| Literature DB >> 25961058 |
Rodrigo Arreola1, Enrique Becerril-Villanueva2, Carlos Cruz-Fuentes1, Marco Antonio Velasco-Velázquez3, María Eugenia Garcés-Alvarez2, Gabriela Hurtado-Alvarado4, Saray Quintero-Fabian5, Lenin Pavón2.
Abstract
Serotonin (5-HT) induces concentration-dependent metabolic effects in diverse cell types, including neurons, entherochromaffin cells, adipocytes, pancreatic beta-cells, fibroblasts, smooth muscle cells, epithelial cells, and leukocytes. Three classes of genes regulating 5-HT function are constitutively expressed or induced in these cells: (a) membrane proteins that regulate the response to 5-HT, such as SERT, 5HTR-GPCR, and the 5HT3-ion channels; (b) downstream signaling transduction proteins; and (c) enzymes controlling 5-HT metabolism, such as IDO and MAO, which can generate biologically active catabolites, including melatonin, kynurenines, and kynurenamines. This review covers the clinical and experimental mechanisms involved in 5-HT-induced immunomodulation. These mechanisms are cell-specific and depend on the expression of serotonergic components in immune cells. Consequently, 5-HT can modulate several immunological events, such as chemotaxis, leukocyte activation, proliferation, cytokine secretion, anergy, and apoptosis. The effects of 5-HT on immune cells may be relevant in the clinical outcome of pathologies with an inflammatory component. Major depression, fibromyalgia, Alzheimer disease, psoriasis, arthritis, allergies, and asthma are all associated with changes in the serotonergic system associated with leukocytes. Thus, pharmacological regulation of the serotonergic system may modulate immune function and provide therapeutic alternatives for these diseases.Entities:
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Year: 2015 PMID: 25961058 PMCID: PMC4417587 DOI: 10.1155/2015/354957
Source DB: PubMed Journal: J Immunol Res ISSN: 2314-7156 Impact factor: 4.818
Serotonergic proteins expressed in human immune cells.
| 5HT1 | 5HT2 | 5HT3 | 5HT4 | 5HT5 | 5HT6 | 5HT7 | SERT | Anabolism | Catabolism | |
|---|---|---|---|---|---|---|---|---|---|---|
| Cellular | 1A: B Lymphocytes∗‡ [ | 2A: Lymphocytes§† [ | 3: Mast cells§‡ [ | Dendritic cells§‡ [ | Eosinophils§‡ [ | Dendritic cells§‡† [ | Lymphocytes§∗‡† [ | TPH1: T Cells‡∗ [ | IDO: Lymphocytes§‡† [ |
§Human, ∗Murine, ‡Expression, †Protein.
Figure 1Metabolic pathways associated with 5-HT. The metabolic pathways branching from the catabolism of tryptophan are shown. Green and brown branches show kynurenine pathways from tryptophan. The dark blue branch displays the 5-HT generation pathway while the red branch displays the melatonin generation pathway (solid line) and the melatonin catabolism pathway (dashed lines). The 5-HT catabolism pathways are depicted in blue, purple, and cyan dotted lines. The most relevant compounds are circled with dotted lines and underlined compounds have no demonstrated effects. An additional catabolic pathway marked in pink from 5-hydroxy-L-tryptophan generates 5-hydroxy-kynurenine and 5-hidroxy-kynurenamine family compounds (paths C05648 and C05647), which have no demonstrated biological effects. The compounds in these pathways are denoted by their “Kyoto Encyclopedia of Genes and Genomes” (KEGG) code (http://www.genome.jp/kegg/). Enzymes with their classification codes (EC, http://www.chem.qmul.ac.uk/iubmb/enzyme/) and UNIPROT gene names are shown in squares. The shading arrows show the most studied pathways.
The effect of 5-HT on MDDC cytokine production.
| Cytokine secretion | 5-HT receptors involved | References |
|---|---|---|
| ↑ IL-6 | 5HT3, 5HT4 and 5HT7 |
Müller et al., 2009 [ |
| ↓ IL-12p70 | 5HT4 and 5HT7 | Müller et al., 2009 [ |
| ↑ IL-10 | 5HT4 and 5HT7 | Müller et al., 2009 [ |
| ↑ IL-8, IL-1 | 5HT3, 5HT4 (G | Idzko et al., 2004 [ |
Pathology-associated serotonergic protein expression in immune cells.
| Patology/condition | 5-HT, SERT and 5HTR variation | Reference |
|---|---|---|
| Major depression disorder | ↓ SERT in platelets | Mössner et al., 2007 [ |
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| Fibromyalgia | ↓ 5-HT serum levels | Bazzichi et al., 2006 [ |
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| Schizophrenia | ↑ 5HT2A (polymorphism T102C) in lymphocytes | Williams et al., 1997 [ |
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| Asthma | ↑ 5-HT plasma levels | Lechin et al., 1998 [ |
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| Alzheimer disease | ↑ 5HT2C in NK cells | Martins et al., 2012 [ |
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| Psoriasis | ↑ SERT of skin biopsies, dendritic cells | Thorslund et al., 2013 [ |
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| Alcohol exposition 0.1% 24 h | ↑ SERT in dendritic cells | Babu et al., 2009 [ |
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| Arthritis | ↑ 5HT2A mRNA in macrophage-like synovial cells | Seidel et al., 2008 [ |
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| Mitogen activation with concanavalin | ↑ 5HT7 mRNA | Urbina et al., 2014 [ |
Serotonergic drugs and their effects on the immune system.
| Pathology/treatment | Result | Reference |
|---|---|---|
| HIV chronic infection/ | ↓ Macrophage infectivity | Benton et al., 2010 [ |
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| HCV infection | ↓ Depression symptoms | Schaefer et al., 2012 [ |
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| Tendinopathy and facial pain | Analgesic effect |
Müller and Stratz, 2004 [ |
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| Infection with | SSRI killed | Palit and Ali, 2008 [ |
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| CT26/luc colon carcinoma-bearing mice | ↓ T cell infiltration in tumor | Fang et al., 2012 [ |