Julius Wolff Institute for Biomechanics and Musculoskeletal Regeneration, Charité-Universitätsmedizin Berlin, 13353, Berlin, Germany.
Center for Musculoskeletal Surgery, Charité-Universitätsmedizin Berlin, 13353, Berlin, Germany.
Sci Rep. 2020 Sep 14;10(1):15057. doi: 10.1038/s41598-020-71895-x.
Systemic and local posttraumatic responses are often monitored on mRNA expression level using quantitative real-time PCR (qRT-PCR), which requires normalisation to adjust for confounding sources of variability. Normalisation requests reference (housekeeping) genes stable throughout time and divergent experimental conditions in the tissue of interest, which are crucial for a reliable and reproducible gene expression analysis. Although previous animal studies analysed reference genes following isolated trauma, this multiple-trauma gene expression analysis provides a notable study analysing reference genes in primarily affected (i.e. bone/fracture callus and hypothalamus) and secondarily affected organs (i.e. white adipose tissue, liver, muscle and spleen), following experimental long bone fracture and traumatic brain injury. We considered tissue-specific and commonly used top-ranked reference candidates from different functional groups that were evaluated applying the established expression stability analysis tools NormFinder, GeNorm, BestKeeper and RefFinder. In conclusion, reference gene expression in primary organs is highly time point as well as tissue-specific, and therefore requires careful evaluation for qRT-PCR analysis. Furthermore, the general application of Ppia, particularly in combination with a second reference gene, is strongly recommended for the analysis of systemic effects in the case of indirect trauma affecting secondary organs through local and systemic pathophysiological responses.
系统和局部创伤后反应通常通过定量实时 PCR(qRT-PCR)在 mRNA 表达水平上进行监测,这需要标准化来调整混杂的变异性来源。标准化需要在感兴趣的组织中稳定的参考(管家)基因,这些基因在不同的实验条件下都不会发生变化,这对于可靠和可重复的基因表达分析至关重要。尽管之前的动物研究分析了单一创伤后的参考基因,但这项多创伤基因表达分析提供了一项重要的研究,分析了主要受影响(即骨/骨折痂和下丘脑)和次要受影响器官(即白色脂肪组织、肝脏、肌肉和脾脏)中参考基因的表达,这些器官受到实验性长骨骨折和创伤性脑损伤的影响。我们考虑了来自不同功能组的组织特异性和常用的顶级参考候选物,并应用已建立的表达稳定性分析工具 NormFinder、GeNorm、BestKeeper 和 RefFinder 进行了评估。总之,主要器官的参考基因表达在时间和组织上都具有高度特异性,因此需要仔细评估 qRT-PCR 分析。此外,强烈建议在间接创伤通过局部和全身病理生理反应影响次级器官的情况下,将 Ppia 普遍应用于分析系统效应,特别是与第二个参考基因结合使用。