Cell Biology, Institute of Biology, State University of Campinas, P.O. Box 6109, Campinas, SP 13084-971, Brazil.
J Mater Sci Mater Med. 2008 Mar;19(3):1341-8. doi: 10.1007/s10856-006-0105-y. Epub 2007 Oct 4.
In recent years, there has been a great interest in the development of biomaterials that could be used in the repair of bone defects. Collagen matrix (CM) has the advantage that it can be modified chemically to improve its mechanical properties. The aim of the present study was to evaluate the effect of three-dimensional membranes of native or anionic (submitted to alkaline treatment for 48 or 96 h) collagen matrix on the consolidation of osteoporosis bone fractures resulting from the gonadal hormone alterations caused by ovariectomy in rats subjected to hormone replacement therapy. The animals received the implants 4 months after ovariectomy and were sacrificed 8 weeks after implantation of the membranes into 4-mm wide bone defects created in the distal third of the femur with a surgical bur. Macroscopic analysis revealed the absence of pathological alterations in the implanted areas, suggesting that the material was biocompatible. Microscopic analysis showed a lower amount of bone ingrowth in the areas receiving the native membrane compared to the bone defects filled with the anionic membranes. In ovariectomized animals receiving anionic membranes, a delay in bone regeneration was observed mainly in animals not subjected to hormone replacement therapy. We conclude that anionic membranes treated with alkaline solution for 48 and 96 h presented better results in terms of bone ingrowth.
近年来,人们对可用于修复骨缺损的生物材料的开发产生了浓厚兴趣。胶原基质(CM)具有可通过化学修饰来改善其机械性能的优点。本研究的目的是评估天然或阴离子型(经过48或96小时碱性处理)胶原基质的三维膜对接受激素替代疗法的大鼠因卵巢切除导致性腺激素改变而引起的骨质疏松性骨折愈合的影响。动物在卵巢切除术后4个月接受植入物,并在将膜植入用手术钻在股骨远端三分之一处制造的4毫米宽骨缺损中8周后处死。宏观分析显示植入区域无病理改变,表明该材料具有生物相容性。微观分析表明,与填充阴离子膜的骨缺损相比,接受天然膜的区域骨向内生长的量较少。在接受阴离子膜的去卵巢动物中,主要在未接受激素替代疗法的动物中观察到骨再生延迟。我们得出结论,经48和96小时碱性溶液处理的阴离子膜在骨向内生长方面表现出更好的效果。