FoxO1激活可防止il -6介导的围产期肺微血管代谢编程

V. Jentgen, K. Dinger, C. Vohlen, S. Dabral, Johannes Will, S. V. Koningsbruggen-Rietschel, M. Odenthal, S. Pullamsetti, J. Dötsch, M. A. Alcázar
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引用次数: 1

摘要

简介:肥胖会引发肺部疾病。我们发现,母体肥胖通过IL-6-FoxO1轴促进后代肺平滑肌细胞(SMC)的增殖。这些过程也是肺动脉高压(PAH)发病机制的核心。然而,如果母亲肥胖导致多环芳烃仍然是难以捉摸的。目的:(1)探讨母体肥胖对子代肺微血管的影响,以及是否与IL-6相关;(2)分析抗增殖fox01激活剂紫杉醇是否对血管重构有保护作用。方法:(1)雌性野生型(WT)和IL-6-/-小鼠在交配前、妊娠期和哺乳期分别饲喂高脂饲料(HFD)和标准饲料(SD)。断奶后,两组子代均给予SD。(2)产后50天给予子代紫杉醇静脉注射。在P21和P70时取肺。结果:(1)与WTSD相比,P70时微血管肌肉化、内侧壁厚度和微血管形成的增加与WTHFD中P21时更多的增殖(ki67阳性)血管SMC有关。P21时内皮和促血管生成标志物基因表达升高;此外,激光显微解剖的血管和支气管在P21时显示FoxO1 mRNA减少,FoxO1靶基因改变。IL-6-/- hfd后代不受这些变化的影响。(2)紫杉醇治疗可保护WTHFD子代vSMC的重塑和增殖。结论:母亲肥胖通过IL-6-FoxO1介导的vSMC HFD后代增生是PAH的潜在危险因素。FoxO1激活可能是治疗心血管疾病早期代谢起源的一种新的预防策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
FoxO1 activation protects against IL-6-mediated perinatal metabolic programming of lung micro-vessels
Introduction: Obesity triggers lung diseases. We showed that maternal obesity promotes proliferation of lung smooth muscle cells (SMC) through an IL-6-FoxO1 axis in offspring. These processes are also central in the pathogenesis of pulmonary arterial hypertension (PAH). However, it remains elusive if maternal obesity causes PAH. Aims: (1) To investigate the impact of maternal obesity on lung micro-vessels in the offspring, and if it is IL-6 dependent; (2) To analyze if Paclitaxel, an anti-proliferative FoxO1 activator, protects against vascular remodeling. Methods: (1) Female wildtype (WT) and IL-6-/- mice were fed high-fat diet (HFD) or standard diet (SD) prior mating, and during gestation and lactation. After weaning, offspring of both groups received SD. (2) At postnatal day (P) 50, offspring were treated with intravenous Paclitaxel. Lungs were harvested at P21 and P70. Results: (1) Increased microvascular muscularisation, medial wall thickness and micro-vessel formation at P70 were linked to more proliferating (ki67-positive) vascular SMC at P21 in WTHFD when compared to WTSD. Gene expression of endothelial and pro-angiogenetic markers was elevated at P21; moreover, laser-microdissected vessels and bronchi showed reduced FoxO1 mRNA and altered FoxO1 target genes in WTHFD at P21. IL-6-/-HFD offspring were protected from these changes. (2) Paclitaxel treatment protected WTHFD offspring from remodeling and proliferation of vSMC. Conclusion: Maternal obesity is a potential risk factor for PAH via an IL-6-FoxO1 mediated hyperplasia of vSMC HFD offspring. FoxO1 activation could be a novel preventive strategy in the therapy of early metabolic origins of cardiovascular diseases.
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