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Optical changes in THP-1 macrophage metabolism in response to pro- and anti-inflammatory stimuli reported by label-free two-photon imaging

机译:无标记双光子成像报告THP-1巨噬细胞代谢对促炎和抗炎刺激的光学变化

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摘要

Temporal changes in macrophage metabolism are likely crucial to their role in inflammatory diseases. Label-free two-photon excited fluorescence (TPEF) and fluorescence lifetime imaging microscopy are well suited to track dynamic changes in macrophage metabolism. We performed TPEF imaging of human macrophages following either pro- or an anti-inflammatory stimulation. Two endogenous fluorophores, NAD(P)H and FAD, coenzymes involved in key metabolic pathways, provided contrast. We used the corresponding intensity images to determine the optical redox ratio of FAD to FAD + NAD(P)H. We also analyzed the intensity fluctuation patterns within NAD(P)H TPEF images to determine mitochondrial clustering patterns. Finally, we acquired NAD(P)H TPEF lifetime images to assess the relative levels of bound NAD(P)H. Our studies indicate that the redox ratio increases, whereas mitochondrial clustering decreases in response to both pro- and anti-inflammatory stimuli; however, these changes are enhanced in pro-inflammatory macrophages. Interestingly, we did not detect any significant changes in the corresponding NAD(P)H bound fraction. A combination of optical metabolic metrics could be used to classify pro- and anti-inflammatory macrophages with high accuracy. Contributions from alterations in different metabolic pathways may explain our findings, which highlight the potential of label-free two-photon imaging to assess nondestructively macrophage functional state.
机译:巨噬细胞代谢的时间变化可能对它们在炎性疾病中的作用至关重要。无标记的双光子激发荧光(TPEF)和荧光寿命成像显微镜非常适合跟踪巨噬细胞代谢的动态变化。在促炎或抗炎刺激后,我们对人巨噬细胞进行了TPEF成像。两种内源性荧光团,NAD(P)H和FAD,参与关键代谢途径的辅酶,提供了对比。我们使用相应的强度图像来确定FAD与FAD + NAD(P)H的光学氧化还原比。我们还分析了NAD(P)H TPEF图像中的强度波动模式,以确定线粒体的聚集模式。最后,我们获得了NAD(P)H TPEF寿命图像,以评估结合NAD(P)H的相对水平。我们的研究表明,响应促炎和抗炎刺激,氧化还原比增加,而线粒体簇减少;然而,这些变化在促炎性巨噬细胞中得到增强。有趣的是,我们未在相应的NAD(P)H结合部分中检测到任何显着变化。光学代谢指标的组合可用于对促炎和抗炎巨噬细胞进行高精度分类。来自不同代谢途径改变的贡献可能解释了我们的发现,这突出了无标记的双光子成像评估无损巨噬细胞功能状态的潜力。

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