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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Biomimetic sulfated polyethylene glycol hydrogel inhibits proteoglycan loss and tumor necrosis factor‐α‐induced expression pattern in an osteoarthritis in vitro in vitro model
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Biomimetic sulfated polyethylene glycol hydrogel inhibits proteoglycan loss and tumor necrosis factor‐α‐induced expression pattern in an osteoarthritis in vitro in vitro model

机译:仿生硫酸化聚乙二醇水凝胶在体外模型中抑制骨关节炎中的蛋白变化损失和肿瘤坏死因子-α-诱导的表达模式

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Abstract This study aimed to evaluate the potential of an anti‐inflammatory polyethylene glycol (PEG) hydrogel for osteoarthritis (OA) management in an OA in vitro model. Freshly isolated porcine chondrocytes were maintained in high‐density cultures to form cartilage‐like three‐dimensional micromasses. Recombinant porcine tumor necrosis factor‐alpha (TNF‐α) was used to induce OA‐like changes. Normal and OA‐like micromasses were treated with dendritic polyglycerol sulfate‐based PEG hydrogel. Live/dead staining showed that all micromasses remained vital and presented similar morphological characteristics. Safranin‐O staining demonstrated a typical depletion of glycosaminoglycans in TNF‐α‐treated micromasses but not in the presence of the hydrogel. There was no distinct difference in immunohistochemical detection of type II collagen. Microarray data showed that rheumatoid arthritis and TNF signaling pathways were down regulated in hydrogel‐treated OA‐like micromasses compared to nontreated OA‐like micromasses. The hydrogel alone did not affect genes related to OA such as ANPEP, COMP, CXCL12, PTGS2, and TNFSF10, but it prevented their regulation caused by TNF‐α. This study provides valuable insights toward a fully synthetic hydrogel for the intra‐articular treatment of OA. The findings proved the potential of this hydrogel to prevent the development of TNF‐α‐induced OA with regard to proteoglycan loss and TNF‐α‐induced expression pattern without additional signs of differentiation and inflammation. ? 2018 Wiley Periodicals, Inc. J Biomed Mater Res Part B: Appl Biomater, 2018. ? 2018 Wiley Periodicals, Inc. J Biomed Mater Res Part B: Appl Biomater 107B: 490–500, 2019.
机译:摘要本研究旨在评估在体外模型中OA中骨关节炎(OA)管理的抗炎聚乙二醇(PEG)水凝胶的潜力。将新鲜的猪软骨细胞保持在高密度培养物中以形成软骨状的三维微卡。重组猪肿瘤坏死因子-α(TNF-α)用于诱导类似OA的变化。用树突式聚甘油硫酸盐的PEG水凝胶处理正常和类似的微量种子。实时/死染色表明,所有的微均仍然是至关重要的并且呈现出类似的形态特征。 SAFRANIN-O染色在TNF-α处理的微粉粉中表明了糖胺聚糖的典型耗尽,但不在水凝胶存在下。 II型胶原蛋白的免疫组织化学检测没有明显的差异。微阵列数据表明,与非残留的OA样微量扫描器相比,微阵列数据在水凝胶处理的OA样微量测量中调节了类风湿性关节炎和TNF信号传导途径。单独的水凝胶不影响与OA相关的基因,例如ANPEP,COMP,CXCL12,PTGS2和TNFSF10,但它阻止了由TNF-α引起的调节。本研究为朝鲜内部治疗OA的闭微治疗提供了有价值的见解。结果证明了该水凝胶的潜力,以防止TNF-α-诱导的OA关于蛋白多糖损失和TNF-α-诱导的表达模式,没有额外的分化和炎症。还2018 Wiley期刊,Inc.J生物保证Mater Res B:苹果生物摩特,2018年。? 2018 Wiley期刊,Inc.J生物保解员B:Appl Biomater 107B:490-500,2019。

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