Serotonin, tryptophan metabolism and the brain-gut-microbiome axis

IF 2.3 3区 心理学 Q2 BEHAVIORAL SCIENCES
S.M. O’Mahony , G. Clarke , Y.E. Borre , T.G. Dinan , J.F. Cryan
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引用次数: 1269

Abstract

The brain-gut axis is a bidirectional communication system between the central nervous system and the gastrointestinal tract. Serotonin functions as a key neurotransmitter at both terminals of this network. Accumulating evidence points to a critical role for the gut microbiome in regulating normal functioning of this axis. In particular, it is becoming clear that the microbial influence on tryptophan metabolism and the serotonergic system may be an important node in such regulation. There is also substantial overlap between behaviours influenced by the gut microbiota and those which rely on intact serotonergic neurotransmission. The developing serotonergic system may be vulnerable to differential microbial colonisation patterns prior to the emergence of a stable adult-like gut microbiota. At the other extreme of life, the decreased diversity and stability of the gut microbiota may dictate serotonin-related health problems in the elderly. The mechanisms underpinning this crosstalk require further elaboration but may be related to the ability of the gut microbiota to control host tryptophan metabolism along the kynurenine pathway, thereby simultaneously reducing the fraction available for serotonin synthesis and increasing the production of neuroactive metabolites. The enzymes of this pathway are immune and stress-responsive, both systems which buttress the brain-gut axis. In addition, there are neural processes in the gastrointestinal tract which can be influenced by local alterations in serotonin concentrations with subsequent relay of signals along the scaffolding of the brain-gut axis to influence CNS neurotransmission. Therapeutic targeting of the gut microbiota might be a viable treatment strategy for serotonin-related brain-gut axis disorders.

血清素,色氨酸代谢和脑-肠-微生物轴
脑肠轴是中枢神经系统和胃肠道之间的双向通讯系统。血清素在这一网络的两端起着关键的神经递质作用。越来越多的证据表明,肠道微生物群在调节这一轴的正常功能方面发挥着关键作用。特别是,越来越清楚的是,微生物对色氨酸代谢和血清素能系统的影响可能是这种调节的一个重要节点。受肠道微生物群影响的行为与依赖完整的血清素能神经传递的行为之间也存在大量重叠。在稳定的成人样肠道微生物群出现之前,发育中的血清素能系统可能容易受到不同微生物定植模式的影响。在生命的另一个极端,肠道微生物群多样性和稳定性的下降可能导致老年人出现与血清素相关的健康问题。支持这种串音的机制需要进一步阐述,但可能与肠道微生物群沿犬尿氨酸途径控制宿主色氨酸代谢的能力有关,从而同时减少可用于5 -羟色胺合成的部分并增加神经活性代谢物的产生。这条途径的酶是免疫和应激反应的,这两个系统都支持脑肠轴。此外,胃肠道中的神经过程可受局部血清素浓度改变的影响,随后沿脑-肠轴支架传递信号,影响中枢神经系统的神经传递。针对肠道微生物群的治疗可能是血清素相关脑-肠轴疾病的可行治疗策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Behavioural Brain Research
Behavioural Brain Research 医学-行为科学
CiteScore
5.60
自引率
0.00%
发文量
383
审稿时长
61 days
期刊介绍: Behavioural Brain Research is an international, interdisciplinary journal dedicated to the publication of articles in the field of behavioural neuroscience, broadly defined. Contributions from the entire range of disciplines that comprise the neurosciences, behavioural sciences or cognitive sciences are appropriate, as long as the goal is to delineate the neural mechanisms underlying behaviour. Thus, studies may range from neurophysiological, neuroanatomical, neurochemical or neuropharmacological analysis of brain-behaviour relations, including the use of molecular genetic or behavioural genetic approaches, to studies that involve the use of brain imaging techniques, to neuroethological studies. Reports of original research, of major methodological advances, or of novel conceptual approaches are all encouraged. The journal will also consider critical reviews on selected topics.
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