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首页> 外文期刊>Journal of biomedical materials research, Part A >Scaffold structure and fabrication method affect proinflammatory milieu in three-dimensional-cultured chondrocytes
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Scaffold structure and fabrication method affect proinflammatory milieu in three-dimensional-cultured chondrocytes

机译:支架结构和制备方法影响三维培养软骨细胞的促炎环境

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摘要

Cartilage tissue engineering has emerged as an attractive therapeutic option for repairing damaged cartilage tissue in the arthritic joint. High levels of proinflammatory cytokines present at arthritic joints can cause cartilage destruction and instability of the engineered cartilage tissue, and thus it is critical to engineer strong and stable cartilage that is resistant to the inflammatory environment. In this study, we demonstrate that scaffolding materials with different pore sizes and fabrication methods influence the microenvironment of chondrocytes and the response of these cells to proinflammatory cytokines, interleukin-1beta, and tumor necrosis factor alpha. Silk scaffolds prepared using the organic solvent hexafluoroisopropanol as compared to an aqueous-based method, as well as those with larger pore sizes, supported the deposition of higher cartilage matrix levels and lower expression of cartilage matrix degradation-related genes, as well as lower expression of endogenous proinflammatory cytokines IL-1 beta in articular chondrocytes. These biochemical properties could be related to the physical properties of the scaffolds such as the water uptake and the tendency to leach or adsorb proinflammatory cytokines. Thus, scaffold structure may influence the behavior of chondrocytes by influencing the microenvironment under inflammatory conditions, and should be considered as an important component for bioengineering stable cartilage tissues. (C) 2014 Wiley Periodicals, Inc.
机译:软骨组织工程已经成为修复关节炎关节中受损的软骨组织的有吸引力的治疗选择。关节炎关节中存在的高水平促炎细胞因子会导致软骨破坏和工程软骨组织的不稳定性,因此,工程化对炎症环境具有抵抗力的坚固稳定的软骨至关重要。在这项研究中,我们证明具有不同孔径和制造方法的脚手架材料会影响软骨细胞的微环境以及这些细胞对促炎细胞因子,白介素-1β和肿瘤坏死因子α的反应。与基于水的方法相比,使用有机溶剂六氟异丙醇制备的丝支架,以及具有较大孔径的丝支架,支持较高的软骨基质水平的沉积和较低的软骨基质降解相关基因的表达以及较低的表达软骨细胞中内源性促炎细胞因子IL-1β的表达这些生化特性可能与支架的物理特性有关,例如吸水率和浸出或吸附促炎细胞因子的趋势。因此,支架结构可通过在炎性条件下影响微环境来影响软骨细胞的行为,并应被视为生物工程稳定软骨组织的重要组成部分。 (C)2014威利期刊公司

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