Vollständiger Abstract
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Background: Methotrexate-induced neurotoxicity (MTX-NTX) is a severe complication during childhood acute lymphoblastic leukemia (ALL) treatment, yet its underlying pharmacogenetic determinants remain incompletely understood. Methods: A multicenter retrospective nationwide case–control study was performed including 71 pediatric ALL patients (34 MTX-NTX cases and 37 controls). Targeted next-generation sequencing of 17 genes involved in MTX transport, intracellular metabolism and folate pathways was performed. Results: Transport-related genes accounted for 61.4% of all detected variants and showed the highest number of nominally significant variants. Pathway-level burden analysis demonstrated a significant enrichment of transporter-related variants in patients with MTX-NTX compared with controls (FDR-adjusted p = 0.004), whereas the analysis for folate/metabolism-related genes did not remain significant after multiple-testing (FDR-adjusted p = 0.096). Similar findings were observed in the stroke-like syndrome (SLS) subgroup (FDR-adjusted p = 0.014 and 0.108, respectively). Gene-level burden analysis identified ABCG2 and ABCC4 as the predominant contributors, harboring both 18.4% of significant variants in the overall MTX-NTX analysis and 20.6% and 17.6%, respectively in the SLS phenotype. Moreover, the distribution of significant variants was strongly correlated between the overall MTX-NTX and SLS analyses (Spearman’s ρ = 0.549, p = 0.022). Volcano plot analysis revealed ABCG2 as the gene showing the most prominent pattern of nominal associations, containing both the variants associated with a protective direction (e.g., c.1728-46G>A, p = 2.6 × 10−4) and variants associated with increased risk, including c.34G>A and c.203+36A>G (p = 0.002) and c.263+10A>G (p = 0.0097). Phenotype-specific analyses revealed distinct genetic signatures across neurological manifestations, with transporter genes predominating in focal neurological deficits. Conclusions: Our findings suggest that genetic variability in ABC transporter genes may contribute to susceptibility to MTX-NTX, whereas folate metabolism genes may represent complementary phenotype-modifying factors. These findings are exploratory and require validation in larger, independent cohorts and functional studies.
Bibliografischer Nachweis
Publikationsdaten
- Autor:innen
- Javier Gómez-Román, Juan C. Restrepo, Luz M. González, Laura González-Rodríguez, Ángela Lacombe-Antoneli, Yolanda Gutiérrez-Martín, María Dolores de la Maya, Montserrat Mesegué, José Luis Dapena, Ana Carbone, Berta González Martínez, Francisco Lendínez Molinos, Antonio Molinés Honrubia, Miriam Abós García, Marina García Morín, Samuel Navarro Noguera, María Sagaseta de Ilurdoz, Itziar Astigarraga, Maria Baro Fernández, Jaime Verdú Amorós, Alexandra Regueiro, Manuel Ramírez Orellana, José Luis Fuster Soler, Soledad González Muñiz, Adela Cañete Nieto, Montserrat Torrent Español, Héctor González Méndez, Jose M. Vagace, Guillermo Gervasini
- Quelle
- Journal of Clinical Medicine
- Publikation
- 2026-01-01
- Band / Ausgabe
- Nicht angegeben
- Seiten
- Nicht angegeben
- ISSN / ISBN
- 2077-0383
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Zitierfähiger Nachweis
Javier Gómez-Román, Juan C. Restrepo, Luz M. González, Laura González-Rodríguez, Ángela Lacombe-Antoneli, Yolanda Gutiérrez-Martín, María Dolores de la Maya, Montserrat Mesegué, José Luis Dapena, Ana Carbone, Berta González Martínez, Francisco Lendínez Molinos, Antonio Molinés Honrubia, Miriam Abós García, Marina García Morín, Samuel Navarro Noguera, María Sagaseta de Ilurdoz, Itziar Astigarraga, Maria Baro Fernández, Jaime Verdú Amorós, Alexandra Regueiro, Manuel Ramírez Orellana, José Luis Fuster Soler, Soledad González Muñiz, Adela Cañete Nieto, Montserrat Torrent Español, Héctor González Méndez, Jose M. Vagace, Guillermo Gervasini (2026). Phenotype-Specific Pharmacogenetic Patterns of Methotrexate Neurotoxicity in Pediatric Acute Lymphoblastic Leukemia. Journal of Clinical Medicine. https://doi.org/10.3390/jcm15176877
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