鹿角羟基磷灰石骨替代物骨再生的组织学评价:动物研究。

Q3 Dentistry
Naser Sargolzaie, M. Kadkhodazadeh, A. Ebadian, Reyhaneh Shafieian, sajjad pourkaveh, Nava Naghibi, Mahdiye Fasihi Ramandie
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引用次数: 1

摘要

目的引导骨再生(GBR)被认为是种植牙治疗的先决条件。为此,通常使用骨材料。钙化合物和钙磷基材料如羟基磷灰石(HA, Ca10 (PO4)6(OH)2),由于其与人骨的相似性,可以作为骨再生的移植材料。本研究旨在评价异种鹿角移植物的生物相容性,并比较异种鹿角移植物与Cerabone在兔颅骨骨缺损再生中的骨传导效果。方法与材料在4只家兔的颅骨上制备5个直径为6mm,深度为3mm的缺损。然后随机取2个缺损用异种鹿角移植物移植,2个缺损用Cerabone填充,1个缺损作为未处理组。组织学评估,包括测量新再生骨的百分比和成骨细胞、破骨细胞和骨细胞的数量,也进行了。统计分析采用配对t检验、卡方检验和Fisher检验。结果异种鹿角移植组新生骨成形率(73.33%)和Cerabone组(48.91%)明显高于未治疗组(18.91%)。移植鹿角组骨细胞和成骨细胞数量分别为3.52±0.17和2.41±0.24,Cerabone组分别为2.57±0.29和2.31±0.32。移植鹿角组骨髓成形率(6.66±5.34)和Cerabone组(1.99±3.17)显著高于未治疗组。结论采用异种鹿角骨作为骨传导材料修复兔颅骨缺损的效果与Cerabone相当。尽管需要更多的临床研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Histological Evaluation of Bone Regeneration Using Hydroxyapatite Based Bone Substitute Derived from Antler: An Animal Study.
OBJECTIVE Guided bone regeneration (GBR) is considered as a prerequisite in some cases of implant dentistry. For this purpose, bone materials are commonly used. Calcium compounds and Ca-P based materials like hydroxyapatite (HA, Ca10 (PO4)6(OH)2), due to their similarity with the human bone, can be used as graft materials for bone regeneration. This study aimed to evaluate biocompatibility of antler xenograft and compare the osteoconduction effects of antler xenograft with Cerabone in regeneration of calvarium bony defects of rabbits. METHODS AND MATERIALS Five defects with a diameter of 6 mm and a depth of 3 mm were prepared in the calvarium of four rabbits. Thereafter, two defects were randomly grafted with antler xenograft, two defects were filled with Cerabone, and one defect remained as the untreated group. Histological evaluations, including measuring percentage of new regenerated bone and the amounts of osteoblast, osteoclast, and osteocyte cells, were also performed. To do statistical analyses, paired t-test, chi-square, and Fisher tests were applied. RESULTS The percentage of new bone formation was significantly higher in antler xenograft (73.33%) and in Cerabone (48.91%) compared to the untreated group (18.91%). The amounts of osteocytes and osteoblasts were obtained as 3.52 ± 0.17 and 2.41 ± 0.24 in the Antler xenograft and as 2.57 ± 0.29 and 2.31 ± 0.32 in the Cerabone group, respectively. Bone marrow formation were significantly higher in antler xenograft (6.66 ± 5.34) and Cerabone (1.99 ± 3.17) compared to the untreated group. CONCLUSION According to this pilot study, results of using antler xenograft as an osteoconductive materials in regeneration of rabbit calvarial defects are comparable with Cerabone. Although more clinical studies are needed.
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来源期刊
CiteScore
1.20
自引率
0.00%
发文量
46
期刊介绍: MEDICAL IMPLANTS are being used in every organ of the human body. Ideally, medical implants must have biomechanical properties comparable to those of autogenous tissues without any adverse effects. In each anatomic site, studies of the long-term effects of medical implants must be undertaken to determine accurately the safety and performance of the implants. Today, implant surgery has become an interdisciplinary undertaking involving a number of skilled and gifted specialists. For example, successful cochlear implants will involve audiologists, audiological physicians, speech and language therapists, otolaryngologists, nurses, neuro-otologists, teachers of the deaf, hearing therapists, cochlear implant manufacturers, and others involved with hearing-impaired and deaf individuals.
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