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时间表型特征可区分体外极化的巨噬细胞。

Temporal phenotypic features distinguish polarized macrophages in vitro.

作者信息

Melton David W, McManus Linda M, Gelfond Jonathan A L, Shireman Paula K

机构信息

Department of Surgery and.

出版信息

Autoimmunity. 2015 May;48(3):161-76. doi: 10.3109/08916934.2015.1027816. Epub 2015 Mar 31.

Abstract

Macrophages are important in vascular inflammation and environmental factors influence macrophage plasticity. Macrophage transitions into pro-inflammatory (M1) or anti-inflammatory (M2) states have been defined predominately by measuring cytokines in culture media (CM). However, temporal relationships between cellular and secreted cytokines have not been established. We measured phenotypic markers and cytokines in cellular and CM of murine bone marrow-derived macrophages at multiple time points following stimulation with IFN-γ + LPS (M1), IL-4 (M2a) or IL-10 (M2c). Cytokines/proteins in M1-polarized macrophages exhibited two distinct temporal patterns; an early (0.5-3 h), transient increase in cellular cytokines (GM-CSF, KC-GRO, MIP-2, IP-10 and MIP-1β) and a delayed (3-6 h) response that was more sustained [IL-3, regulated on activation normal T cell expressed and secreted (RANTES), and tissue inhibitor of metalloproteinases 1 (TIMP-1)]. M2a-related cytokine/cell markers (IGF-1, Fizz1 and Ym1) were progressively (3-24 h) increased post-stimulation. In addition, novel patterns were observed. First, and unexpectedly, cellular pro-inflammatory chemokines, MCP-1 and MCP-3 but not MCP-5, were comparably increased in M1 and M2a macrophages. Second, Vegfr1 mRNA was decreased in M1 and increased in M2a macrophages. Finally, VEGF-A was increased in the CM of M1 cultures and strikingly reduced in M2a coinciding with increased Vegfr1 expression, suggesting decreased VEGF-A in M2a CM was secondary to increased soluble VEGFR1. In conclusion, macrophage cytokine production and marker expression were temporally regulated and relative levels compared across polarizing conditions were highly dependent upon the timing and location (cellular versus CM) of the sample collection. For most cytokines, cellular production preceded increases in the CM suggesting that cellular regulatory pathways should be studied within 6 h of stimulation. The divergent polarization-dependent expression of Vegfr1 may be essential to controlling VEGF potentially regulating angiogenesis and inflammatory cell infiltration in the vascular niche. The current study expands the repertoire of cytokines produced by polarized macrophages and provides insights into the dynamic regulation of macrophage polarization and resulting cytokines, proteins and gene expression that influence vascular inflammation.

摘要

巨噬细胞在血管炎症中起重要作用,环境因素影响巨噬细胞的可塑性。巨噬细胞向促炎(M1)或抗炎(M2)状态的转变主要通过测量培养基(CM)中的细胞因子来定义。然而,细胞因子与分泌的细胞因子之间的时间关系尚未确立。我们在小鼠骨髓来源的巨噬细胞用IFN-γ + LPS(M1)、IL-4(M2a)或IL-10(M2c)刺激后的多个时间点,测量了细胞和CM中的表型标志物及细胞因子。M1极化巨噬细胞中的细胞因子/蛋白质呈现出两种不同的时间模式;早期(0.5 - 3小时),细胞因子(GM-CSF、KC-GRO、MIP-2、IP-10和MIP-1β)短暂增加,以及延迟(3 - 6小时)的反应,且更为持久[IL-3、活化正常T细胞表达和分泌调节因子(RANTES)以及金属蛋白酶组织抑制剂1(TIMP-1)]。M2a相关的细胞因子/细胞标志物(IGF-1、Fizz1和Ym1)在刺激后逐渐(3 - 24小时)增加。此外,还观察到了新的模式。首先,出乎意料的是,细胞促炎趋化因子MCP-1和MCP-3而非MCP-5在M1和M2a巨噬细胞中同样增加。其次,Vegfr1 mRNA在M1中降低,在M2a巨噬细胞中增加。最后,VEGF-A在M1培养物的CM中增加,而在M2a中显著降低,这与Vegfr1表达增加相吻合,表明M2a CM中VEGF-A降低是可溶性VEGFR1增加的结果。总之,巨噬细胞细胞因子的产生和标志物表达受到时间调控,并且在不同极化条件下比较的相对水平高度依赖于样本采集的时间和位置(细胞内与CM)。对于大多数细胞因子,细胞内产生先于CM中的增加,这表明细胞调节途径应在刺激后6小时内进行研究。Vegfr1的不同极化依赖性表达可能对于控制VEGF至关重要,VEGF可能调节血管微环境中的血管生成和炎性细胞浸润。本研究扩展了极化巨噬细胞产生的细胞因子库,并深入了解了巨噬细胞极化以及由此产生的影响血管炎症的细胞因子、蛋白质和基因表达的动态调节。

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