合成骨移植对组织再生的影响

Alyaa I. Naser, R. S. Hamed, G. Taqa
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引用次数: 0

摘要

目的:本研究旨在探讨合成纳米复合材料对犬下颌骨的生物反应。研究方法研究对象为 9 只健康的成年地方品种雄性犬,年龄在 12 至 18 个月之间,体重在 10.2 至 15.2 千克之间。根据 1 个月和 2 个月的愈合间隔,狗被分为两组。每组有 3 个分组,每组 3 只狗。分组的依据是用于填充缺损的移植材料:空缺损(Control-ve)、β-磷酸三钙和纳米复合材料(β-磷酸三钙和 1%纳米银)。手术在对狗进行麻醉后开始。手术开始时,沿下颌骨后下缘切开一个 5 厘米的平行切口。暴露骨膜后,打三个直径 5 毫米、深 5 毫米的临界尺寸孔,每个孔之间间隔 5 毫米。每组的移植材料都有独立的 3 个孔。用可吸收胶原膜覆盖缺损,然后缝合粘骨膜瓣。结果总密度分析表明,在 1 个月的间隔期内,各组之间无显著差异,纳米复合材料组的平均等级(165.66± 31.21)高于其他组,而在 2 个月的间隔期内,三组之间存在非常显著的差异,P 值为(0.000),纳米复合材料组的平均等级(460.66± 26.40)高于其他组。结论在目前的研究中,纳米复合材料的使用通过加速新骨形成提高了骨传导性。此外,纳米银的加入增强了生长因子的活性。这些特性使纳米复合材料成为增强骨愈合过程的一种有前途的材料。
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The impact of synthetic bone grafting for tissue regeneration
Aims: This study aimed to examine the biological response of synthetic nanocomposite material on canine mandibular bone. Methods: Nine healthy adult male local breed dogs aged 12 to 18 months and weighing 10.2 to 15.2 kg were used in the study. Based on healing intervals of 1 and 2 months, the dogs were divided into 2 groups. Each group had 3 subgroups with 3 dogs each. The division was based on the grafting material used to fill the created defect: an empty defect (Control-ve), Beta-Tricalcium Phosphate, and nanocomposite (Beta-Tricalcium Phosphate and nanosilver 1%) . Surgery started after the dogs were anaesthetized. The surgical procedure began with a 5 cm parallel incision along the mandible’s lower posterior border. After exposing the periosteum, a three 5mm-diameter, 5-mmdeep critical-size holes were made, 5mm between each one. Each group’s grafting material had independent 3 holes. The defects were covered with resorbable collagen membranes followed by suturing of the mucoperiosteal flap. Results: Total densitometric analysis showed no significant differences between groups at 1-month intervals, with the nanocomposite group having a higher mean rank (165.66± 31.21) in comparison to other groups while at 2 months intervals that there was a highly significant difference between three groups as the P-value was (0.000) with the nanocomposite group having a higher mean rank (460.66± 26.40). Conclusions: In the current study, the use of nanocomposites improved osteoconductivity by accelerating new bone formation. Moreover, the encorporation of nanosilver enhanced growth factor activity. These attributes make nanocomposites a promising material for enhancing the bone healing process.
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来源期刊
Brazilian Journal of Oral Sciences
Brazilian Journal of Oral Sciences Dentistry-Dentistry (all)
CiteScore
0.60
自引率
0.00%
发文量
52
审稿时长
20 weeks
期刊介绍: The Brazilian Journal of Oral Sciences is an international non-profit journal, which publishes full-Length papers, original research reports, literature reviews, special reports, clinical cases, current topics and short communications, dealing with dentistry or related disciplines.
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