AT1 receptors play a role in sepsis-induced vasoplegia by increasing iNOS expression in the perivascular adipose tissue.

IF 2.9 4区 医学 Q2 PHYSIOLOGY
Wanessa M C Awata, Gustavo F Pimenta, Thales M H Dourado, Kathleen A Paulino, Marcela M Blascke de Mello, Lucas C Pinheiro, Michele M Castro, Carlos R Tirapelli
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Abstract

Sepsis enhances the anticontractile effect of perivascular adipose tissue (PVAT), which contributes to a reduced response to vasoconstrictor agents. In the early stages of sepsis, the renin-angiotensin-aldosterone system (RAAS) is activated, and this response can lead to poorer clinical outcomes. We hypothesized that AT1 receptors (AT1R) contribute to vascular hyporesponsiveness during sepsis by increasing the expression of inducible nitric oxide synthase (iNOS) in the periaortic PVAT, resulting in elevated nitric oxide (NO) production. In our study, male Wistar Hannover rats underwent lethal sepsis via a cecal ligation and puncture (CLP) model. We evaluated the role of AT1R in sepsis-induced PVAT dysfunction by administering a single dose of losartan (a selective AT1R antagonist; 10 mg/kg, gavage) to the rats 1 h prior to the CLP surgery. We observed increased levels of circulating angiotensin II in septic rats. Functional analyses revealed that AT1R blockade prevented the enhanced anticontractile effect of PVAT and the resulting vascular hyporesponsiveness to phenylephrine during sepsis. Additionally, losartan inhibited sepsis-induced iNOS expression and the overproduction of NO in both the PVAT and the aorta. Experiments using 1400W, a selective iNOS inhibitor, indicated that iNOS plays a crucial role in the sepsis-induced increase in the anticontractile effect of PVAT. In summary, AT1R mediate iNOS expression in PVAT, leading to the overproduction of NO, which ultimately contributes to sepsis-induced vasoplegia. Furthermore, AT1R-mediated iNOS expression is an important mechanism related to vasoplegia in the vasculature. The present results implicate AT1R as active players in sepsis-induced PVAT and vascular dysfunction.

AT1受体通过增加血管周围脂肪组织中iNOS的表达,在脓毒症诱导的血管截瘫中发挥作用。
脓毒症增强了血管周围脂肪组织(PVAT)的抗收缩作用,这有助于减少对血管收缩剂的反应。在败血症的早期阶段,肾素-血管紧张素-醛固酮系统(RAAS)被激活,这种反应可能导致较差的临床结果。我们假设AT1受体(AT1R)通过增加主动脉周围PVAT中诱导型一氧化氮合酶(iNOS)的表达,导致一氧化氮(NO)的产生升高,从而导致脓毒症期间血管反应性降低。在我们的研究中,雄性Wistar汉诺威大鼠通过盲肠结扎和穿刺(CLP)模型遭受致死性脓毒症。我们通过在CLP手术前1小时给予大鼠单剂量氯沙坦(一种选择性AT1R拮抗剂;10 mg/kg,灌胃)来评估AT1R在败血症诱导的PVAT功能障碍中的作用。我们观察到脓毒症大鼠循环血管紧张素II水平升高。功能分析显示AT1R阻断阻止了脓毒症期间PVAT抗收缩作用的增强和由此导致的血管对苯肾上腺素的低反应性。此外,氯沙坦抑制败血症诱导的iNOS表达和PVAT和主动脉中NO的过量产生。使用选择性iNOS抑制剂1400W进行的实验表明,iNOS在脓毒症诱导的PVAT抗收缩作用增强中起着至关重要的作用。综上所述,AT1R介导PVAT中iNOS的表达,导致NO过量产生,最终导致败血症诱导的血管截瘫。此外,at1r介导的iNOS表达是与血管截瘫相关的重要机制。目前的结果表明AT1R在脓毒症诱导的PVAT和血管功能障碍中起积极作用。
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来源期刊
CiteScore
8.80
自引率
2.20%
发文量
121
审稿时长
4-8 weeks
期刊介绍: Pflügers Archiv European Journal of Physiology publishes those results of original research that are seen as advancing the physiological sciences, especially those providing mechanistic insights into physiological functions at the molecular and cellular level, and clearly conveying a physiological message. Submissions are encouraged that deal with the evaluation of molecular and cellular mechanisms of disease, ideally resulting in translational research. Purely descriptive papers covering applied physiology or clinical papers will be excluded. Papers on methodological topics will be considered if they contribute to the development of novel tools for further investigation of (patho)physiological mechanisms.
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