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Changes in hypothalamic mu-opioid receptor expression following acute olanzapine treatment in female rats:
Maiken Krogsbaek1, Nick Yao Larsen2, Anne M Landau3
1Core Centre for Molecular Morphology, Department of Clinical Medicine, Aarhus University, Aarhus, Denmark.
Abstract:
Advances have been made in recent years in using opioid receptor antagonists as an adjunct therapy to psychotropic medication to reduce debilitating weight gain and metabolic adverse effects associated with in particular second generation antipsychotics. However, it is unknown whether second generation antipsychotics produce a change in opioid receptor expression in the brain. The present study investigated early changes in opioid receptor expression in the female rat hypothalamus, a master controller of hunger and metabolic regulation, after acute treatment with olanzapine, a commonly used second generation antipsychotic. Using quantitative spatial in situ hybridization and receptor autoradiography, expression levels of the three opioid receptors; kappa, mu and delta, were determined at mRNA and protein level, respectively, in the five hypothalamic areas: paraventricular nucleus, arcuate nucleus, ventromedial nucleus, dorsomedial nucleus and lateral hypothalamus. After 48 h of olanzapine treatment at clinically relevant plasma concentration weight gain and food intake changes, and increased plasma glucose were observed in female rats. Olanzapine treatment also led to a significant increase in mu opioid receptor availability in the arcuate nucleus, which contains both satiety and hunger controlling neurons. No other areas showed any opioid receptor expressional changes with olanzapine treatment on neither at mRNA nor protein level. Technical difficulties made it impossible to analyze mRNA levels in the lateral hypothalamus and overall binding of delta opioid receptors. Thus, the present study provided insights in to how olanzapine at clinically relevant plasma levels already at an early stage modulated the opioid system in the hypothalamus.
Insights
Second generation antipsychotics like olanzapine can cause weight gain. This study found olanzapine alters mu opioid receptor expression in the rat hypothalamus, potentially explaining these metabolic side effects.
Area of Science:
- Neuroscience
- Endocrinology
- Pharmacology
Background:
- Second-generation antipsychotics are associated with significant weight gain and metabolic dysfunction.
- Opioid receptor antagonists are explored as adjunct therapies to mitigate these side effects.
- The impact of second-generation antipsychotics on central opioid receptor expression remains largely unknown.
Purpose of the Study:
- To investigate early changes in opioid receptor expression in the female rat hypothalamus following acute olanzapine treatment.
- To determine if olanzapine alters mRNA and protein levels of kappa, mu, and delta opioid receptors in key hypothalamic nuclei.
Main Methods:
- Acute olanzapine administration to female rats at clinically relevant plasma concentrations.
- Quantitative spatial in situ hybridization and receptor autoradiography to assess opioid receptor expression.
- Analysis of five hypothalamic areas: paraventricular nucleus, arcuate nucleus, ventromedial nucleus, dorsomedial nucleus, and lateral hypothalamus.
Main Results:
- Olanzapine treatment led to weight gain, increased food intake, and elevated plasma glucose after 48 hours.
- A significant increase in mu opioid receptor availability was observed in the arcuate nucleus.
- No other significant changes in opioid receptor mRNA or protein levels were detected in the analyzed hypothalamic regions.
Conclusions:
- Olanzapine modulates the hypothalamic opioid system at an early stage of treatment.
- Increased mu opioid receptor availability in the arcuate nucleus may contribute to the metabolic side effects of olanzapine.
- Further research is needed to fully elucidate the role of opioid signaling in antipsychotic-induced weight gain.
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