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Molecular Mechanisms Underlying the Higher Prevalence of Anemia in Crohn's Disease Compared with Ulcerative Colitis:
Dragos-Florin Tesoi1,2, Laura Mihaela Trandafir1,2, Laura Bozomitu1,2
1Grigore T. Popa University of Medicine and Pharmacy, 700115 Iasi, Romania.
Insights
Anemia is more common in Crohn's disease (CD) than ulcerative colitis (UC). CD-associated gut bacteria may use siderophores to scavenge iron, contributing to anemia in inflammatory bowel disease (IBD).
Area of Science:
- Gastroenterology
- Microbiome Research
- Nutritional Science
Background:
- Anemia is a frequent complication of inflammatory bowel disease (IBD), with higher rates in Crohn's disease (CD) versus ulcerative colitis (UC).
- While inflammation, poor iron absorption, and blood loss are known causes, microbiome influences on iron availability are understudied.
- CD-associated dysbiosis shows increased siderophore-producing bacteria, potentially reducing host iron.
Purpose of the Study:
- To systematically review and analyze comparative microbiome studies of CD and UC.
- To investigate the role of microbiome-mediated iron competition in anemia within IBD.
- To explore microbial differences between CD and UC patients.
Main Methods:
- Systematic review of comparative microbiome studies published between 2016 and 2026.
- Analysis focused on studies directly comparing microbial differences between CD and UC.
- Evaluation of evidence for siderophore-producing bacteria and their association with iron metabolism.
Main Results:
- CD microbiota consistently showed enrichment in siderophore-associated taxa compared to UC.
- Emerging evidence links CD-associated dysbiosis to increased abundance of siderophore-producing bacteria.
- Siderophores may compete with host iron acquisition and reduce bioavailability.
Conclusions:
- Microbiome-driven iron competition is a plausible contributing factor to anemia in CD.
- The findings support a biological interaction between microbial iron-scavenging and host iron metabolism in IBD.
- Further in vivo studies are needed to quantify siderophore activity in IBD.
Abstract:
Anemia represents one of the most frequent systemic complications of inflammatory bowel disease (IBD), with a consistently higher prevalence reported in patients with Crohn's disease (CD) compared with ulcerative colitis (UC). While chronic inflammation, impaired iron absorption, and intestinal blood loss are recognized contributors, microbiome-mediated mechanisms influencing host iron availability remain insufficiently explored. Emerging evidence indicates that CD-associated dysbiosis is characterized by an increased abundance of siderophore-producing bacteria, particularly members of the Enterobacteriaceae family. Because siderophores are high-affinity iron-chelating molecules capable of competing with host iron acquisition systems and partially escaping lipocalin-2-mediated sequestration, their expansion may contribute to reduced luminal iron bioavailability. In this systematic review, we analyzed comparative microbiome studies published between 2016 and 2026 that directly evaluated microbial differences between CD and UC. CD microbiota consistently demonstrated enrichment in siderophore-associated taxa relative to UC. Based on these findings, we propose that microbiome-driven iron competition may represent an additional mechanistic contributor to the increased prevalence and persistence of anemia observed in CD. Although direct in vivo quantification of siderophore activity in IBD remains limited, the convergence of ecological, functional, and strain-level microbiome evidence supports a biologically plausible interaction between microbial iron-scavenging strategies and host iron metabolism.
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