Senolytic treatment with dasatinib and quercetin selectively improves cardiac autonomic balance in obesity.

IF 5.4 2区 医学 Q1 GERIATRICS & GERONTOLOGY
Mahesh Kumar Sivasubramanian, Raisa Monteiro, Joshua T Butcher, UdayKiran Venugopal, Yasodha Kesavan, Priya Balasubramanian, Madhan Subramanian
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Abstract

Chronic sympathetic nerve activity (SNA) to end organs plays a crucial role in the pathophysiology of obesity-induced hypertension. Oxidative stress and neuroinflammation in the rostral ventrolateral medulla (RVLM), a key brainstem region regulating sympathetic outflow, have been implicated in the sympathetic overactivity in obesity. However, the upstream mechanisms driving RVLM neuroinflammation remain unknown. We hypothesized that obesity induces cellular senescence, a stress response characterized by irreversible cell cycle arrest, in the RVLM and contributes to sympathoexcitation. To test this, C57BL/6 J male mice were fed chow or a high-fat diet (HFD) for 16 weeks, followed by treatment with Dasatinib (5 mg/kg) and Quercetin (50 mg/kg) (D + Q) to selectively eliminate senescent cells. Blood pressure was assessed by radiotelemetry in conscious, freely moving mice. SNA was indirectly measured through heart rate variability (HRV) analysis, depressor response to hexamethonium, and serum norepinephrine levels. The RVLM was microdissected for gene expression and protein analysis of senescence markers and DNA damage. Our results showed that HFD mice had a significant increase in mean arterial pressure and SNA compared to chow-fed controls. Obesity was associated with increased DNA damage and upregulation of cellular senescence markers in the RVLM. Senolytic treatment with D + Q selectively improved cardiac autonomic balance as assessed by HRV, without altering indices of global SNA or blood pressure. Collectively, our findings identify cellular senescence in the RVLM as a novel contributor to obesity-induced sympathoexcitation, and senolytic therapy could be a potential therapeutic avenue for obesity-associated autonomic dysfunction.

达沙替尼和槲皮素的抗衰老治疗选择性地改善肥胖患者心脏自主神经平衡。
终末器官的慢性交感神经活动(SNA)在肥胖性高血压的病理生理中起重要作用。氧化应激和神经炎症在延髓吻侧腹外侧(RVLM),一个关键的脑干区域调节交感神经外流,已牵连到交感神经过度活动的肥胖。然而,RVLM神经炎症的上游机制尚不清楚。我们假设肥胖在RVLM中诱导细胞衰老,这是一种以不可逆的细胞周期停滞为特征的应激反应,并有助于交感神经兴奋。为了验证这一点,C57BL/6 J雄性小鼠连续16周饲喂食物或高脂饲料(HFD),然后给予达沙替尼(5 mg/kg)和槲皮素(50 mg/kg) (D + Q)选择性消除衰老细胞。用无线电遥测法对有意识、自由活动的小鼠进行血压评估。SNA通过心率变异性(HRV)分析、对六甲溴铵的降压药反应和血清去甲肾上腺素水平间接测量。对RVLM进行显微解剖,分析衰老标志物和DNA损伤的基因表达和蛋白质。我们的研究结果显示,与正常对照组相比,高脂肪小鼠的平均动脉压和SNA显著增加。肥胖与RVLM中DNA损伤增加和细胞衰老标志物上调有关。通过HRV评估,D + Q治疗选择性地改善了心脏自主神经平衡,没有改变总体SNA或血压指标。总的来说,我们的研究结果确定了RVLM中的细胞衰老是肥胖诱导的交感神经兴奋的新因素,而衰老治疗可能是肥胖相关自主神经功能障碍的潜在治疗途径。
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来源期刊
GeroScience
GeroScience Medicine-Complementary and Alternative Medicine
CiteScore
10.50
自引率
5.40%
发文量
182
期刊介绍: GeroScience is a bi-monthly, international, peer-reviewed journal that publishes articles related to research in the biology of aging and research on biomedical applications that impact aging. The scope of articles to be considered include evolutionary biology, biophysics, genetics, genomics, proteomics, molecular biology, cell biology, biochemistry, endocrinology, immunology, physiology, pharmacology, neuroscience, and psychology.
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