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首页> 外文期刊>Bio-medical materials and engineering >Condensed cellular seeded collagen gel as an improved biomaterial for tissue engineering of articular cartilage.
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Condensed cellular seeded collagen gel as an improved biomaterial for tissue engineering of articular cartilage.

机译:浓缩细胞接种胶原蛋白凝胶作为一种改良的生物材料,用于关节软骨的组织工程。

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摘要

Three-dimensional autologous chondrocyte implantation based on collagen gel as matrix scaffold has become a clinically applied treatment for focal defects of articular cartilage. However, the low biomechanical properties of collagen gel makes intraoperative handling difficult and creates the risk of early damages to the vulnerable implant. The aim of the study was to create a stabilized form of collagen gel and to evaluate its biomechanical and biochemical properties.Collagen type-I gel was seeded with human articular chondrocytes. 20 samples were subject to condensation which was achieved mechanically by compression and filtration. Control samples were left uncondensed. From both types of gels 10 samples were used for initial biomechanical evaluation by means of unconfined compression and 10 samples were cultivated under standard conditions in vitro. Following cultivation the samples were evaluated by conventional histology and immunohistochemistry. The proliferation rate was calculated and matrix gene expression was quantified by real-time PCR.The biomechanical tests revealed a higher force carrying capacity of the condensed specimens. Strain rate dependency and relaxation was seen in both types of collagen gel representing viscoelastic material properties. Cells embedded within the condensed collagen gel were able to produce extracellular matrix proteins and showed proliferation.Condensed collagen gel represents a mechanically improved type of biomaterial which is suitable for three-dimensional autologous chondrocyte implantation.
机译:基于胶原凝胶作为基质支架的三维自体软骨细胞植入已成为关节软骨局灶性缺损的临床应用治疗。但是,胶原蛋白凝胶的低生物力学性能使术中处理变得困难,并且存在对脆弱的植入物造成早期损害的风险。这项研究的目的是创造一种稳定的胶原蛋白凝胶形式,并评估其生物力学和生化特性。胶原I型凝胶植入了人类关节软骨细胞。对20个样品进行冷凝,这是通过压缩和过滤机械实现的。对照样品不凝结。从这两种类型的凝胶中,通过无限制压缩将10个样品用于初始生物力学评估,并在标准条件下体外培养10个样品。培养后,通过常规组织学和免疫组织化学评估样品。通过实时PCR计算增殖速率并定量基质基因表达。生物力学测试表明,压缩后的标本具有更高的承载力。在两种代表粘弹性材料特性的胶原蛋白凝胶中都观察到应变速率依赖性和松弛。凝聚的胶原蛋白凝胶中嵌入的细胞能够产生细胞外基质蛋白并显示出增殖。凝聚的胶原蛋白凝胶代表了机械上改良的生物材料类型,适用于三维自体软骨细胞植入。

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