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移植具有将 ω-6 转化为 ω-3 多不饱和脂肪酸能力的棕色脂肪组织可逆转高脂诱导的小鼠代谢异常。

Transplantation of Brown Adipose Tissue with the Ability of Converting Omega-6 to Omega-3 Polyunsaturated Fatty Acids Counteracts High-Fat-Induced Metabolic Abnormalities in Mice.

机构信息

Section on Integrative Physiology and Metabolism, Joslin Diabetes Center, Harvard Medical School, Boston, MA 02215, USA.

BERG, Framingham, MA 01701, USA.

出版信息

Int J Mol Sci. 2022 May 10;23(10):5321. doi: 10.3390/ijms23105321.

Abstract

A balanced omega (ω)-6/ω-3 polyunsaturated fatty acids (PUFAs) ratio has been linked to metabolic health and the prevention of chronic diseases. Brown adipose tissue (BAT) specializes in energy expenditure and secretes signaling molecules that regulate metabolism via inter-organ crosstalk. Recent studies have uncovered that BAT produces different PUFA species and circulating oxylipin levels are correlated with BAT-mediated energy expenditure in mice and humans. However, the impact of BAT ω-6/ω-3 PUFAs on metabolic phenotype has not been fully elucidated. The Fat-1 transgenic mice can convert ω-6 to ω-3 PUFAs. Here, we demonstrated that mice receiving Fat-1 BAT transplants displayed better glucose tolerance and higher energy expenditure. Expression of genes involved in thermogenesis and nutrient utilization was increased in the endogenous BAT of mice receiving Fat-1 BAT, suggesting that the transplants may activate recipients' BAT. Using targeted lipidomic analysis, we found that the levels of several ω-6 oxylipins were significantly reduced in the circulation of mice receiving Fat-1 BAT transplants than in mice with wild-type BAT transplants. The major altered oxylipins between the WT and Fat-1 BAT transplantation were ω-6 arachidonic acid-derived oxylipins via the lipoxygenase pathway. Taken together, these findings suggest an important role of BAT-derived oxylipins in combating obesity-related metabolic disorders.

摘要

ω-6/ω-3 多不饱和脂肪酸(PUFAs)的平衡比值与代谢健康和慢性疾病的预防有关。棕色脂肪组织(BAT)专门用于能量消耗,并通过器官间串扰分泌调节代谢的信号分子。最近的研究发现,BAT 产生不同的 PUFAs 种类,循环氧化脂素水平与 BAT 介导的小鼠和人类能量消耗相关。然而,BAT ω-6/ω-3 PUFAs 对代谢表型的影响尚未完全阐明。Fat-1 转基因小鼠可以将 ω-6 转化为 ω-3 PUFAs。在这里,我们证明接受 Fat-1 BAT 移植的小鼠表现出更好的葡萄糖耐量和更高的能量消耗。接受 Fat-1 BAT 移植的小鼠内源性 BAT 中与产热和营养利用相关的基因表达增加,这表明移植可能激活受体的 BAT。通过靶向脂质组学分析,我们发现接受 Fat-1 BAT 移植的小鼠循环中的几种 ω-6 氧化脂素水平明显低于接受野生型 BAT 移植的小鼠。WT 和 Fat-1 BAT 移植之间主要改变的氧化脂素是通过脂加氧酶途径衍生自 ω-6 花生四烯酸的氧化脂素。总之,这些发现表明 BAT 衍生的氧化脂素在对抗肥胖相关代谢紊乱方面起着重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0ed1/9142126/2895e93d010c/ijms-23-05321-g001.jpg

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