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首页> 外文期刊>Journal of biomedical materials research, Part A >In vivo effect ofUV-photofunctionalization ofCoCrMoin processes of guided bone regeneration and tissue engineering
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In vivo effect ofUV-photofunctionalization ofCoCrMoin processes of guided bone regeneration and tissue engineering

机译:在骨胶蛋白过程的uv-photeconcoctionization of ocroco骨再生和组织工程中的体内作用

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摘要

Photofunctionalization of implant materials with ultraviolet (UV) radiation have been subject of study in the last two decades, and previous research on CoCrMo discs have showed good results in terms of bioactivity and the findings of apatite-like crystals in vitro. In the current study, CoCrMo domes were photofunctionalized with UV radiation of 254 nm on their internal faces during 24 hr; they were implanted in rabbit tibia and remained for 3, 4, and 6 weeks. The potential to induce bone formation beneath the dome-shaped membranes was evaluated through morphometric, histologic, and density measurements; and the results were compared with those obtained under control untreated domes. Higher density values were observed for irradiated domes at 3 weeks, whereas higher volumes were obtained under photofunctionalized domes for longer periods (4 and 6 weeks). Histologically, woven bone was formed by endochondral ossification in all cases; differences in the architecture and size of the trabeculae and in the number of osteoblasts were noted between irradiated and non-irradiated samples. The UV radiation of 254 nm generated a larger bone volume fraction compared to that found in the absence of UVC radiation and induced an increase of density in the early stages of healing, leading to a better initial bone quality and improved osseointegration.
机译:在过去的二十年里,利用紫外线(UV)辐射对植入材料进行光功能化一直是研究的主题,之前对CoCrMo椎间盘的研究在生物活性和类磷灰石晶体的体外发现方面显示了良好的结果。在目前的研究中,CoCrMo穹顶在24小时内通过254 nm的紫外线辐射进行光功能化;将其植入兔胫骨,并保持3、4和6周。通过形态计量学、组织学和密度测量评估穹顶状膜下诱导骨形成的可能性;并将结果与对照未处理穹顶下的结果进行了比较。辐照圆顶在3周时观察到更高的密度值,而光功能化圆顶在更长时间(4周和6周)下获得更高的体积。组织学上,所有病例均由软骨内骨化形成编织骨;辐照和未辐照样品之间的小梁结构和大小以及成骨细胞数量存在差异。与没有UVC辐射的情况相比,254 nm的紫外线辐射产生了更大的骨体积分数,并在愈合的早期阶段诱导了密度的增加,从而改善了初始骨质量和骨整合。

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