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Seasonal and photoperiodic effects on lipid droplet size and lipid peroxidation in the brown adipose tissue of bank voles (Myodes glareolus)

机译:季节性和光周期对岸田鼠棕色脂肪组织中脂质滴大小和脂质过氧化的影响(Myodes glareolus)

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摘要

Seasonal changes in lipid droplet size and lipid peroxidation in the brown adipose tissue (BAT) of wild bank voles were examined. In addition, a role of photoperiod in these changes was studied; bank voles were held from the birth under long photoperiod (LP) for 12 weeks, and then half of them was transferred to short photoperiod (SP) for 6 weeks and another one remained under LP. In the wild bank voles the absolute BAT weight was seasonally constant, while the significant differences in the lipid droplet size were observed. The smallest lipid droplets (mean, 11 μm ~2) were seen in winter; they increased by 30 % in spring and reached the highest size (24 μm ~2) in summer. Lipid peroxidation in the BAT did not differ significantly between the seasons, although high intraseason variation of this process was noted. The laboratory experiment revealed that the size of lipid droplets was determined by photoperiod; SP induced 13-fold decrease, and continuous exposure to LP brought about a further 2. 5-fold increase in the size of lipid droplets. Conversely, a significant decrease in lipid peroxidation was seen in LP bank voles in comparison with the SP animals. The data indicate that short photoperiod is responsible for the small size of lipid droplets in the BAT of bank voles during winter, which may be a necessary requirement for high thermogenic capacity of the tissue. Photoperiod appears also to affect lipid peroxidation in the BAT of these animals.
机译:检查了野生岸田鼠棕色脂肪组织(BAT)中脂质滴大小和脂质过氧化的季节性变化。此外,还研究了光周期在这些变化中的作用。从出生时开始,在长光周期(LP)下将库鼠关押12周,然后将其中一半转移到短光周期(SP)下6周,而另一只则保留在LP下。在野生河岸田鼠中,绝对最佳可行技术重量是季节性恒定的,而在脂滴大小上却观察到了显着差异。冬季观察到最小的脂滴(平均为11μm〜2)。它们在春季增加了30%,在夏季达到了最大尺寸(24μm〜2)。尽管注意到该过程的季节内变化很大,但各个季节之间BAT中的脂质过氧化作用没有显着差异。实验室实验表明,脂质滴的大小是由光周期确定的。 SP导致减少13倍,连续暴露于LP导致脂质滴大小进一步增加2。5倍。相反,与SP动物相比,LP库田鼠的脂质过氧化作用明显降低。数据表明,短的光周期是冬季冬季河岸田鼠BAT中脂质滴较小的原因,这可能是组织高产热能力的必要条件。光周期似乎也影响这些动物的BAT中的脂质过氧化。

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