| Literature DB >> 28451387 |
Guangdong Chen1, Xiaodong Lin1, Gongying Li2, Diego Jiang1, Zhiruo Lib2, Ronghuan Jiang3, Chuanjun Zhuo1.
Abstract
The aim of the present study was to investigate the effects of a commonly-used atypical antipsychotic, risperidone, on alterations in spatial learning and in the hippocampal brain-derived neurotrophic factor (BDNF)-tyrosine receptor kinase B (TrkB) signalling system caused by acute dizocilpine maleate (MK-801) treatment. In experiment 1, adult male Sprague-Dawley rats subjected to acute treatment of either low-dose MK801 (0.1 mg/kg) or normal saline (vehicle) were tested for spatial object recognition and hippocampal expression levels of BDNF, TrkB and the phophorylation of TrkB (p-TrkB). We found that compared to the vehicle, MK-801 treatment impaired spatial object recognition of animals and downregulated the expression levels of p-TrkB. In experiment 2, MK-801- or vehicle-treated animals were further injected with risperidone (0.1 mg/kg) or vehicle before behavioural testing and sacrifice. Of note, we found that risperidone successfully reversed the deleterious effects of MK-801 on spatial object recognition and upregulated the hippocampal BDNF-TrkB signalling system. Collectively, the findings suggest that cognitive deficits from acute N-methyl-D-aspartate receptor blockade may be associated with the hypofunction of hippocampal BDNF-TrkB signalling system and that risperidone was able to reverse these alterations.Entities:
Keywords: atypical antipsychotics; brain-derived neurotrophic factor; dizocilpine maleate; schizophrenia; spatial object recognition
Year: 2017 PMID: 28451387 PMCID: PMC5403402 DOI: 10.3892/br.2017.850
Source DB: PubMed Journal: Biomed Rep ISSN: 2049-9434
Acute MK-801 injection altered the spatial object recognition ability of rats (means ± SD).
| Groups | No. of rats | Activity distance during the habituation phase (m) | Exploration time during the familiarisation phase (s) | Exploration time for the objects in new locations (s) | Exploration time for the objects in old locations (s) | PI of the objects in new locations (%) |
|---|---|---|---|---|---|---|
| Control | 10 | 42.26±2.54 | 65.05±7.78 | 44.27±6.31 | 20.65±3.97[ | 69.20±3.35 |
| MK-801 (0.1 mg/kg) | 10 | 44.07±2.64 | 78.83±8.52 | 43.84±4.70 | 35.12±3.75 | 54.89±3.13[ |
Independent sample t-test compared with the control group
P<0.01. Paired sample t-test between the new and old locations of objects with regard to exploration time
P<0.01. SD, standard deviation; MK-801, dizocilpine maleate; PI, preference index.
Figure 1.Effects of acute MK-801 injection on the BDNF-TrkB signalling system in the rat hippocampus. An independent samples t-test compared MK-801 injection with the control group. (**P<0.01). MK-801, dizocilpine maleate; BDNF, brain-derived neurotrophic factor; TrkB, tyrosine receptor kinase B.
Risperidone reversed the role that MK-801 plays regarding the spatial object recognition ability changes in rats (means ± SD).
| Group | Number of rats | Activity distance during the habituation phase (m) | Exploration time during the familiarisation phase (s) | Exploration time for the objects in new locations (s) | Exploration time for objects in old locations (s) | PI of the objects in new locations (%) |
|---|---|---|---|---|---|---|
| Control | 8 | 37.54±1.84 | 62.20±6.79 | 42.78±5.23 | 18.43±2.24[ | 68.53±4.28[ |
| MK-801 | 8 | 37.21±3.13 | 71.33±6.63 | 34.99±4.58 | 33.83±4.47 | 50.78±3.99[ |
| Risperidone | 8 | 33.97±3.58 | 54.65±4.15 | 40.23±4.85 | 19.68±2.05[ | 66.19±3.46[ |
| Intervention | 8 | 36.17±2.38 | 64.21±7.95 | 41.24±6.69 | 21.23±2.52[ | 64.95±3.31[ |
A two-factor analysis of variance and the LSD test compared with the control group
P<0.01, and compared with the model group
P<0.05
P<0.01. A paired samples t-test regarding the exploration time for objects in new and old locations
P<0.01. SD, standard deviation; MK-801, dizocilpine maleate; PI, preference index; LSD, least significant difference.
Figure 2.The intervention functions of risperidone regarding the changes in the function of the BDNF-TrkB signalling system in the rat hippocampus caused by MK-801. Two-factor analysis of variance and an LSD test were performed; compared with the control group, **P<0.01; compared with the model group (*P<0.05). BDNF, brain-derived neurotrophic factor; TrkB, tyrosine receptor kinase B; MK-801, dizocilpine maleate; LSD, least significant difference.