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Baseline Serum and Stool Microbiome Biomarkers Predict Clinical Efficacy and Tissue Molecular Response After
Mina Hassan-Zahraee1, Zhan Ye1, Li Xi1
1Pfizer Inc, Cambridge, MA, USA.
Background And Aims:
Ritlecitinib, an oral JAK3/TEC family kinase inhibitor, was well-tolerated and efficacious in the phase 2b VIBRATO study in participants with moderate-to-severe ulcerative colitis [UC]. The aim of this study was to identify baseline serum and microbiome markers that predict subsequent clinical efficacy and to develop noninvasive serum signatures as potential real-time noninvasive surrogates of clinical efficacy after ritlecitinib.
Methods:
Tissue and peripheral blood proteomics, transcriptomics, and faecal metagenomics were performed on samples before and after 8 weeks of oral ritlecitinib induction therapy [20 mg, 70 mg, 200 mg, or placebo once daily, N = 39, 41, 33, and 18, respectively]. Linear mixed models were used to identify baseline and longitudinal protein markers associated with efficacy. The combined predictivity of these proteins was evaluated using a logistic model with permuted efficacy data. Differential expression of faecal metagenomics was used to differentiate responders and nonresponders.
Results:
Peripheral blood serum proteomics identified four baseline serum markers [LTA, CCL21, HLA-E, MEGF10] predictive of modified clinical remission [MR], endoscopic improvement [EI], histological remission [HR], and integrative score of tissue molecular improvement. In responders, 37 serum proteins significantly changed at Week 8 compared with baseline [false discovery rate of <0.05]; of these, changes in four [IL4R, TNFRSF4, SPINK4, and LAIR-1] predicted concurrent EI and HR responses. Faecal metagenomics analysis revealed baseline and treatment response signatures that correlated with EI, MR, and tissue molecular improvement.
Conclusions:
Blood and microbiome biomarkers stratify endoscopic, histological, and tissue molecular responses to ritlecitinib, which may help guide future precision medicine approaches to UC treatment. ClinicalTrials.gov NCT02958865.
Insights
Biomarkers in blood and gut microbiome predict treatment response in ulcerative colitis patients receiving ritlecitinib. These findings may enable personalized medicine for ulcerative colitis (UC).
Area of Science:
- Gastroenterology and Immunology
- Pharmacogenomics and Precision Medicine
Background:
- Ritlecitinib, an oral JAK3/TEC family kinase inhibitor, demonstrated safety and efficacy in moderate-to-severe ulcerative colitis (UC).
- Identifying predictive biomarkers is crucial for optimizing treatment strategies in UC.
Purpose of the Study:
- To identify baseline serum and microbiome markers predicting clinical efficacy of ritlecitinib in UC.
- To develop noninvasive serum signatures as real-time surrogates for ritlecitinib efficacy.
Main Methods:
- Analysis of peripheral blood and faecal samples using proteomics, transcriptomics, and metagenomics before and after 8 weeks of ritlecitinib therapy.
- Application of linear mixed models and logistic regression to identify predictive protein markers.
- Differential expression analysis of faecal metagenomics to distinguish responders from nonresponders.
Main Results:
- Four baseline serum markers (LTA, CCL21, HLA-E, MEGF10) predicted clinical remission, endoscopic improvement, and histological remission.
- Changes in four serum proteins (IL4R, TNFRSF4, SPINK4, LAIR-1) at Week 8 predicted concurrent endoscopic and histological responses.
- Faecal metagenomics revealed baseline and treatment response signatures correlated with clinical and molecular improvements.
Conclusions:
- Blood and microbiome biomarkers effectively stratify responses to ritlecitinib in UC.
- These biomarkers may facilitate precision medicine approaches for UC treatment.
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