By investigating the role of recurrent mutations, epigenetic modifications and aberrant activation of oncogenic signaling (1–4), our understanding of leukemogenesis has advanced to the stage that precision medicine is capable of transforming diagnostic and therapeutic approaches. This Research Topic focuses on the innovative technologies that will aid in the development of a multi-dimensional integrated molecular network, enabling the prediction of therapy responses and creation of novel treatments for those in most clinical need.

Editorial: Special Issue on Innovative Multi-Disciplinary Approaches for Precision Studies in Leukemia / Marmiroli, S.; Huang, X.; Serafin, V.; Michie, A. M.. - In: FRONTIERS IN ONCOLOGY. - ISSN 2234-943X. - 11:(2021), p. 744009. [10.3389/fonc.2021.744009]

Editorial: Special Issue on Innovative Multi-Disciplinary Approaches for Precision Studies in Leukemia

Marmiroli S.;
2021

Abstract

By investigating the role of recurrent mutations, epigenetic modifications and aberrant activation of oncogenic signaling (1–4), our understanding of leukemogenesis has advanced to the stage that precision medicine is capable of transforming diagnostic and therapeutic approaches. This Research Topic focuses on the innovative technologies that will aid in the development of a multi-dimensional integrated molecular network, enabling the prediction of therapy responses and creation of novel treatments for those in most clinical need.
Innovative Multi-Disciplinary Approaches for Precision Studies in Leukemia
744009
Marmiroli, S.; Huang, X.; Serafin, V.; Michie, A. M.
Editorial: Special Issue on Innovative Multi-Disciplinary Approaches for Precision Studies in Leukemia / Marmiroli, S.; Huang, X.; Serafin, V.; Michie, A. M.. - In: FRONTIERS IN ONCOLOGY. - ISSN 2234-943X. - 11:(2021), p. 744009. [10.3389/fonc.2021.744009]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11380/1253715
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