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Optimization of a Chondrogenic Medium Through the Use of Factorial Design of Experiments

机译:通过使用因子设计实验优化软骨生成培养基

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The standard culture system for in vitro cartilage research is based on cells in a three-dimensional micromass culture and a defined medium containing the chondrogenic key growth factor, transforming growth factor (TGF)-β1. The aim of this study was to optimize the medium for chondrocyte micromass culture. Human chondrocytes were cultured in different media formulations, designed with a factorial design of experiments (DoE) approach and based on the standard medium for redifferentiation. The significant factors for the redifferentiation of the chondrocytes were determined and optimized in a two-step process through the use of response surface methodology. TGF-β1, dexamethasone, and glucose were significant factors for differentiating the chondrocytes. Compared to the standard medium, TGF-β1 was increased 30%, dexamethasone reduced 50%, and glucose increased 22%. The potency of the optimized medium was validated in a comparative study against the standard medium. The optimized medium resulted in micromass cultures with increased expression of genes important for the articular chondrocyte phenotype and in cultures with increased glycosaminoglycan/DNA content. Optimizing the standard medium with the efficient DoE method, a new medium that gave better redifferentiation for articular chondrocytes was determined.
机译:用于体外软骨研究的标准培养系统基于三维微质量培养中的细胞和包含软骨关键生长因子,转化生长因子(TGF)-β1的确定培养基。这项研究的目的是优化软骨细胞微团培养的培养基。将人软骨细胞培养在不同的培养基配方中,采用析因实验设计(DoE)方法进行设计,并基于标准培养基进行再分化。通过使用响应曲面方法,通过两步过程确定并优化了软骨细胞再分化的重要因素。 TGF-β1,地塞米松和葡萄糖是分化软骨细胞的重要因素。与标准培养基相比,TGF-β1增加30%,地塞米松减少50%,葡萄糖增加22%。在与标准培养基的对比研究中验证了优化培养基的效价。优化的培养基导致微团培养物的表达对于关节软骨细胞表型很重要,而糖胺聚糖/ DNA含量增加。通过有效的DoE方法优化标准培养基,确定了一种能够为关节软骨细胞提供更好再分化的新培养基。

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