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Gene Expression Profiling of Bone Marow Stromal Cells from Juvenile, Adult, Aged and Osteoporotic Rats: With an Emphasis on Osteoporosis

机译:幼年,成年,老年和骨质疏松大鼠骨髓基质细胞的基因表达谱:重视骨质疏松

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摘要

PURPOSE: Osteoporosis is a multi-factorial, age-related disease with a complex etiology and mode of regulation involving a large numbers of genes. To better understand the possible relationships among genes, we fingerprinted genes in a rat model induced by ovariectomy to determine differences among osteoporotic, non-osteoporotic, aged and juvenile rats. udMETHODS: We applied genome wide cDNA microarray technology to analyze genes expressed in bone marrow mesenchymal stromal cells (BMSC) and compared non-osteoporotic adult vs osteoporotic, non-osteoporotic adult vs aged, and non-osteoporotic adult vs juvenile. Rigorous statistical analysis of functional annotation (EASE program) identified over-represented biological and molecular functions with significant group wide changes (p≤0.05). Some of the expressed genes were further confirmed by quantitative RT-PCR (reverse transcription-polymerase chain reaction) udRESULTS: Differences in gene expression were observed by identifying transcripts selected by t-test that were consistently changed by a minimum of two-fold. There were 195 transcripts that showed an increased expression and 109 transcripts that showed decreased expression relative to the osteoporotic condition. Of these, 75% transcripts were unknown gene products or ESTs (expressed sequence tag). A number of genes found in the aged and juvenile groups were not present in the osteoporotic rats. Functional clustering of the genes using the EASE bioinformatics program revealed that transcripts in osteoporosis were associated with signal transduction, lipid metabolism, protein metabolism, ionic and protein transport, neuropeptide and G-protein signaling pathways. Although some of the genes have previously been shown to play a key role in osteoporosis, several genes were uniquely identified in this study and likely play a role in developing aged related osteoporosis that could have compelling implications in the development of new diagnostic strategies and therapeutics for osteoporosis. udCONCLUSIONS: These data suggest that osteoporosis is associated with changes of multiple novel gene expression and that numerous pathways could play important roles in osteoporosis pathogenesis.
机译:目的:骨质疏松症是一种多因素的,与年龄有关的疾病,其病因和调控模式复杂,涉及大量基因。为了更好地理解基因之间的可能关系,我们对卵巢切除术诱导的大鼠模型中的基因进行了指纹分析,以确定骨质疏松,非骨质疏松,老年和幼年大鼠之间的差异。 udMETHODS:我们应用了全基因组cDNA微阵列技术分析了骨髓间充质基质细胞(BMSC)中表达的基因,并比较了非骨质疏松成人与骨质疏松症,非骨质疏松成人与老年,非骨质疏松成人与青少年的关系。严格的功能注释统计分析(EASE程序)确定了代表过大的生物学和分子功能,且整个组的变化都很大(p≤0.05)。结果:一些表达的基因通过定量RT-PCR(逆转录-聚合酶链反应)进一步证实。结果:通过鉴定经t检验选择的转录本至少有两倍的变化,可以观察到基因表达的差异。相对于骨质疏松症而言,有195个转录物表达增加,而109个转录物表达减少。其中75%的转录本是未知基因产物或EST(表达的序列标签)。骨质疏松大鼠中不存在在老年和少年组中发现的许多基因。使用EASE生物信息学程序对基因进行功能聚类发现,骨质疏松症中的转录物与信号转导,脂质代谢,蛋白质代谢,离子和蛋白质转运,神经肽和G蛋白信号通路相关。尽管以前已经证明某些基因在骨质疏松症中起关键作用,但在这项研究中独特地鉴定了一些基因,这些基因可能在发展老年相关性骨质疏松症中起作用,这可能对开发新的诊断策略和治疗方法具有重要意义。骨质疏松症。结论:这些数据表明骨质疏松症与多种新基因表达的改变有关,许多途径可能在骨质疏松症的发病中起重要作用。

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