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首页> 外文期刊>BMC Genomics >Validation of reference genes for whole blood gene expression analysis in cord blood of preterm and full-term neonates and peripheral blood of healthy adults
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Validation of reference genes for whole blood gene expression analysis in cord blood of preterm and full-term neonates and peripheral blood of healthy adults

机译:早产和全术新生儿脐带血中全血基因表达分析的参考基因和健康成人外周血的验证

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Preterm birth is the leading cause of neonatal morbidity and mortality, but research efforts in neonatology are complicated due to the unavailability of large volume blood samples. Whole blood assays can be used to overcome this problem by performing both functional and gene expression studies using small amounts of blood. Gene expression studies using RT-qPCR estimate mRNA-levels of target genes normalized to reference genes. The goal of this study was to identify and validate stable reference genes applicable to cord blood samples obtained from developing neonates of different gestational age groups as well as to adult peripheral blood samples. Eight reference gene candidates (ACTB, B2M, GAPDH, GUSB, HPRT, PPIB, RPLP0, RPL13) were analyzed using the three published software algorithms Bestkeeper, GeNorm and NormFinder. A normalization factor consisting of ACTB and PPIB allows for comparative expression analyses of neonatal samples from different gestational age groups. Normalization factors consisting of GAPDH and PPIB or ACTB and GAPDH are suitable when samples from preterm and full-term neonates and adults are compared. However, all candidate reference genes except RPLP0 exhibited significant intergroup gene expression variance and a higher gene expression towards an older age which resulted in a small but statistically significant systematic bias. Systematic analysis of RNA-seq data revealed new reference gene candidates with potentially superior stability. The current study identified suitable normalization factors and proposed the use of the additional single gene RPLP0 to avoid systematic bias. This combination will enable comparative analyses not only between neonates of different gestational ages, but also between neonates and adults, as it facilitates more detailed investigations of developmental gene expression changes. The use of software algorithms did not prevent unintended systematic bias. This generally highlights the need for careful validation of such results to prevent false interpretation of potential age-dependent changes in gene expression. To identify the most stable reference genes in the future, RNA-seq based global approaches are recommended.
机译:早产是新生儿发病率和死亡率的主要原因,但由于大量血液样本的不可用性,新生儿学中的研究努力很复杂。通过使用少量血液表演功能和基因表达研究,可以使用全血测定来克服该问题。基因表达研究使用RT-QPCR估计mRNA水平的靶基因归一化至参考基因。本研究的目的是鉴定和验证适用于从不同孕龄组的新生儿的脐带血样品以及成人外周血样品获得的脐带血样品的稳定参考基因。使用三个发布的软件算法的Bestkeeper,Genorm和Normfinder分析了八个参考基因候选者(ActB,B2M,GAP,GUSB,HPRT,PPIB,RPLP0,RPL13)。由ActB和PPIB组成的归一化因子允许来自不同孕龄组的新生儿样本的比较表达分析。由GAPDH和PPIB或ACTB和GAPDH组成的归一化因子是适用于来自早产和全术新生儿和成人的样品。然而,除了RPLP0之外的所有候选参考基因表现出显着的基因表达方差和更高的基因表达,朝年龄较大,导致较小但统计学上的系统偏见。 RNA-SEQ数据的系统分析显示出具有潜在优异稳定性的新参考基因候选。目前的研究确定了合适的归一化因子,并提出了使用额外的单基因RPLP0来避免系统偏差。这种组合不仅能够在不同妊娠年龄的新生儿之间进行比较分析,而且可以在新生儿和成人之间进行比较分析,因为它有助于更​​详细地研究发育基因表达的变化。软件算法的使用没有防止意外的系统偏差。这通常突出了对这种结果的仔细验证需要仔细验证,以防止对基因表达的潜在年龄依赖性变化的错误解释。为了确定未来最稳定的参考基因,建议使用基于RNA-SEQ的全局方法。

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