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Published on: September 7, 2022
The Complex Interplay of Malaria and EBV in Burkitt Lymphoma
Rosemary Rochford1, Sam M Mbulaiteye2
1Department of Immunology and Microbiology, University of Colorado School of Medicine, Aurora, CO 80045, USA.
Insights
Epstein-Barr virus (EBV) and malaria coinfection in children create a dual-edged risk for Burkitt lymphoma (BL). Malaria control is crucial for preventing this aggressive childhood cancer.
Area of Science:
- Oncology
- Infectious Disease
- Immunology
Background:
- Burkitt lymphoma (BL) is an aggressive childhood cancer prevalent in sub-Saharan Africa.
- Its incidence correlates with endemic malaria and Epstein-Barr virus (EBV) infection.
- The synergistic mechanisms between these pathogens remain unclear.
Purpose of the Study:
- To propose an integrated model for endemic BL etiology.
- To synthesize epidemiological, immunological, and molecular evidence.
- To elucidate the dual role of EBV in malaria and oncogenesis.
Main Methods:
- Review of current epidemiological data.
- Analysis of immunological evidence.
- Synthesis of molecular findings.
Main Results:
- EBV may offer short-term survival benefits against severe malaria but increases long-term oncogenic risk.
- Malaria triggers B-cell activation, raising the risk of c-MYC translocations.
- EBV latency I infection rescues c-MYC-translocated B-cells from apoptosis.
Conclusions:
- Endemic BL is a "tumor of malaria survivors," appearing years after peak malaria risk.
- Malaria control is a vital cancer control strategy.
- Further prospective studies are needed to validate these pathways.
Abstract:
Burkitt lymphoma (BL) is an aggressive B-cell lymphoma endemic in children in regions of sub-Saharan Africa, where its incidence geographically overlaps holoendemic Plasmodium falciparum malaria and poorly controlled childhood Epstein-Barr virus (EBV) infection. Despite decades of research, the precise mechanistic synergy between these two pathogens remains incompletely defined. This review synthesizes current epidemiological, immunological, and molecular evidence to propose an integrated model for the etiology of endemic BL. We outline a paradoxical, dual-edged relationship wherein EBV infection during infancy may provide a short-term child survival advantage against severe malaria while simultaneously increasing the long-term oncogenic risk in B-cells infected by EBV. P. falciparum infection triggers polyclonal B-cell activation, increasing the probability of an activation-induced cytidine deaminase (AID)-mediated c-MYC translocation in proportion to the recurrent parasite burden. Concurrently, EBV expands within this B-cell pool and modulates the host immune response, potentially through viral interleukin-10 (vIL-10), to prevent lethal malarial inflammation. At the cellular level, EBV provides a critical "second hit" when it establishes latency I infection that rescues c-MYC-translocated B-cells from apoptosis. This framework explains why BL manifests as a "tumor of malaria survivors," peaking in incidence years after the highest-risk period for malaria mortality. Ultimately, this model underscores that malaria control is a critical form of cancer control and highlights key future directions for validating these pathways in prospective clinical studies.
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