营养过剩
胰岛素抵抗
交感神经系统
内分泌学
内科学
医学
胰岛素
生物
肥胖
血压
作者
Kenichi Sakamoto,Mary A. Butera,Chun-Xue Zhou,Giulia Maurizi,Bandy Chen,Ling Li,A. Shawkat,Likhitha Patlolla,Kavira Thakker,Victoria Laguna Calle,Donald A. Morgan,Kamal Rahmouni,Gary J. Schwartz,A Tahiri,Christoph Buettner
标识
DOI:10.1016/j.cmet.2024.09.012
摘要
The mechanisms underlying obesity-induced insulin resistance remain incompletely understood, as impaired cellular insulin signaling, traditionally considered the primary driver of insulin resistance, does not always accompany impaired insulin action. Overnutrition rapidly increases plasma norepinephrine (NE), suggesting overactivation of the sympathetic nervous system (SNS). However, the role of the SNS in obesity is controversial, as both increased and decreased SNS activity (SNA) have been reported. Here, we show that reducing catecholamine (CA) release from the SNS protects against overnutrition-induced insulin resistance as well as hyperglucagonemia, adipose tissue dysfunction, and fatty liver disease, as we demonstrate utilizing a mouse model of inducible and peripherally restricted deletion of tyrosine hydroxylase (th; THΔper). A key mechanism through which heightened SNA induces insulin resistance is by triggering adipose tissue lipolysis. Increased SNA emerges as a critical driver in the pathogenesis of overnutrition-induced insulin resistance and metabolic disease independent of cellular insulin signaling.
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