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Organic solvents and MS susceptibility: Interaction with MS risk HLA genes
Anna Karin Hedström1, Ola Hössjer2, Michail Katsoulis2
1From the Department of Clinical Neuroscience and Institute of Environmental Medicine (A.K.H., L.A.), and Department of Clinical Neuroscience and Center for Molecular Medicine (I.K., T.O.), Karolinska Institutet, Stockholm; Mathematical Statistics (O.H.), Stockholm University, Sweden; UCL/Farr Institute of Health Informatics Research (M.K.), London, UK; and Centre for Occupational and Environmental Medicine (L.A.), Stockholm County Council, Sweden. anna.hedstrom@ki.se.
Objective:
We hypothesize that different sources of lung irritation may contribute to elicit an immune reaction in the lungs and subsequently lead to multiple sclerosis (MS) in people with a genetic susceptibility to the disease. We aimed to investigate the influence of exposure to organic solvents on MS risk, and a potential interaction between organic solvents and MS risk human leukocyte antigen (HLA) genes.
Methods:
Using a Swedish population-based case-control study (2,042 incident cases of MS and 2,947 controls), participants with different genotypes, smoking habits, and exposures to organic solvents were compared regarding occurrence of MS, by calculating odds ratios with 95% confidence intervals using logistic regression. A potential interaction between exposure to organic solvents and MS risk HLA genes was evaluated by calculating the attributable proportion due to interaction.
Results:
Overall, exposure to organic solvents increased the risk of MS (odds ratio 1.5, 95% confidence interval 1.2-1.8, p = 0.0004). Among both ever and never smokers, an interaction between organic solvents, carriage of HLA-DRB1*15, and absence of HLA-A*02 was observed with regard to MS risk, similar to the previously reported gene-environment interaction involving the same MS risk HLA genes and smoke exposure.
Conclusion:
The mechanism linking both smoking and exposure to organic solvents to MS risk may involve lung inflammation with a proinflammatory profile. Their interaction with MS risk HLA genes argues for an action of these environmental factors on adaptive immunity, perhaps through activation of autoaggressive cells resident in the lungs subsequently attacking the CNS.
Insights
Exposure to organic solvents increases multiple sclerosis (MS) risk, particularly when combined with specific human leukocyte antigen (HLA) genes. This suggests lung inflammation may play a role in MS development for genetically susceptible individuals.
Area of Science:
- Neuroimmunology
- Environmental Health
- Genetics
Background:
- Multiple sclerosis (MS) is an autoimmune disease affecting the central nervous system.
- Genetic susceptibility, such as specific human leukocyte antigen (HLA) genes, plays a role in MS development.
- Environmental factors, including lung irritants, are hypothesized to trigger immune responses in genetically predisposed individuals.
Purpose of the Study:
- To investigate the association between organic solvent exposure and MS risk.
- To examine potential interactions between organic solvent exposure and MS risk-associated HLA genes.
Main Methods:
- A population-based case-control study in Sweden.
- Involved 2,042 MS cases and 2,947 controls.
- Logistic regression was used to calculate odds ratios and assess gene-environment interactions.
Main Results:
- Organic solvent exposure was associated with a 1.5-fold increased risk of MS (95% CI 1.2-1.8).
- An interaction was observed between organic solvents, HLA-DRB1*15 carriage, and absence of HLA-A*02 in relation to MS risk, irrespective of smoking status.
- This interaction mirrors previously reported findings for smoke exposure and the same HLA genes.
Conclusions:
- Lung inflammation, potentially with a proinflammatory profile, may link organic solvent exposure to MS risk.
- The interaction with MS risk HLA genes suggests environmental factors influence adaptive immunity.
- These factors might activate autoaggressive cells in the lungs, leading to central nervous system (CNS) attack.
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