Lambert Gavin W, Patel Mariya, Lambert Elisabeth A
School of Health Sciences and Iverson Health Innovation Research Institute, Swinburne University of Technology, Hawthorn, VIC 3122, Australia.
Medical Technology Victoria (MedTechVic) Research Hub, Hawthorn, VIC 3122, Australia.
Metabolites. 2025 Apr 23;15(5):286. doi: 10.3390/metabo15050286.
Alterations in sympathetic nervous activity are evident in response to changes in body weight. Sympathetic nervous activity and sympathetic responses to weight change are regionalized, with alterations in end organ function dependent on the changes occurring in the brain regulatory pathways invoked and in the effector organs engaged. The obesity-induced activation of the sympathetic nervous system likely contributes to the initiation and worsening of cardiometabolic risk factors, including elevated blood pressure, cardiac dysfunction, dyslipidaemia, increased fasting blood glucose, insulin resistance, and non-alcoholic steatohepatitis. Unintended weight loss, as occurs in cachexia, is driven, at least in part, by the activation of sympathetic nervous-stimulated thermogenesis. The complexity of sympathetic nervous regulation renders the use of global measures of sympathetic activity problematic and the development of targeted therapies difficult, but these are not without promise or precedent. Knowledge of the central and peripheral pathways involved in sympathetic nervous regulation has opened up opportunities for pharmacological, surgical, and device-based approaches to mitigating the burden of disease development and progression. In this narrative review, we elaborate on sympathetic activity in response to changes in body weight, the brain pathways involved, and the cardiovascular and metabolic risks associated with perturbations in regional sympathetic activity.
交感神经活动的改变在体重变化时很明显。交感神经活动以及对体重变化的交感反应是区域性的,终末器官功能的改变取决于所涉及的脑调节通路和所参与的效应器官中发生的变化。肥胖诱导的交感神经系统激活可能导致心脏代谢危险因素的起始和恶化,包括血压升高、心脏功能障碍、血脂异常、空腹血糖升高、胰岛素抵抗和非酒精性脂肪性肝炎。体重意外减轻,如恶病质时发生的情况,至少部分是由交感神经刺激的产热激活驱动的。交感神经调节的复杂性使得使用交感活动的整体测量方法存在问题,也使得靶向治疗的开发变得困难,但并非没有希望或先例。对交感神经调节所涉及的中枢和外周通路的了解为减轻疾病发展和进展负担的药理学、外科和基于设备的方法开辟了机会。在这篇叙述性综述中,我们阐述了对体重变化的交感活动、所涉及的脑通路以及与区域交感活动紊乱相关的心血管和代谢风险。