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首页> 外文期刊>Cells tissues organs >Microarray analysis of irradiated growth plate zones following laser microdissection shows later importance of differentially expressed genes during radiorecovery.
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Microarray analysis of irradiated growth plate zones following laser microdissection shows later importance of differentially expressed genes during radiorecovery.

机译:激光显微切割后对受辐照的生长板区的微阵列分析表明,放射性恢复期间差异表达基因的重要性更高。

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PURPOSE: Potential targets for selective radiorecovery modulation were investigated via the identification of late upregulated genes and pathways during growth plate chondrocyte recovery. METHODS AND MATERIALS: Three groups of six 5-week-old male Sprague-Dawley rats underwent fractionated irradiation to the right tibiae over 5 days totaling 17.5 Gy and were then killed at 7, 11, and 16 days following the first radiotherapy fraction. The growth plates were collected from the proximal tibiae bilaterally and subsequently underwent laser microdissection to separate reserve, perichondral, proliferative, and hypertrophic zones. Differential gene expression was analyzed between irradiated right and nonirradiated left tibiae using RAE230 2.0 GeneChip microarray, compared between zones and time points, and subjected to functional pathway cluster analysis with real-time polymerase chain reaction (PCR) to confirm selected results. RESULTS: The reserve zone showed the greatest number of differentially expressed genes and enriched pathways: 259 and 134, respectively. Differentially expressed genes included: Timp3, Gpx1, Gas6, Notch2, VEGF, and HIF-1. Enriched pathways included the developmental processes of regeneration, antiapoptosis, developmental growth, tissue regeneration, mesenchymal cell proliferation, negative regulation of immune response, and determination of symmetry. The reserve zone late upregulation of genes was validated using real-time PCR for Mgp, Gas6, and Eef1a1. CONCLUSIONS: A significant difference in late upregulated genes between growth plate zones exists. The reserve zone shows the greatest change, containing a 10-fold increase in the total number of genes differentially expressed between days 7 and 16. These findings suggest that reserve zone chondrocytes may play a later role in growth plate recovery response following irradiation.
机译:目的:通过鉴定生长板软骨细胞恢复过程中晚期上调的基因和途径,研究了选择性放射性恢复调节的潜在靶标。方法和材料:三组六只5周大的雄性Sprague-Dawley大鼠在5天内接受了对右胫骨的分级辐照,总计17.5 Gy,然后在第一次放疗后第7、11和16天被杀死。从双侧胫骨近端收集生长板,然后进行激光显微解剖,以分离保留区,软骨周围区,增生区和肥大区。使用RAE230 2.0 GeneChip微阵列芯片分析受辐照的右胫骨和未辐照的左胫骨之间的差异基因表达,在区域和时间点之间进行比较,并通过实时聚合酶链反应(PCR)进行功能途径簇分析,以确认所选结果。结果:保护区显示出最多的差异表达基因和丰富的途径:分别为259和134。差异表达的基因包括:Timp3,Gpx1,Gas6,Notch2,VEGF和HIF-1。丰富的途径包括再生的发育过程,抗凋亡,发育生长,组织再生,间充质细胞增殖,免疫应答的负调节和对​​称性的确定。使用实时PCR对Mgp,Gas6和Eef1a1验证了基因的保留区后期上调。结论:生长板区之间的晚期上调基因存在显着差异。保留区显示出最大的变化,在第7天和第16天之间差异表达的基因总数增加了10倍。这些发现表明,保留区软骨细胞在照射后可能在生长板恢复反应中起较晚的作用。

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