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Predictive Immune Modeling of Solid Tumors
Published on: February 25, 2020
SCID genotype and 6-month posttransplant CD4 count predict survival and immune recovery
Elie Haddad1, Brent R Logan2, Linda M Griffith3
1Pediatric Immunology and Rheumatology Division, CHU Sainte-Justine, University of Montreal, Montreal, QC, Canada.
Insights
Hematopoietic cell transplantation (HCT) outcomes for severe combined immunodeficiency (SCID) depend on the specific genetic defect. Early immune monitoring after HCT is crucial for tailoring treatment and improving survival in SCID patients.
Area of Science:
- Immunology
- Hematology
- Genetics
Background:
- Severe combined immunodeficiency (SCID) is a group of rare genetic disorders characterized by profound defects in the immune system.
- Hematopoietic cell transplantation (HCT) is a primary treatment for SCID, aiming to restore immune function.
Purpose of the Study:
- To analyze the outcomes of HCT in a large cohort of SCID patients.
- To identify factors influencing survival and immune reconstitution after HCT for SCID.
- To explore the prognostic significance of SCID genotype and immune cell counts post-transplant.
Main Methods:
- Retrospective analysis of 662 SCID patients who underwent HCT as first-line treatment.
- Data collected from 33 North American institutions between 1982 and 2012.
- Multivariate analysis to assess the impact of donor type, SCID genotype, conditioning regimen, and immune cell counts on outcomes.
Main Results:
- Overall survival was higher with matched-sibling donors (MSDs).
- SCID genotype significantly influenced survival and immune reconstitution in non-MSD HCT recipients, with specific mutations showing better outcomes.
- Reduced-intensity or myeloablative conditioning improved T- and B-cell reconstitution but increased graft-versus-host disease risk.
- CD4+ and CD4+CD45RA+ cell counts at 6 and 12 months post-HCT predicted overall survival and long-term T-cell recovery.
Conclusions:
- Patient-tailored treatment strategies based on SCID genotype are essential.
- Close monitoring of immune reconstitution, particularly CD4+ cell counts, post-HCT is critical for identifying patients needing further intervention and improving long-term outcomes.
Abstract:
The Primary Immune Deficiency Treatment Consortium (PIDTC) performed a retrospective analysis of 662 patients with severe combined immunodeficiency (SCID) who received a hematopoietic cell transplantation (HCT) as first-line treatment between 1982 and 2012 in 33 North American institutions. Overall survival was higher after HCT from matched-sibling donors (MSDs). Among recipients of non-MSD HCT, multivariate analysis showed that the SCID genotype strongly influenced survival and immune reconstitution. Overall survival was similar for patients with RAG, IL2RG, or JAK3 defects and was significantly better compared with patients with ADA or DCLRE1C mutations. Patients with RAG or DCLRE1C mutations had poorer immune reconstitution than other genotypes. Although survival did not correlate with the type of conditioning regimen, recipients of reduced-intensity or myeloablative conditioning had a lower incidence of treatment failure and better T- and B-cell reconstitution, but a higher risk for graft-versus-host disease, compared with those receiving no conditioning or immunosuppression only. Infection-free status and younger age at HCT were associated with improved survival. Typical SCID, leaky SCID, and Omenn syndrome had similar outcomes. Landmark analysis identified CD4+ and CD4+CD45RA+ cell counts at 6 and 12 months post-HCT as biomarkers predictive of overall survival and long-term T-cell reconstitution. Our data emphasize the need for patient-tailored treatment strategies depending upon the underlying SCID genotype. The prognostic significance of CD4+ cell counts as early as 6 months after HCT emphasizes the importance of close follow-up of immune reconstitution to identify patients who may need additional intervention to prevent poor long-term outcome.
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