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含多孔磷灰石和硅灰石的微晶玻璃的体内吸收

In vivo absorption of porous apatite- and wollastonite-containing glass-ceramic.

作者信息

Ohsawa Kunitaka, Neo Masashi, Okamoto Tsuyoshi, Tamura Jiro, Nakamura Takashi

机构信息

Department of Orthopaedic Surgery, Graduate School of Medicine, Kyoto University, 54 Kawahara-cho, Shogoin, Sakyo-ku, Kyoto 606-8507, Japan.

出版信息

J Mater Sci Mater Med. 2004 Aug;15(8):859-64. doi: 10.1023/B:JMSM.0000036273.37843.0c.

Abstract

The behavior of porous apatite- and wollastonite-containing glass-ceramic (AW) in the bone marrow cavity was investigated. Cylinders of porous AW (4 mm in diameter and 20 mm long, mean porosity of 70% and mean pore diameter of 200 microm) were implanted into the bone marrow cavity of rabbit femurs, and analyzed by chronological radiograms and by scanning electron microscopy one, three, six, and 12 months later. The pores of porous AW are interconnected and homogeneously distributed, and its compressive strength is nearly equal to that of human cancellous bone. Bone formed in the pores at the center of the material by one month and bonded to the material directly. The volume of newly formed bone in the material pores reached a peak at three months, and decreased gradually after six months. The trabecular structures of AW were gradually remodeled by newly formed bone, while AW-bone bonding was maintained during bone remodeling and material absorption. AW was absorbed continuously, and at six and 12 months the residual material corresponded to about 64 and 30% of the starting material, respectively. Porous AW may therefore be useful as an absorbable bone substitute.

摘要

研究了含磷灰石和硅灰石的多孔微晶玻璃(AW)在骨髓腔中的行为。将多孔AW圆柱体(直径4毫米,长20毫米,平均孔隙率70%,平均孔径200微米)植入兔股骨骨髓腔,分别于1、3、6和12个月后通过按时间顺序拍摄的X线片和扫描电子显微镜进行分析。多孔AW的孔隙相互连通且分布均匀,其抗压强度几乎与人松质骨相等。1个月时,材料中心孔隙内形成骨并直接与材料结合。材料孔隙内新形成骨的体积在3个月时达到峰值,6个月后逐渐减少。AW的小梁结构被新形成的骨逐渐重塑,而在骨重塑和材料吸收过程中,AW与骨的结合得以维持。AW持续被吸收,6个月和12个月时,残留材料分别约为起始材料的64%和30%。因此,多孔AW可能作为一种可吸收骨替代物具有应用价值。

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