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Histological and Biochemical Evaluations of Decellularized Meniscus Tissues using Sonication Treatment System

机译:超声处理系统对脱细胞半月板组织的组织学和生化评估

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Meniscus plays fundamental roles in the knee mechanisms and functions but injuries happen in meniscus have poor healing ability that requires great interventions. Tissue engineered scaffolds serve as one of the interventions to regenerate the required tissue to treat early degenerative joint disease. The purpose of this research is to examine the effectiveness of sonication treatment system in complete cellular components removal with preserved extracellular matrix (ECM) compositions in meniscus tissues through histological and biochemical evaluations. Meniscus tissues were decellularized using sonication treatment system for 10 hours treatment time and continued with extensive washing process. Histological evaluations were based on van Gieson and Picrosirius red staining that portrayed complete cellular components removal and preserved collagen networks distribution within sonicated scaffolds respectively. Biochemical evaluations showed markedly reduction in the residual DNA content for sonicated scaffolds while maintain in collagen content. Lastly, agarose gel electrophoresis showed no visible DNA bands for sonicated scaffolds. Therefore, the results concluded that the prepared bioscaffolds by sonication treatment system managed to reduce the immunogenicity of scaffolds by removing most of the cellular components and successfully retained the properties of the extracellular matrix. Thus, it is a suitable decellularization method to be used in tissue engineering applications.
机译:半月板在膝关节的机制和功能中起着基本作用,但半月板发生的损伤具有较弱的愈合能力,需要大量干预。组织工程支架是使所需组织再生以治疗早期退行性关节疾病的干预措施之一。这项研究的目的是通过组织学和生化评估来检查超声处理系统在半月板组织中用保留的细胞外基质(ECM)成分完全去除细胞成分的有效性。使用超声处理系统将半月板组织脱细胞10小时,然后继续进行广泛的洗涤过程。组织学评估基于van Gieson和Picrosirius红色染色,分别描绘了完整的细胞成分去除和超声支架中胶原网络分布的保留。生化评估表明,超声处理后的支架的残留DNA含量显着降低,而胶原蛋白含量却保持不变。最后,琼脂糖凝胶电泳显示超声支架没有可见的DNA条带。因此,结果得出结论,通过超声处理系统制备的生物支架设法通过去除大部分细胞组分来降低支架的免疫原性并成功保留了细胞外基质的特性。因此,这是在组织工程应用中使用的合适的脱细胞方法。

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