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牙种植体周围骨的骨生成与形态

Osteogenesis and morphology of the peri-implant bone facing dental implants.

作者信息

Franchi Marco, Orsini Ester, Trire Alessandra, Quaranta Marilisa, Martini Desiree, Piccari Gabriella G, Ruggeri Alessandro, Ottani Vittoria

机构信息

Dipartimento di Scienze Anatomiche Umane e Fisiopatologia dell'Apparato Locomotore, Università di Bologna, Via Irnerio 48, 40126 Bologna, Italy.

出版信息

ScientificWorldJournal. 2004 Dec 14;4:1083-95. doi: 10.1100/tsw.2004.211.

Abstract

This study investigated the influence of different implant surfaces on peri-implant osteogenesis and implant face morphology of peri-implant tissues during the early (2 weeks) and complete healing period (3 months). Thirty endosseous titanium implants (conic screws) with differently treated surfaces (smooth titanium = SS, titanium plasma sprayed = TPS, sand-blasted zirconium oxide = Zr-SLA) were implanted in femur and tibiae diaphyses of two mongrel sheep. Histological sections of the implants and surrounding tissues obtained by sawing and grinding techniques were observed under light microscopy (LM). The peri-implant tissues of other samples were mechanically detached from the corresponding implants to be processed for SEM observation. Two weeks after implantation, we observed osteogenesis (new bone trabeculae) around all implant surfaces only where a gap was present at the host bone-metal interface. No evident bone deposition was detectable where threads of the screws were in direct contact with the compact host bone. Distance osteogenesis predominated in SS implants, while around rough surfaces (TPS and Zr-SLA), both distance and contact osteogenesis were present. At SEM analysis 2 weeks after implantation, the implant face of SS peri-implant tissue showed few, thin, newly formed, bone trabeculae immersed in large, loose, marrow tissue with blood vessels. Around the TPS screws, the implant face of the peri-implant tissue was rather irregular because of the rougher metal surface. Zr-SLA screws showed more numerous, newly formed bone trabeculae crossing marrow spaces and also needle-like crystals in bone nodules indicating an active mineralising process. After 3 months, all the screws appeared osseointegrated, being almost completely covered by a compact, mature, newly formed bone. However, some marrow spaces rich in blood vessels and undifferentiated cells were in contact with the metal surface. By SEM analysis, the implant face of the peri-implant tissue showed different results. Around the SS screws, the compact bone with areas of different mineralisation rate appeared very smooth, while around the rougher TPS screws, the bone still showed an irregular surface corresponding to the implant macro/microroughness. Around the Zr-SLA screws, a more regular implant-bone surface and sparse, calcified marrow spaces were detectable. Results from this research suggest that 2 weeks after implantation, trabecular bone represents the calcified healing tissue, which supports the early biological fixation of the implants. The peri-implant marrow spaces, rich in undifferentiated cells and blood vasculature, observed both 2 weeks and 3 months after surgery, favour the biological turnover of both early and mature peri-implant bone. The implant surface morphology strongly influences the rate and the modality of peri-implant osteogenesis, as do the morphology and arrangement of the implant face in peri-implant bone both during early healing (after 2 weeks) and when the implant is just osseointegrated; rough surfaces, and in particular Zr-SLA, seem to better favour bone deposition on the metal surface.

摘要

本研究调查了不同种植体表面在早期(2周)和完全愈合期(3个月)对种植体周围骨生成以及种植体周围组织的种植体面形态的影响。将30枚具有不同处理表面(光滑钛 = SS、钛等离子喷涂 = TPS、喷砂氧化锆 = Zr-SLA)的骨内钛种植体(锥形螺钉)植入两只杂种绵羊的股骨和胫骨干中。通过锯切和研磨技术获取的种植体及周围组织的组织学切片在光学显微镜(LM)下观察。其他样本的种植体周围组织从相应种植体上机械分离下来,进行扫描电子显微镜(SEM)观察。植入后2周,我们仅在宿主骨 - 金属界面存在间隙的所有种植体表面周围观察到骨生成(新骨小梁)。在螺钉螺纹与致密宿主骨直接接触的部位未检测到明显的骨沉积。距离性骨生成在SS种植体中占主导,而在粗糙表面(TPS和Zr-SLA)周围,距离性骨生成和接触性骨生成均存在。植入后2周的SEM分析显示,SS种植体周围组织的种植体面有少量、细小、新形成的骨小梁,浸于含有血管的大而疏松的骨髓组织中。在TPS螺钉周围,种植体周围组织的种植体面由于金属表面更粗糙而相当不规则。Zr-SLA螺钉显示有更多新形成的骨小梁穿过骨髓间隙,并且在骨结节中有针状晶体,表明有活跃的矿化过程。3个月后,所有螺钉均呈现骨整合状态,几乎完全被致密、成熟的新形成骨覆盖。然而,一些富含血管和未分化细胞的骨髓间隙与金属表面接触。通过SEM分析,种植体周围组织的种植体面显示出不同结果。在SS螺钉周围,具有不同矿化率区域的致密骨看起来非常光滑,而在更粗糙的TPS螺钉周围,骨仍显示出与种植体宏观/微观粗糙度相对应的不规则表面。在Zr-SLA螺钉周围,可检测到更规则的种植体 - 骨表面和稀疏的钙化骨髓间隙。本研究结果表明,植入后2周,小梁骨代表钙化的愈合组织,它支持种植体的早期生物固定。在手术后2周和3个月均观察到的富含未分化细胞和血管系统的种植体周围骨髓间隙,有利于早期和成熟种植体周围骨的生物更新。种植体表面形态强烈影响种植体周围骨生成的速率和方式,在早期愈合(2周后)以及种植体刚骨整合时,种植体周围骨中的种植体面形态和排列方式也有影响;粗糙表面,特别是Zr-SLA,似乎更有利于金属表面的骨沉积。

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