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首页> 外文期刊>Cancer gene therapy >Employment of microarray analysis to characterize biologic differences associated with tropism-modified adenoviral vectors: utilization of non-native cellular entry pathways
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Employment of microarray analysis to characterize biologic differences associated with tropism-modified adenoviral vectors: utilization of non-native cellular entry pathways

机译:使用微阵列分析来表征与向性修饰的腺病毒载体相关的生物学差异:利用非天然细胞进入途径

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In this study, we have applied high-density oligonucleotide microarray technology to characterize biologic changes associated with adenoviral vector-mediated target cell infection. We infected a human melanoma cell line, M21, with the tropism-modified vectors, Ad5lucRGD and Ad5/3luc1. In addition, we infected the M21 cell line with the Ad5luc1, a vector which primarily exploits the coxsackie and adenovirus receptor, as its primary native receptor. We found significant changes in gene expression of 5492 genes induced by Ad5luc1 infection, 2439 genes induced by Ad5/3luc1 infection, and 1251 genes induced by Ad5lucRGD infection, compared to unifected cells. Among these changes in gene expression, 783 changes were common to Ad5/3luc1 and Ad5luc1 infections, 266 were common to Ad5lucRGD and Ad5luc1 infections, and 185 changes in gene expression were common to Ad5/3luc1 and Ad5lucRGD infections. Interestingly, 89 changes in gene expression were common to all the three groups, suggesting a commonly affected pathway. This analysis represents a unique application of microarray to study vector-related issues. Furthermore, these studies demonstrate the utility of microarray for characterizing the biologic sequelae of host–vector interaction.
机译:在这项研究中,我们已应用高密度寡核苷酸微阵列技术来表征与腺病毒载体介导的靶细胞感染相关的生物学变化。我们用向性修饰的载体Ad5lucRGD和Ad5 / 3luc1感染了人黑素瘤细胞系M21。此外,我们用Ad5luc1感染M21细胞系,该载体主要利用柯萨奇和腺病毒受体作为其主要的天然受体。与未检测到的细胞相比,我们发现Ad5luc1感染诱导的5492个基因,Ad5 / 3luc1感染诱导的2439个基因和Ad5lucRGD感染诱导的1251个基因的基因表达发生了显着变化。在这些基因表达变化中,Ad5 / 3luc1和Ad5luc1感染共有783个变化,Ad5lucRGD和Ad5luc1感染共有266个变化,Ad5 / 3luc1和Ad5lucRGD感染共有185个基因表达变化。有趣的是,这三组患者共有89个基因表达改变,提示该途径通常受到影响。该分析代表了微阵列在研究载体相关问题方面的独特应用。此外,这些研究表明微阵列可用于表征宿主与载体相互作用的生物学后遗症。

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