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Imaging Features of Systemic Sclerosis-Associated Interstitial Lung Disease
Published on: June 16, 2020
Disease Course, Treatments, and Outcomes of Children With Systemic Juvenile Idiopathic Arthritis-Associated Lung
Yannan Huang1, Laura Sompii-Montgomery1, Jessica Patti1
1Cincinnati Children's Hospital Medical Center, Cincinnati, Ohio.
Insights
Systemic juvenile idiopathic arthritis-associated lung disease (SJIA-LD) often leads to chronic respiratory support needs, though mortality is lower than expected. Treatment approaches for SJIA-LD are highly variable, indicating a need for clinical trials.
Area of Science:
- Rheumatology
- Pulmonology
- Genetics
Background:
- Systemic juvenile idiopathic arthritis-associated lung disease (SJIA-LD) is a severe complication with unclear clinical trajectories and treatment needs.
- Understanding SJIA-LD's course and outcomes is crucial for patient management.
Purpose of the Study:
- To detail management strategies for SJIA-LD.
- To characterize the disease course and long-term outcomes of SJIA-LD.
- To identify potential biomarkers associated with SJIA-LD.
Main Methods:
- Prospective cohort study involving 41 patients with SJIA-LD.
- Clinical data abstraction from electronic medical records.
- Serum biomarker analysis including IL-18, CXCL9, and MMP7, correlated with disease presence.
Main Results:
- 93% of patients survived at median 2.9 years, but 37% required respiratory support.
- 84% carried the HLA-DRB1*15 haplotype; elevated IL-18 and MMP7 were noted.
- Treatment strategies varied, with mixed outcomes and least improvement in imaging features.
Conclusions:
- SJIA-LD presents with diverse clinical courses, lower mortality than previously thought, but frequent hypoxia.
- Current treatment strategies for SJIA-LD are highly variable.
- There is an urgent need for focused clinical trials to optimize SJIA-LD management.
Objective:
Systemic juvenile idiopathic arthritis-associated lung disease (SJIA-LD) is a life-threatening disease complication. Key questions remain regarding clinical course and optimal treatment approaches. The objectives of the study were to detail management strategies after SJIA-LD detection, characterize overall disease courses, and measure long-term outcomes.
Methods:
This was a prospective cohort study. Clinical data were abstracted from the electronic medical record, including current clinical status and changes since diagnosis. Serum biomarkers were determined and correlated with presence of LD.
Results:
We enrolled 41 patients with SJIA-LD, 85% with at least one episode of macrophage activation syndrome and 41% with adverse reactions to a biologic. Although 93% of patients were alive at last follow-up (median 2.9 years), 37% progressed to requiring chronic oxygen or other ventilator support, and 65% of patients had abnormal overnight oximetry studies, which changed over time. Eighty-four percent of patients carried the HLA-DRB1*15 haplotype, significantly more than patients without LD. Patients with SJIA-LD also showed markedly elevated serum interleukin-18 (IL-18), variable C-X-C motif chemokine ligand 9 (CXCL9), and significantly elevated matrix metalloproteinase 7. Treatment strategies showed variable use of anti-IL-1/6 biologics and addition of other immunomodulatory treatments and lung-directed therapies. We found a broad range of current clinical status independent of time from diagnosis or continued biologic treatment. Multidomain measures of change showed imaging features were the least likely to improve with time.
Conclusion:
Patients with SJIA-LD had highly varied courses, with lower mortality than previously reported but frequent hypoxia and requirement for respiratory support. Treatment strategies were highly varied, highlighting an urgent need for focused clinical trials.
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