[18F]Fallypride and [18F]Fluortriopride (FTP) are two different PET radiotracers that bind with sub-nanomolar affinity to the dopamine D3 receptor (D3R). In spite of their similar D3 affinities, the two PET ligands display very different properties for labeling the D3R in vivo: [18F]Fallypride is capable of binding to D3R under "baseline" conditions, whereas [18F]FTP requires the depletion of synaptic dopamine in order to image the receptor in vivo. These data suggest that [18F]Fallypride is able to compete with synaptic dopamine for binding to the D3R, whereas [18F]FTP is not. The goal of this study was to conduct a series of docking and molecular dynamic simulation studies to identify differences in the ability of each molecule to interac...
To study the specific activity requirement of 18F-Fallypride for dopamine D2 receptor PET imaging, 1...
Imaging of dopamine D2/3 receptors (D2/3R) can shed light on the nature of several neuropsychiatric ...
The D2 subunit dopamine receptor represents a key factor in modulating dopamine release. Moreover, t...
[18F]Fallypride and [18F]Fluortriopride (FTP) are two different PET radiotracers that bind with sub-...
[18F]Fallypride and [18F]Fluortriopride (FTP) are two different PET radiotracers that bind with sub-...
[18F]Fallypride and [18F]Fluortriopride (FTP) are two different PET radiotracers that bind with sub-...
Identification of dopamine D3 receptors (D3R) in vivo is important to understand several brain funct...
Imaging the high-affinity, functional state (HA) of dopamine D2 and D3 receptors has been pursued in...
Introduction Dopamine D3 receptors are implicated in various neuropsychiatric diseases, drug abuse a...
Cerebral dopamine D3 receptors seem to play a key role in the control of drug-seeking behavior. The ...
Cerebral dopamine D3 receptors seem to play a key role in the control of drug-seeking behavior. The ...
Cerebral dopamine D3 receptors seem to play a key role in the control of drug-seeking behavior. The ...
Imaging dopamine receptors with PET and SPECT can shed light on the nature of neuropsychiatric disor...
The dopamine D3 receptor (D3R) is an important central nervous system target for treating various ne...
[(18)F]desmethoxyfallypride ([(18)F]DMFP) is a promising tracer for longitudinal assessment of stria...
To study the specific activity requirement of 18F-Fallypride for dopamine D2 receptor PET imaging, 1...
Imaging of dopamine D2/3 receptors (D2/3R) can shed light on the nature of several neuropsychiatric ...
The D2 subunit dopamine receptor represents a key factor in modulating dopamine release. Moreover, t...
[18F]Fallypride and [18F]Fluortriopride (FTP) are two different PET radiotracers that bind with sub-...
[18F]Fallypride and [18F]Fluortriopride (FTP) are two different PET radiotracers that bind with sub-...
[18F]Fallypride and [18F]Fluortriopride (FTP) are two different PET radiotracers that bind with sub-...
Identification of dopamine D3 receptors (D3R) in vivo is important to understand several brain funct...
Imaging the high-affinity, functional state (HA) of dopamine D2 and D3 receptors has been pursued in...
Introduction Dopamine D3 receptors are implicated in various neuropsychiatric diseases, drug abuse a...
Cerebral dopamine D3 receptors seem to play a key role in the control of drug-seeking behavior. The ...
Cerebral dopamine D3 receptors seem to play a key role in the control of drug-seeking behavior. The ...
Cerebral dopamine D3 receptors seem to play a key role in the control of drug-seeking behavior. The ...
Imaging dopamine receptors with PET and SPECT can shed light on the nature of neuropsychiatric disor...
The dopamine D3 receptor (D3R) is an important central nervous system target for treating various ne...
[(18)F]desmethoxyfallypride ([(18)F]DMFP) is a promising tracer for longitudinal assessment of stria...
To study the specific activity requirement of 18F-Fallypride for dopamine D2 receptor PET imaging, 1...
Imaging of dopamine D2/3 receptors (D2/3R) can shed light on the nature of several neuropsychiatric ...
The D2 subunit dopamine receptor represents a key factor in modulating dopamine release. Moreover, t...