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1.
Cereb Circ Cogn Behav ; 3: 100133, 2022.
Artículo en Inglés | MEDLINE | ID: mdl-36324401

RESUMEN

Background: Cerebral amyloid angiopathy (CAA) is common disorder of the elderly, a prominent comorbidity of Alzheimer's disease, and causes vascular cognitive impairment and dementia. Previously, we generated a transgenic rat model of capillary CAA type-1 that develops many pathological features of human disease. However, a complementary rat model of larger vessel CAA type-2 disease has been lacking. Methods: A novel transgenic rat model (rTg-D) was generated that produces human familial CAA Dutch E22Q mutant amyloid ß-protein (Aß) in brain and develops larger vessel CAA type-2. Quantitative biochemical and pathological analyses were performed to characterize the progression of CAA and associated pathologies in aging rTg-D rats. Results: rTg-D rats begin to accumulate Aß in brain and develop varying levels of larger vessel CAA type-2, in the absence of capillary CAA type-1, starting around 18 months of age. Larger vessel CAA was mainly composed of the Aß40 peptide and most prominent in surface leptomeningeal/pial vessels and arterioles of the cortex and thalamus. Cerebral microbleeds and small vessel occlusions were present mostly in the thalamic region of affected rTg-D rats. In contrast to capillary CAA type-1 the amyloid deposited within the walls of larger vessels of rTg-D rats did not promote perivascular astrocyte and microglial responses or accumulate the Aß chaperone apolipoprotein E. Conclusion: Although variable in severity, the rTg-D rats specifically develop larger vessel CAA type-2 that reflects many of the pathological features of human disease and provide a new model to investigate the pathogenesis of this condition.

2.
J Cereb Blood Flow Metab ; 41(5): 1103-1118, 2021 05.
Artículo en Inglés | MEDLINE | ID: mdl-32791876

RESUMEN

Diffuse white matter (WM) disease is highly prevalent in elderly with cerebral small vessel disease (cSVD). In humans, cSVD such as cerebral amyloid angiopathy (CAA) often coexists with Alzheimer's disease imposing a significant impediment for characterizing their distinct effects on WM. Here we studied the burden of age-related CAA pathology on WM disease in a novel transgenic rat model of CAA type 1 (rTg-DI). A cohort of rTg-DI and wild-type rats was scanned longitudinally using MRI for characterization of morphometry, cerebral microbleeds (CMB) and WM integrity. In rTg-DI rats, a distinct pattern of WM loss was observed at 9 M and 11 M. MRI also revealed manifestation of small CMB in thalamus at 6 M, which preceded WM loss and progressively enlarged until the moribund disease stage. Histology revealed myelin loss in the corpus callosum and thalamic CMB in all rTg-DI rats, the latter of which manifested in close proximity to occluded and calcified microvessels. The quantitation of CAA load in rTg-DI rats revealed that the most extensive microvascular Aß deposition occurred in the thalamus. For the first time using in vivo MRI, we show that CAA type 1 pathology alone is associated with a distinct pattern of WM loss.


Asunto(s)
Encéfalo/irrigación sanguínea , Angiopatía Amiloide Cerebral/patología , Hemorragia Cerebral/patología , Sustancia Blanca/patología , Animales , Encéfalo/diagnóstico por imagen , Encéfalo/patología , Calcinosis/complicaciones , Estudios de Casos y Controles , Angiopatía Amiloide Cerebral/complicaciones , Hemorragia Cerebral/diagnóstico por imagen , Enfermedades de los Pequeños Vasos Cerebrales/complicaciones , Cuerpo Calloso/patología , Imagen de Difusión Tensora/métodos , Modelos Animales de Enfermedad , Femenino , Carga Global de Enfermedades/estadística & datos numéricos , Imagen por Resonancia Magnética/métodos , Masculino , Microvasos/metabolismo , Microvasos/patología , Ratas , Ratas Transgénicas , Tálamo/patología , Sustancia Blanca/diagnóstico por imagen
3.
Physiol Rep ; 8(17): e14558, 2020 09.
Artículo en Inglés | MEDLINE | ID: mdl-32914562

RESUMEN

We generated a transgenic rat line that expresses oxytocin (OXT)-monomeric red fluorescent protein 1 (mRFP1) fusion gene to visualize the dynamics of OXT. In this transgenic rat line, hypothalamic OXT can be assessed under diverse physiological and pathophysiological conditions by semiquantitative fluorometry of mRFP1 fluorescence intensity as a surrogate marker for endogenous OXT. Using this transgenic rat line, we identified the changes in hypothalamic OXT synthesis under various physiological conditions. However, few reports have directly examined hypothalamic OXT synthesis under hyperosmolality or hypovolemia. In this study, hypothalamic OXT synthesis was investigated using the transgenic rat line after acute osmotic challenge and acute hypovolemia induced by intraperitoneal (i.p.) administration of 3% hypertonic saline (HTN) and polyethylene glycol (PEG), respectively. The mRFP1 fluorescence intensity in the paraventricular (PVN) and supraoptic nuclei (SON) was significantly increased after i.p. administration of HTN and PEG, along with robust Fos-like immunoreactivity (co-expression). Fos expression showed neuronal activation in the brain regions that are associated with the hypothalamus and/or are involved in maintaining water and electrolyte homeostasis in HTN- and PEG-treated rats. OXT and mRFP1 gene expressions were dramatically increased after HTN and PEG administration. The plasma OXT level was extremely increased after HTN and PEG administration. Acute osmotic challenge and acute hypovolemia induced upregulation of hypothalamic OXT in the PVN and SON. These results suggest that not only endogenous arginine vasopressin (AVP) but also endogenous OXT has a key role in maintaining body fluid homeostasis to cope with hyperosmolality and hypovolemia.


Asunto(s)
Hipotálamo/metabolismo , Hipovolemia/metabolismo , Presión Osmótica , Oxitocina/genética , Animales , Hipovolemia/fisiopatología , Proteínas Luminiscentes/genética , Proteínas Luminiscentes/metabolismo , Masculino , Osmorregulación , Oxitocina/metabolismo , Ratas , Transgenes , Regulación hacia Arriba , Proteína Fluorescente Roja
4.
J Neuroendocrinol ; 32(8): e12892, 2020 08.
Artículo en Inglés | MEDLINE | ID: mdl-32761684

RESUMEN

Osteoarthritis (OA) causes chronic joint pain and significantly impacts daily activities. Hence, developing novel treatment options for OA has become an increasingly important area of research. Recently, studies have reported that exogenous, as well as endogenous, hypothalamic-neurohypophysial hormones, oxytocin (OXT) and arginine-vasopressin (AVP), significantly contribute to nociception modulation. Moreover, the parvocellular OXT neurone (parvOXT) extends its projection to the superficial spinal dorsal horn, where it controls the transmission of nociceptive signals. Meanwhile, AVP produced in the magnocellular AVP neurone (magnAVP) is released into the systemic circulation where it contributes to pain management at peripheral sites. The parvocellular AVP neurone (parvAVP), as well as corticotrophin-releasing hormone (CRH), suppresses inflammation via activation of the hypothalamic-pituitary adrenal (HPA) axis. Previously, we confirmed that the OXT/AVP system is activated in rat models of pain. However, the roles of endogenous hypothalamic-neurohypophysial hormones in OA have not yet been characterised. In the present study, we investigated whether the OXT/AVP system is activated in a knee OA rat model. Our results show that putative parvOXT is activated and the amount of OXT-monomeric red fluorescent protein 1 positive granules in the ipsilateral superficial spinal dorsal horn increases in the knee OA rat. Furthermore, both magnAVP and parvAVP are activated, concurrent with HPA axis activation, predominantly modulated by AVP, and not CRH. The OXT/AVP system in OA rats was similar to that in systemic inflammation models, including adjuvant arthritis; however, magnocellular OXT neurones (magnOXT) were not activated in OA. Hence, localised chronic pain conditions, such as knee OA, activate the OXT/AVP system without impacting magnOXT.


Asunto(s)
Arginina Vasopresina/metabolismo , Sistema Hipotálamo-Hipofisario/metabolismo , Osteoartritis de la Rodilla/metabolismo , Oxitocina/metabolismo , Animales , Arginina Vasopresina/genética , Artralgia/genética , Artralgia/metabolismo , Artralgia/patología , Modelos Animales de Enfermedad , Hipotálamo/metabolismo , Masculino , Neuronas/metabolismo , Nocicepción/fisiología , Osteoartritis de la Rodilla/genética , Osteoartritis de la Rodilla/patología , Oxitocina/genética , Ratas , Ratas Transgénicas , Ratas Wistar
5.
Mol Pain ; 16: 1744806920943334, 2020.
Artículo en Inglés | MEDLINE | ID: mdl-32686583

RESUMEN

The neurohypophysial hormone oxytocin (OXT) is synthesized in the hypothalamic paraventricular and supraoptic nuclei. Recently, some studies have considered OXT to be important in sensory modulation and that the OXT protein is upregulated by acute and chronic nociception. However, the mechanism by which OXT is upregulated in neurons is unknown. In this study, we examined the resting membrane potentials and excitatory postsynaptic currents in OXT-ergic neurons in the paraventricular nucleus in adjuvant arthritis rat model, a model of chronic inflammation, using whole-cell patch-clamping. Transgenic rats expressing OXT and monomeric red fluorescent protein 1 (mRFP1) fusion protein to visualize the OXT-ergic neurons were used, and the OXT-mRFP1 transgenic rat model of adjuvant arthritis was developed by injection of heat-killed Mycobacterium butyricum. Furthermore, the feedback system of synthesized OXT was also examined using the OXT receptor antagonist L-368,899. We found that the resting membrane potentials and frequency of miniature excitatory postsynaptic currents and spontaneous excitatory postsynaptic currents in OXT-monomeric red fluorescent protein 1 neurons in the paraventricular nucleus were significantly increased in adjuvant arthritis rats. Furthermore, L-368,899 dose-dependently increased the frequency of miniature excitatory postsynaptic currents and spontaneous excitatory postsynaptic currents in OXT-ergic neurons. Following bath application of the GABAA receptor antagonist picrotoxin and the cannabinoid receptor 1 antagonist AM 251, L-368,899 still increased the frequency of miniature excitatory postsynaptic currents. However, following bath application of the nitric oxide synthase inhibitor Nω-Nitro-L-arginine methyl ester hydrochloride, L-368,899 did not alter the miniature excitatory postsynaptic current frequency. Thus, it is suggested that OXT-ergic neuron activity is upregulated via an increase in glutamate release, and that the upregulated OXT neurons have a feedback system with released endogenous OXT. It is possible that nitric oxide, but not GABA, may contribute to the feedback system of OXT neurons in chronic inflammation.


Asunto(s)
Artritis Experimental/metabolismo , Retroalimentación , Glutamatos/metabolismo , Hipotálamo/metabolismo , Neuronas/metabolismo , Oxitocina/metabolismo , Terminales Presinápticos/metabolismo , Transmisión Sináptica , Animales , Canfanos/farmacología , Modelos Animales de Enfermedad , Potenciales Postsinápticos Excitadores/efectos de los fármacos , Proteínas Luminiscentes/metabolismo , Masculino , Modelos Biológicos , NG-Nitroarginina Metil Éster/farmacología , Neuronas/efectos de los fármacos , Núcleo Hipotalámico Paraventricular/efectos de los fármacos , Núcleo Hipotalámico Paraventricular/metabolismo , Técnicas de Placa-Clamp , Picrotoxina/farmacología , Piperazinas/farmacología , Piperidinas/farmacología , Terminales Presinápticos/efectos de los fármacos , Pirazoles/farmacología , Ratas Transgénicas , Ratas Wistar , Receptores de Oxitocina/antagonistas & inhibidores , Receptores de Oxitocina/metabolismo , Transmisión Sináptica/efectos de los fármacos , Proteína Fluorescente Roja
6.
J Physiol Sci ; 69(3): 531-541, 2019 May.
Artículo en Inglés | MEDLINE | ID: mdl-30937882

RESUMEN

Acute loss of kidney function is a critical internal stressor. Arginine vasopressin (AVP) present in the parvocellular division of the paraventricular nucleus (PVN) plays a key role in the regulation of stress responses. However, hypothalamic AVP dynamics during acute kidney dysfunction remain unclear. In this study, we investigated the effects of bilateral nephrectomy on AVP, using a transgenic rat line that expressed the AVP-enhanced green fluorescent protein (eGFP). The eGFP fluorescent intensities in the PVN were dramatically increased after bilateral nephrectomy. The mRNA levels of eGFP, AVP, and corticotrophin-releasing hormone in the PVN were dramatically increased after bilateral nephrectomy. Bilateral nephrectomy also increased the levels of Fos-like immunoreactive cells in brainstem neurons. These results indicate that bilateral nephrectomy upregulates the AVP-eGFP synthesis. Further studies are needed to identify the neural and/or humoral factors that activate AVP synthesis and regulate neuronal circuits during acute kidney dysfunction.


Asunto(s)
Lesión Renal Aguda/metabolismo , Arginina Vasopresina/metabolismo , Hipotálamo/metabolismo , Riñón/metabolismo , Animales , Hormona Liberadora de Corticotropina/metabolismo , Proteínas Fluorescentes Verdes/metabolismo , Neuronas/metabolismo , Núcleo Hipotalámico Paraventricular/metabolismo , ARN Mensajero/metabolismo , Ratas , Ratas Transgénicas
7.
ACS Chem Neurosci ; 10(7): 3207-3217, 2019 07 17.
Artículo en Inglés | MEDLINE | ID: mdl-30977636

RESUMEN

Tryptophan hydroxylase (TPH) is the rate-limiting enzyme in the biosynthesis of the biogenic monoamine serotonin (5-hydroxytryptamine, 5-HT). Two existing TPH isoforms are responsible for the generation of two distinct serotonergic systems in vertebrates. TPH1, predominantly expressed in the gastrointestinal tract and pineal gland, mediates 5-HT biosynthesis in non-neuronal tissues, while TPH2, mainly found in the raphe nuclei of the brain stem, is accountable for the production of 5-HT in the brain. Neuronal 5-HT is a key regulator of mood and behavior and its deficiency has been implicated in a variety of neuropsychiatric disorders, e.g., depression and anxiety. To gain further insights into the complexity of central 5-HT modulations of physiological and pathophysiological processes, a new transgenic rat model, allowing an inducible gene knockdown of Tph2, was established based on doxycycline-inducible shRNA-expression. Biochemical phenotyping revealed a functional knockdown of Tph2 mRNA expression following oral doxycycline administration, with subsequent reductions in the corresponding levels of TPH2 enzyme expression and activity. Transgenic rats showed also significantly decreased tissue levels of 5-HT and its degradation product 5-Hydroxyindoleacetic acid (5-HIAA) in the raphe nuclei, hippocampus, hypothalamus, and cortex, while peripheral 5-HT concentrations in the blood remained unchanged. In summary, this novel transgenic rat model allows inducible manipulation of 5-HT biosynthesis specifically in the brain and may help to elucidate the role of 5-HT in the pathophysiology of affective disorders.


Asunto(s)
Neuronas/metabolismo , Núcleos del Rafe/metabolismo , Serotonina/metabolismo , Triptófano Hidroxilasa/metabolismo , Animales , Corteza Cerebral/metabolismo , Técnicas de Silenciamiento del Gen , Hipocampo/metabolismo , Ácido Hidroxiindolacético/metabolismo , Hipotálamo/metabolismo , Interferencia de ARN , Ratas , Ratas Transgénicas , Triptófano Hidroxilasa/genética
8.
J Neurosci ; 39(3): 485-502, 2019 01 16.
Artículo en Inglés | MEDLINE | ID: mdl-30478035

RESUMEN

It is well known that the posterior parietal cortex (PPC) and frontal motor cortices in primates preferentially control voluntary movements of contralateral limbs. The PPC of rats has been defined based on patterns of thalamic and cortical connectivity. The anatomical characteristics of this area suggest that it may be homologous to the PPC of primates. However, its functional roles in voluntary forelimb movements have not been well understood, particularly in the lateralization of motor limb representation; that is, the limb-specific activity representations for right and left forelimb movements. We examined functional spike activity of the PPC and two motor cortices, the primary motor cortex (M1) and the secondary motor cortex (M2), when head-fixed male rats performed right or left unilateral movements. Unlike primates, PPC neurons in rodents were found to preferentially represent ipsilateral forelimb movements, in contrast to the contralateral preference of M1 and M2 neurons. Consistent with these observations, optogenetic activation of PPC and motor cortices, respectively, evoked ipsilaterally and contralaterally biased forelimb movements. Finally, we examined the effects of optogenetic manipulation on task performance. PPC or M1 inhibition by optogenetic GABA release shifted the behavioral limb preference contralaterally or ipsilaterally, respectively. In addition, weak optogenetic PPC activation, which was insufficient to evoke motor responses by itself, shifted the preference ipsilaterally; although similar M1 activation showed no effects on task performance. These paradoxical observations suggest that the PPC plays evolutionarily different roles in forelimb control between primates and rodents.SIGNIFICANCE STATEMENT In rodents, the primary and secondary motor cortices (M1 and M2, respectively) are involved in voluntary movements with contralateral preference. However, it remains unclear whether and how the posterior parietal cortex (PPC) participates in controlling multiple limb movements. We recorded functional activity from these areas using a behavioral task to monitor movements of the right and left forelimbs separately. PPC neurons preferentially represented ipsilateral forelimb movements and optogenetic PPC activation evoked ipsilaterally biased forelimb movements. Optogenetic PPC inhibition via GABA release shifted the behavioral limb preference contralaterally during task performance, whereas weak optogenetic PPC activation, which was insufficient to evoke motor responses by itself, shifted the preference ipsilaterally. Our findings suggest rodent PPC contributes to ipsilaterally biased motor response and/or planning.


Asunto(s)
Miembro Anterior/fisiología , Lateralidad Funcional/fisiología , Movimiento/fisiología , Lóbulo Parietal/fisiología , Animales , Channelrhodopsins/genética , Channelrhodopsins/fisiología , Condicionamiento Operante , Electromiografía , Masculino , Corteza Motora/fisiología , Optogenética , Técnicas de Placa-Clamp , Desempeño Psicomotor/fisiología , Ratas , Ratas Transgénicas , Ácido gamma-Aminobutírico/metabolismo , Ácido gamma-Aminobutírico/fisiología
9.
Int J Mol Sci ; 19(8)2018 Aug 15.
Artículo en Inglés | MEDLINE | ID: mdl-30111743

RESUMEN

Chronic effects of a combination antiretroviral therapy (cART = tenofovir/emtricitatine + atazanavir/ritonavir) on systemic and cardiac oxidative stress/injury in HIV-1 transgenic (Tg) rats and protection by Mg-supplementation were assessed. cART (low doses) elicited no significant effects in normal rats, but induced time-dependent oxidative/nitrosative stresses: 2.64-fold increased plasma 8-isoprostane, 2.0-fold higher RBC oxidized glutathione (GSSG), 3.2-fold increased plasma 3-nitrotyrosine (NT), and 3-fold elevated basal neutrophil superoxide activity in Tg rats. Increased NT staining occurred within cART-treated HIV-Tg hearts, and significant decreases in cardiac systolic and diastolic contractile function occurred at 12 and 18 weeks. HIV-1 expression alone caused modest levels of oxidative stress and cardiac dysfunction. Significantly, cART caused up to 24% decreases in circulating Mg in HIV-1-Tg rats, associated with elevated renal NT staining, increased creatinine and urea levels, and elevated plasma substance P levels. Strikingly, Mg-supplementation (6-fold) suppressed all oxidative/nitrosative stress indices in the blood, heart and kidney and substantially attenuated contractile dysfunction (>75%) of cART-treated Tg rats. In conclusion, cART caused significant renal and cardiac oxidative/nitrosative stress/injury in Tg-rats, leading to renal Mg wasting and hypomagnesemia, triggering substance P-dependent neurogenic inflammation and cardiac dysfunction. These events were effectively attenuated by Mg-supplementation likely due to its substance P-suppressing and Mg's intrinsic anti-peroxidative/anti-calcium properties.


Asunto(s)
Antirretrovirales/efectos adversos , Corazón/efectos de los fármacos , Magnesio/uso terapéutico , Inflamación Neurogénica/inducido químicamente , Inflamación Neurogénica/prevención & control , Estrés Oxidativo/efectos de los fármacos , Sustancias Protectoras/uso terapéutico , Animales , Terapia Antirretroviral Altamente Activa/efectos adversos , Cardiotoxinas/efectos adversos , Expresión Génica , Infecciones por VIH/tratamiento farmacológico , VIH-1/efectos de los fármacos , VIH-1/genética , Corazón/fisiopatología , Riñón/efectos de los fármacos , Riñón/fisiopatología , Masculino , Inflamación Neurogénica/fisiopatología , Activación Neutrófila/efectos de los fármacos , Estrés Nitrosativo/efectos de los fármacos , Ratas Endogámicas F344 , Ratas Transgénicas
10.
Neuroscience ; 356: 64-77, 2017 07 25.
Artículo en Inglés | MEDLINE | ID: mdl-28527956

RESUMEN

We evaluated whether a c-fos-enhanced green fluorescent protein (eGFP) transgenic rat line, which expresses the c-fos and eGFP fusion gene, can be useful for the study of nociceptive pathways and processing. Capsaicin solution (15%) or formalin (5%) was subcutaneously injected bilaterally into the hind paws (100µL per each paw) of adult male c-fos-eGFP transgenic or wild-type rats. Control rats were injected with ethanol or physiological saline respectively. Transgenic and wild-type rats were perfused at 1.5, 3 and 6h post injection, with some transgenic rats being perfused 24h post injection. A comparison of eGFP in transgenic rats and Fos-like immunoreactivity (LI) in wild-type rats was made in the dorsal spinal cord, paraventricular nucleus (PVN) and supraoptic nucleus (SON). Oxytocin-LI (OXT-LI) was carried out to examine the activation of OXT neurons in the PVN and SON. Following capsaicin or formalin treatment, eGFP was maximally expressed at 6h in the spinal cord and 3h in the PVN and SON, whereas, Fos-LI was maximally expressed at 1.5h in all the regions we analyzed. Induction of eGFP in the OXT neurons was observed after capsaicin or formalin treatment, while Fos-LI in the OXT neurons was observed only after formalin treatment. These results demonstrate that the peak induction of c-fos-eGFP following exposure to acute nociceptive stimuli was delayed by around 1.5-4.5h, but more sensitive than endogenous Fos, suggesting that the c-fos-eGFP rat line can be useful for the study of nociceptive pathways and processing.


Asunto(s)
Capsaicina/farmacología , Formaldehído/farmacología , Proteínas Fluorescentes Verdes/metabolismo , Hipotálamo/metabolismo , Proteínas Proto-Oncogénicas c-fos/metabolismo , Médula Espinal/metabolismo , Animales , Arginina Vasopresina/metabolismo , Genes fos/genética , Neuronas/metabolismo , Núcleo Hipotalámico Paraventricular/metabolismo , Ratas Transgénicas , Núcleo Supraóptico/metabolismo
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