Guiding bone formation using semi-onlay calcium phosphate implants in an ovine calvarial model

IF 3.1 3区 生物学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Journal of Tissue Engineering and Regenerative Medicine Pub Date : 2022-02-23 DOI:10.1002/term.3288
Gry Hulsart Billstr?m, Viviana R. Lopes, Christopher Illies, Sara Gallinetti, Jonas ?berg, H?kan Engqvist, Conrado Aparicio, Sune Larsson, Lars Kihlstr?m Burenstam Linder, Ulrik Birgersson
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引用次数: 2

Abstract

The restoration of cranio-maxillofacial deformities often requires complex reconstructive surgery in a challenging anatomical region, with abnormal soft tissue structures and bony deficits. In this proof-of-concept, the possibility of vertical bone augmentation was explored by suspending hemispherically shaped titanium-reinforced porous calcium phosphate (CaP) implants (n = 12) over the frontal bone in a sheep model (n = 6). The animals were euthanized after week 13 and the specimens were subject to micro-computed tomography (μCT) and comprehensive histological analysis. Histology showed that the space between implant and the recipient bone was filled with a higher percentage of newly formed bone (NFB) versus soft tissue with a median of 53% and 47%, respectively. Similar results were obtained from the μ-CT analysis, with a median of 56% NFB and 44% soft tissue filling the void. Noteworthy, significantly higher bone-implant contact was found for the CaP (78%, range 14%–94%) versus the Titanium (29%, range 0%–75%) portion of the implant exposed to the surrounding bone. The histological analysis indicates that the CaP replacement by bone is driven by macrophages over time, emphasized by material-filled macrophages found in close vicinity to the CaP with only a small number of single osteoclasts found actively remodeling the NFB. This study shows that CaP based implants can be assembled with the help of additive manufacturing to guide vertical bone formation without decortification or administration of growth factors. Furthermore, it highlights the potential disadvantage of a seamless fit between the implant and the recipient's bone.

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在羊颅骨模型中使用半覆盖磷酸钙植入物引导骨形成
颅颌面畸形的修复通常需要在具有挑战性的解剖区域进行复杂的重建手术,并伴有软组织结构异常和骨缺损。在这个概念验证中,通过在羊模型(n = 6)的额骨上悬挂半球形钛增强多孔磷酸钙(CaP)植入物(n = 12)来探索垂直骨增强的可能性。动物在第13周后安乐死,标本进行微计算机断层扫描(μCT)和综合组织学分析。组织学显示,与软组织相比,种植体和受体骨之间的空隙填充了更高比例的新形成骨(NFB),中位数分别为53%和47%。μ-CT分析也得到了类似的结果,NFB的中位数为56%,软组织填充的中位数为44%。值得注意的是,CaP(78%,范围14%-94%)与钛(29%,范围0%-75%)相比,种植体暴露于周围骨的部分骨与种植体的接触率明显更高。组织学分析表明,随着时间的推移,巨噬细胞驱动骨替代CaP,在CaP附近发现的材料填充巨噬细胞强调,只有少量单一破骨细胞积极重塑NFB。本研究表明,基于CaP的植入物可以在增材制造的帮助下组装,以引导垂直骨形成,而无需去修饰或施用生长因子。此外,它还突出了植入物与受术者骨骼之间无缝配合的潜在缺点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
7.50
自引率
3.00%
发文量
97
审稿时长
4-8 weeks
期刊介绍: Journal of Tissue Engineering and Regenerative Medicine publishes rapidly and rigorously peer-reviewed research papers, reviews, clinical case reports, perspectives, and short communications on topics relevant to the development of therapeutic approaches which combine stem or progenitor cells, biomaterials and scaffolds, growth factors and other bioactive agents, and their respective constructs. All papers should deal with research that has a direct or potential impact on the development of novel clinical approaches for the regeneration or repair of tissues and organs. The journal is multidisciplinary, covering the combination of the principles of life sciences and engineering in efforts to advance medicine and clinical strategies. The journal focuses on the use of cells, materials, and biochemical/mechanical factors in the development of biological functional substitutes that restore, maintain, or improve tissue or organ function. The journal publishes research on any tissue or organ and covers all key aspects of the field, including the development of new biomaterials and processing of scaffolds; the use of different types of cells (mainly stem and progenitor cells) and their culture in specific bioreactors; studies in relevant animal models; and clinical trials in human patients performed under strict regulatory and ethical frameworks. Manuscripts describing the use of advanced methods for the characterization of engineered tissues are also of special interest to the journal readership.
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