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Published on: December 11, 2009
The schizophrenia susceptibility gene neuregulin 1 modulates tolerance to the effects of cannabinoids
Aurélie A Boucher1, Glenn E Hunt, Jacques Micheau
1Department of Pharmacology, Bosch Institute, University of Sydney, Australia.
Abstract:
Cannabis increases the risk of schizophrenia in genetically vulnerable individuals. In this study we aim to show that the schizophrenia susceptibility gene neuregulin 1 (Nrg1) modulates the development of tolerance to cannabinoids in mice. Nrg1 heterozygous (HET) and wild-type (WT) mice were treated daily for 15 d with the synthetic analogue of Δ9-tetrahydrocannabinol, CP55,940 (0.4 mg/kg). We measured the impact of this exposure on locomotor activity, anxiety, prepulse inhibition (PPI), body temperature and FosB/ΔFosB immunohistochemistry. Tolerance to CP55,940-induced hypothermia and locomotor suppression developed more rapidly in Nrg1 HET mice than WT mice. Conversely in the light-dark test, while tolerance to the anxiogenic effect of CP55,940 developed in WT mice over days of testing, Nrg1 hypomorphs maintained marked anxiety even after 15 d of treatment. Repeated cannabinoid exposure selectively increased FosB/ΔFosB expression in the lateral septum, ventral part (LSV) of Nrg1 HET but not WT mice. On day 1 of exposure opposite effects of CP55,940 treatment were observed on PPI, i.e. it was facilitated in Nrg1 hypomorphs and impaired in WT mice, despite the drug significantly impairing the acoustic startle reflex equally in both genotypes. These effects of CP55,940 on PPI were not maintained as both genotypes became tolerant to cannabinoid action with repeated exposure. Our results highlight that Nrg1 modulates the development of cannabinoid tolerance dependent on the parameter being measured. Furthermore, these data reinforce the notion that the VLS is an important brain region involved in Nrg1-cannabinoid interactions.
Insights
The schizophrenia gene neuregulin 1 (Nrg1) influences how quickly mice develop tolerance to cannabinoids. Nrg1-deficient mice showed faster tolerance to some effects but not others, indicating complex gene-cannabinoid interactions.
Area of Science:
- Neuroscience
- Genetics
- Pharmacology
Background:
- Cannabis use is linked to increased schizophrenia risk in genetically susceptible individuals.
- The neuregulin 1 (Nrg1) gene is implicated in schizophrenia susceptibility.
- Understanding gene-cannabinoid interactions is crucial for public health.
Purpose of the Study:
- To investigate the role of the schizophrenia susceptibility gene Nrg1 in modulating cannabinoid tolerance.
- To determine how Nrg1 genetic variation affects behavioral and neurochemical responses to cannabinoids.
Main Methods:
- Nrg1 heterozygous (HET) and wild-type (WT) mice were treated with a synthetic cannabinoid (CP55,940) for 15 days.
- Assessed locomotor activity, anxiety (light-dark test), prepulse inhibition (PPI), body temperature, and FosB/ΔFosB expression.
- Focused on the lateral septum, ventral part (LSV) for immunohistochemistry.
Main Results:
- Nrg1 HET mice developed faster tolerance to CP55,940-induced hypothermia and locomotor suppression compared to WT mice.
- Nrg1 HET mice exhibited persistent anxiety, unlike WT mice which showed tolerance to the anxiogenic effects.
- Repeated cannabinoid exposure increased FosB/ΔFosB expression in the LSV of Nrg1 HET mice, but not WT mice.
Conclusions:
- Nrg1 significantly modulates the development of cannabinoid tolerance, with effects varying by behavioral parameter.
- The lateral septum, ventral part (LSV) is identified as a key brain region in Nrg1-cannabinoid interactions.
- These findings contribute to understanding the genetic basis of differential responses to cannabinoids and schizophrenia risk.
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