Restoration of the molecular clock is tumor suppressive in neuroblastoma

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Last updated 23 setembro 2024
Restoration of the molecular clock is tumor suppressive in neuroblastoma
Restoration of the molecular clock is tumor suppressive in neuroblastoma
Epigenetic state determines inflammatory sensing in neuroblastoma
Restoration of the molecular clock is tumor suppressive in neuroblastoma
The circadian clock is disrupted in pancreatic cancer
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
Restoration of the molecular clock is tumor suppressive in neuroblastoma
Restoration of the molecular clock is tumor suppressive in neuroblastoma
Journal of Cellular Physiology, Cell Biology Journal
Restoration of the molecular clock is tumor suppressive in neuroblastoma
Metabolic protein kinase signalling in neuroblastoma - ScienceDirect
Restoration of the molecular clock is tumor suppressive in neuroblastoma
Biology, Free Full-Text
Restoration of the molecular clock is tumor suppressive in neuroblastoma
Model of Circadian Rhythm Disruption by MYC (A and B) Summary diagram
Restoration of the molecular clock is tumor suppressive in neuroblastoma
TIMELESS regulates sphingolipid metabolism and tumor cell growth through Sp1/ACER2/S1P axis in ER-positive breast cancer
Restoration of the molecular clock is tumor suppressive in neuroblastoma
Turning the molecular clock back on halts neuroblastoma tumor growth
Restoration of the molecular clock is tumor suppressive in neuroblastoma
IJMS, Free Full-Text
Restoration of the molecular clock is tumor suppressive in neuroblastoma
Metabolic protein kinase signalling in neuroblastoma - ScienceDirect
Restoration of the molecular clock is tumor suppressive in neuroblastoma
SR1078 sensitizes NB to conventional chemotherapy. a Cell viability (72
Restoration of the molecular clock is tumor suppressive in neuroblastoma
Analysis of SRC-2 Occupancy across the Hepatic Genome Shows Enrichment for Circadian Targets

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