IN VIVO BIOCOMPATIBILITY OF APATITE-FIBER SCAFFOLD WITH ENHANCED MECHANICAL PROPERTY USING PIG MODEL BY IMPLANTING INTO TIBIA

T. Ganmoto, M. Honda, Toshiisa Konishi, Minori Mizumoto, H. Matsunari, Yasuhiro Takeuchi, H. Nagashima, M. Aizawa
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引用次数: 1

Abstract

We have successfully synthesized single-crystal apatite fibers (AF) by a homogeneous precipitation method with urea. The AF has a higher solubility than isotropic HAp powders. Thus, using the AF, we developed apatite-fiber scaffolds (AFSs) that enables three-dimensionally cell culture and induces differentiation into osteoblasts. Recently, we have successfully enhanced mechanical properties of the AFSs using carbon beads (CB) with a diameter of 150 m and 20 m, together with uniaxial pressing of the green compacts. In this study, we fabricated the AFSs with enhanced mechanical property (AFS700(50-50)), and then implanted them into tibia of pig to evaluate a biocompatibility to a hard tissue. The porosity of the resulting and compressive strength of typical AFS700(50-50) were 93.5% and 128 kPa, respectively. The AFS700(50-50) had a number of micro pores, macro-pores and interconnected pores. In the histological observation after 13 weeks implantation, newly-formed bone and cells were invaded into pores of the AFS700(50-50), and the scaffolds were incorporated into a cycle of bone remodeling. The AFS700(50-50) was also observed to be replaced with autologous tissue. The present scaffold may be expected as a high performance scaffold for bone regeneration. (Received May 8, 2012; Accepted May 16, 2012)
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增强力学性能的磷灰石纤维支架在猪模型胫骨内的生物相容性研究
采用尿素均相沉淀法成功合成了单晶磷灰石纤维。AF具有比各向同性HAp粉末更高的溶解度。因此,利用AF,我们开发了磷灰石纤维支架(AFSs),可以进行三维细胞培养并诱导分化为成骨细胞。最近,我们成功地使用直径为150m和20m的碳珠(CB)以及绿色压坯的单轴挤压来增强afs的机械性能。在本研究中,我们制备了力学性能增强的AFS700(50-50)的afs,然后将其植入猪胫骨,以评估其与硬组织的生物相容性。典型AFS700(50-50)的孔隙率和抗压强度分别为93.5%和128 kPa。AFS700(50-50)具有微孔、大孔和连通孔。在植入13周后的组织学观察中,新形成的骨和细胞侵入AFS700的孔隙(50-50),将支架纳入骨重塑周期。AFS700(50-50)也被自体组织替代。该支架有望成为一种高性能的骨再生支架。(收于2012年5月8日;2012年5月16日录用)
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