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补充 L-丝氨酸通过增加棕色脂肪产热来抑制禁食引起的体重反弹。

L-Serine Supplementation Blunts Fasting-Induced Weight Regain by Increasing Brown Fat Thermogenesis.

机构信息

RG Adipocytes & Metabolism, Institute for Diabetes & Obesity, Helmholtz Center Munich, 85764 Munich, Germany.

German Center for Diabetes Research (DZD), 85764 Munich, Germany.

出版信息

Nutrients. 2022 May 4;14(9):1922. doi: 10.3390/nu14091922.

Abstract

Weight regain after fasting, often exceeding the pre-fasting weight, is a common phenomenon and big problem for the treatment of obesity. Thus, novel interventions maintaining reduced body weight are critically important to prevent metabolic disease. Here we investigate the metabolic effects of dietary L-serine supplementation, known to modulate various organ functions. C57BL/6N-Rj male mice were supplemented with or without 1% L-serine in their drinking water and fed with a chow or high-fat diet. Mice were fed either or subjected to repeated overnight fasting. Body weight, body composition, glucose tolerance and energy metabolism were assessed. This was combined with a detailed analysis of the liver and adipose tissues, including the use of primary brown adipocytes to study mitochondrial respiration and protein expression. We find that L-serine supplementation has little impact on systemic metabolism in -fed mice. Conversely, L-serine supplementation blunted fasting-induced body weight regain, especially in diet-induced obese mice. This reduction in body weight regain is likely due to the increased energy expenditure, based on elevated brown adipose tissue activity. Thus, L-serine supplementation during and after weight-loss could reduce weight regain and thereby help tackle one of the major problems of current obesity therapies.

摘要

禁食后体重反弹,常超过禁食前体重,这是肥胖治疗中的常见现象和大问题。因此,寻找能维持减轻体重的新干预措施对于预防代谢性疾病至关重要。在这里,我们研究了饮食补充 L-丝氨酸的代谢作用,已知其能调节多种器官功能。将 C57BL/6N-Rj 雄性小鼠补充或不补充饮用水中的 1% L-丝氨酸,并分别喂食标准饲料或高脂肪饮食。部分小鼠正常进食,部分进行反复隔夜禁食。评估体重、身体成分、葡萄糖耐量和能量代谢。这与肝脏和脂肪组织的详细分析相结合,包括使用原代棕色脂肪细胞来研究线粒体呼吸和蛋白质表达。我们发现,L-丝氨酸补充对正常进食小鼠的全身代谢影响不大。相反,L-丝氨酸补充可减轻禁食引起的体重反弹,尤其是在饮食诱导肥胖的小鼠中。体重反弹的减少可能是由于棕色脂肪组织活性增加导致能量消耗增加。因此,在减肥期间和减肥后补充 L-丝氨酸可能会减少体重反弹,从而有助于解决当前肥胖症治疗的主要问题之一。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ba0c/9104834/cd921e09154e/nutrients-14-01922-g001.jpg

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