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小鼠妊娠后期睡眠碎片化激活整合应激反应会导致后代出现不良代谢表型。

Integrated stress response activation by sleep fragmentation during late gestation in mice leads to emergence of adverse metabolic phenotype in offspring.

作者信息

Trzepizur Wojciech, Khalyfa Abdelnaby, Qiao Zhuanhong, Popko Brian, Gozal David

机构信息

Section of Sleep Medicine, Department of Pediatrics, Pritzker School of Medicine, Biological Sciences Division, The University of Chicago, Chicago, IL 60637, USA.

Department of Neurology, The University of Chicago Center for Peripheral Neuropathy, The University of Chicago, Chicago, IL 60637, United States.

出版信息

Metabolism. 2017 Apr;69:188-198. doi: 10.1016/j.metabol.2017.01.026. Epub 2017 Jan 21.

Abstract

BACKGROUND

Late gestational sleep fragmentation (SF) is highly prevalent particularly in obese women, and induces metabolic dysfunction in adult offspring mice. SF induces activation of the integrated stress response (ISR), which might be involved in metabolic disorders. We hypothesized that adult offspring of double mutant mice (DM) involving the critical ISR genes CHOP and GADD34 would be protected from developing obesity and insulin resistance following SF.

METHODS

Time-pregnant CHOP/GADD34 DM and wild type (WT) mice were randomly assigned to sleep control (SC) or SF conditions during the last 5days of gestation. At 24-weeks of age, body weight, fat mass, and HOMA-IR were assessed in the offspring. Tregs lymphocytes, Lyc6c, M1 and M2 macrophages were examined in visceral white adipose tissues (vWAT) using flow cytometry. The effects of plasma exosomes on adipocyte cell line proliferation, differentiation and insulin sensitivity were also evaluated.

RESULTS

SF-WT male showed significant increases in body weight, vWAT mass and HOMA-IR compared to SC-WT mice, while SF had no effect in SF-DM mice. Inflammatory macrophages (Ly-6c) and the ratio of M1/M2 macrophages were increased while FoxP3+ Tregs counts were decreased in SF-WT but not in SF-DM mice. Exosomes from SF-WT, but not from the SF-DM offspring increased pre-adipocyte proliferation and differentiation, and decreased in vitro adipocyte insulin sensitivity.

CONCLUSION

Activation of the ISR during late gestation, as induced by late gestational SF, appears to underlie some of the transgenerational modifications in metabolic genes ultimately contributing to a metabolic syndrome phenotype in adult offspring.

摘要

背景

妊娠晚期睡眠片段化(SF)非常普遍,尤其是在肥胖女性中,并会在成年子代小鼠中诱发代谢功能障碍。SF会诱导整合应激反应(ISR)的激活,这可能与代谢紊乱有关。我们假设,涉及关键ISR基因CHOP和GADD34的双突变小鼠(DM)的成年子代在经历SF后将受到保护,不会发生肥胖和胰岛素抵抗。

方法

将处于孕期的CHOP/GADD34 DM和野生型(WT)小鼠在妊娠的最后5天随机分配至睡眠对照(SC)或SF条件下。在子代24周龄时,评估其体重、脂肪量和HOMA-IR。使用流式细胞术在内脏白色脂肪组织(vWAT)中检测调节性T细胞(Tregs)、Lyc6c、M1和M2巨噬细胞。还评估了血浆外泌体对脂肪细胞系增殖、分化和胰岛素敏感性的影响。

结果

与SC-WT小鼠相比,SF-WT雄性小鼠的体重、vWAT质量和HOMA-IR显著增加,而SF对SF-DM小鼠没有影响。SF-WT小鼠中炎性巨噬细胞(Ly-6c)以及M1/M2巨噬细胞的比例增加,而FoxP3+ Tregs计数减少,但SF-DM小鼠中未出现此现象。SF-WT子代而非SF-DM子代的外泌体增加了前脂肪细胞的增殖和分化,并降低了体外脂肪细胞的胰岛素敏感性。

结论

妊娠晚期SF所诱导的妊娠晚期ISR激活似乎是代谢基因中一些跨代修饰的基础,最终导致成年子代出现代谢综合征表型。

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