Cross-talk between Peptide Neurotransmitters and their Role in Homeostasis of Brain, Behavior, and Immunity

IF 0.3 Q4 PSYCHIATRY
Soni Rani, Soma Mondal Ghorai, Shubham Yadav
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引用次数: 0

Abstract

Abstract: The bidirectional communication among the different peptide neurotransmitters and their receptors influences brain, immunity, and behavior. Among the peptide neurotransmitters, Glutamate is the primary excitatory while; gamma-aminobutyrate (γ-GABA), is the inhibitory neurotransmitter. Glutamatergic/GABAergic imbalances are seen in many neurological and autoimmune disorders. With an aim to understand more deeply the intricacies of glutamate/GABA homeostasis, we provide a critical review of glutamate, glycine and GABA peptide neurotransmitters and their role in the brain, behavior, and immunity. Another aspect of maintaining this homeostasis has its origin in the gut-brain-axis which influences mood and behavior via the bidirectional biochemical exchange network between central (CNS) and enteric nervous system (ENS). This present review also provides evidence of the cross-talk between glutamate, glycine, and GABA along the microbiotagut- brain axis, thus any variations in this axis bear the consequences of the pathological condition. Drugs like alcohol, Benzodiazepines (Barbiturates) and neurosteroids inhibit the excitatory action of glutamate leading to an overall increase of glutamate/GABA ratio that causes relaxation of nerves. However, these drugs are misused and abused among drug addicts and now their commercial production is either banned or downsized and heavily monitored. Because only a limited number of drug molecules are considered in pharmaceutics and clinics as antidepressants, it is essential to focus on alternate peptide modulator analogues which are safe, eco-friendly and can be used as drugs to relieve stress and anxiety. In this review, we present a synopsis of the studies on synthetic GABAergic agonists or GABA modulators that can be targeted for future therapeutics and clinics.
多肽神经递质间的相互作用及其在脑、行为和免疫稳态中的作用
摘要:不同多肽神经递质及其受体之间的双向交流影响着大脑、免疫和行为。在多肽神经递质中,谷氨酸是主要的兴奋性神经递质;γ-氨基丁酸(γ-GABA)是抑制性神经递质。谷氨酸能/ gaba能失衡见于许多神经和自身免疫性疾病。为了更深入地了解谷氨酸/GABA稳态的复杂性,我们对谷氨酸、甘氨酸和GABA肽神经递质及其在大脑、行为和免疫中的作用进行了综述。维持这种内稳态的另一个方面源于肠-脑轴,它通过中枢(CNS)和肠神经系统(ENS)之间的双向生化交换网络影响情绪和行为。本综述还提供了谷氨酸、甘氨酸和GABA在微生物-脑轴上的串扰的证据,因此这条轴上的任何变化都承担病理状况的后果。酒精、苯二氮卓类药物(巴比妥类药物)和神经类固醇等药物抑制谷氨酸的兴奋作用,导致谷氨酸/氨基丁酸比的整体增加,从而导致神经松弛。然而,这些药物在吸毒者中被误用和滥用,现在它们的商业生产要么被禁止,要么被缩小规模并受到严密监测。由于在制药和临床中只有有限数量的药物分子被认为是抗抑郁药,因此必须关注安全,环保并可作为缓解压力和焦虑的药物的替代肽调节剂类似物。在这篇综述中,我们介绍了合成GABA能激动剂或GABA调节剂的研究概况,这些研究可以作为未来治疗和临床的靶点。
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
Current Psychiatry Research and Reviews
Current Psychiatry Research and Reviews Medicine-Psychiatry and Mental Health
CiteScore
0.60
自引率
0.00%
发文量
51
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