TY - JOUR
T1 - Longitudinal multi-omics analysis identifies early blood-based predictors of anti-TNF therapy response in inflammatory bowel disease
AU - SYSCID Consortium
AU - Mishra, Neha
AU - Aden, Konrad
AU - Blase, Johanna I.
AU - Baran, Nathan
AU - Bordoni, Dora
AU - Tran, Florian
AU - Conrad, Claudio
AU - Avalos, Diana
AU - Jaeckel, Charlot
AU - Scherer, Michael
AU - Sørensen, Signe B.
AU - Overgaard, Silja H.
AU - Schulte, Berenice
AU - Nikolaus, Susanna
AU - Rey, Guillaume
AU - Gasparoni, Gilles
AU - Lyons, Paul A.
AU - Schultze, Joachim L.
AU - Walter, Jörn
AU - Andersen, Vibeke
AU - Banos, Aggelos
AU - Bertsias, George
AU - Beyer, Marc
AU - Boumpas, Dimitrios
AU - Finckh, Axel
AU - Franke, Andre
AU - Georges, Michel
AU - Gu, Wei
AU - Häsler, Robert
AU - Jawhara, Mohamad
AU - Kenyon, Amy
AU - Kratsch, Christina
AU - Krause, Roland
AU - Lauc, Gordan
AU - Mangino, Massimo
AU - Natoli, Gioacchino
AU - Ostaszewski, Marek
AU - Pezer, Marija
AU - Raes, Jeroen
AU - Rahmouni, Souad
AU - Ramos-Pamplona, Marilou
AU - Reiz, Benedikt
AU - Rosati, Elisa
AU - Sanoudou, Despina
AU - Satagopam, Venkata
AU - Schneider, Reinhard
AU - Schulte-Schrepping, Jonas
AU - Sidiropoulos, Prodromos
AU - Smith, Kenneth G.C.
AU - Spector, Timothy
N1 - Publisher Copyright:
© 2022, The Author(s).
PY - 2022/12
Y1 - 2022/12
N2 - Background and aims: Treatment with tumor necrosis factor α (TNFα) antagonists in IBD patients suffers from primary non-response rates of up to 40%. Biomarkers for early prediction of therapy success are missing. We investigated the dynamics of gene expression and DNA methylation in blood samples of IBD patients treated with the TNF antagonist infliximab and analyzed the predictive potential regarding therapy outcome. Methods: We performed a longitudinal, blood-based multi-omics study in two prospective IBD patient cohorts receiving first-time infliximab therapy (discovery: 14 patients, replication: 23 patients). Samples were collected at up to 7 time points (from baseline to 14 weeks after therapy induction). RNA-sequencing and genome-wide DNA methylation data were analyzed and correlated with clinical remission at week 14 as a primary endpoint. Results: We found no consistent ex ante predictive signature across the two cohorts. Longitudinally upregulated transcripts in the non-remitter group comprised TH2- and eosinophil-related genes including ALOX15, FCER1A, and OLIG2. Network construction identified transcript modules that were coherently expressed at baseline and in non-remitting patients but were disrupted at early time points in remitting patients. These modules reflected processes such as interferon signaling, erythropoiesis, and platelet aggregation. DNA methylation analysis identified remission-specific temporal changes, which partially overlapped with transcriptomic signals. Machine learning approaches identified features from differentially expressed genes cis-linked to DNA methylation changes at week 2 as a robust predictor of therapy outcome at week 14, which was validated in a publicly available dataset of 20 infliximab-treated CD patients. Conclusions: Integrative multi-omics analysis reveals early shifts of gene expression and DNA methylation as predictors for efficient response to anti-TNF treatment. Lack of such signatures might be used to identify patients with IBD unlikely to benefit from TNF antagonists at an early time point.
AB - Background and aims: Treatment with tumor necrosis factor α (TNFα) antagonists in IBD patients suffers from primary non-response rates of up to 40%. Biomarkers for early prediction of therapy success are missing. We investigated the dynamics of gene expression and DNA methylation in blood samples of IBD patients treated with the TNF antagonist infliximab and analyzed the predictive potential regarding therapy outcome. Methods: We performed a longitudinal, blood-based multi-omics study in two prospective IBD patient cohorts receiving first-time infliximab therapy (discovery: 14 patients, replication: 23 patients). Samples were collected at up to 7 time points (from baseline to 14 weeks after therapy induction). RNA-sequencing and genome-wide DNA methylation data were analyzed and correlated with clinical remission at week 14 as a primary endpoint. Results: We found no consistent ex ante predictive signature across the two cohorts. Longitudinally upregulated transcripts in the non-remitter group comprised TH2- and eosinophil-related genes including ALOX15, FCER1A, and OLIG2. Network construction identified transcript modules that were coherently expressed at baseline and in non-remitting patients but were disrupted at early time points in remitting patients. These modules reflected processes such as interferon signaling, erythropoiesis, and platelet aggregation. DNA methylation analysis identified remission-specific temporal changes, which partially overlapped with transcriptomic signals. Machine learning approaches identified features from differentially expressed genes cis-linked to DNA methylation changes at week 2 as a robust predictor of therapy outcome at week 14, which was validated in a publicly available dataset of 20 infliximab-treated CD patients. Conclusions: Integrative multi-omics analysis reveals early shifts of gene expression and DNA methylation as predictors for efficient response to anti-TNF treatment. Lack of such signatures might be used to identify patients with IBD unlikely to benefit from TNF antagonists at an early time point.
KW - Biologics
KW - Biomarker
KW - Intestinal inflammation
KW - Personalized medicine
KW - Therapy response
UR - https://www.scopus.com/pages/publications/85138458387
U2 - 10.1186/s13073-022-01112-z
DO - 10.1186/s13073-022-01112-z
M3 - Article
C2 - 36153599
AN - SCOPUS:85138458387
SN - 1756-994X
VL - 14
JO - Genome Medicine
JF - Genome Medicine
IS - 1
M1 - 110
ER -