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Biology subjects

Andrieu, G. P.

Publications and source records attributed to Andrieu, G. P..

2 recordsLinked to original sources

Harnessing ALDH1A2 vulnerability in T-cell acute lymphoblastic leukemia

T-cell acute lymphoblastic leukemia (T-ALL) is an aggressive hematologic malignancy with limited therapeutic options, particularly in the relapsed/refractory (R/R) setting. Unlike other hematological malignancies, which benefit from targeted immunotherapies, T-ALL remains reliant on chemotherapy, leading to poor outcomes in R/R cases. Identifying novel therapeutic vulnerabilities is crucial to improving the outcomes of patients. Herein, we identify aldehyde dehydrogenase 1A2 (ALDH1A2) as a T-ALL-specific enzyme essential for leukemic cell survival. Transcriptomic and epigenetic analyses reveal its selective expression, regulated by the TAL1 oncogene. Pharmacological inhibition of ALDH1A2 using Dimate demonstrates potent anti-leukemic activity across diverse T-ALL subtypes, including primary samples of relapsed disease. These findings establish ALDH1A2 as a therapeutic target in T-ALL and support ALDH inhibition as a promising strategy to overcome drug resistance and improve treatment outcomes in R/R T-ALL.

cancer biology↗

Multimodal Mapping of Human Lymphopoiesis Reveals B and T/NK/ILC Lineages are Subjected to Cell-Intrinsic versus Flt3L-Dependent Regulation

The developmental cartography of human lymphopoiesis remains incompletely understood. Here, we establish a multimodal map that extends the current view of lymphoid development. Our results demonstrate that lymphoid specification follows independent direct or stepwise differentiation pathways converging toward the emergence of CD117lo multi-lymphoid progenitors (MLPs) that undergo a proliferation arrest before entering the CD127- (T/NK/ILC) or CD127+ (B) lymphoid pathways. While the emergence of CD127- early lymphoid progenitors is driven by Flt3 signaling, differentiation of their CD127+ counterparts is regulated cell-intrinsically and depends exclusively on the divisional history of their precursors. Single-cell mapping of lymphoid differentiation trajectories reveals that a dissociation between proliferation and differentiation phases allows amplification of the precursor pools prior to the onset of antigen receptor rearrangement. Besides demonstrating that B and T/NK/ILC lineages are subjected to differential cell-autonomous versus Flt3-inducible regulation, our results go a long way to reconciling human and mouse models of lymphoid architecture.

immunology↗