• Dépistage, diagnostic, pronostic

  • Découverte de technologies et de biomarqueurs

  • Leucémie

Dynamic patterns of microRNA expression during acute myeloid leukemia state-transition

Menée à l'aide d'un modèle murin de leucémie myéloïde aiguë et d'une approche mathématique, cette étude analyse l'évolution de l'expression de microARNs au cours du développement de la maladie

MicroRNAs (miRNAs) have been shown to hold prognostic value in acute myeloid leukemia (AML); however, the temporal dynamics of miRNA expression in AML are poorly understood. Using serial samples from a mouse model of AML to generate time-series miRNA sequencing data, we are the first to show that the miRNA transcriptome undergoes state-transition during AML initiation and progression. We modeled AML state-transition as a particle undergoing Brownian motion in a quasi-potential and validated the AML state-space and state-transition model to accurately predict time to AML in an independent cohort of mice. The critical points of the model provided a framework to align samples from mice that developed AML at different rates. Our mathematical approach allowed discovery of dynamic processes involved during AML development and, if translated to humans, has the potential to predict an individual’s disease trajectory.

Science Advances , article en libre accès, 2021

Voir le bulletin