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New chondrocyte genes discovered by representational difference analysis of chondroinduced human fibroblasts.

机译:通过软骨诱导的人类成纤维细胞的代表性差异分析发现了新的软骨细胞基因。

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This report includes a review of the potential for gene expression analyses to provide new information for solving problems in skeletal repair and regeneration. It focuses on two approaches: high-throughput gene array methods and representational difference analysis (RDA). The principles underlying these methods are presented with experimental tutorials and some applications. Second, this report includes a review of results from applying both approaches to an in vitro model of postnatal chondroinduction by demineralized bone powder (DBP). Human dermal fibroblasts (hDFs) cultured with DBP acquire a chondroblast phenotype and express cartilage-specific matrix proteins after 7 days. We used cDNA macroarrays and RDA to identify the genes that were altered prior to expression of the chondroblast phenotype, i.e., after only 3 days' culture with DBP. Using a strategy of data management and reduction based upon biological functions, we reported several functional families of genes (cytoskeletal elements, protein synthesis/trafficking, and matrix molecules and their modifiers) that are upregulated during chondroinduction of hDFs. Together with histological and biochemical evidence of the chondroblast phenotype, the gene expression patterns indicate that there are specific stages of induced chondrocyte differentiation in this experimental system. Third, this report includes a new study, in which DBP-regulated genes were used as a data base to derive new information on the cell biology of chondrocytes. The objective was to determine whether a set of genes expressed during induction of chondrocyte differentiation is also expressed by mature articular chondrocytes. Our search of the literature for 59 of the DBP-regulated genes disclosed that expression of 20 of them (33%) had been documented in mature cartilage or chondrocytes. Of the 39 genes not previously documented in cartilage, 11 were tested by RT-PCR and all were found to be expressed in freshly isolated adult human chondrocytes. This review and these new data show how the strategy of high-throughput methods and functional data reduction can expand our knowledge of chondrocyte cell biology.
机译:该报告包括对基因表达分析潜力的综述,以提供解决骨骼修复和再生问题的新信息。它着重于两种方法:高通量基因阵列方法和代表性差异分析(RDA)。这些方法的基本原理随实验教程和一些应用程序一起提供。其次,该报告包括对两种方法应用于脱矿骨粉(DBP)产后软骨诱导体外模型的结果的综述。用DBP培养的人真皮成纤维细胞(hDF)在7天后获得软骨细胞表型并表达软骨特异性基质蛋白。我们使用cDNA宏阵列和RDA来鉴定在表达软骨母细胞表型之前即在用DBP培养仅3天后改变的基因。使用基于生物学功能的数据管理和减少策略,我们报道了在hDF软骨诱导过程中上调的几个基因功能家族(细胞骨架元素,蛋白质合成/运输以及基质分子及其修饰物)。连同软骨细胞表型的组织学和生化证据,基因表达模式表明在该实验系统中诱导软骨细胞分化有特定阶段。第三,该报告包括一项新的研究,其中DBP调控的基因被用作数据库,以获取有关软骨细胞细胞生物学的新信息。目的是确定在诱导软骨细胞分化过程中表达的一组基因是否也由成熟的关节软骨细胞表达。我们对59种DBP调控基因的文献搜索显示,已经在成熟的软骨或软骨细胞中记录了其中20种(33%)的表达。在先前未在软骨中记录的39个基因中,有11个通过RT-PCR进行了测试,并且全部在新鲜分离的成年人类软骨细胞中表达。这篇综述和这些新数据表明,高通量方法和功能数据减少的策略如何扩展我们对软骨细胞生物学的认识。

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