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Published on: December 15, 2017
Non-Invasive Multimarker Strategy Combining IL-17A, Neutrophil-Albumin Ratio, and Fecal Calprotectin for Accurate
Gamal Othman1, Maysaa El Sayed Zaki2, Nader Elmalki Elmalki3
1Department of Basic Medical Sciences, College of Medicine, AlMaarefa University, Riyadh 24341, Saudi Arabia.
Abstract:
Differentiating inflammatory bowel disease (IBD) from diarrhea-predominant irritable bowel syndrome (IBS-D) remains a major clinical challenge due to overlapping symptoms and the limited specificity of single biomarkers. A reliable, non-invasive multimarker approach is needed to improve diagnostic accuracy and reduce unnecessary endoscopic procedures. To evaluate the diagnostic performance of serum interleukin-17A (IL-17A), neutrophil-to-albumin ratio (NAR), and fecal calprotectin (FCP), individually and in combination, for discriminating IBD from IBS-D and healthy controls in Egyptian patients. In this case-control study, 300 participants (100 with IBD, 100 with IBS-D, and 100 healthy controls) were enrolled. Serum IL-17A, NAR, and FCP were measured, and subgroup analysis was performed for infected and non-infected IBS-D patients. Diagnostic performance was assessed using receiver operating characteristic (ROC) curve analysis, with optimal cutoffs determined by the Youden index. A combined biomarker model was constructed using logistic regression. All biomarkers demonstrated a significant stepwise increase from healthy controls to IBS-D and IBD (p < 0.001). IL-17A, NAR, and FCP were elevated in IBS-D compared with controls, indicating low-grade inflammation, but were highest in IBD. No significant differences were observed between infected and non-infected IBS-D patients. Among individual markers, NAR showed the highest diagnostic accuracy (AUC = 0.923), followed by FCP (AUC = 0.884) and IL-17A (AUC = 0.859). The combined model significantly improved performance (AUC = 0.973), achieving 89% sensitivity and 96% specificity. IBS-D is associated with measurable systemic and intestinal inflammation independent of infection status. The combined biomarker model integrating IL-17A, neutrophil-albumin ratio, and fecal calprotectin demonstrated promising discriminatory performance for differentiating IBD from IBS-D. These findings suggest the potential applicability of combined non-invasive biomarkers in future diagnostic stratification approaches. However, the model was developed and evaluated within a single cohort, and external validation in independent populations is required before future potential clinical application. A multimarker diagnostic panel integrating IL-17A, neutrophil-albumin ratio, and fecal calprotectin demonstrated promising diagnostic performance for differentiating inflammatory bowel disease from IBS-D. The combined model may contribute to future diagnostic stratification strategies in patients with chronic diarrhea. However, these findings were derived from a single cohort and require validation in independent populations before broader clinical application.
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