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衰老导致小鼠皮下白色脂肪组织中棕色脂肪细胞的程序性丧失。

Aging leads to a programmed loss of brown adipocytes in murine subcutaneous white adipose tissue.

机构信息

Department of Metabolism and Aging, Scripps Research Institute Florida, Jupiter, FL 33458, USA.

出版信息

Aging Cell. 2012 Dec;11(6):1074-83. doi: 10.1111/acel.12010. Epub 2012 Oct 24.

Abstract

Insulin sensitivity deteriorates with age, but mechanisms remain unclear. Age-related changes in the function of subcutaneous white adipose tissue (sWAT) are less characterized than those in visceral WAT. We hypothesized that metabolic alterations in sWAT, which in contrast to epididymal WAT, harbors a subpopulation of energy-dissipating UCP1+ brown adipocytes, promote age-dependent progression toward insulin resistance. Indeed, we show that a predominant consequence of aging in murine sWAT is loss of 'browning'. sWAT from young mice is histologically similar to brown adipose tissue (multilocular, UCP1+), but becomes morphologically white by 12 months of age. Correspondingly, sWAT expression of ucp1 precipitously declines (~300-fold) between 3 and 12 months. Loss continues into old age (24 months) and is inversely correlated with the development of insulin resistance. Additional age-dependent changes in sWAT include lower expression of adbr3 and higher expression of maoa, suggesting reduced local adrenergic tone as a potential mechanism. Indeed, treatment with a β3-adrenergic agonist to compensate for reduced tone rescues the aged sWAT phenotype. Age-related changes in sWAT are not explained by the differences in body weight; mice subjected to 40% caloric restriction for 12 months are of body weight similar to 3-month-old ad lib fed mice, but display sWAT resembling that of age-matched ad lib fed mice (devoid of brown adipose-like morphology). Overall, findings identify the loss of 'browning' in sWAT as a new aging phenomenon and provide insight into the pathogenesis of age-associated metabolic disease by revealing novel molecular changes tied to systemic metabolic dysfunction.

摘要

胰岛素敏感性随年龄恶化,但机制尚不清楚。与内脏 WAT 相比,皮下白色脂肪组织 (sWAT) 的功能随年龄的变化特征不太明显。我们假设,sWAT 的代谢改变——与附睾 WAT 不同,它含有一群消耗能量的 UCP1+棕色脂肪细胞——会促进胰岛素抵抗的年龄依赖性进展。事实上,我们表明,sWAT 在小鼠中的一个主要衰老后果是“褐变”的丧失。年轻小鼠的 sWAT 在组织学上类似于棕色脂肪组织(多房性,UCP1+),但在 12 个月大时会在形态上变成白色。相应地,sWAT 中 ucp1 的表达急剧下降(~300 倍),发生在 3 到 12 个月之间。这种下降一直持续到老年(24 个月),并与胰岛素抵抗的发展呈负相关。sWAT 的其他年龄依赖性变化包括 adbr3 表达降低和 maoa 表达升高,表明局部肾上腺素能张力降低是一个潜在的机制。事实上,用β3-肾上腺素能激动剂治疗以补偿张力降低可恢复衰老的 sWAT 表型。sWAT 的年龄相关性变化不能用体重差异来解释;接受 40%热量限制 12 个月的小鼠体重与 3 个月大的自由喂养小鼠相似,但显示的 sWAT 类似于同龄的自由喂养小鼠(没有类似棕色脂肪的形态)。总体而言,这些发现确定了 sWAT 中“褐变”的丧失是一种新的衰老现象,并通过揭示与全身代谢功能障碍相关的新分子变化,为与年龄相关的代谢疾病的发病机制提供了深入了解。

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