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Effects of bone types, particle sizes, and gamma irradiation doses in feline demineralized freeze-dried bone allograft

机译:骨型,粒径和γ辐射剂量在猫露珠脱耳化冷冻干燥骨同质移植物中的影响

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Background and Aim: Fracture cases significantly increase recently, demanding high quality of bone graft materials. This research aimed to evaluate the effects of bone types, particle sizes, and gamma irradiation doses on morphological performance and cell viability of feline demineralized freeze-dried bone allograft (DFDBA) through an in vitro study. Materials and Methods: Feline DFDBA derived from feline cortical and cancellous long bones was processed into four different sizes: Group A (larger than 1000 μm), B (841-1000 μm), C (420-840 μm), and D (250-419 μm) for each type of bones. The materials were then irradiated with two doses of gamma rays, 15 and 25 kGy, resulting in 16 variants of feline DFDBA. The surfaces of each material were then observed with the scanning electron microscope (SEM). The in vitro evaluation of feline DFDBA was then performed using 3-(4,5-dimethythiazol-2)-2,5-diphenyltetrazolium bromide (MTT) assay with calf pulmonary artery endothelial cells. Results: The MTT assay results showed that the lowest inhibition rate (14.67±9.17 %) achieved by feline DFDBA in Group A derived from cortical bones irradiated with 15 kGy. Group D generally showed high inhibition rate in both cancellous and cortical bones, irradiated with either 15 or 25 kGy. The SEM results showed that cancellous and cortical bones have numerous macropores and micropores structure in 170× and 3000×, respectively. Conclusion: The material derived from cortical bones in Group A (larger than 1000 μm in particle size) irradiated with 15 kGy is the best candidate for further development due to its abundance of micropores structure and ability in preserving the living cells.
机译:背景和目的:最近骨折病例明显增加,要求高质量的骨移植材料。该研究旨在通过体外研究评估骨类型,粒度和γ和γ辐射剂对猫的形态学性能和细胞活力对猫的形态学性能和细胞活力。材料和方法:从猫科动物皮质和松质长骨衍生的猫DFDBA加工成四种不同尺寸:A组(大于1000μm),B(841-1000μm),C(420-840μm)和D(250每种骨骼的-419μm)。然后用两种剂量的γ射线,15和25 kgy照射材料,导致16种猫的DFDBA变体。然后用扫描电子显微镜(SEM)观察每种材料的表面。然后使用Calf肺动脉内皮细胞使用3-(4,5-二甲基噻唑-2)-2,5-二苯基四唑烷基溴化物(MTT)测定,进行猫科动物DFDBA的体外评估。结果:MTT测定结果表明,通过源自15kGy照射的皮质骨骼衍生的素材DFDBA在源自皮质骨骼中实现的最低抑制率(14.67±9.17%)。 D组通常在诸至15或25kGy照射的松质和皮质骨骼中显示出高的抑制率。 SEM结果表明,松质和皮质骨骼分别以170×和3000×分别具有多种大孔和微孔结构。结论:用15kGy辐照的A组(粒度大于1000μm)衍生自皮质骨骼的材料是由于其丰富的微孔结构和保留活细胞的能力而进一步发展的最佳候选者。

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