AbstractMice unable to synthesize dopamine (DA) specifically in dopaminergic neurons were created by inactivating the tyrosine hydroxylase (TH) gene then by restoring TH function in noradrenergic cells. These DA-deficient (DA−/−) mice were born at expected frequency but became hypoactive and stopped feeding a few weeks after birth. Midbrain dopaminergic neurons, their projections, and most characteristics of their target neurons in the striatum appeared normal. Within a few minutes of being injected with l-dihydroxyphenyla-lanine (l-DOPA), the product of TH, the DA-−/− mice became more active and consumed more food than control mice. With continued administration of l-DOPA, nearly normal growth was achieved. These studies indicate that DA i...
The dopamine D4 receptor (D4R) is predominantly expressed in the prefrontal cortex, a brain area tha...
<div><p>Brain dopamine is critically involved in movement control, and its deficiency is the primary...
L-DOPA-induced dyskinesia is a major complication of L-DOPA pharmacotherapy in Parkinson's disease, ...
AbstractDopamine-deficient (DD) mice cannot synthesize dopamine (DA) in dopaminergic neurons due to ...
Abstract Dopamine is important for motor control and involved in the regulation of circadian rhythm....
The hypothalamic A11 region has been identified in several species including rats, mice, cats, monke...
Dopamine-deficient (DD) mice have selective inactivation of the tyrosine hydroxylase gene in dopamin...
The hypothalamic A11 region has been identified in several species including rats, mice, cats, monke...
Dopamine (DA) controls a wide variety of physiological functions in the central nervous system as we...
Dopamine (DA) controls a wide variety of physiological functions in the central nervous system as we...
Of the five known dopamine receptors, D-1A and D-2 represent the major subtypes expressed in the str...
AbstractDopamine-deficient mice (DA−/−), lacking tyrosine hydroxylase (TH) in dopaminergic neurons, ...
Dopamine (DA) plays a critical role in cognition and reward. Therefore, dysregulation of DA neurotra...
Aromatic L-amino acid decarboxylase (AADC) is responsible for the syntheses of dopamine and serotoni...
Tyrosine hydroxylase catalyses the hydroxylation of L-tyrosine to l-DOPA, the rate-limiting step in ...
The dopamine D4 receptor (D4R) is predominantly expressed in the prefrontal cortex, a brain area tha...
<div><p>Brain dopamine is critically involved in movement control, and its deficiency is the primary...
L-DOPA-induced dyskinesia is a major complication of L-DOPA pharmacotherapy in Parkinson's disease, ...
AbstractDopamine-deficient (DD) mice cannot synthesize dopamine (DA) in dopaminergic neurons due to ...
Abstract Dopamine is important for motor control and involved in the regulation of circadian rhythm....
The hypothalamic A11 region has been identified in several species including rats, mice, cats, monke...
Dopamine-deficient (DD) mice have selective inactivation of the tyrosine hydroxylase gene in dopamin...
The hypothalamic A11 region has been identified in several species including rats, mice, cats, monke...
Dopamine (DA) controls a wide variety of physiological functions in the central nervous system as we...
Dopamine (DA) controls a wide variety of physiological functions in the central nervous system as we...
Of the five known dopamine receptors, D-1A and D-2 represent the major subtypes expressed in the str...
AbstractDopamine-deficient mice (DA−/−), lacking tyrosine hydroxylase (TH) in dopaminergic neurons, ...
Dopamine (DA) plays a critical role in cognition and reward. Therefore, dysregulation of DA neurotra...
Aromatic L-amino acid decarboxylase (AADC) is responsible for the syntheses of dopamine and serotoni...
Tyrosine hydroxylase catalyses the hydroxylation of L-tyrosine to l-DOPA, the rate-limiting step in ...
The dopamine D4 receptor (D4R) is predominantly expressed in the prefrontal cortex, a brain area tha...
<div><p>Brain dopamine is critically involved in movement control, and its deficiency is the primary...
L-DOPA-induced dyskinesia is a major complication of L-DOPA pharmacotherapy in Parkinson's disease, ...