Mechanisms Underlying the Anti-Depressive Effects of Regular Tea Consumption
Механизмы, лежащие в основе антидепрессивного действия регулярного употребления чая
2019-06-17
SCID: 54.1/wgdqnmuy
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ERK/CREB/BDNF signalingNF-κB signalingantidepressant effectsgut-brain axistea consumption
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Abstract (AI)
This article is a comprehensive review of the literature pertaining to the antidepressant effects and mechanisms of regular tea consumption. Meta-data supplemented with recent observational studies were first analyzed to assess the association between tea consumption and depression risk. The literature reported risk ratios (RR) were 0.69 with 95% confidence intervals of 0.62-0.77. Next, we thoroughly reviewed human trials, mouse models, and in vitro experiments to determine the predominant mechanisms underlying the observed linear relationship between tea consumption and reduced risk of depression. Current theories on the neurobiology of depression were utilized to map tea-mediated mechanisms of antidepressant activity onto an integrated framework of depression pathology. The major nodes within the network framework of depression included hypothalamic-pituitary-adrenal (HPA) axis hyperactivity, inflammation, weakened monoaminergic systems, reduced neurogenesis/neuroplasticity, and poor microbiome diversity affecting the gut-brain axis. We detailed how each node has subsystems within them, including signaling pathways, specific target proteins, or transporters that interface with compounds in tea, mediating their antidepressant effects. A major pathway was found to be the ERK/CREB/BDNF signaling pathway, up-regulated by a number of compounds in tea including teasaponin, L-theanine, EGCG and combinations of tea catechins and their metabolites. Black tea theaflavins and EGCG are potent anti-inflammatory agents via down-regulation of NF-κB signaling. Multiple compounds in tea are effective modulators of dopaminergic activity and the gut-brain axis. Taken together, our findings show that constituents found in all major tea types, predominantly L-theanine, polyphenols and polyphenol metabolites, are capable of functioning through multiple pathways simultaneously to collectively reduce the risk of depression.
Key Findings
1
Black tea theaflavins and EGCG may reduce neuroinflammation through downregulation of NF-κB signaling.
2
L-theanine, tea polyphenols, and their metabolites can simultaneously influence dopaminergic activity and gut–brain-axis function, potentially explaining protective effects across major tea types.
3
Meta-analysis and recent observational studies associate regular tea consumption with reduced depression risk, with a reported risk ratio of 0.69 (95% CI, 0.62–0.77).
4
Tea constituents may exert antidepressant effects by jointly modulating HPA-axis hyperactivity, inflammation, monoaminergic signaling, neuroplasticity, and gut–brain-axis dysfunction.
5
The ERK/CREB/BDNF pathway is a major proposed mechanism, upregulated by teasaponin, L-theanine, EGCG, and tea catechins or their metabolites.
Research Object
Regular tea consumption and its constituent compounds in relation to depression
Research Subject
Antidepressant effects and the underlying neurobiological mechanisms, including modulation of the HPA axis, inflammation, monoaminergic signaling, neurogenesis/neuroplasticity, and the gut-brain axis
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2019-06-17
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