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Long-term proliferation of immature hypoxia-dependent JMML cells supported by a 3D in vitro system

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Key Points • A defined 3D in vitro model, under hypoxic condition, sustains long-term propagation of JMML cells with specific hallmarks.• In vitro low oxygen levels drive a metabolic switch… Click to show full abstract

Key Points • A defined 3D in vitro model, under hypoxic condition, sustains long-term propagation of JMML cells with specific hallmarks.• In vitro low oxygen levels drive a metabolic switch that redirect JMML cells toward self-renewal.

Keywords: long term; term proliferation; proliferation immature; jmml; jmml cells

Journal Title: Blood Advances
Year Published: 2022

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