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Published on: October 17, 2025
[Genetic determinants of childhood leukemia]
Daniel Sinnett1, Nina N'Diaye, Damian Labuda
1Service d'hématologie-oncologie, Centre de cancérologie Charles-Bruneau, Hôpital Sainte-Justine, Département de pédiatrie, Université de Montréal, 3175 Côte Sainte-Catherine, Montréal, Québec, H3T 1C5 Canada. daniel.sinnett@umontreal.ca
Insights
Childhood leukemia risk may be linked to DNA variants in specific genes. Combined genetic factors and parental genetics appear more predictive than single genes for pediatric cancer susceptibility.
Area of Science:
- Pediatric oncology
- Cancer genetics
- Leukemogenesis
Context:
- Pediatric cancers, including acute lymphoblastic leukemia (ALL), are a major cause of death in children.
- The etiology of childhood leukemia is poorly understood, with limited research on genetic susceptibility and common polymorphisms.
- Genetic variations significantly influence individual cancer susceptibility.
Purpose:
- To investigate the association between candidate genes in key biochemical and genetic pathways and childhood leukemogenesis.
- To evaluate the role of common polymorphisms in childhood leukemia susceptibility.
- To explore the potential influence of parental genetics on cancer risk in children.
Summary:
- Association studies revealed that DNA variants in specific genes may be linked to childhood leukemogenesis.
- Combinations of genotypes were found to be more predictive of leukemia risk than individual genotypes.
- Parental genetics may play a role in predicting cancer risk in pediatric leukemia.
Impact:
- Findings suggest that a multifactorial genetic approach, considering gene-gene and gene-environment interactions, is necessary for understanding childhood leukemia etiology.
- Highlights the complexity of childhood leukemia, emphasizing that single gene or genotype analysis is insufficient.
- Provides insights into genetic susceptibility factors for childhood leukemia, potentially informing future risk assessment and prevention strategies.
Abstract:
Pediatric cancers affect approximately 1 in every 500 children before the age of 15. Little is known about the etiology of this heterogeneous group of diseases despite the fact they constitute the major cause of death by disease among this population. Because of its relatively high prevalence, most of the work done in pediatric oncogenetics has been focused on leukemias, particularly acute lymphoblastic leukemia (ALL). Although it is now well accepted that genetic variations play a significant role in determining individual's cancer susceptibility, few studies have explored genetic susceptibility to childhood leukemia with respect to common polymorphisms. The biochemical and genetic mechanisms contributing to cancer susceptibility are numerous and can be grouped into broad categories: 1) cellular growth and differentiation, 2) DNA replication and repair, 3) metabolism of carcinogens, 4) apoptosis, 5) oxidative stress response and 6) cell cycle. To evaluate whether candidate genes in these pathways are involved in childhood leukemogenesis, we conducted association studies. We showed that leukemogenesis in children may be associated with DNA variants in some of these genes and that the combination of genotypes seems to be more predictive of risk then either of them independently. We also observed that, at least at some loci, the parental genetics might be important in predicting the risk of cancer in this pediatric model of a complex disease. Taken together, these results indicate that the investigation of a single enzyme and/or a single genotype might not be sufficient to explain the etiology of childhood leukemia because of the complexity of the environment and that of the inter-individual variability in cancer susceptibility.
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