Neurology Department EEG Room, Yantai Yuhuangding Hospital, Yantai, China.
Department of Neurology, Yantai Yuhuangding Hospital, Yantai, China.
Eur J Neurosci. 2022 Apr;55(7):1709-1723. doi: 10.1111/ejn.15637. Epub 2022 Mar 25.
Microglia are the static resident cells possessing the phagocytic properties in the central nervous system (CNS). In many relevant studies, the immortalized murine microglial cell line BV2 has been used as a tool in primary microglia (PM) relevant studies. Microglia participate in neuroinflammation by converting into M1- and M2-like phenotypes. In this study, we established M1- and M2-like phenotype response models by exposing PM and BV2 cells to lipopolysaccharides (LPS) and interlukin-4 (IL-4), respectively, and discovered the proteomic differences between the two types of microglia. It turned out that the BV2 cell responses to LPS and IL-4 were narrower and weaker than that of PM. In addition, irradiation, which has been shown to activate microglia and induces neuroinflammation, was also used as a treatment in this study. The results showed that BV2 cells have stronger capacity of DNA damage repair. Besides, irradiation had a negative effect on the regulation of KEGG pathways such as proteasome, ribosome, oxidative phosphorylation and TCA cycle in both cells. Furthermore, the KEGG pathways including cell cycle and DNA replication (significantly downregulated), and antigen processing and presentation and FC γ R mediated phagocytosis (significantly up-regulated) were only found in irradiated PM. These data demonstrate that PM is more fragile to irradiation. Results in this study indicate that BV2 cells only partially model PM, and thus, using BV2 in microglia related studies should be carefully considered.
小胶质细胞是中枢神经系统(CNS)中具有吞噬特性的静态驻留细胞。在许多相关研究中,已将永生化的鼠小胶质细胞系 BV2 用作原代小胶质细胞(PM)相关研究的工具。小胶质细胞通过转化为 M1 和 M2 样表型参与神经炎症。在这项研究中,我们通过分别用脂多糖(LPS)和白细胞介素-4(IL-4)暴露 PM 和 BV2 细胞,建立了 M1 和 M2 样表型反应模型,并发现了两种小胶质细胞之间的蛋白质组学差异。结果表明,BV2 细胞对 LPS 和 IL-4 的反应比 PM 更窄且更弱。此外,已证明照射可激活小胶质细胞并诱导神经炎症,因此在本研究中也将其用作治疗方法。结果表明,BV2 细胞具有更强的 DNA 损伤修复能力。此外,照射对两种细胞中蛋白酶体、核糖体、氧化磷酸化和 TCA 循环等 KEGG 途径的调节均产生负面影响。此外,仅在照射的 PM 中发现了包括细胞周期和 DNA 复制(显著下调)以及抗原加工和呈递以及 FC γ R 介导的吞噬作用(显著上调)在内的 KEGG 途径。这些数据表明 PM 对辐射更敏感。本研究结果表明,BV2 细胞仅部分模拟 PM,因此,在小胶质细胞相关研究中使用 BV2 应谨慎考虑。