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使用光学显微镜、透射电子显微镜和图像处理技术对大鼠胫骨骨-钛界面进行长期评估。

Long-term evaluation of bone-titanium interface in rat tibiae using light microscopy, transmission electron microscopy, and image processing.

作者信息

Takeshita F, Ayukawa Y, Iyama S, Murai K, Suetsugu T

机构信息

Prosthetic Dentistry II, Faculty of Dentistry, Kyushu University, Fukuoka, Japan.

出版信息

J Biomed Mater Res. 1997 Nov;37(2):235-42. doi: 10.1002/(sici)1097-4636(199711)37:2<235::aid-jbm13>3.0.co;2-d.

Abstract

We conducted a 2-year histologic and histometric evaluation of the tibial bone-titanium (Ti) implant interface in male rats. Thirty male 6-week-old rats were used in this study. They were divided into two groups: 15 for day 28 and 15 for day 730. Microscopic observation at day 28 revealed that the newly formed bone around the implant almost surrounded the implant, but fibroblastlike cells were interposed in some histologic sections. At day 730, in contrast, such cells were rarely seen, and the bone around the implant presented a lamellar structure. Transmission electron microscopic observation at day 28 disclosed mature or poorly mineralized bone near the implant; however, an electron-dense amorphous zone about 50 nm in thickness was interposed between the bone and Ti. In places slender cells were interposed between the bone and Ti. The amorphous zone was also observed at the cell-Ti interface. At day 730, a poorly mineralized layer remained in some areas between the mature bone and the titanium, and the interposed amorphous zone was still observed. Occasionally, a 200-nm-thick layer, thought to be cell remnant, was seen. As calculated in an image-processing, system analysis, the percent bone contact and the thickness and area of the surrounding bone for the Ti implant at day 28 were 43.6%, 30.4 microns, and 0.10 mm2, respectively, and those at day 730 were 89.9%, 53.5 microns, and 0.19 mm2, respectively. In summary, although the passage of time may affect bone maturity, interfacial cells remain at the bone-Ti interface as a uniform layer together with unmineralized bone.

摘要

我们对雄性大鼠胫骨骨-钛(Ti)种植体界面进行了为期2年的组织学和组织计量学评估。本研究使用了30只6周龄的雄性大鼠。它们被分为两组:15只用于第28天的观察,15只用于第730天的观察。第28天的显微镜观察显示,种植体周围新形成的骨几乎包围了种植体,但在一些组织学切片中可见成纤维细胞样细胞。相比之下,在第730天,很少见到此类细胞,种植体周围的骨呈现出板层结构。第28天的透射电子显微镜观察显示,种植体附近有成熟或矿化不良的骨;然而,在骨与钛之间有一个厚度约50nm的电子致密无定形区。在骨与钛之间的某些部位有细长的细胞。在细胞-钛界面也观察到了无定形区。第730天,在成熟骨与钛之间的一些区域仍存在矿化不良层,并且仍观察到插入的无定形区。偶尔可见一层200nm厚的层,被认为是细胞残余物。经图像处理系统分析计算,第28天时钛种植体的骨接触百分比、周围骨的厚度和面积分别为43.6%、30.4微米和0.10平方毫米,第730天时分别为89.9%、53.5微米和0.19平方毫米。总之,尽管时间的推移可能会影响骨的成熟度,但界面细胞与未矿化的骨一起作为一层均匀的层保留在骨-钛界面处。

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