Restoration of the molecular clock is tumor suppressive in neuroblastoma

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Restoration of the molecular clock is tumor suppressive in neuroblastoma
Circadian clocks in health and disease
Restoration of the molecular clock is tumor suppressive in neuroblastoma
MYCN-driven fatty acid uptake is a metabolic vulnerability in neuroblastoma
Restoration of the molecular clock is tumor suppressive in neuroblastoma
Circadian clocks in health and disease
Restoration of the molecular clock is tumor suppressive in neuroblastoma
Restoring molecular clock suppresses neuroblastoma tumor growth
Restoration of the molecular clock is tumor suppressive in neuroblastoma
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Restoration of the molecular clock is tumor suppressive in neuroblastoma
MYCN-driven fatty acid uptake is a metabolic vulnerability in neuroblastoma
Restoration of the molecular clock is tumor suppressive in neuroblastoma
Major roles of the circadian clock in cancer
Restoration of the molecular clock is tumor suppressive in neuroblastoma
MYC disrupts transcriptional and metabolic circadian oscillations in cancer and promotes enhanced biosynthesis
Restoration of the molecular clock is tumor suppressive in neuroblastoma
The interplay of the circadian clock and metabolic tumorigenesis: Trends in Cell Biology
Restoration of the molecular clock is tumor suppressive in neuroblastoma
Restoration of the molecular clock is tumor suppressive in neuroblastoma
Restoration of the molecular clock is tumor suppressive in neuroblastoma
Metabolic protein kinase signalling in neuroblastoma - ScienceDirect
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