2019•Brain Structure and FunctionOpen access

Mapping the landscape of human dopamine D2/3 receptors with [11C]raclopride

Goran Papenberg, Lars Stiernman Jonasson, Nina Karalija, Jarkko J. Johansson, Ylva Köhncke, Alireza Salami, Micael Andersson, Jan Axelsson, Anders Wåhlin, Katrine Riklund, Ulman Lindenberger, Martin Lövdén, Lars H Nyberg, Lars Bäckman

Open full text 39 citations

Abstract

The dopamine D2/3 system is fundamental for sensory, motor, emotional, and cognitive aspects of behavior. Small-scale human histopathological and animal studies show high density of D2/3 dopamine receptors (D2/3DR) in striatum, but also demonstrate the existence of such receptors across cortical and limbic regions. Assessment of D2/3DR BP ND in the extrastriatal regions with [ 11 C]raclopride has long been considered unreliable due to the relatively low density of D2/3DR outside the striatum. We describe the distribution and interregional links of D2/3DR availability measured with PET and [ 11 C]raclopride across the human brain in a large sample ( N = 176; age range 64–68 years). Structural equation modeling revealed that D2/3DR availability can be organized according to anatomical (nigrostriatal, mesolimbic, mesocortical) and functional (limbic, associative, sensorimotor) dopamine pathways. D2/3DR availability in corticolimbic functional subdivisions showed differential associations to corresponding striatal subdivisions, extending animal and pharmacological work. Our findings provide evidence on the dimensionality and organization of [ 11 C]raclopride D2/3DR availability in the living human brain that conforms to known dopaminergic pathways.

Open-access reader

About this research paper

What this paper is about

The dopamine D2/3 system is fundamental for sensory, motor, emotional, and cognitive aspects of behavior. Small-scale human histopathological and animal studies show high density of D2/3 dopamine receptors (D2/3DR) in striatum, but also demonstrate the existence of such receptors across cortical and limbic regions. Assessment of D2/3DR BP ND in the extrastriatal regions with [ 11 C]raclopride has long been considered unreliable due to the relatively low density of D2/3DR outside the striatum. We describe the distribution and interregional links of D2/3DR availability measured with PET and [ 11 C]raclopride across the human brain in a large sample ( N = 176; age range 64–68 years). Structural equation modeling revealed that D2/3DR availability can be organized according to anatomical (nigrostriatal, mesolimbic, mesocortical) and functional (limbic, associative, sensorimotor) dopamine pathways. D2/3DR availability in corticolimbic functional subdivisions showed differential associations to corresponding striatal subdivisions, extending animal and pharmacological work. Our findings provide evidence on the dimensionality and organization of [ 11 C]raclopride D2/3DR availability in the living human brain that conforms to known dopaminergic pathways.

Why it matters

OpenAlex reports 39 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

The dopamine D2/3 system is fundamental for sensory, motor, emotional, and cognitive aspects of behavior. Small-scale human histopathological and animal studies show high density of D2/3 dopamine receptors (D2/3DR) in striatum, but also demonstrate the existence of such receptors across cortical and limbic regions. Assessment of D2/3DR BP ND in the extrastriatal regions with [ 11 C]raclopride has long been considered unreliable due to the relatively low density of D2/3DR outside the striatum. We describe the distribution and interregional links of D2/3DR availability measured with PET and [ 11 C]raclopride across the human brain in a large sample ( N = 176; age range 64–68 years). Structural equation modeling revealed that D2/3DR availability can be organized according to anatomical (nigrostriatal, mesolimbic, mesocortical) and functional (limbic, associative, sensorimotor) dopamine pathways. D2/3DR availability in corticolimbic functional subdivisions showed differential associations to corresponding striatal subdivisions, extending animal and pharmacological work. Our findings provide evidence on the dimensionality and organization of [ 11 C]raclopride D2/3DR availability in the living human brain that conforms to known dopaminergic pathways.

Key concepts: Raclopride, Dopamine receptor D2, Neuroscience, Striatum, Human brain, Dopaminergic, Dopamine, Psychology

Related papers

Back to paper searchBrowse research topicsOriginal source
Mapping the landscape of human dopamine D2/3 receptors with [11C]raclopride — Research Paper | ScholarLens