LPS对正常和糖尿病小鼠肺部葡萄糖、乳酸和炎症标志物的差异影响。

Cecilia Nagorny Holmberg, Annika Åstrand, Cecilia Wingren, James P Garnett, Gaëll Mayer, John D Taylor, Emma H Baker, Deborah L Baines
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引用次数: 0

摘要

血糖升高导致气道表面液体中的葡萄糖增加,这与呼吸道病原体感染易感性增加有关。感染在肺部诱导炎症反应,但高血糖如何改变这种反应,以及它如何影响气道表面液体中的葡萄糖、乳酸和细胞因子浓度,目前尚不清楚。我们使用野生型(WT)和葡萄糖激酶杂合子(GK+/-)小鼠来研究高血糖对支气管肺泡灌洗液(BALF)中测量的气道葡萄糖、乳酸、炎症细胞和细胞因子的影响,其中高血糖具有和不具有LPS诱导的炎性反应。我们发现,与WT小鼠相比,GK+/-小鼠BALF中的葡萄糖和乳酸浓度升高,血糖和BALF葡萄糖浓度之间存在直接相关性。LPS攻击增加了BALF炎症细胞的数量,这与葡萄糖降低和乳酸浓度增加有关,尽管与WT小鼠相比,GK+/-的影响较小。在LPS刺激的BALF中,所有测量的细胞因子(除IL-2外)均增加。然而,与WT小鼠相比,GK+/-小鼠的TNFα、INFγ、IL-1β和IL-2的浓度较低。这项研究表明,高血糖和炎症反应改变了气道表面液体的正常葡萄糖/乳酸环境。这些数据表明,炎症细胞利用BALF葡萄糖,并且在高血糖GK+/-小鼠中乳酸和细胞因子的产生受到损害。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Differential Effect of LPS on Glucose, Lactate and Inflammatory Markers in the Lungs of Normal and Diabetic Mice.

Differential Effect of LPS on Glucose, Lactate and Inflammatory Markers in the Lungs of Normal and Diabetic Mice.

Differential Effect of LPS on Glucose, Lactate and Inflammatory Markers in the Lungs of Normal and Diabetic Mice.

Elevation of blood glucose results in increased glucose in the fluid that lines the surface of the airways and this is associated with an increased susceptibility to infection with respiratory pathogens. Infection induces an inflammatory response in the lung, but how this is altered by hyperglycemia and how this affects glucose, lactate and cytokine concentrations in the airway surface liquid is not understood. We used Wild Type (WT) and glucokinase heterozygote (GK+/-) mice to investigate the effect of hyperglycemia, with and without LPS-induced inflammatory responses, on airway glucose, lactate, inflammatory cells and cytokines measured in Bronchoalveolar Lavage Fluid (BALF). We found that glucose and lactate concentrations in BALF were elevated in GK+/- compared to WT mice and that there was a direct correlation between blood glucose and BALF glucose concentrations. LPS challenge increased BALF inflammatory cell numbers and this correlated with decreased glucose and increased lactate concentrations although the effect was less in GK+/- compared to WT mice. All cytokines measured (except IL-2) increased in BALF with LPS challenge. However, concentrations of TNFα, INFγ, IL-1β and IL-2 were less in GK+/- compared to WT mice. This study shows that the normal glucose/lactate environment of the airway surface liquid is altered by hyperglycemia and the inflammatory response. These data indicate that inflammatory cells utilize BALF glucose and that production of lactate and cytokines is compromised in hyperglycemic GK+/- mice.

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