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Modulation of the ETV6::RUNX1 Gene Fusion Prevalence in Newborns by Corticosteroid Use During Pregnancy
Leticia Benítez1,2, Ute Fischer3,4,5, Fàtima Crispi1,2
1BCNatal|Fetal Medicine Research Center, Hospital Clínic and Hospital Sant Joan de Deu, University of Barcelona, 08950 Barcelona, Spain.
Insights
Prenatal corticosteroid exposure, particularly before 26 weeks or using betamethasone, significantly increases the risk of the ETV6::RUNX1 fusion gene in newborns. This finding suggests potential strategies for preventing ETV6::RUNX1 pediatric leukemia.
Area of Science:
- Pediatric Oncology
- Genetics
- Maternal-Fetal Medicine
Background:
- Pediatric acute lymphoblastic leukemia (ALL) with the ETV6::RUNX1 fusion often originates prenatally.
- A two-hit model suggests an in utero preleukemic clone requires postnatal events for overt leukemia.
- Prenatal factors initiating the first hit remain largely unknown.
Purpose of the Study:
- To investigate the influence of maternal factors during pregnancy on the prevalence of the ETV6::RUNX1 fusion gene.
- To explore potential prenatal interventions for modulating ETV6::RUNX1 preleukemia.
Main Methods:
- Nested interventional cohort study (IMPACT-BCN trial) with 1221 pregnancies randomized into usual care, Mediterranean diet, or mindfulness-based stress reduction.
- Prevalence of ETV6::RUNX1 determined in cord blood DNA (n=741) using the GIPFEL technique.
- Multiple regression analyses to assess associations between maternal factors and fusion gene prevalence.
Main Results:
- 6.5% of healthy newborns tested positive for ETV6::RUNX1.
- A trend towards lower prevalence was observed in offspring from high-adherence intervention groups.
- Prenatal corticosteroid use was significantly associated with increased ETV6::RUNX1 prevalence (OR 3.9), especially before 26 weeks gestation (OR 7.7) or with betamethasone (OR 4.0).
Conclusions:
- Prenatal corticosteroid exposure within a critical window may elevate the risk of developing ETV6::RUNX1 preleukemic clones.
- These findings suggest that ETV6::RUNX1 preleukemia prevalence might be modulated, potentially offering avenues for prevention.
- Maternal factors during pregnancy can influence the occurrence of key genetic alterations in pediatric leukemia.
Abstract:
ETV6::RUNX1-positive pediatric acute lymphoblastic leukemia frequently has a prenatal origin and follows a two-hit model: a first somatic alteration leads to the formation of the oncogenic fusion gene ETV6::RUNX1 and the generation of a preleukemic clone in utero. Secondary hits after birth are necessary to convert the preleukemic clone into clinically overt leukemia. However, prenatal factors triggering the first hit have not yet been determined. Here, we explore the influence of maternal factors during pregnancy on the prevalence of the ETV6::RUNX1 fusion. To this end, we employed a nested interventional cohort study (IMPACT-BCN trial), including 1221 pregnancies (randomized into usual care, a Mediterranean diet, or mindfulness-based stress reduction) and determined the prevalence of the fusion gene in the DNA of cord blood samples at delivery (n = 741) using the state-of-the-art GIPFEL (genomic inverse PCR for exploration of ligated breakpoints) technique. A total of 6.5% (n = 48 of 741) of healthy newborns tested positive for ETV6::RUNX1. Our multiple regression analyses showed a trend toward lower ETV6::RUNX1 prevalence in offspring of the high-adherence intervention groups. Strikingly, corticosteroid use for lung maturation during pregnancy was significantly associated with ETV6::RUNX1 (adjusted OR 3.9, 95% CI 1.6-9.8) in 39 neonates, particularly if applied before 26 weeks of gestation (OR 7.7, 95% CI 1.08-50) or if betamethasone (OR 4.0, 95% CI 1.4-11.3) was used. Prenatal exposure to corticosteroids within a critical time window may therefore increase the risk of developing ETV6::RUNX1+ preleukemic clones and potentially leukemia after birth. Taken together, this study indicates that ETV6::RUNX1 preleukemia prevalence may be modulated and potentially prevented.
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