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Dynamic Adhesion Assay for the Functional Analysis of Anti-adhesion Therapies in Inflammatory Bowel Disease
Published on: September 20, 2018
Mutational Analysis Identifies Therapeutic Biomarkers in Inflammatory Bowel Disease-Associated Colorectal Cancers
Shahida Din1, Kim Wong2, Mike F Mueller3
1NHS Lothian, Gastrointestinal Unit, Western General Hospital, Edinburgh, Scotland, United Kingdom. sdin@ed.ac.uk.
Abstract:
Purpose: Inflammatory bowel disease-associated colorectal cancers (IBD-CRC) are associated with a higher mortality than sporadic colorectal cancers. The poorly defined molecular pathogenesis of IBD-CRCs limits development of effective prevention, detection, and treatment strategies. We aimed to identify biomarkers using whole-exome sequencing of IBD-CRCs to guide individualized management.Experimental Design: Whole-exome sequencing was performed on 34 formalin-fixed paraffin-embedded primary IBD-CRCs and 31 matched normal lymph nodes. Computational methods were used to identify somatic point mutations, small insertions and deletions, mutational signatures, and somatic copy number alterations. Mismatch repair status was examined.Results: Hypermutation was observed in 27% of IBD-CRCs. All hypermutated cancers were from the proximal colon; all but one of the cancers with hypermutation had defective mismatch repair or somatic mutations in the proofreading domain of DNA POLE Hypermutated IBD-CRCs had increased numbers of predicted neo-epitopes, which could be exploited using immunotherapy. We identified six distinct mutation signatures in IBD-CRCs, three of which corresponded to known mechanisms of mutagenesis. Driver genes were also identified.Conclusions: IBD-CRCs should be evaluated for hypermutation and defective mismatch repair to identify patients with a higher neo-epitope load who may benefit from immunotherapies. Prospective trials are required to determine whether IHC to detect loss of MLH1 expression in dysplastic colonic tissue could identify patients at increased risk of developing IBD-CRC. We identified mutations in genes in IBD-CRCs with hypermutation that might be targeted therapeutically. These approaches would complement and individualize surveillance and treatment programs. Clin Cancer Res; 24(20); 5133-42. ©2018 AACR.
Insights
Inflammatory bowel disease-associated colorectal cancers (IBD-CRC) with hypermutation and defective mismatch repair may benefit from immunotherapy due to increased neo-epitopes. Identifying these biomarkers can personalize IBD-CRC treatment strategies.
Area of Science:
- Oncology
- Gastroenterology
- Genetics
Background:
- Inflammatory bowel disease-associated colorectal cancers (IBD-CRC) exhibit higher mortality than sporadic colorectal cancers.
- The molecular pathogenesis of IBD-CRC remains poorly understood, hindering effective prevention and treatment strategies.
Purpose of the Study:
- To identify biomarkers in IBD-CRC through whole-exome sequencing.
- To guide the development of individualized management strategies for IBD-CRC patients.
Main Methods:
- Whole-exome sequencing of 34 IBD-CRC primary tumors and 31 matched normal lymph nodes.
- Computational analysis to detect somatic mutations, mutational signatures, and copy number alterations.
- Assessment of mismatch repair status.
Main Results:
- Hypermutation was identified in 27% of IBD-CRCs, predominantly in the proximal colon.
- Hypermutated IBD-CRCs often showed defective mismatch repair or mutations in DNA POLE proofreading domain.
- Increased neo-epitopes were observed in hypermutated IBD-CRCs, suggesting potential for immunotherapy.
Conclusions:
- IBD-CRC evaluation for hypermutation and mismatch repair deficiency can identify patients suitable for immunotherapy.
- Further research, including prospective trials, is needed to validate biomarkers like MLH1 expression loss for risk stratification.
- Targeting identified mutations in hypermutated IBD-CRCs could offer novel therapeutic options and personalize patient care.
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