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Neuroinflammation in heart failure: new insights for an old disease

机译:心力衰竭中的神经炎炎症:对旧疾病的新见解

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Heart failure (HF) is a complex clinical syndrome affecting roughly 26 million people worldwide. Increased sympathetic drive is a hallmark of HF and is associated with disease progression and higher mortality risk. Several mechanisms contribute to enhanced sympathetic activity in HF, but these pathways are still incompletely understood. Previous work suggests that inflammation and activation of the renin-angiotensin system (RAS) increases sympathetic drive. Importantly, chronic inflammation in several brain regions is commonly observed in aged populations, and a growing body of evidence suggests neuroinflammation plays a crucial role in HF. In animal models of HF, central inhibition of RAS and pro-inflammatory cytokines normalizes sympathetic drive and improves cardiac function. The precise molecular and cellular mechanisms that lead to neuroinflammation and its effect on HF progression remain undetermined. This review summarizes the most recent advances in the field of neuroinflammation and autonomic control in HF. In addition, it focuses on cellular and molecular mediators of neuroinflammation in HF and in particular on brain regions involved in sympathetic control. Finally, we will comment on what is known about neuroinflammation in the context of preserved vs. reduced ejection fraction HF.
机译:心力衰竭(HF)是一种复杂的临床综合征,影响全球约2600万人。增加的交感神经驱动是HF的标志,与疾病进展和更高的死亡风险有关。有些机制有助于提高HF中的交感神经活性,但这些途径仍然不完全理解。以前的工作表明,肾素 - 血管紧张素系统(RAS)的炎症和激活增加了交感神经驱动。重要的是,在老年人的群体中通常观察到几种脑区的慢性炎症,并且越来越多的证据表明神经引起的炎症在HF中起着至关重要的作用。在HF的动物模型中,RAS和促炎细胞因子的中枢抑制标准化交感神经驱动并改善心脏功能。导致神经引起的精确分子和细胞机制及其对HF进展的影响仍未确定。本综述总结了HF中神经引发和自主检测领域的最新进展。此外,它侧重于HF中神经炎性炎症的细胞和分子介质,特别是对参与交感神经控制的脑区。最后,我们将评论在保存的与射出部分HF的背景下的神经炎症中所知的内容。

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