首页> 外文期刊>Brain, Behavior, and Immunity >The bidirectional gut-brain-microbiota axis as a potential nexus between traumatic brain injury, inflammation, and disease
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The bidirectional gut-brain-microbiota axis as a potential nexus between traumatic brain injury, inflammation, and disease

机译:双向肠脑微生物轴作为创伤性脑损伤,炎症和疾病之间的潜在Nexus

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Highlights ? Neurotrauma can cause a prolonged inflammatory response with primed microglia. ? Primed microglia are more susceptible to future insults; both internal and external. ? Neurotraumatic events can also induce structural and functional damage to the gut. ? Damaged gut increases intestinal permeability, prompting a systemic immune response. ? Microglia are peripherally influenced to exacerbate ongoing CNS inflammation. Abstract As head injuries and their sequelae have become an increasingly salient matter of public health, experts in the field have made great progress elucidating the biological processes occurring within the brain at the moment of injury and throughout the recovery thereafter. Given the extraordinary rate at which our collective knowledge of neurotrauma has grown, new insights may be revealed by examining the existing literature across disciplines with a new perspective. This article will aim to expand the scope of this rapidly evolving field of research beyond the confines of the central nervous system (CNS). Specifically, we will examine the extent to which the bidirectional influence of the gut-brain axis modulates the complex biological processes occurring at the time of traumatic brain injury (TBI) and over the days, months, and years that follow. In addition to local enteric signals originating in the gut, it is well accepted that gastrointestinal (GI) physiology is highly regulated by innervation from the CNS. Conversely, emerging data suggests that the function and health of the CNS is modulated by the interaction between 1) neurotransmitters, immune signaling, hormones, and neuropeptides produced in the gut, 2) the composition of the gut microbiota, and 3) integrity of the intestinal wall serving as a barrier to the external environment. Specific to TBI, existing pre-clinical data indicates that head injuries can cause structural and functional damage to the GI tract, but research directly investigating the neuronal consequences of this intestinal damage is lacking. Despite this void, the proposed mechanisms emanating from a damaged gut are closely implicated in the inflammatory processes known to promote neuropathology in the brain following TBI, which suggests the gut-brain axis may be a therapeutic target to reduce the risk of Chronic Traumatic Encephalopathy and other neurodegenerative diseases following TBI. To better appreciate how various peripheral influences are implicated in the health of the CNS following TBI, this paper will also review the secondary biological injury mechanisms and the dynamic pathophysiological response to neurotrauma. Together, this review article will attempt to connect the dots to reveal novel insights into the bidirectional influence of the gut-brain axis and propose a conceptual model relevant to the recovery from TBI and subsequent risk for future neurological conditions.
机译:强调 ? Neurotrauma可能导致妊娠微胶质瘤的延长炎症反应。还引发的小胶质细胞更容易受到未来的侮辱;内部和外部。还神经塑造事件还可以对肠道诱导结构和功能损坏。还损坏的肠道增加了肠道渗透性,提示系统性免疫反应。还微胶质细胞周围受到加剧持续的CNS炎症。摘要随着头部伤害和他们的后遗症已成为公共卫生的越来越突出的问题,该领域的专家取得了很大的进展,阐明了在伤害的伤害时期的脑内发生的生物过程。鉴于我们对神经统计学的集体知识增长的非凡率,可以通过新的观点检查现有的文学来揭示新的见解。本文旨在扩大超越中枢神经系统(CNS)范围内快速发展的研究范围的范围。具体而言,我们将研究肠脑轴的双向影响调节在创伤性脑损伤(TBI)的复杂生物学过程的程度,以及在遵循的时期,月,月份和几年内发生的复杂生物学过程。除了源于肠道的局部肠道信号之外,很好地接受胃肠道(GI)生理学通过来自CNS的支配高度调节。相反,新兴数据表明,CNS的功能和健康是通过1)神经递质,免疫信号传导,激素和肠道产生的神经肽之间的相互作用的调节,2)肠道微生物的组成和3)的完整性肠壁用作外部环境的障碍。特定于TBI,现有的临床前数据表明头部损伤可能对GI道造成结构性和功能性损伤,但直接调查这种肠损伤的神经元后果缺乏。尽管这种空隙,从受损肠道发出的所提出的机制密切含义,在TBI之后促进脑中的神经病理学中已知的炎症过程,这表明肠脑轴可能是降低慢性创伤性脑病风险的治疗靶标。 TBI后的其他神经变性疾病。为了更好地理解TBI后各种外周影响如何涉及CNS的健康状况,本文还将审查二级生物损伤机制和对神经创伤的动态病理生理学反应。该审查文章将尝试连接点,揭示对肠轴轴的双向影响的小说洞察力,并提出与从TBI的复苏相关的概念模型和未来神经系统的后续风险。

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