首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part H. Journal of Engineering in Medicine >Genotoxicity effect, antioxidant and biomechanical correlation: Experimental study of agarose-chitosan bone graft substitute in New Zealand white rabbit model
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Genotoxicity effect, antioxidant and biomechanical correlation: Experimental study of agarose-chitosan bone graft substitute in New Zealand white rabbit model

机译:遗传毒性作用,抗氧化剂和生物力学相关性:新西兰白兔模型中琼脂糖-壳聚糖接骨替代物的实验研究

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摘要

Bone loss associated with skeletal trauma or metabolic diseases often requires bone grafting. In such situations, a biomaterial is necessary for migrated cells to produce new tissue. In this study, agarose-chitosan was implanted in the femoral condyle of New Zealand White rabbits that were divided into three groups: Group I was used as control; Groups II and III were used as implanted tissue with agarose-chitosan and presenting empty defects, respectively. This study evaluated the agarose-chitosan biocompatibility by determining the in vivo genotoxicity, oxidative stress balance that correlated with the hardness mechanical property. Moreover, the histopathological and quantitative elements analyzed by using inductively coupled plasma optical emission spectrometry were determined. After 30 days of implantation, the in vivo analysis of genotoxicity showed that agarose-chitosan did not induce chromosome aberration or micronucleus damage. A significant decrease in thiobarbituric and acid-reactive substance was observed after agarose-chitosan implantation in the bone tissue. Superoxide dismutase, catalase and glutathione peroxidase were significantly enhanced in agarose-chitosan-treated group compared with that of control group. A negative correlation coefficient of the mechanical property with malonyldialdehyde level was detected (R=-0.998). The histological study exhibited a significantly increased angiogenesis and newly formed tissue. No presence of inflammatory process, necrotic or fibrous tissue was detected. Major and trace elements such as Ca, P, Zn, Mg and Fe were increased significantly in the newly formed bone. These findings show that agarose-chitosan biomaterial implantation might be effective for treating trauma and bone regeneration.
机译:与骨骼创伤或代谢性疾病相关的骨质流失通常需要植骨。在这种情况下,生物材料是迁移细胞产生新组织所必需的。在这项研究中,将琼脂糖-壳聚糖植入新西兰白兔的股骨dy中,分为三组:第一组为对照组;第二组为对照组。 II和III组分别用作琼脂糖-壳聚糖的植入组织,并表现出空缺。这项研究通过确定体内遗传毒性,氧化应激平衡(与硬度机械性能相关)来评估琼脂糖-壳聚糖的生物相容性。此外,确定了使用电感耦合等离子体发射光谱法分析的组织病理学和定量元素。植入30天后,体内遗传毒性分析表明琼脂糖-壳聚糖不会引起染色体畸变或微核损伤。琼脂糖-壳聚糖植入骨组织后,观察到硫代巴比妥酸和酸反应性物质的显着减少。与对照组相比,琼脂糖-壳聚糖处理组的超氧化物歧化酶,过氧化氢酶和谷胱甘肽过氧化物酶显着增强。测得的机械性能与丙二酰二醛含量呈负相关(R = -0.998)。组织学研究显示明显增加的血管生成和新形成的组织。未检测到炎性过程,坏死或纤维组织的存在。新形成的骨骼中的主要和微量元素,例如钙,磷,锌,镁和铁显着增加。这些发现表明琼脂糖-壳聚糖生物材料植入可能有效治疗创伤和骨再生。

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