[Bone inductive activity of hydroxyapatite-bone morphogenetic protein complex].

M Umemura, T Kawai, A Mieki, H Kataoka, S Kurita, M Koie, M Kishi, Y Ohno, J Hasegawa, T Kawai
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Abstract

Bone morphogenetic protein (BMP) is known to be a protein which induces new bone at heterotopic sites. Purification of BMP has not been perfected, and obtaining large amounts of BMP is very difficult, so it seems better to use some carrier or frame material for BMP to work effectively. Various kinds of hydroxyapatite (HAP) have been used to repair periodontal osseous defects, but they do not have osteogenetic or osteoinductive properties. If osteoinductive proteins such as BMP could retain their biologic properties after being implanted into living tissue with HAP, it would be an advantage in repairing periodontal osseous defects. In this experiment, we prepared BMP-HAP complex and investigated its osteoinductive activity. BMP was extracted from bovine cortical bones in accordance with the Urist's procedure. The ability of this BMP to stimulate new bone growth was ensured by implantation in the muscle pouch of mice. HAP was synthesized by the wet method. The BMP-HAP complex was implanted in the muscle pouch of mice, and osteoinduction was examined 3, 7, 14, and 21 days after implantation to assess its osteo-inductive ability. New bone formation was studied by roentgenographic and histologic observation. In the BMP-HAP group, new bone formation was seen on the roentgenograms and new cartilage and bone were observed histologically in the tissue surrounding the apatite. In the HAP group, no new cartilage or bone formation was noted.

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羟基磷灰石-骨形态发生蛋白复合物的骨诱导活性。
骨形态发生蛋白(BMP)是一种在异位位点诱导新骨形成的蛋白。BMP的纯化技术还不完善,获得大量的BMP非常困难,因此最好使用一些载体或框架材料来使BMP有效地工作。各种羟基磷灰石(HAP)已被用于修复牙周骨缺损,但它们不具有成骨性或成骨诱导性。如果骨诱导蛋白如BMP植入活体组织后能保留其生物学特性,将是修复牙周骨缺损的一大优势。在本实验中,我们制备了BMP-HAP复合物并研究了其骨诱导活性。BMP按照Urist的程序从牛皮质骨中提取。这种BMP刺激新骨生长的能力通过植入小鼠的肌袋得到保证。采用湿法合成HAP。将BMP-HAP复合物植入小鼠肌袋,在植入后3、7、14、21天进行成骨检测,评估其成骨诱导能力。通过x线摄影和组织学观察观察新生骨形成情况。在BMP-HAP组中,x线片上可见新骨形成,组织学上在磷灰石周围组织中观察到新的软骨和骨。在HAP组中,没有发现新的软骨或骨形成。
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