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Published on: November 10, 2010
Influence of the dopamine D2 receptor knockout on pain-related behavior in the mouse
Heikki Mansikka1, Eric Erbs, Emiliana Borrelli
1Department of Physiology, Institute of Biomedicine, University of Turku, 20520 Turku, Finland.
Abstract:
We studied the role of the dopamine D2 receptor in physiological regulation of pain-related behavior. The experiments were performed in dopamine D2 receptor knockout mice and in their wild-type controls. Baseline sensitivity to thermal nociception was determined by measuring the response latency in the hot plate at three different stimulus temperatures and by determining the radiant-heat-induced paw withdrawal. Mechanical sensitivity was assessed by determining paw withdrawal responses to stimulation with a calibrated series of monofilaments. Intracolonic capsaicin was used to produce sustained pain-related behavior and referred hypersensitivity to mechanical stimulation. The hot plate response latencies were not significantly different between the dopamine D2 receptor knockout and wild-type animals, although the stimulus temperature-dependent decrease in the response latency was steeper in the wild-type group. The radiant-heat-induced paw withdrawal latency was slightly longer in the knockout animals. The number of capsaicin-induced behavioral responses or the latency to the occurrence of the first capsaicin-induced response was not different between the experimental groups. Dopamine D2 receptor knockout animals were more sensitive to mechanical stimulation of the hindpaws than wild-type animals both in the baseline condition and following development of capsaicin-induced referred hypersensitivity in the hindpaws. The results indicate that dopamine D2 receptors influence baseline nociception in the mouse, although this effect is weak and submodality selective. Additionally, dopamine D2 receptors may contribute to attenuation of referred hypersensitivity caused by sustained nociception.
Insights
Dopamine D2 receptors weakly influence pain sensitivity, particularly mechanical pain, in mice. These receptors may also help reduce hypersensitivity from sustained pain.
Area of Science:
- Neuroscience
- Pharmacology
Background:
- The dopamine D2 receptor (D2R) plays a crucial role in various physiological processes.
- Its involvement in pain regulation, however, remains incompletely understood.
Purpose of the Study:
- To investigate the role of dopamine D2 receptors in the physiological regulation of pain-related behaviors.
- To determine if D2R knockout affects thermal and mechanical nociception and hypersensitivity.
Main Methods:
- Utilized dopamine D2 receptor knockout mice and wild-type controls.
- Assessed thermal nociception using hot plate tests and radiant heat paw withdrawal.
- Evaluated mechanical sensitivity with calibrated monofilaments and capsaicin-induced hypersensitivity.
Main Results:
- No significant difference in hot plate response latencies between groups.
- D2R knockout mice showed slightly longer radiant heat paw withdrawal latencies.
- D2R knockout mice exhibited increased mechanical sensitivity at baseline and after capsaicin.
- Capsaicin-induced responses were similar between knockout and wild-type mice.
Conclusions:
- Dopamine D2 receptors exert a weak, submodality-selective influence on baseline nociception.
- D2Rs may play a role in attenuating referred hypersensitivity associated with sustained nociception.

