Down syndrome-associated leukaemias: current evidence and challenges

Nicola R Mason1, Hilary Cahill1, Yonatan Diamond1

  • 1Kids Cancer Centre, Sydney Children's Hospital, Randwick, NSW, Australia.

Insights

Children with Down syndrome (DS) face a higher risk of leukemia. Genetic factors like GATA1 mutations play a crucial role in the development and progression of these hematological malignancies in DS patients.

Area of Science:

  • Hematology
  • Genetics
  • Pediatric Oncology

Background:

  • Children with Down syndrome (DS) exhibit an elevated risk for hematological malignancies, specifically acute megakaryoblastic leukemia and acute lymphoblastic leukemia.
  • Leukemogenesis in DS is influenced by trisomy 21-driven abnormal hematopoiesis, further driven by genetic and epigenetic alterations.
  • Somatic mutations in GATA-binding protein 1 (GATA1) are pivotal in transient abnormal myelopoiesis and the progression to myeloid leukemia of DS (ML-DS).

Purpose of the Study:

  • To review the primary genetic drivers contributing to leukemia development in individuals with Down syndrome.
  • To summarize the biology and current treatment strategies for ML-DS and DS-associated acute lymphoblastic leukemia.
  • To discuss the long-term effects of leukemia treatments in DS patients and outline future targeted therapy directions.

Main Methods:

  • Literature review focusing on genetic drivers of leukemia in Down syndrome.
  • Synthesis of information on the biology and treatment of ML-DS and DS-associated ALL.
  • Analysis of late treatment effects and future therapeutic targets.

Main Results:

  • Identified key genetic factors, including GATA1 mutations, that drive leukemogenesis in DS.
  • Detailed the biological pathways and therapeutic approaches for ML-DS and DS-associated ALL.
  • Highlighted significant late effects of treatments and emerging targeted therapies.

Conclusions:

  • Genetic alterations, particularly GATA1 mutations, are central to leukemia development in Down syndrome.
  • Understanding the biology of DS-leukemias is crucial for effective treatment and management of late effects.
  • Future research should focus on targeted therapies to improve outcomes for children with Down syndrome and leukemia.