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中国人棕色脂肪组织失活后大脑葡萄糖代谢稳定。

Stability in brain glucose metabolism following brown adipose tissue inactivation in chinese adults.

机构信息

Division of Endocrinology and Metabolism, Department of Internal Medicine, Huashan Hospital, Shanghai Medical College, Fudan University, Shanghai, China.

出版信息

AJNR Am J Neuroradiol. 2012 Sep;33(8):1464-9. doi: 10.3174/ajnr.A3006. Epub 2012 May 10.

Abstract

BACKGROUND AND PURPOSE

The thermogenesis of BAT is believed to be controlled through some pathways initiated in the brain, though the changes in brain activity among different states of BAT-positive subjects are still unclear. We hypothesized that some significant differences of regional cerebral metabolism between various groups were related to the BAT activities regardless of temperature changes.

MATERIALS AND METHODS

Relative regional cerebral glucose metabolism was compared between 15 healthy subjects with activated BAT and 30 healthy controls without activated BAT by using a brain FDG-PET scan. A follow-up PET scan was performed to assess metabolic changes of the brain when BAT activity was eliminated by heat exposure.

RESULTS

Compared with controls, BAT-positive subjects exhibited lower activity in the inferior parietal lobule, limbic system, and frontal lobe and higher activity in the precuneus before heat exposure. Compared with the BAT elimination status, subjects with activated BAT showed a decreased metabolism in the parietal lobe, frontal lobe, culmen, cingulate gyrus, and sublobar region. Compared with controls, BAT-positive subjects after BAT inactivation had significant hypometabolic areas in the temporal lobe and limbic lobe and hypermetabolic areas in the parietal lobe.

CONCLUSIONS

Our findings illustrate that changes of regional cerebral metabolism are related to BAT activities regardless of temperature changes. This before-after controlled study supports the finding that the brain responses appear to be active in modulating the metabolic function of BAT activity.

摘要

背景与目的

人们认为 BAT 的产热是通过大脑中启动的某些途径来控制的,尽管在 BAT 阳性受试者的不同状态下大脑活动的变化仍不清楚。我们假设,无论温度变化如何,不同组之间的局部脑代谢的一些显著差异与 BAT 活性有关。

材料和方法

通过脑部 FDG-PET 扫描,比较了 15 名 BAT 活性增强的健康受试者和 30 名无 BAT 活性增强的健康对照者之间的相对局部脑葡萄糖代谢。进行了后续的 PET 扫描,以评估当通过热暴露消除 BAT 活性时大脑代谢的变化。

结果

与对照组相比,BAT 阳性受试者在热暴露前表现出下顶叶、边缘系统和额叶的活动降低,楔前叶的活动增加。与 BAT 消除状态相比,BAT 激活的受试者表现出顶叶、额叶、脑回、扣带回和次级脑区的代谢减少。与对照组相比,BAT 失活后的 BAT 阳性受试者的颞叶和边缘叶出现明显的代谢低下区,顶叶出现代谢活跃区。

结论

我们的发现表明,无论温度变化如何,局部脑代谢的变化都与 BAT 活性有关。这项前后对照研究支持了大脑反应似乎活跃于调节 BAT 活性的代谢功能的发现。

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