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首页> 外文期刊>The Journal of Musculoskeletal and Neuronal Interactions >Gamma irradiation. An effective procedure for bone banks, but does it make sense from an osteobiological perspective?
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Gamma irradiation. An effective procedure for bone banks, but does it make sense from an osteobiological perspective?

机译:伽玛射线。一个有效的骨存储程序,但是从骨生物学的角度讲有意义吗?

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Background: Bone grafts promote bone healing by supplying a three-dimensional structure that supports bone ingrowth. Autologous bone therefore still remains the "gold standard" for grafts. Unfortunately, autologous bone grafts are associated with an increased morbidity. In order to avoid such problems, intensive research has been carried out on alternative materials such as allogeneic bone. However, its use is dependent on bone banks and its availability is limited. Gamma irradiation is now becoming established as a procedure for inactivating bacteria, fungal spores and viruses. Its effects on the biomechanical properties of bone have been analyzed in numerous studies. However, the current literature provides little information as to the effects of gamma sterilization on the osteobiology of allogeneic bone grafts. Purpose: The purpose of this study was to evaluate the effect of gamma-sterilized bone grafts on immunocompetent cells by an in vitro model (a culture of human bone marrow cells). Methods: We decided to use the model of human bone marrow cells in culture for the in vitro analysis because the physiological conditions in the human body can best be simulated in this model and the observed reactions are applicable to humans. Results and Interpretation: In sum, we found a maximum immune response in gamma-irradiated bone grafts, which, interpreted as a sole result, must be seen as a negative biological effect. However, in view of the good clinical results for gamma-sterilized bone grafts other influences would seem to be the determining factors in clinical outcome. Further research is needed to gain a more exact understanding of these factors.
机译:背景:骨移植物通过提供支持骨骼向内生长的三维结构来促进骨骼愈合。因此,自体骨仍然是移植物的“金标准”。不幸的是,自体骨移植物与发病率增加有关。为了避免这些问题,已经对替代材料如异体骨进行了深入研究。但是,其使用取决于骨库,并且其可用性受到限制。伽马射线辐射现已确立为灭活细菌,真菌孢子和病毒的程序。在许多研究中已经分析了其对骨骼生物力学性能的影响。然而,目前的文献几乎没有提供关于γ消毒对同种异体骨移植物的骨生物学的影响的信息。目的:本研究的目的是通过体外模型(人类骨髓细胞培养物)评估经伽马灭菌的骨移植物对免疫功能细胞的影响。方法:我们决定将培养的人骨髓细胞模型用于体外分析,因为在该模型中可以最好地模拟人体的生理状况,并且观察到的反应也适用于人类。结果与解释:总而言之,我们发现伽玛射线辐照的骨移植物具有最大的免疫反应,这被认为是唯一的结果,必须被视为负面的生物学效应。但是,鉴于伽玛消毒骨移植的临床效果良好,其他影响似乎是临床结果的决定因素。需要进一步的研究以更准确地了解这些因素。

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