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The role of the circadian system in the etiology of depression
Doublecortin-like expressing astrocytes of the suprachiasmatic nucleus are implicated in the biosynthesis of vasopressin and influences circadian rhythms
Earlier chronotype in patients with rheumatoid arthritis (Jan, 10.1007/s10067-020-05546-x, 2021)
Correction to: Earlier chronotype in patients with rheumatoid arthritis
Earlier chronotype in patients with rheumatoid arthritis
Earlier chronotype in patients with rheumatoid arthritis
Doublecortin-like is implicated in adult hippocampal neurogenesis and in motivational aspects to escape from an aversive environment in male mice
Stress, glucocorticoid receptors, and adult neurogenesis: a balance between excitation and inhibition?
beta(1) Integrin Inhibition Elicits a Prometastatic Switch Through the TGF beta-miR-200-ZEB Network in E-Cadherin-Positive Triple-Negative Breast Cancer
Silencing of doublecortin-like (DCL) results in decreased mitochondrial activity and delayed neuroblastoma tumor growth.
Knockdown of the glucocorticoid receptor alters functional integration of newborn neurons in the adult hippocampus and impairs fear-motivated behavior
Silencing of Doublecortin-Like (DCL) Results in Decreased Mitochondrial Activity and Delayed Neuroblastoma Tumor Growth
Neuronal stem cells in psychiatric diseases
Knockdown of the glucocorticoid receptor alters functional integration of newborn neurons in the adult hippocampus and impairs fear-motivated behavior
Hippocampal CARP over-expression solidifies consolidation of contextual fear memories
Over-expression of delta C-DCLK-short in mouse brain results in a more anxious behavioral phenotype
Acute Pain Increases Phosphorylation of DCLK-Long in the Edinger-Westphal Nucleus but not in the Hypothalamic Paraventricular Nucleus of the Rat
EXPLORING A NEW THERAPY FOR NEUROBLASTOMA: SILENCING OF DOUBLECORTIN-LIKE KINASE USING RNA-INTERFERENCE
Over-expression of the DCLK gene transcript CARP decreases CA3/CA1 network excitability
An adeno-associated viral vector transduces the rat hypothalamus and amygdala more efficient than a lentiviral vector

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