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Métodos Terapéuticos y Terapias MTCI
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1.
Neurosci Res ; 117: 42-47, 2017 Apr.
Artículo en Inglés | MEDLINE | ID: mdl-27871905

RESUMEN

We have shown previously that when applied separately, 670nm and 810nm near infrared light (NIr) reduces behavioural deficits and offers neuroprotection in a MPTP (1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine) mouse model of Parkinson's disease. Here, we explored the beneficial outcomes when these NIr wavelengths were applied both together, either concurrently (at the same time) or sequentially (one after the other). Mice received MPTP injections (total of 50mg/kg) and had extracranial application of 670nm and/or 810nm NIr. Behavioural activity was tested with an open-field test and brains were processed for tyrosine hydroxylase immunohistochemistry and stereology. Our results showed that when 670nm and 810nm NIr were applied both together and sequentially, there was a greater overall beneficial outcome - increased locomotor activity and number of tyrosine hydroxylase immunoreactive cells in the substantia nigra pars compacta - than when they were applied either separately, or in particular, both together and concurrently. In summary, our findings have important implications for future use of NIr therapy in humans, that there are some combinations of wavelengths that provide more beneficial outcome than others.


Asunto(s)
1-Metil-4-fenil-1,2,3,6-Tetrahidropiridina/farmacología , Fármacos Neuroprotectores/farmacología , Trastornos Parkinsonianos/metabolismo , Sustancia Negra/metabolismo , Animales , Modelos Animales de Enfermedad , Neuronas Dopaminérgicas/metabolismo , Luz , Terapia por Luz de Baja Intensidad , Ratones Endogámicos BALB C , Trastornos Parkinsonianos/inducido químicamente , Sustancia Negra/efectos de los fármacos , Tirosina 3-Monooxigenasa/metabolismo
2.
Endocrinology ; 156(12): 4769-80, 2015 Dec.
Artículo en Inglés | MEDLINE | ID: mdl-26402844

RESUMEN

Transgenic mice, including lines targeting corticotropin-releasing factor (CRF or CRH), have been extensively employed to study stress neurobiology. These powerful tools are poised to revolutionize our understanding of the localization and connectivity of CRH-expressing neurons, and the crucial roles of CRH in normal and pathological conditions. Accurate interpretation of studies using cell type-specific transgenic mice vitally depends on congruence between expression of the endogenous peptide and reporter. If reporter expression does not faithfully reproduce native gene expression, then effects of manipulating unintentionally targeted cells may be misattributed. Here, we studied CRH and reporter expression patterns in 3 adult transgenic mice: Crh-IRES-Cre;Ai14 (tdTomato mouse), Crfp3.0CreGFP, and Crh-GFP BAC. We employed the CRH antiserum generated by Vale after validating its specificity using CRH-null mice. We focused the analyses on stress-salient regions, including hypothalamus, amygdala, bed nucleus of the stria terminalis, and hippocampus. Expression patterns of endogenous CRH were consistent among wild-type and transgenic mice. In tdTomato mice, most CRH-expressing neurons coexpressed the reporter, yet the reporter identified a few non-CRH-expressing pyramidal-like cells in hippocampal CA1 and CA3. In Crfp3.0CreGFP mice, coexpression of CRH and the reporter was found in central amygdala and, less commonly, in other evaluated regions. In Crh-GFP BAC mice, the large majority of neurons expressed either CRH or reporter, with little overlap. These data highlight significant diversity in concordant expression of reporter and endogenous CRH among 3 available transgenic mice. These findings should be instrumental in interpreting important scientific findings emerging from the use of these potent neurobiological tools.


Asunto(s)
Encéfalo/metabolismo , Hormona Liberadora de Corticotropina/genética , Genes Reporteros/genética , Neuronas/metabolismo , ARN Mensajero/metabolismo , Amígdala del Cerebelo/metabolismo , Animales , Proteínas Fluorescentes Verdes , Hipocampo/metabolismo , Hipotálamo/metabolismo , Sitios Internos de Entrada al Ribosoma , Masculino , Ratones , Ratones Transgénicos , Núcleo Hipotalámico Paraventricular/citología , Núcleo Hipotalámico Paraventricular/metabolismo , Núcleos Septales/metabolismo , Transcriptoma
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