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Published on: September 16, 2017
Whole Blood DNA Methylation Changes Are Associated with Anti-TNF Drug Concentration in Patients with Crohn's Disease
Simeng Lin1,2, Eilis Hannon3, Mark Reppell4
1Gastroenterology, Royal Devon University Healthcare NHS Foundation Trust, Exeter, UK.
Background And Aims:
Anti-tumour necrosis factor [TNF] treatment failure in patients with inflammatory bowel disease [IBD] is common and frequently related to low drug concentrations. In order to identify patients who may benefit from dose optimisation at the outset of anti-TNF therapy, we sought to define epigenetic biomarkers in whole blood at baseline associated with anti-TNF drug concentrations at week 14.
Methods:
DNA methylation from 1104 whole blood samples from 385 patients in the Personalised Anti-TNF Therapy in Crohn's disease [PANTS] study were assessed using the Illumina EPIC Beadchip [v1.0] at baseline and weeks 14, 30, and 54. We compared DNA methylation profiles in anti-TNF-treated patients who experienced primary non-response at week 14 if they were assessed at subsequent time points and were not in remission at week 30 or 54 [infliximab n = 99, adalimumab n = 94], with patients who responded at week 14 and when assessed at subsequent time points were in remission at week 30 or 54 [infliximab n = 99, adalimumab n = 93].
Results:
Overall, between baseline and week 14, we observed 4999 differentially methylated positions [DMPs] annotated to 2376 genes following anti-TNF treatment. Pathway analysis identified 108 significant gene ontology terms enriched in biological processes related to immune system processes and responses. Epigenome-wide association [EWAS] analysis identified 323 DMPs annotated to 210 genes at baseline associated with higher anti-TNF drug concentrations at Week 14. Of these, 125 DMPs demonstrated shared associations with other common traits [proportion of shared CpGs compared with DMPs] including body mass index [23.2%], followed by C-reactive protein [CRP] [11.5%], smoking [7.4%], alcohol consumption per day [7.1%], and IBD type [6.8%]. EWAS of primary non-response to anti-TNF identified 20 DMPs that were associated with both anti-TNF drug concentration and primary non-response to anti-TNF with a strong correlation of the coefficients [Spearman's rho = -0.94, p <0.001].
Conclusion:
Baseline DNA methylation profiles may be used as a predictor for anti-TNF drug concentration at week 14 to identify patients who may benefit from dose optimisation at the outset of anti-TNF therapy.
Insights
Baseline DNA methylation patterns can predict anti-tumour necrosis factor [TNF] drug levels in inflammatory bowel disease [IBD] patients. This may help optimize initial treatment strategies for better outcomes.
Area of Science:
- Epigenetics and Immunology
- Pharmacogenomics in Inflammatory Bowel Disease
Background:
- Treatment failure with anti-tumour necrosis factor [TNF] therapy is common in inflammatory bowel disease [IBD].
- Low drug concentrations are frequently associated with treatment failure.
- Identifying patients who may benefit from dose optimization early in therapy is crucial.
Purpose of the Study:
- To identify epigenetic biomarkers in whole blood at baseline.
- To associate these biomarkers with anti-TNF drug concentrations at week 14.
- To enable early identification of patients for potential dose optimization.
Main Methods:
- DNA methylation analysis using Illumina EPIC Beadchip on 1104 whole blood samples from 385 IBD patients in the PANTS study.
- Assessment at baseline and weeks 14, 30, and 54.
- Comparison of methylation profiles between responders and non-responders to anti-TNF therapy.
Main Results:
- Observed 4999 differentially methylated positions [DMPs] annotated to 2376 genes between baseline and week 14.
- Identified 323 baseline DMPs associated with higher anti-TNF drug concentrations at week 14.
- Found 20 DMPs associated with both anti-TNF drug concentration and primary non-response, with a strong negative correlation.
Conclusions:
- Baseline DNA methylation profiles show potential as predictors of anti-TNF drug concentration at week 14.
- This predictive capability can guide early dose optimization strategies for anti-TNF therapy in IBD.
- Epigenetic biomarkers may improve treatment efficacy and patient outcomes.
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Drugs for Treatment of Crohn's Disease in IBD Using Immunomodulatory Agents
Drugs for Treatment of Crohn's Disease in IBD Using Glucocorticoids

