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Published on: October 17, 2025
Causes of childhood leukaemia and lymphoma
1Leukaemia Research Fund Epidemiology and Genetics Unit, Department of Health Sciences, University of York, YO10 5DD, UK. Tracy.Lightfoot@egu.leeds.ac.uk
Insights
Childhood leukaemia, primarily acute lymphoblastic leukaemia (ALL), is linked to genetic factors and potential in utero exposures. Further research into parental folate intake and assisted reproduction is needed to understand childhood cancer risks.
Area of Science:
- Pediatric Oncology
- Cancer Genetics
- Environmental Epidemiology
Background:
- Childhood cancer is rare, with leukaemia being the most common form, particularly acute lymphoblastic leukaemia (ALL).
- Specific subtypes of ALL and acute myeloblastic leukaemia (AML) are associated with chromosomal changes, though only a few genes are currently linked to childhood leukaemia.
- While genetic and environmental factors are implicated, evidence linking prenatal exposures like diet or smoking to childhood leukaemia is inconsistent.
Purpose of the Study:
- To explore the aetiology of childhood leukaemia and lymphoma.
- To identify areas for further investigation into risk factors for childhood leukaemia.
- To address limitations in current research, such as small sample sizes and reliance on self-reported data for prenatal exposures.
Main Methods:
- Review of existing literature on childhood leukaemia aetiology.
- Identification of key areas for future research, including genetic and environmental factors.
- Highlighting the need for robust data collection on parental exposures and genetic markers.
Main Results:
- Current evidence for links between common prenatal exposures (diet, smoking, alcohol) and childhood leukaemia is not conclusive.
- Gene rearrangements potentially originate in utero, but only a limited number of genes are associated with childhood leukaemia.
- Accurate data on past exposures is challenging to obtain, often relying on self-reporting, and studies are frequently limited by small case numbers.
Conclusions:
- Further investigation into parental dietary folate and folate-related genes is warranted.
- In utero exposure to DNA topoisomerase II inhibitors requires further study.
- The potential impact of assisted reproduction technologies on childhood leukaemia susceptibility needs investigation.
Abstract:
Childhood cancer is rare comprising less than 1% of all malignancies diagnosed each year in developed countries. Leukaemia is the commonest form of cancer in children accounting for around a third of all childhood cancer, with acute lymphoblastic leukaemia (ALL) being the most prevalent. Biologically specific subtypes of ALL and acute myeloblastic leukaemia (AML), the other major morphological type of childhood leukaemia, are characterised by chromosomal changes. Whilst over 200 genes have been associated with chromosomal translocations, to date, only MLL, TEL, and AML1 have been linked with childhood leukaemia. Interestingly, there is increasing evidence to support the theory that gene rearrangements such as these may originate in utero. As with many other human diseases, both genetic and environmental factors have been implicated in the aetiology of the disease. Although much has been documented with regard to diet, smoking, alcohol consumption and recreational and prescription drug use during pregnancy, there is no consistent evidence to support a link with any of these factors and childhood leukaemia. However, findings from studies investigating prenatal and early life exposures are often based on small numbers of cases as both the type of cancer and exposure are rare. Furthermore, accurate information relating to past exposures can be difficult to obtain and is often reliant on self-reporting. To further our understanding of the aetiology of childhood leukaemia and lymphoma, there are areas which clearly warrant investigation. These include collection of parental dietary folate data combined with genetic analysis of the folate related genes, in utero exposure to DNA topoisomerase II inhibitors, and the possible effects of assisted reproduction technology on disease susceptibility.
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