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Updated: Jul 18, 2025

Isolation and Th17 Differentiation of Naïve CD4 T Lymphocytes
Published on: September 26, 2013
Elevation of IL-17 Cytokines Distinguishes Kawasaki Disease From Other Pediatric Inflammatory Disorders
Kailey E Brodeur1, Meng Liu2, Daniel Ibanez1
1Boston Children's Hospital, Boston, Massachusetts.
Insights
Interleukin-17 (IL-17) family cytokines are elevated in Kawasaki disease (KD), distinguishing it from other pediatric inflammatory conditions. This finding aids in diagnosing KD and preventing coronary artery aneurysms.
Area of Science:
- Pediatric rheumatology
- Immunology
- Proteomics
Background:
- Kawasaki disease (KD) is a critical pediatric vasculitis potentially leading to coronary artery aneurysms.
- Accurate differentiation of KD from other inflammatory diseases is essential for timely treatment.
Purpose of the Study:
- To identify reliable diagnostic protein biomarkers for Kawasaki disease.
- To distinguish KD from other pediatric inflammatory conditions using proteomic profiling.
Main Methods:
- Proximity extension assay used to profile proinflammatory mediators in plasma from KD patients and various pediatric inflammatory disease cohorts.
- Validation of key findings using serum samples from additional KD and febrile control patients.
Main Results:
- Distinct cytokine and chemokine expression patterns identified across pediatric inflammatory diseases.
- Elevated levels of Interleukin-17 (IL-17) family cytokines (IL-17A, IL-17C, IL-17F) were characteristic of KD, differentiating it from MIS-C and other febrile illnesses.
- IL-17A demonstrated high sensitivity and specificity in discriminating KD from febrile controls.
Conclusions:
- Elevation of IL-17 family cytokines serves as a potential hallmark for Kawasaki disease.
- These IL-17 cytokines may assist in distinguishing KD from its clinical mimics, improving diagnostic accuracy.
Objective:
Kawasaki disease (KD) is a systemic vasculitis of young children that can lead to development of coronary artery aneurysms. We aimed to identify diagnostic markers to distinguish KD from other pediatric inflammatory diseases.
Methods:
We used the proximity extension assay to profile proinflammatory mediators in plasma samples from healthy pediatric controls (n = 30), febrile controls (n = 26), and patients with KD (n = 23), multisystem inflammatory syndrome in children (MIS-C; n = 25), macrophage activation syndrome (n = 13), systemic and nonsystemic juvenile idiopathic arthritis (n = 14 and n = 10, respectively), and juvenile dermatomyositis (n = 9). We validated the key findings using serum samples from additional patients with KD (n = 37) and febrile controls (n = 28).
Results:
High-fidelity proteomic profiling revealed distinct patterns of cytokine and chemokine expression across pediatric inflammatory diseases. Although KD and MIS-C exhibited many similarities, KD differed from MIS-C and other febrile diseases in that most patients exhibited elevation in one or more members of the interleukin-17 (IL-17) cytokine family, IL-17A, IL-17C, and IL-17F. IL-17A was particularly sensitive and specific, discriminating KD from febrile controls with an area under the receiver operator characteristic curve of 0.95 (95% confidence interval 0.89-1.00) in the derivation set and 0.91 (0.85-0.98) in the validation set. Elevation of all three IL-17-family cytokines was observed in over 50% of KD patients, including 19 of 20 with coronary artery aneurysms, but was rare in all other comparator groups.
Conclusion:
Elevation of IL-17 family cytokines is a hallmark of KD and may help distinguish KD from its clinical mimics.
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