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首页> 外文期刊>Physiological Reports >Exposure of C57BL/6J mice to long photoperiod during early life stages increases body weight and alters plasma metabolomic profiles in adulthood
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Exposure of C57BL/6J mice to long photoperiod during early life stages increases body weight and alters plasma metabolomic profiles in adulthood

机译:在生命的早期阶段,将C57BL / 6J小鼠长时间暴露在光周期中会增加体重,并改变成年后的血浆代谢组学特征

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Perinatal photoperiod is an important regulator of physiological phenotype in adulthood. In this study, we demonstrated that postnatal (0?¢????4????weeks old) exposure of C57BL/6J mice to long photoperiod induced persistent increase in body weight until adulthood, compared with the mice maintained under short photoperiod. The expression of peroxisome proliferator?¢????activated receptor ???′ , a gene involved in fatty acid metabolism, was decreased in 10?¢????week?¢????old mice exposed to long photoperiod during 0?¢????4 or 4?¢????8????weeks of age. Plasma metabolomic profiles of adult mice exposed to a long photoperiod during the postnatal period (0?¢????4 LD) were compared to those in the mice exposed to short photoperiod during the same period. Cluster analysis revealed that both carbon metabolic pathway and nucleic acid pathway were altered by the postnatal photoperiod. Levels of metabolites involved in glycolysis were significantly upregulated in 0?¢????4 LD, suggesting that the mice in 0?¢????4 LD use the glycolytic pathway for energy expenditure rather than the fatty acid oxidation pathway. In addition, the mice in 0?¢????4 LD exhibited high levels of purine metabolites, which have a role in neuroprotection. In conclusion, postnatal exposure of C57BL/6J mice to long photoperiod induces increase in body weight and various changes in plasma metabolic profiles during adulthood.
机译:围产期光周期是成年期生理表型的重要调节器。在这项研究中,我们证明了C57BL / 6J小鼠在出生后(0?4?4周龄)长时间的光周期暴露会导致体重持续增加,直到成年,与在短光周期下维持的小鼠相比。过氧化物酶体增殖物活化受体′(参与脂肪酸代谢的基因)的表达在暴露于长期光周期的10周龄小鼠中下降。 0 ??????? 4或4 ??????? 8 ????周龄。将在出生后暴露于长光周期的成年小鼠的血浆代谢组学谱(0≤Δφ≤4LD)与同期暴露于短光周期的小鼠的血浆代谢组学曲线进行了比较。聚类分析表明,产后光周期改变了碳代谢途径和核酸途径。参与糖酵解的代谢产物的水平在0 ??????? 4 LD中被显着上调,表明0 ??????? 4 LD中的小鼠使用糖酵解途径进行能量消耗,而不是脂肪酸氧化途径。另外,在0°〜4°LD处的小鼠表现出高水平的嘌呤代谢产物,其在神经保护中起作用。总之,成年后C57BL / 6J小鼠在长时间的光周期下暴露会导致体重增加和血浆代谢谱的各种变化。

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