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大脑中的心血管与代谢相互作用:瘦素与抵抗素

Cardiovascular and Metabolic Crosstalk in the Brain: Leptin and Resistin.

作者信息

Badoer Emilio

机构信息

School of Health and Biomedical Sciences, RMIT University, Melbourne, VIC, Australia.

出版信息

Front Physiol. 2021 Feb 18;12:639417. doi: 10.3389/fphys.2021.639417. eCollection 2021.

Abstract

Leptin and resistin are cytokines whose plasma levels correlate with adiposity. Leptin is a hormone synthesised and released from adipocytes and can be transported into the brain. Resistin is produced in adipocytes in rodents and in macrophages in humans, particularly macrophages that have infiltrated adipose tissue. Both hormones can act within the brain to influence sympathetic nerve activity. Leptin appears to have a generalised sympatho-excitatory actions whilst resistin appears to increase sympathetic nerve activity affecting the cardiovascular system but inhibits sympathetic nerve activity to brown adipose tissue, which contrasts with leptin. Since both hormones can be elevated in conditions of metabolic dysfunction, interactions/crosstalk between these two hormones in the brain is a real possibility. This review describes the current knowledge regarding such crosstalk within the central nervous system. The evidence suggests that with respect to sympathetic nerve activity, crosstalk between leptin and resistin can elicit enhanced sympatho-excitatory responses to the kidneys. In contrast, with respect to food intake, resistin has weaker effects, but in regard to insulin secretion and thermogenesis, leptin and resistin have opposing actions. Thus, in conditions in which there is increased resistin and leptin levels, the result of crosstalk in the central nervous system could contribute to worse cardiovascular and metabolic complications.

摘要

瘦素和抵抗素是血浆水平与肥胖程度相关的细胞因子。瘦素是一种由脂肪细胞合成并释放的激素,可转运至大脑。抵抗素在啮齿动物的脂肪细胞以及人类的巨噬细胞中产生,尤其是浸润到脂肪组织中的巨噬细胞。这两种激素均可在大脑中发挥作用,影响交感神经活动。瘦素似乎具有广泛的交感兴奋作用,而抵抗素似乎会增加影响心血管系统的交感神经活动,但会抑制对棕色脂肪组织的交感神经活动,这与瘦素相反。由于在代谢功能障碍的情况下,这两种激素水平均可升高,因此这两种激素在大脑中的相互作用/串扰是很有可能的。这篇综述描述了关于中枢神经系统内这种串扰的现有知识。证据表明,就交感神经活动而言,瘦素和抵抗素之间的串扰可引发对肾脏更强的交感兴奋反应。相比之下,就食物摄入而言,抵抗素的作用较弱,但就胰岛素分泌和产热而言,瘦素和抵抗素具有相反的作用。因此,在抵抗素和瘦素水平升高的情况下,中枢神经系统中串扰的结果可能会导致更严重的心血管和代谢并发症。

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