Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Acute MPTP Treatment Impairs Dendritic Spine Density in the Mouse Hippocampus

View through CrossRef
Among the animal models of Parkinson’s disease (PD), the 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP)-lesioned mouse model has shown both dopaminergic (DA) damage and related motor control defects, as observed in patients with PD. Recent studies have suggested that the DA system interacts with the synaptic plasticity of the hippocampus in PD. However, little is known about how alterations in the hippocampal structural plasticity are affected by the DA damage in MPTP-lesioned models. In the present study, we investigated alterations in dendritic complexity and spine density in the mouse hippocampus following acute MPTP treatment (22 mg/kg, intraperitoneally, four times/day, 2-h intervals). We confirmed that acute MPTP treatment significantly decreased initial motor function and persistently reduced the number of tyrosine hydroxylase-positive DA neurons in the substantia nigra. Golgi staining showed that acute MPTP treatment significantly reduced the spine density of neuronal dendrites in the cornu ammonis 1 (CA1) apical/basal and dentate gyrus (DG) subregions of the mouse hippocampus at 8 and 16 days after treatment, although it did not affect dendritic complexity (e.g., number of crossing dendrites, total dendritic length, and branch points per neuron) in both CA1 and DG subregions at all time points after treatment. Therefore, the present study provides anatomical evidence that acute MPTP treatment affects synaptic structure in the hippocampus during the late phase after acute MPTP treatment in mice, independent of any changes in the dendritic arborization of hippocampal neurons. These findings offer data for the ability of the acute MPTP-lesioned mouse model to replicate the non-nigrostriatal lesions of clinical PD.
Title: Acute MPTP Treatment Impairs Dendritic Spine Density in the Mouse Hippocampus
Description:
Among the animal models of Parkinson’s disease (PD), the 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP)-lesioned mouse model has shown both dopaminergic (DA) damage and related motor control defects, as observed in patients with PD.
Recent studies have suggested that the DA system interacts with the synaptic plasticity of the hippocampus in PD.
However, little is known about how alterations in the hippocampal structural plasticity are affected by the DA damage in MPTP-lesioned models.
In the present study, we investigated alterations in dendritic complexity and spine density in the mouse hippocampus following acute MPTP treatment (22 mg/kg, intraperitoneally, four times/day, 2-h intervals).
We confirmed that acute MPTP treatment significantly decreased initial motor function and persistently reduced the number of tyrosine hydroxylase-positive DA neurons in the substantia nigra.
Golgi staining showed that acute MPTP treatment significantly reduced the spine density of neuronal dendrites in the cornu ammonis 1 (CA1) apical/basal and dentate gyrus (DG) subregions of the mouse hippocampus at 8 and 16 days after treatment, although it did not affect dendritic complexity (e.
g.
, number of crossing dendrites, total dendritic length, and branch points per neuron) in both CA1 and DG subregions at all time points after treatment.
Therefore, the present study provides anatomical evidence that acute MPTP treatment affects synaptic structure in the hippocampus during the late phase after acute MPTP treatment in mice, independent of any changes in the dendritic arborization of hippocampal neurons.
These findings offer data for the ability of the acute MPTP-lesioned mouse model to replicate the non-nigrostriatal lesions of clinical PD.

Related Results

SUB-CHRONIC MPTP-INDUCED PARKINSONISM: SELECTIVE SENSITIVITY OF THE BALB/c MICE AND THE PROPHYLACTIC ROLES OF NIGELLA SATIVA OIL
SUB-CHRONIC MPTP-INDUCED PARKINSONISM: SELECTIVE SENSITIVITY OF THE BALB/c MICE AND THE PROPHYLACTIC ROLES OF NIGELLA SATIVA OIL
Parkinsonism is a degenerative neurological syndrome characterised by dopamine deficiency in the basal ganglia. Despite ages of research, there is still lack of holistic and side-e...
Insulin‐regulated aminopeptidase inhibitor‐mediated increases in dendritic spine density are facilitated by glucose uptake
Insulin‐regulated aminopeptidase inhibitor‐mediated increases in dendritic spine density are facilitated by glucose uptake
AbstractEthyl2‐acetylamino‐7‐hydroxy‐4‐pyridin‐3‐yl‐4H‐chromene‐3‐carboxylate (HFI‐419), the benzopyran‐based inhibitor of insulin‐regulated aminopeptidase (IRAP), has previously b...
Role of trehalose in MPTP-induced injury of SH-SY5Y cells and its mechanism
Role of trehalose in MPTP-induced injury of SH-SY5Y cells and its mechanism
Objective: To establish a Parkinson's disease (PD) cell model of human neuroblastoma cells (SH-SY5Y) induced by 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP), and to explore ...
Alpha‐Synuclein induces hyperphosphorylation of Tau in the MPTP model of Parkinsonism
Alpha‐Synuclein induces hyperphosphorylation of Tau in the MPTP model of Parkinsonism
Many neurodegenerative diseases associated with functional Tau dysregulation, including Alzheimer's disease (AD) and other tauopathies, also...

Back to Top