首页> 美国卫生研究院文献>International Journal of Endocrinology >Paraoxonase 2 Induces a Phenotypic Switch in Macrophage Polarization Favoring an M2 Anti-Inflammatory State
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Paraoxonase 2 Induces a Phenotypic Switch in Macrophage Polarization Favoring an M2 Anti-Inflammatory State

机译:对氧磷酶2诱导巨噬细胞极化的表型转换有利于M2抗炎状态。

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摘要

Inflammatory processes are involved in atherosclerosis development. Macrophages play a major role in the early atherogenesis, and they are present in the atherosclerotic lesion in two phenotypes: proinflammatory (M1) or anti-inflammatory (M2). Paraoxonase 2 (PON2) is expressed in macrophages, and it was shown to protect against atherosclerosis. Thus, the aim of our study was to analyze the direct effect of PON2 on macrophage inflammatory phenotypes. Ex vivo studies were performed with murine peritoneal macrophages (MPM) harvested from control C57BL/6 and PON2-deficient (PON2KO) mice. PON2KO MPM showed an enhanced proinflammatory phenotype compared to the control, both in the basal state and following M1 activation by IFNγ and lipopolysaccharide (LPS). In parallel, PON2KO MPM also showed reduced anti-inflammatory responses in the basal state and also following M2 activation by IL-4. Moreover, the PON2-null MPM demonstrated enhanced phagocytosis and reactive oxygen species (ROS) production in the basal state and following M1 activation. The direct effect of PON2 was shown by transfecting human PON2 (hPON2) into PON2KO MPM. PON2 transfection attenuated the macrophages' response to M1 activation and enhanced M2 response. These PON2 effects were associated with attenuation of macrophages' abilities to phagocyte and to generate ROS. We conclude that PON2 promotes an M1 to M2 switch in macrophage phenotypes.
机译:炎症过程与动脉粥样硬化的发展有关。巨噬细胞在早期动脉粥样硬化中起主要作用,它们以两种表型存在于动脉粥样硬化病变中:促炎性(M1)或抗炎性(M2)。对氧磷酶2(PON2)在巨噬细胞中表达,并被证明可以预防动脉粥样硬化。因此,我们研究的目的是分析PON2对巨噬细胞炎症表型的直接作用。用从对照C57BL / 6和PON2缺陷型(PON2KO)小鼠收获的鼠腹膜巨噬细胞(MPM)进行离体研究。与对照组相比,PON2KO MPM在基础状态和被IFNγ和脂多糖(LPS)激活M1后均显示出比对照组增强的促炎表型。同时,PON2KO MPM在基础状态下以及在IL-4激活M2之后也显示出降低的抗炎反应。此外,无PON2的MPM在基础状态和M1激活后表现出增强的吞噬作用和活性氧(ROS)产生。通过将人PON2(hPON2)转染到PON2KO MPM中,可以显示PON2的直接作用。 PON2转染减弱了巨噬细胞对M1激活的反应并增强了M2反应。这些PON2效应与巨噬细胞吞噬细胞和产生ROS的能力减弱有关。我们得出结论,PON2在巨噬细胞表型中促进了从M1到M2的转换。

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