Park E K, Jung H S, Yang H I, Yoo M C, Kim C, Kim K S
East-West Bone and Joint Research Center, College of Medicine, Kyung Hee University, Seoul, South Korea.
Inflamm Res. 2007 Jan;56(1):45-50. doi: 10.1007/s00011-007-6115-5.
The differentiation of THP-1 monocytes into macrophages is mainly conducted at a phorbol 12-myristate 13-acetate (PMA) concentration of 10-400 ng/ml. However, this concentration might be high enough to upregulate the expressions of some genes in differentiated macrophages, which could overwhelm gene expression increases induced by other stimuli. The present study was performed to optimize the PMA concentration required to differentiate monocytes whilst minimizing gene upregulation.
THP-1 cells were treated with 2.5-100 ng/ml PMA and analyzed for the extent of cell adherence, the surface marker of macrophages, and stable differentiation without undesirable gene upregulation. The stably differentiated THP-1 cells at the minimum PMA concentration were treated with 10 ng/ml LPS or 125 nM amyloid beta (Abeta(1-42)).
The treatment of THP-1 with 5 ng/ml PMA was found to be sufficient to induce stable differentiation without undesirable gene upregulation. These macrophages differentiated at 5 ng/ml responded well to secondary weak stimuli like 10 ng/ml LPS or 125 nM of amyloid beta (Abeta(1-42)).
This finding suggests that THP-1 cells are well differentiated by 5 ng/ml PMA, and that the resulting differentiated macrophages respond well to secondary weak stimuli without being overwhelmed by undesirable gene upregulation induced by PMA.
将THP - 1单核细胞分化为巨噬细胞主要在佛波酯12 -肉豆蔻酸酯13 -乙酸酯(PMA)浓度为10 - 400 ng/ml的条件下进行。然而,该浓度可能足以上调分化巨噬细胞中某些基因的表达,这可能会掩盖由其他刺激诱导的基因表达增加。本研究旨在优化分化单核细胞所需的PMA浓度,同时尽量减少基因上调。
用2.5 - 100 ng/ml的PMA处理THP - 1细胞,并分析细胞黏附程度、巨噬细胞表面标志物以及稳定分化情况,同时避免不必要的基因上调。将在最低PMA浓度下稳定分化的THP - 1细胞用10 ng/ml脂多糖(LPS)或125 nM淀粉样β蛋白(Aβ(1 - 42))处理。
发现用5 ng/ml PMA处理THP - 1足以诱导稳定分化且无不必要的基因上调。这些在5 ng/ml浓度下分化的巨噬细胞对10 ng/ml LPS或125 nM淀粉样β蛋白(Aβ(1 - 42))等二次弱刺激反应良好。
这一发现表明,5 ng/ml PMA能使THP - 1细胞良好分化,且由此产生的分化巨噬细胞对二次弱刺激反应良好,不会被PMA诱导的不必要基因上调所淹没。