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1.
Neurobiol Aging ; 107: 142-152, 2021 11.
Article de Anglais | MEDLINE | ID: mdl-34433125

RÉSUMÉ

With the emergence of disease-modifying therapies for Parkinson's disease, reliable longitudinal markers are needed to quantify pathology and demonstrate disease progression. We developed the A53T-AAV rat model of synucleinopathy by combining longitudinal measures over 12 weeks. We first characterized the progression of the motor and dopaminergic deficits. Then, we monitored the disease progression using the [18F]FMT Positron Emission Tomography (PET) radiotracer. The nigral injection of A53T-AAV led to an increase in phosphorylated α-synuclein on S129, a progressive accumulation of α-synuclein aggregates, and a decrease of dopaminergic function associated with a deterioration of motor activity. The longitudinal monitoring of A53T-AAV rats with [18F]FMT PET showed a progressive reduction of the Kc outcome parameter in the caudate putamen from the lesioned side. Interestingly, the progressive reduction in the [18F]FMT PET signal correlated with defects in the stepping test. In conclusion, we established a progressive rat model of α-synuclein pathology which monitors the deficit longitudinally using both the [18F]FMT PET tracer and behavioral parameters, 2 features that have strong relevance for translational approaches.


Sujet(s)
Dependovirus , Neurones dopaminergiques/anatomopathologie , Neurones dopaminergiques/physiologie , Activité motrice , Maladie de Parkinson/imagerie diagnostique , Maladie de Parkinson/physiopathologie , Synucléinopathies/imagerie diagnostique , Synucléinopathies/physiopathologie , Animaux , Modèles animaux de maladie humaine , Évolution de la maladie , Radio-isotopes du fluor , Mâle , Maladie de Parkinson/métabolisme , Maladie de Parkinson/anatomopathologie , Phosphorylation , Tomographie par émission de positons , Agrégats de protéines , Rat Sprague-Dawley , Synucléinopathies/métabolisme , Synucléinopathies/anatomopathologie , Tyrosine , alpha-Synucléine/métabolisme
2.
Int J Mol Sci ; 21(19)2020 Sep 23.
Article de Anglais | MEDLINE | ID: mdl-32977526

RÉSUMÉ

Seizures are common in patients with high-grade gliomas (30-60%) and approximately 15-30% of glioblastoma (GB) patients develop drug-resistant epilepsy. Reliable animal models are needed to develop adequate treatments for glioma-related epilepsy. Therefore, fifteen rats were inoculated with F98 GB cells (GB group) and four rats with vehicle only (control group) in the right entorhinal cortex. MRI was performed to visualize tumor presence. A subset of seven GB and two control rats were implanted with recording electrodes to determine the occurrence of epileptic seizures with video-EEG recording over multiple days. In a subset of rats, tumor size and expression of tumor markers were investigated with histology or mRNA in situ hybridization. Tumors were visible on MRI six days post-inoculation. Time-dependent changes in tumor morphology and size were visible on MRI. Epileptic seizures were detected in all GB rats monitored with video-EEG. Twenty-one days after inoculation, rats were euthanized based on signs of discomfort and pain. This study describes, for the first time, reproducible tumor growth and spontaneous seizures upon inoculation of F98 cells in the rat entorhinal cortex. The development of this new model of GB-related epilepsy may be valuable to design new therapies against tumor growth and associated epileptic seizures.


Sujet(s)
Tumeurs du cerveau , Électroencéphalographie , Épilepsie , Gliome , Tumeurs expérimentales , Animaux , Tumeurs du cerveau/métabolisme , Tumeurs du cerveau/anatomopathologie , Tumeurs du cerveau/physiopathologie , Lignée cellulaire tumorale , Épilepsie/métabolisme , Épilepsie/anatomopathologie , Épilepsie/physiopathologie , Gliome/métabolisme , Gliome/anatomopathologie , Gliome/physiopathologie , Mâle , Tumeurs expérimentales/métabolisme , Tumeurs expérimentales/anatomopathologie , Tumeurs expérimentales/physiopathologie , Rats , Rats de lignée F344
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