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骨髄交感神经活动亢进先于血管紧张素Ⅱ型高血压的系统性炎症。

Elevated bone marrow sympathetic drive precedes systemic inflammation in angiotensin II hypertension.

机构信息

Department of Physiological Sciences, College of Veterinary Medicine, University of Florida , Gainesville, Florida.

Department of Physiology and Functional Genomics, College of Medicine, University of Florida , Gainesville, Florida.

出版信息

Am J Physiol Heart Circ Physiol. 2019 Aug 1;317(2):H279-H289. doi: 10.1152/ajpheart.00510.2018. Epub 2019 May 31.

Abstract

Increased sympathetic nervous system activity is a hallmark of hypertension (HTN), and it is implicated in altered immune system responses in its pathophysiology. However, the precise mechanisms of neural-immune interaction in HTN remain elusive. We have previously shown an association between elevated sympathetic drive to the bone marrow (BM) and activated BM immune cells in rodent models of HTN. Moreover, microglial-dependent neuroinflammation is also seen in rodent models of HTN. However, the cause-effect relationship between central and systemic inflammatory responses and the sympathetic drive remains unknown. These observations led us to hypothesize that increase in the femoral BM sympathetic nerve activity (fSNA) initiates a cascade of events leading to increase in blood pressure (BP). Here, we investigated the temporal relationship between the BM sympathetic drive, activation of the central and peripheral immune system, and increase in BP in the events leading to established HTN. The present study demonstrates that central infusion of angiotensin II (ANG II) induces early microglial activation in the paraventricular nucleus of hypothalamus, which preceded increase in the fSNA. In turn, activation of fSNA correlated with the timing of increased production and release of CD4.IL17 T cells and other proinflammatory cells into circulation and elevation in BP, whereas infiltration of CD4 cells to the paraventricular nucleus marked establishment of ANG II HTN. This study identifies cellular and molecular mechanisms involved in neural-immune interactions in early and established stages of rodent ANG II HTN. Early microglia activation in paraventricular nucleus precedes sympathetic activation of the bone marrow. This leads to increased bone marrow immune cells and their release into circulation and an increase in blood pressure. Infiltration of CD4+ T cells into paraventricular nucleus paraventricular nucleus marks late hypertension.

摘要

交感神经系统活动增加是高血压(HTN)的一个标志,它与病理生理学中免疫系统反应的改变有关。然而,神经-免疫相互作用的确切机制在高血压中仍然难以捉摸。我们之前已经在高血压的啮齿动物模型中显示出骨髓(BM)交感神经活动升高与 BM 激活免疫细胞之间存在关联。此外,高血压的啮齿动物模型中也存在小胶质细胞依赖性神经炎症。然而,中枢和全身炎症反应与交感神经活动之间的因果关系尚不清楚。这些观察结果使我们假设股骨 BM 交感神经活动(fSNA)的增加引发了一系列事件,导致血压(BP)升高。在这里,我们研究了 BM 交感神经驱动、中枢和外周免疫系统激活以及导致已建立的 HTN 血压升高之间的时间关系。本研究表明,血管紧张素 II(ANG II)的中枢输注会导致下丘脑室旁核中的小胶质细胞早期激活,这先于 fSNA 的增加。反过来,fSNA 的激活与 CD4.IL17 T 细胞和其他促炎细胞进入循环和血压升高的时间一致,而 CD4 细胞浸润到室旁核标志着 ANG II HTN 的建立。这项研究确定了在啮齿动物 ANG II HTN 的早期和已建立阶段涉及神经-免疫相互作用的细胞和分子机制。室旁核中的早期小胶质细胞激活先于骨髓的交感神经激活。这导致骨髓免疫细胞增加并释放到循环中,血压升高。CD4+T 细胞浸润到室旁核标志着晚期高血压。

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