Department for Life Quality Studies - QUVI, University of Bologna, Rimini, Italy.
Department of Pharmacy and Biotechnology - FABIT, University of Bologna, Bologna, Italy.
Sci Rep. 2024 Jan 29;14(1):2431. doi: 10.1038/s41598-024-52415-7.
Microglia represent the primary immune defense system within the central nervous system and play a role in the inflammatory processes occurring in numerous disorders, such as Parkinson's disease (PD). PD onset and progression are associated with factors considered possible causes of neuroinflammation, i.e. genetic mutations. In vitro models of microglial cells were established to identify specific molecular targets in PD through the analysis of gene expression data. Recently, the Human Microglial Clone 3 cell line (HMC3) has been characterized and a new human microglia model has emerged. Here we perform RT-qPCR analyses to evaluate the expression of ten reference genes in HMC3, untreated or stimulated to a pro-inflammatory status. The comparative ∆C method, BestKeeper, Normfinder, geNorm and RefFinder algorithms were used to assess the stability of the candidate genes. The results showed that the most suitable internal controls are HPRT1, RPS18 and B2M genes. In addition, the most stable and unstable reference genes were used to normalize the expression of a gene of interest in HMC3, resulting in a difference in the statistical significance in cells treated with Rotenone. This is the first reference gene validation study in HMC3 cell line in pro-inflammatory status and can contribute to more reliable gene expression analysis in the field of neurodegenerative and neuroinflammatory research.
小胶质细胞是中枢神经系统中主要的免疫防御系统,在许多疾病(如帕金森病)的炎症过程中发挥作用。帕金森病的发病和进展与被认为是神经炎症可能原因的因素有关,即基因突变。通过分析基因表达数据,建立了小胶质细胞体外模型,以确定帕金森病中的特定分子靶标。最近,人类小胶质细胞克隆 3 细胞系(HMC3)已经得到了表征,一种新的人类小胶质细胞模型出现了。在这里,我们通过 RT-qPCR 分析来评估 HMC3 中十个参考基因的表达情况,这些基因未处理或被刺激到促炎状态。比较 ∆C 法、BestKeeper、Normfinder、geNorm 和 RefFinder 算法用于评估候选基因的稳定性。结果表明,最适合的内参基因为 HPRT1、RPS18 和 B2M 基因。此外,最稳定和最不稳定的参考基因被用于归一化 HMC3 中感兴趣基因的表达,导致用鱼藤酮处理的细胞中统计学意义的差异。这是在促炎状态下对 HMC3 细胞系进行的第一个参考基因验证研究,可为神经退行性和神经炎症研究领域的更可靠的基因表达分析做出贡献。
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