Long-term follow-up in common variable immunodeficiency: the pediatric-onset and adult-onset landscape
Maria Carrabba1, Marco Salvi2, Lucia Augusta Baselli3
1Internal Medicine Department, RITA-ERN Center, Fondazione IRCCS Ca' Granda Ospedale Maggiore Policlinico di Milano, Milan, Italy.
Insights
Pediatric-onset Common Variable Immunodeficiency (CVID) patients face double the risk of immune dysregulation complications compared to adults. Early detection of CD21 low B cells in children and transitional B cells in adults can predict these risks.
Area of Science:
- Immunology
- Clinical Medicine
- Longitudinal Studies
Background:
- Common Variable Immunodeficiency (CVID) is a primary immunodeficiency characterized by impaired antibody production and increased susceptibility to infections.
- Distinguishing between pediatric-onset and adult-onset CVID is crucial as clinical manifestations and disease progression can differ significantly.
- Identifying early predictive markers for immune dysregulation is essential for timely intervention and improved patient outcomes.
Purpose of the Study:
- To investigate the longitudinal evolution of clinical and laboratory characteristics in pediatric-onset and adult-onset CVID patients.
- To identify early predictive features for disease progression and immune dysregulation complications.
- To compare immunological features and complications between pediatric-onset and adult-onset CVID cohorts.
Main Methods:
- Retrospective-prospective monocentric longitudinal study from 1984 to 2021.
- Comparison of immunological features and infectious/non-infectious complications at diagnosis and follow-up.
- Analysis of lymphocyte subsets, including CD21 low B cells and transitional B cells, as potential prognostic markers.
Main Results:
- Infections were present in 89% of CVID patients at diagnosis; immune dysregulation in 42.5%.
- Adult-onset CVID showed higher prevalence of polyclonal lymphoid proliferation and autoimmunity compared to pediatric-onset.
- CD21 low B cells in pediatric-onset and transitional B cells in adult-onset CVID at diagnosis predicted future immune dysregulation.
Conclusions:
- Longitudinal evaluation of lymphocyte subsets combined with clinical phenotype aids in predicting lymphoid proliferation.
- Early detection of specific B cell subsets can improve the prediction and management of CVID complications.
- Pediatric-onset CVID patients have a higher risk of immune dysregulation complications, especially with diagnostic delay.
Introduction:
The primary aim of this study is to investigate the evolution of the clinical and laboratory characteristics during the time in a longitudinal cohort of pediatric-onset and adult-onset Common Variable Immunodeficiency (CVID) patients in order to identify early predictive features of the disease and immune dysregulation complications.
Methods:
This is a retrospective-prospective monocentric longitudinal study spanning from 1984 to the end of 2021. The data of pediatric-onset vs. adult-onset patients have been compared for immunological features and for infectious and non-infectious complications assessed at diagnosis and follow-up.
Results:
Seventy-three CVID patients have been enrolled, with a mean of 10.0 years (SD ± 8.17) of prospective follow-up. At diagnosis, infections were observed in 89.0% of patients and immune dysregulation in 42.5% of patients. At diagnosis, 38.6% of pediatric-onset and 20.7% of adult-onset patients presented with only infections. Polyclonal lymphoid proliferation (62.1%) and autoimmunity (51.7%) were more prevalent in the adult-onset than in the pediatric-onset group (polyclonal lymphoid proliferation 52.3% and autoimmunity 31.8%, respectively). Enteropathy was present in 9.1% of pediatric-onset and 17.2% of adult-onset patients. The prevalence of polyclonal lymphoid proliferation increased during follow-up more in pediatric-onset patients (diagnosis 52.3%-follow-up 72.7%) than in adult-onset patients (diagnosis 62.1%-follow-up 72.7%). The cumulative risk to develop immune dysregulation increases according to the time of disease and the time of diagnostic delay. At the same age, pediatric-onset patients have roughly double the risk of having a complication due to immune dysregulation than adult-onset patients, and it increases with diagnostic delay. The analysis of lymphocyte subsets in the pediatric-onset group showed that CD21 low B cells at diagnosis may be a reliable prognostic marker for the development of immune dysregulation during follow-up, as the ROC curve analysis showed (AUC = 0.796). In the adult-onset group, the percentage of transitional B cells measured at diagnosis showed a significant accuracy (ROC AUC = 0.625) in identifying patients at risk of developing immune dysregulation.
Discussion:
The longitudinal evaluation of lymphocyte subsets combined with clinical phenotype can improve the prediction of lymphoid proliferation and allow experts to achieve early detection and better management of such complex disorder.
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