Expression of Mu opioid receptor mRNA in rat brain: An in situ hybridization study at the single cell level
- 1 July 1994
- journal article
- research article
- Published by Wiley in Journal of Comparative Neurology
- Vol. 345 (1), 46-68
- https://doi.org/10.1002/cne.903450104
Abstract
The mu (μ) opioid receptors, which mediate the effects of morphine, are widely distributed in brain. We have examined the distribution of mRNA encoding a μ opioid receptor in rat brain with in situ hybridization histochemistry at the single‐cell level to obtain information about the cell types synthesizing this receptor. Only neurons, not glia, were labeled in discrete brain regions. High levels of labeling were detected in the thalamus, striosomes of the caudateputamen, globus pallidus, and brain regions involved in nociception, arousal, respiratory control, and, possibly, addiction. The general distribution of the receptor mRNA paralleled that of μ opioid binding sites with some notable exceptions. These include the cerebral cortex, which contains binding sites, but very few labeled neurons. No labeling was observed in the cerebellum, a region devoid of μ binding sites. Three main findings emerged from these experiments: (1) the mRNA was present in regions mediating both the therapeutic (analgesia) and the unwanted (respiratory depression, addiction) effects of morphine, (2) the mRNA was very densely expressed by neurons known to receive dense enkephalin‐containing inputs, and (3) the dissociation between the presence of binding sites and absence of mRNA in some brain regions supports a presynaptic localization of μ opioid receptors in these areas. Alternatively, other subtypes of μ opioid receptors may be encoded by a different mRNA. These results provide new insights into the receptor types and neuronal circuits involved in the effects of endogenous opioids and morphine.Keywords
This publication has 53 references indexed in Scilit:
- Primary structures and expression from cDNAs of rat opioid receptor δ‐and μ‐subtypesFEBS Letters, 1993
- Self-administration of morphine into the lateral hypothalamus in the mouseBrain Research, 1987
- Minireview: Multiple MU opiate receptorsLife Sciences, 1986
- Detection of mRNAs in sea urchin embryos by in situ hybridization using asymmetric RNA probesDevelopmental Biology, 1984
- Biochemical and pharmacological evidence for opioid receptor multiplicity in the central nervous systemLife Sciences, 1983
- Dopaminergic mediation of reward produced by direct injection of enkephalin into the ventral tegmental area of the ratLife Sciences, 1983
- Intracranial self-administration of morphine into the ventral tegmental area in ratsLife Sciences, 1981
- Self-administration of D-Ala2-Met-enkephalinamide at hypothalamic self-stimulation sitesBrain Research, 1980
- Autoradiographic localization of opiate receptors in rat brain. III. The telencephalonBrain Research, 1977
- Autoradiographic localization of opiate receptors in rat brain. I. Spinal cord and lower medullaBrain Research, 1977