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Clonal heterogeneity of acute myeloid leukemia treated with the IDH2 inhibitor enasidenib

Authors :
George S. Vassiliou
Eytan M. Stein
Cyril Quivoron
Ross L. Levine
Lynn Quek
Stéphane de Botton
Paresh Vyas
Bilyana Stoilova
Michael Amatangelo
Alison Kennedy
M. S. Vijayabaskar
Alan Shih
O. Bernard
Virginie Penard-Lacronique
Katharine E. Yen
Véronique Saada
Maël Heiblig
Samar Alsafadi
Marlen Metzner
Kyle J. MacBeth
Muriel D. David
Andy Peniket
Anjan Thakurta
Sam Agresta
Christophe Willekens
Source :
Quek, L, David, M D, Kennedy, A, Metzner, M, Amatangelo, M, Shih, A, Stoilova, B, Quivoron, C, Heiblig, M, Willekens, C, Saada, V, Alsafadi, S, Vijayabaskar, M S, Peniket, A, Bernard, O A, Agresta, S, Yen, K, MacBeth, K, Stein, E, Vassiliou, G S, Levine, R, De Botton, S, Thakurta, A, Penard-Lacronique, V & Vyas, P 2018, ' Clonal heterogeneity of acute myeloid leukemia treated with the IDH2 inhibitor enasidenib ', Nature Medicine, vol. 24, no. 8, pp. 1167-1177 . https://doi.org/10.1038/s41591-018-0115-6
Publication Year :
2018
Publisher :
Springer Science and Business Media LLC, 2018.

Abstract

Mutations in the gene encoding isocitrate dehydrogenase 2 (IDH2) occur in several types of cancer, including acute myeloid leukemia (AML). In model systems, mutant IDH2 causes hematopoietic differentiation arrest. Enasidenib, a selective small-molecule inhibitor of mutant IDH2, produces a clinical response in 40% of treated patients with relapsed/refractory AML by promoting leukemic cell differentiation. Here, we studied the clonal basis of response and acquired resistance to enasidenib treatment. Using sequential patient samples, we determined the clonal structure of hematopoietic cell populations at different stages of differentiation. Before therapy, IDH2-mutant clones showed variable differentiation arrest. Enasidenib treatment promoted hematopoietic differentiation from either terminal or ancestral mutant clones; less frequently, treatment promoted differentiation of nonmutant cells. Analysis of paired diagnosis/relapse samples did not identify second-site mutations in IDH2 at relapse. Instead, relapse arose by clonal evolution or selection of terminal or ancestral clones, thus highlighting multiple bypass pathways that could potentially be targeted to restore differentiation arrest. These results show how mapping of clonal structure in cell populations at different stages of differentiation can reveal the response and evolution of clones during treatment response and relapse.

Details

ISSN :
1546170X and 10788956
Volume :
24
Database :
OpenAIRE
Journal :
Nature Medicine
Accession number :
edsair.doi.dedup.....7d30ad4500bdf6ee72adaf9de1577627