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Updated: Jun 11, 2025

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Immune Cell Profiles of Patients with Sickle Cell Disease during Parvovirus B19-Induced Transient Red Cell Aplasia
E Kaitlynn Allen1, Rhiannon R Penkert2, Jane S Hankins3,4
1Department of Immunology, St. Jude Children's Research Hospital, Memphis, TN 38105, USA.
Insights
Parvovirus B19 infection in children with sickle cell disease (SCD) can cause immune abnormalities. Further research is needed to develop a parvovirus B19 vaccine to prevent complications in these vulnerable children.
Area of Science:
- Pediatric Hematology
- Virology
- Immunology
Background:
- Parvovirus B19 infection typically causes mild illness in healthy children.
- Children with sickle cell disease (SCD) are at high risk for severe outcomes, including transient red cell aplasia (TRCA) and life-threatening anemia, following parvovirus B19 exposure.
- Chronic inflammation in SCD and parvovirus B19's association with autoimmunity prompted investigation into immune abnormalities.
Purpose of the Study:
- To investigate if parvovirus B19 infections contribute to acute and chronic immune abnormalities in children with SCD.
- To identify distinct immune response phenotypes associated with parvovirus B19 infection in pediatric SCD patients.
Main Methods:
- Evaluated 19 hospitalized SCD patients with parvovirus B19-induced TRCA.
- Conducted blood tests including complete blood count (CBC), flow cytometry, and antibody isotype analyses.
- Performed cytokine/chemokine analyses on nasal wash (NW) samples.
Main Results:
- Identified two mutually exclusive immune phenotype clusters based on blood cell counts, cytokine profiles, and immune cell populations.
- Cluster 1, associated with successful adaptive immunity and virus control, included higher white blood cell count (WBC) and absolute neutrophil count (ANC).
- Cluster 2, associated with higher virus load, included increased plasmablasts and memory B and T cell phenotypes, negatively correlating with parvovirus-specific IgG.
Conclusions:
- Parvovirus B19 infection induces distinct acute immune abnormalities in children with SCD.
- These immune changes may potentially exacerbate chronic inflammation in SCD patients.
- A rapid parvovirus B19 vaccine development is crucial to prevent severe sequelae in children with SCD.
Abstract:
Parvovirus B19 frequently infects children and targets cells of the erythroid lineage. Although healthy children rarely suffer severe disease, children with sickle cell disease (SCD) can experience transient red cell aplasia (TRCA), hospitalization, and life-threatening anemia upon first virus exposure. Given that children with SCD can also suffer chronic inflammation and that parvovirus B19 has been associated with autoimmune disease in other patient populations, we asked if parvovirus B19 infections contributed to acute and chronic immune abnormalities in children with SCD. Nineteen hospitalized patients with SCD and parvovirus B19-induced TRCA were evaluated. Blood tests included CBC, flow cytometry, and total antibody isotype analyses. Cytokine/chemokine analyses were performed on nasal wash (NW) samples, representing a common site of viral entry. Unusually high white blood cell count (WBC) and absolute neutrophil count (ANC) values were observed in some patients. A correlation matrix with Day 0 values from the 19 patients then identified two mutually exclusive phenotype clusters. Cluster 1 included WBC, ANC, absolute reticulocyte count (ARC), absolute lymphocyte count (ALC), lactate dehydrogenase (LDH), NW cytokines/chemokines, % naïve cells among B cell and T cell populations, and parvovirus-specific IgG. This cluster was negatively associated with virus load, suggesting a signature of successful adaptive immunity and virus control. Cluster 2 included virus load, % CD38+CD24- cells among CD19+ B cells (termed 'plasmablasts' for simplicity), % HLA-DRlow cells among CD19+ B cells, IgG4, and % memory phenotypes among B cell and T cell populations. Plasmablast percentages correlated negatively with parvovirus-specific IgG, possibly reflecting a non-specific trigger of cell activation. All patients were released from the hospital within 1 week after admission, and the highest WBC and ANC values were eventually reduced. Nonetheless, a concern remained that the acutely abnormal immune profiles caused by parvovirus B19 infections could exacerbate chronic inflammation in some patients. To avoid the numerous sequelae known to affect patients with SCD following hospitalizations with parvovirus B19, rapid development of a parvovirus B19 vaccine is warranted.
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