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首页> 外文期刊>Journal of biomaterials and nanobiotechnology. >Osteoinduction and Osteoconduction with Porous Beta-Tricalcium Phosphate Implanted after Fibular Resection in Humans
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Osteoinduction and Osteoconduction with Porous Beta-Tricalcium Phosphate Implanted after Fibular Resection in Humans

机译:人工腓骨切除术后植入多孔β-磷酸三钙的骨诱导和骨传导

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摘要

Osteoinductive properties of β -TCP remain unknown in humans. It is important to improve the bone grafts which have been the standard treatment for bone defect due to their biocompatibility and bone-healing properties. The purpose of this study was to radiologically clarify the bone forming property of β -TCP by evaluating the replacement of β -TCP by newly formed bone in the defect after fibular resection and to examine the histological features of a β -TCP specimen three months after grafting. Radiographs of 17 patients who underwent β -TCP grafting were evaluated. Osteoinductive and osteoconductive properties were assessed by examining bone formation from the remnant fibula, periosteum, and β -TCP alone. In one case, β -TCP was removed later because of postoperative complications and was evaluated histologically. Twenty two of 34 sites between the remnant fibula and β -TCP had achieved good bone regeneration. Five of 14 sites between the periosteum and β -TCP had achieved good bone regeneration. We found immature but evident bone formation in three cases with no osseous and periosteal sites. Histological analysis revealed bone formation on the outer macropore surface of β -TCP. Some blood vessels formed in the macropores expressed CD31 and CD34, while a few lymphatic vessels expressed CD34 and podoplanin. Thus, the osteoinductive ability of β -TCP alone was demonstrated in humans radiographically for the first time. The histological morphology of β -TCP was demonstrated at an early stage after grafting in humans.
机译:β-TCP的骨诱导特性在人类中仍然未知。重要的是,由于其生物相容性和骨愈合特性,改良已成为骨缺损的标准治疗方法的骨移植物非常重要。本研究的目的是通过评估腓骨切除术后缺损中新形成的骨对β-TCP的替代作用,以放射学的方式阐明 β-TCP的骨形成特性,并检查其组织学特征移植后三个月的 β-TCP标本。评价了17例接受 β-TCP移植的患者的X光片。通过检查仅由残余腓骨,骨膜和β-TCP形成的骨来评估骨诱导和骨传导特性。在一种情况下,由于术后并发症, β-TCP后来被移除,并进行了组织学评估。剩余腓骨和 β-TCP之间的34个位点中的22个位点已实现良好的骨再生。骨膜和 β-TCP之间的14个位点中有5个已经获得了良好的骨再生。我们发现三例无骨和骨膜部位的骨发育不成熟但明显。组织学分析显示在 β-TCP的外部大孔表面上有骨形成。大孔中形成的一些血管表达CD31和CD34,而一些淋巴管表达CD34和Podoplanin。因此,首次在放射线照相术中证明了单独的 β-TCP的骨诱导能力。在人类移植后的早期就证明了 β-TCP的组织形态。

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