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Genetic errors of immunity distinguish pediatric nonmalignant lymphoproliferative disorders
Lisa R Forbes1, Olive S Eckstein2, Nitya Gulati2
1Department of Pediatrics, Baylor College of Medicine, Houston, Tex; Texas Children's Hospital, Houston, Tex; Division of Pediatric Immunology/Allergy/Retrovirology, Texas Children's Hospital, Houston, Tex.
Insights
Whole exome sequencing identified genetic immune defects in over half of pediatric nonmalignant lymphoproliferative disorders (PLPD). Genetic diagnoses improved survival and guided targeted treatments for children with PLPD.
Area of Science:
- Genetics
- Immunology
- Pediatrics
Background:
- Pediatric nonmalignant lymphoproliferative disorders (PLPD) are a heterogeneous group of conditions.
- These disorders can be life-threatening due to immune dysregulation and lymphoproliferation.
- Limited data exists for guiding the evaluation and treatment of pediatric PLPD.
Purpose of the Study:
- To identify the spectrum of genomic immunologic defects in pediatric nonmalignant lymphoproliferative disorders (PLPD).
- To characterize clinical outcomes in relation to genetic diagnoses.
- To explore associations between genetic findings and patient outcomes.
Main Methods:
- Defined PLPD by persistent lymphadenopathy or organ involvement (>3 months), with or without Epstein-Barr virus (EBV) infection.
- Analyzed 51 subjects from 47 families using whole exome sequencing.
- Correlated genetic diagnoses with clinical outcomes, including survival rates.
Main Results:
- Whole exome sequencing revealed genetic errors of immunity in 53-65% of affected children.
- Genetic etiology was linked to younger age and hemophagocytic lymphohistiocytosis.
- Patients with genetic diagnoses had significantly higher 10-year survival (82%) compared to those without (48%).
- Individuals with EBV-associated PLPD and a genetic explanation had better survival (90%) than those without (17%).
- Molecular diagnoses enabled targeted treatments for 18 individuals and management changes for 12.
Conclusions:
- Pediatric nonmalignant lymphoproliferative disorders (PLPD) confer a high mortality risk.
- Whole exome sequencing is crucial for identifying clinical risks and therapeutic targets in PLPD.
- Genetic findings significantly impact survival and treatment strategies for children with PLPD.
Background:
Pediatric nonmalignant lymphoproliferative disorders (PLPDs) are clinically and genetically heterogeneous. Long-standing immune dysregulation and lymphoproliferation in children may be life-threatening, and a paucity of data exists to guide evaluation and treatment of children with PLPD.
Objective:
The primary objective of this study was to ascertain the spectrum of genomic immunologic defects in PLPD. Secondary objectives included characterization of clinical outcomes and associations between genetic diagnoses and those outcomes.
Methods:
PLPD was defined by persistent lymphadenopathy, lymph organ involvement, or lymphocytic infiltration for more than 3 months, with or without chronic or significant Epstein-Barr virus (EBV) infection. Fifty-one subjects from 47 different families with PLPD were analyzed using whole exome sequencing.
Results:
Whole exome sequencing identified likely genetic errors of immunity in 51% to 62% of families (53% to 65% of affected children). Presence of a genetic etiology was associated with younger age and hemophagocytic lymphohistiocytosis. Ten-year survival for the cohort was 72.4%, and patients with viable genetic diagnoses had a higher survival rate (82%) compared to children without a genetic explanation (48%, P = .03). Survival outcomes for individuals with EBV-associated disease and no genetic explanation were particularly worse than outcomes for subjects with EBV-associated disease and a genetic explanation (17% vs 90%; P = .002). Ascertainment of a molecular diagnosis provided targetable treatment options for up to 18 individuals and led to active management changes for 12 patients.
Conclusions:
PLPD defines children at high risk for mortality, and whole exome sequencing informs clinical risks and therapeutic opportunities for this diagnosis.
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