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1.
Epilepsia ; 60(5): 1005-1016, 2019 05.
Artículo en Inglés | MEDLINE | ID: mdl-31032909

RESUMEN

OBJECTIVE: Dogs with spontaneous or acquired epilepsy exhibit resemblance in etiology and disease course to humans, potentially offering a translational model of the human disease. Blood-brain barrier dysfunction (BBBD) has been shown to partake in epileptogenesis in experimental models of epilepsy. To test the hypothesis that BBBD can be detected in dogs with naturally occurring seizures, we developed a linear dynamic contrast-enhanced magnetic resonance imaging (DCE-MRI) analysis algorithm that was validated in clinical cases of seizing dogs and experimental epileptic rats. METHODS: Forty-six dogs with naturally occurring seizures of different etiologies and 12 induced epilepsy rats were imaged using DCE-MRI. Six healthy dogs and 12 naive rats served as control. DCE-MRI was analyzed by linear-dynamic method. BBBD scores were calculated in whole brain and in specific brain regions. Immunofluorescence analysis for transforming growth factor beta (TGF-ß) pathway proteins was performed on the piriform cortex of epileptic dogs. RESULTS: We found BBBD in 37% of dogs with seizures. A significantly higher cerebrospinal fluid to serum albumin ratio was found in dogs with BBBD relative to dogs with intact blood-brain barrier (BBB). A significant difference was found between epileptic and control rats when BBBD scores were calculated for the piriform cortex at 48 hours and 1 month after status epilepticus. Mean BBBD score of the piriform lobe in idiopathic epilepsy (IE) dogs was significantly higher compared to control. Immunohistochemistry results suggested active TGF-ß signaling and neuroinflammation in the piriform cortex of dogs with IE, showing increased levels of serum albumin colocalized with glial acidic fibrillary protein and pSMAD2 in an area where BBBD had been detected by linear DCE-MRI. SIGNIFICANCE: Detection of BBBD in dogs with naturally occurring epilepsy provides the ground for future studies for evaluation of novel treatment targeting the disrupted BBB. The involvement of the piriform lobe seen using our linear DCE-MRI protocol and algorithm emphasizes the possibility of using dogs as a translational model for the human disease.


Asunto(s)
Barrera Hematoencefálica , Enfermedades de los Perros/fisiopatología , Epilepsia/veterinaria , Imagen por Resonancia Magnética/métodos , Neuroimagen/métodos , Albúminas/líquido cefalorraquídeo , Algoritmos , Animales , Neoplasias Encefálicas/complicaciones , Neoplasias Encefálicas/fisiopatología , Neoplasias Encefálicas/veterinaria , Medios de Contraste , Convulsivantes/toxicidad , Enfermedades de los Perros/sangre , Enfermedades de los Perros/líquido cefalorraquídeo , Enfermedades de los Perros/diagnóstico por imagen , Perros , Epilepsia/diagnóstico por imagen , Epilepsia/metabolismo , Epilepsia/fisiopatología , Gliosis/etiología , Paraoxon/toxicidad , Corteza Piriforme/irrigación sanguínea , Corteza Piriforme/diagnóstico por imagen , Corteza Piriforme/metabolismo , Corteza Piriforme/patología , Estudios Prospectivos , Ratas , Albúmina Sérica/análisis , Transducción de Señal , Estado Epiléptico/inducido químicamente , Estado Epiléptico/fisiopatología , Factor de Crecimiento Transformador beta/fisiología
2.
Neuroimage ; 95: 176-84, 2014 Jul 15.
Artículo en Inglés | MEDLINE | ID: mdl-24675645

RESUMEN

Topographic representation of the outside world is a key feature of sensory systems, but so far it has been difficult to define how the activity pattern of the olfactory information is distributed at successive stages in the olfactory system. We studied odor-evoked activation patterns in the main olfactory bulb and the anterior piriform cortex of rats using functional ultrasound (fUS) imaging. fUS imaging is based on the use of ultrafast ultrasound scanners and detects variations in the local blood volume during brain activation. It makes deep brain imaging of ventral structures, such as the piriform cortex, possible. Stimulation with two different odors (hexanal and pentylacetate) induced the activation of odor-specific zones that were spatially segregated in the main olfactory bulb. Interestingly, the same odorants triggered the activation of the entire anterior piriform cortex, in all layers, with no distinguishable odor-specific areas detected in the power Doppler images. These fUS imaging results confirm the spatial distribution of odor-evoked activity in the main olfactory bulb, and furthermore, they reveal the absence of such a distribution in the anterior piriform cortex at the macroscopic scale in vivo.


Asunto(s)
Mapeo Encefálico , Bulbo Olfatorio/fisiología , Corteza Piriforme/fisiología , Animales , Masculino , Odorantes , Bulbo Olfatorio/irrigación sanguínea , Bulbo Olfatorio/diagnóstico por imagen , Corteza Piriforme/irrigación sanguínea , Corteza Piriforme/diagnóstico por imagen , Ratas , Ratas Long-Evans , Ultrasonografía
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