首页> 外文会议>2011 2nd International Conference on Instrumentation, Communications, Information Technology and Biomedical Engineering >In vivo study of hydroxyapatite-chitosan and hydroxyapatite-tricalcium phosphate bone graft in sheep's bone as animal model
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In vivo study of hydroxyapatite-chitosan and hydroxyapatite-tricalcium phosphate bone graft in sheep's bone as animal model

机译:绵羊骨中羟基磷灰石-壳聚糖和羟基磷灰石-磷酸三钙骨移植物的体内研究作为动物模型

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This study describes the in vivo evaluation study of bones implanted with graft of hydoxyapatite-chitosan (HA-C) and hydroxyapatite-tricalcium phosphate (HA-TCP) composite in sheep's bone as the animal model for human. This study was done in two parts, non-invasive clinical imaging study, i.e. brightness mode ultrasound (B-mode US) and conventional radiography (CR) technique, and morphological study of the bone healing process. Six sheep were used in this study and separated in two groups, three sheep for each group. The implantation surgery was done aseptically by creating a 4 mm diameter and 7 mm depth hole on each left and right hind limb of proximal medial tibial bone. First group implanted of HA-TCP at the left tibial and the second group by the HA-C composite. The right tibial of both groups served as control, which was drilled but not implanted. The CR and US were performed one day before and 7, 21, 30 days after implantation. Bones were harvested after 30, 60, and 90 days post-surgery and observed for morphological study. The B-mode US showed that inflammation and early bone remodeling occurred of both implants at subcutaneus area seven days after implantation and decreased 30 days after. Furthermore, the CR technique showed that both implant were still intact on site 90 days after, therefore, indicated minimal absorption or even not absorbed at all. The morphological evaluation showed that HA-TCP had been degradable 30 days after and continued, indicated signs for biocompatibility, biodegradability, bioresorbable, bioactivity and osteo conductivity properties. On the other hand, HA-C graft showed only biocompatibility characteristics 90 days after implantation. The result showed that the healing process of HA-TCP faster than HA-C but nevertheless, both composite still slower healing process than control bone.
机译:该研究描述了在羊骨中植入羟基磷灰石-壳聚糖(HA-C)和羟基磷灰石-磷酸三钙(HA-TCP)复合材料作为人类动物模型的骨骼的体内评估研究。这项研究分为两个部分,非侵入性临床成像研究,即,亮度模式超声(B模式US)和常规放射线照相(CR)技术,以及骨愈合过程的形态学研究。在该研究中使用了六只绵羊,将其分为两组,每组三只。植入手术是通过在胫骨近内侧骨的每个左后肢和右后肢上分别开一个直径为4 mm,深度为7 mm的孔来进行的。第一组由左胫骨植入HA-TCP,第二组由HA-C复合材料植入。两组的右胫骨均作为对照,已钻孔但未植入。植入前一天和植入后第7、21、30天进行CR和US。手术后30、60和90天后收获骨头,并进行形态学观察。 B型US显示,植入后7天,两个植入物均在表皮下区域发生炎症和早期骨重塑,并在30天后减少。此外,CR技术显示两个植入物在90天后仍完好无损,因此表明吸收极小,甚至根本没有吸收。形态学评价表明,HA-TCP在30天后仍可降解并持续,表明其具有生物相容性,生物降解性,生物可吸收性,生物活性和骨电导率特性。另一方面,HA-C移植物在植入后90天仅显示出生物相容性特征。结果表明,HA-TCP的愈合过程比HA-C快,但是,这两种复合材料的愈合过程仍比对照骨骼慢。

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