首页> 外文期刊>Journal of tissue engineering and regenerative medicine >Enhanced bone healing using collagen-hydroxyapatite scaffold implantation in the treatment of a large multiloculated mandibular aneurysmal bone cyst in a thoroughbred filly
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Enhanced bone healing using collagen-hydroxyapatite scaffold implantation in the treatment of a large multiloculated mandibular aneurysmal bone cyst in a thoroughbred filly

机译:使用胶原蛋白-羟基磷灰石支架植入物增强骨愈合,治疗纯种马的多位下颌大动脉瘤骨囊肿

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摘要

An unmet need remains for a bone graft substitute material that is biocompatible, biodegradable and capable of promoting osteogenesis safely in vivo. The aim of this study was to investigate the use of a novel collagen-hydroxyapatite (CHA) bone graft substitute in the clinical treatment of a mandibular bone cyst in a young horse and to assess its potential to enhance repair of the affected bone. A 2year-old thoroughbred filly, presenting with a multilobulated aneurysmal bone cyst, was treated using the CHA scaffold. Post-operative clinical follow-up was carried out at 2weeks and 3, 6 and 14months. Cortical thickening in the affected area was observed from computed tomography (CT) examination as early as 3months post-surgery. At 14months, reduced enlargement of the operated mandible was observed, with no fluid-filled area. The expansile cavity was occupied by moderately dense mineralized tissue and fat and the compact bone was remodelled, with a clearer definition between cortex and medulla observed. This report demonstrates the promotion of enhanced bone repair following application of the CHA scaffold material in this craniomaxillofacial indication, and thus the potential of this material for translation to human applications. Copyright (c) 2015 John Wiley & Sons, Ltd.
机译:对于生物相容性,可生物降解并且能够在体内安全地促进成骨的骨移植替代材料,仍存在未满足的需求。这项研究的目的是研究一种新型胶原-羟基磷灰石(CHA)骨移植物替代物在年轻马下颌骨囊肿的临床治疗中的应用,并评估其增强受损骨修复的潜力。使用CHA支架治疗2岁大的纯种雌马,其表现为多叶性动脉瘤骨囊肿。术后2周,3、6和14个月进行临床随访。最早在术后3个月通过计算机断层扫描(CT)检查可以观察到病变区域的皮质增厚。在第14个月时,观察到手术的下颌骨增大减小,没有积液。膨大的腔被中等密度的矿化组织和脂肪占据,紧实的骨头被重塑,在皮层和髓质之间观察到更清晰的定义。该报告证明了在这种颅颌面部适应症中使用CHA支架材料后,促进了骨修复的增强,因此该材料具有转化为人类应用的潜力。版权所有(c)2015 John Wiley&Sons,Ltd.

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