155 resultados para Intranasal


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The immunogenicity of proteins encapsulated in poly(DL-lactide-co-glycolide) (PLG) microspheres has not been investigated to any extent in large animal models. In this study, IgG and IgA responses to ovalbumin (OVA), encapsulated in microspheres was investigated following intranasal inoculation into calves. Scanning electron microscopy and flow cytometric analysis demonstrated a uniform microsphere population with a diameter of <2.5 micrometers. Ovalbumin was released steadily from particles stored in PBS almost in a linear fashion, and after 4 weeks many particles showed cracks and fissures in their surface structure. Following intranasal inoculation of calves with different doses of encapsulated antigen, mean levels of ovalbumin-specific IgA were observed to increase steadily but significant differences in IgA levels (from the pre-inoculation level) were only observed following a second intranasal inoculation. With 0.5 and 1.0mg doses of antigen, ovalbumin-specific IgG was also detected in serum. Ovalbumin-specific IgA persisted in nasal secretions for a considerable period of time and were still detectable in four out of seven animals, 6 months after inoculation.

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Experiments were undertaken to characterize a noninvasive chronic, model of nasal congestion in which nasal patency is measured using acoustic rhinometry. Compound 48/80 was administered intranasally to elicit nasal congestion in five beagle dogs either by syringe (0.5 ml) in thiopental sodium-anesthetized animals or as a mist (0.25 ml) in the same animals in the conscious state. Effects of mast cell degranulation on nasal cavity volume as well as on minimal cross-sectional area (A(min)) and intranasal distance to A(min) (D(min)) were studied. Compound 48/80 caused a dose-related decrease in nasal cavity volume and A(min) together with a variable increase in D(min). Maximal responses were seen at 90-120 min. Compound 48/80 was less effective in producing nasal congestion in conscious animals, which also had significantly larger basal nasal cavity volumes. These results demonstrate the utility of using acoustic rhinometry to measure parameters of nasal patency in dogs and suggest that this model may prove useful in studies of the actions of decongestant drugs.

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Toll-like receptors (TLRs) are crucial in the innate immune response to pathogens, in that they recognize and respond to pathogen associated molecular patterns, which leads to activation of intracellular signaling pathways and altered gene expression. Vaccinia virus (VV), the poxvirus used to vaccinate against smallpox, encodes proteins that antagonize important components of host antiviral defense. Here we show that the VV protein A52R blocks the activation of the transcription factor nuclear factor kappa B (NF-kappa B) by multiple TLRs, including TLR3, a recently identified receptor for viral RNA. A52R associates with both interleukin 1 receptor-associated kinase 2 (IRAK2) and tumor necrosis factor receptor-associated factor 6 (TRAF6), two key proteins important in TLR signal transduction. Further, A52R could disrupt signaling complexes containing these proteins. A virus deletion mutant lacking the A52R gene was attenuated compared with wild-type and revertant controls in a murine intranasal model of infection. This study reveals a novel mechanism used by VV to suppress the host immunity. We demonstrate viral disabling of TLRs, providing further evidence for an important role for this family of receptors in the antiviral response.

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Oxytocin (OT) influences how humans process information about others. Whether OT affects the processing of information about oneself remains unknown. Using a double-blind, placebo-controlled within-subject design, we recorded event-related potentials (ERPs) from adults during trait judgments about oneself and a celebrity and during judgments on word valence, after intranasal OT or placebo administration. We found that OT vs. placebo treatment reduced the differential amplitudes of a fronto-central positivity at 220-280 ms (P2) during self- vs. valence-judgments. OT vs. placebo treatment tended to reduce the differential amplitude of a late positive potential at 520-1000 ms (LPP) during self-judgments but to increase the differential LPP amplitude during other-judgments. OT effects on the differential P2 and LPP amplitudes to self- vs. celebrity-judgments were positively correlated with a measure of interdependence of self-construals. Thus OT modulates the neural correlates of self-referential processing and this effect varies as a function of interdependence.

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Nasal congestion is one of the most troublesome symptoms of many upper airways diseases. We characterized the effect of selective α2c-adrenergic agonists in animal models of nasal congestion. In porcine mucosa tissue, compound A and compound B contracted nasal veins with only modest effects on arteries. In in vivo experiments, we examined the nasal decongestant dose-response characteristics, pharmacokinetic/pharmacodynamic relationship, duration of action, potential development of tolerance, and topical efficacy of α2c-adrenergic agonists. Acoustic rhinometry was used to determine nasal cavity dimensions following intranasal compound 48/80 (1%, 75 µl). In feline experiments, compound 48/80 decreased nasal cavity volume and minimum cross-sectional areas by 77% and 40%, respectively. Oral administration of compound A (0.1-3.0 mg/kg), compound B (0.3-5.0 mg/kg), and d-pseudoephedrine (0.3 and 1.0 mg/kg) produced dose-dependent decongestion. Unlike d-pseudoephedrine, compounds A and B did not alter systolic blood pressure. The plasma exposure of compound A to produce a robust decongestion (EC(80)) was 500 nM, which related well to the duration of action of approximately 4.0 hours. No tolerance to the decongestant effect of compound A (1.0 mg/kg p.o.) was observed. To study the topical efficacies of compounds A and B, the drugs were given topically 30 minutes after compound 48/80 (a therapeutic paradigm) where both agents reversed nasal congestion. Finally, nasal-decongestive activity was confirmed in the dog. We demonstrate that α2c-adrenergic agonists behave as nasal decongestants without cardiovascular actions in animal models of upper airway congestion.

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Vaccination procedures within the cattle industry are important disease control tools to minimize economic and welfare burdens associated with respiratory pathogens. However, new vaccine, antigen and carrier technologies are required to combat emerging viral strains and enhance the efficacy of respiratory vaccines, particularly at the point of pathogen entry. New technologies, specifically metabolomic profiling, could be applied to identify metabolite immune-correlates representative of immune protection following vaccination aiding in the design and screening of vaccine candidates. This study for the first time demonstrates the ability of untargeted UPLC-MS metabolomic profiling to identify metabolite immune correlates characteristic of immune responses following mucosal vaccination in calves. Male Holstein Friesian calves were vaccinated with Pfizer Rispoval® PI3 + RSV intranasal vaccine and metabolomic profiling of post-vaccination plasma revealed 12 metabolites whose peak intensities differed significantly from controls. Plasma levels of glycocholic acid, N-[(3α,5β,12α)-3,12-Dihydroxy-7,24-dioxocholan-24-yl]glycine, uric acid and biliverdin were found to be significantly elevated in vaccinated animals following secondary vaccine administration, whereas hippuric acid significantly decreased. In contrast, significant upregulation of taurodeoxycholic acid and propionylcarnitine levels were confined to primary vaccine administration. Assessment of such metabolite markers may provide greater information on the immune pathways stimulated from vaccine formulations and benchmarking early metabolomic responses to highly immunogenic vaccine formulations could provide a means for rapidly assessing new vaccine formulations. Furthermore, the identification of metabolic systemic immune response markers which relate to specific cell signaling pathways of the immune system could allow for targeted vaccine design to stimulate key pathways which can be assessed at the metabolic level.

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Human respiratory syncytial virus (HRSV) is the most important viral cause of severe respiratory tract disease in infants. Two subgroups (A and B) have been identified, which cocirculate during, or alternate between, yearly epidemics and cause indistinguishable disease. Existing in vitro and in vivo models of HRSV focus almost exclusively on subgroup A viruses. Here, a recombinant (r) subgroup B virus (rHRSV(B05)) was generated based on a consensus genome sequence obtained directly from an unpassaged clinical specimen from a hospitalized infant. An additional transcription unit containing the gene encoding enhanced green fluorescent protein (EGFP) was introduced between the phosphoprotein and matrix genes (position 5) of the genome to generate rHRSV(B05)EGFP(5). The recombinant viruses replicated efficiently in both HEp-2 cells and in well-differentiated normal human bronchial cells grown at air-liquid interface. Intranasal infection of cotton rats (Sigmodon hispidus) resulted in high numbers of EGFP(+) cells in epithelia of the nasal septum and conchae. When administered in a relatively large inoculum volume, the virus also replicated efficiently in bronchiolar epithelial cells and spread extensively in both the upper and lower respiratory tracts. Virus replication was not observed in ciliated epithelial cells of the trachea. This is the first virulent rHRSV strain with the genetic composition of a currently circulating wild-type virus. In vivo tracking of infected cells by means of EGFP fluorescence in the absence of cytopathic changes increases the sensitivity of virus detection in HRSV pathogenesis studies.

IMPORTANCE

Virology as a discipline has depended on monitoring cytopathic effects following virus culture in vitro. However, wild-type viruses isolated from patients often do not cause significant changes to infected cells, necessitating blind passage. This can lead to genetic and phenotypic changes and the generation of high-titer, laboratory-adapted viruses with diminished virulence in animal models of disease. To address this, we determined the genome sequence of an unpassaged human respiratory syncytial virus from a sample obtained directly from an infected infant, assembled a molecular clone, and recovered a wild-type recombinant virus. Addition of a gene encoding enhanced green fluorescent protein allowed this wild-type virus to be tracked in primary human cells and living animals in the absence of significant cytopathic effects. Imaging of fluorescent cells proved to be a highly valuable tool for monitoring the spread of virus and may help improve assays for evaluating novel intervention strategies.

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Mesenchymal stromal cells (MSC) have been reported to improve bacterial clearance in pre-clinical models of Acute Respiratory Distress Syndrome (ARDS) and sepsis. The mechanism of this effect is not fully elucidated yet. The primary objective of this study was to investigate the hypothesis that the anti-microbial effect of MSC in vivo depends on their modulation of macrophage phagocytic activity which occurs through mitochondrial transfer. We established that selective depletion of alveolar macrophages (AM) with intranasal (IN) administration of liposomal clodronate resulted in complete abrogation of MSC anti-microbial effect in the in vivo model of E.coli pneumonia. Furthermore, we showed that MSC administration was associated with enhanced AM phagocytosis in vivo. We showed that direct co-culture of MSC with monocyte-derived macrophages (MDMs) enhanced their phagocytic capacity. By fluorescent imaging and flow cytometry we demonstrated extensive mitochondrial transfer from MSC to macrophages which occurred at least partially through TNT-like structures. We also detected that lung macrophages readily acquire MSC mitochondria in vivo, and macrophages which are positive for MSC mitochondria display more pronounced phagocytic activity. Finally, partial inhibition of mitochondrial transfer through blockage of TNT formation by MSC resulted in failure to improve macrophage bioenergetics and complete abrogation of the MSC effect on macrophage phagocytosis in vitro and the anti-microbial effect of MSC in vivo.

Collectively, this work for the first time demonstrates that mitochondrial transfer from MSC to innate immune cells leads to enhancement in phagocytic activity and reveals an important novel mechanism for the anti-microbial effect of MSC in ARDS.

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La maladie d’Alzheimer (MA) est la maladie neurodégénérative qui cause le plus important nombre de cas de démence. On estime que près de 15% des canadiens âgés de plus de 65 ans sont atteints de la MA. Avec le vieillissement de la population, le nombre de cas augmentera de manière substantielle dans les prochaines années. À l’heure actuelle, aucun traitement ne permet de ralentir la progression de la maladie. Pour plus de 99% des cas, ses causes exactes demeurent indéterminées. Toutefois, de nombreux facteurs de risque ont été identifiés. Parmi eux, on retrouve plusieurs facteurs liés au métabolisme énergétique dont l’obésité et le diabète de type 2 (DT2). De manière intéressante, des modifications du métabolisme, telles qu’une résistance à l’insuline centrale et périphérique, sont également observées chez les patients Alzheimer. Afin de mieux comprendre l’interaction entre le DT2 et la MA, nous avons d’abord étudié les altérations métaboliques chez la souris triple transgénique (3xTg-AD), un modèle murin de la MA. Nous avons, en premier lieu, observé une intolérance au glucose qui progresse avec l’âge, qui est plus importante chez les femelles et qui semble liée à l’accumulation du peptide beta-amyloïde (Aβ) humain dans le pancréas. Ensuite, nous avons nourri cette souris avec une diète riche en gras pour vérifier l’impact d’une aggravation des déficits métaboliques sur la pathologie Alzheimer. L’aggravation de l’intolérance au glucose chez les souris 3xTg-AD semblait liée à l’atrophie des îlots de Langerhans et, en conséquence, à une réduction de la production d’insuline en réponse à l’injection de glucose. En plus de l’aggravation des déficits métaboliques, la diète riche en gras a augmenté de manière drastique l’accumulation de la forme soluble du peptide Aβ dans le cortex et a déterioré la mémoire des souris 3xTg-AD. De manière intéressante, l’élévation du peptide Aβ et les troubles de la mémoire ont été rétablis par l’administration d’une seule dose d’insuline. Aussi, nous avons observé une augmentation du peptide Aβ dans le plasma 30 minutes à la suite de l’injection d’insuline, suggérant qu’il est possible que la baisse rapide du peptide soit en partie causée par une élévation de la clairance du peptide au cerveau. Ces résultats renforcent les évidences supportant le potentiel thérapeutique de l’insuline dans le traitement de la MA. Toutefois, les résultats chez les patients mettent en lumière l’inefficacité de l’administration intranasale d’insuline chez les porteurs de l’allèle 4 du gène de l’apolipoprotéine E (APOE4). Afin de comprendre les raisons qui expliquent cette différence de réponse à l’insuline chez les porteurs de l’APOE4, nous avons injecté des souris exprimant l’APOE3 et l’APOE4 humain avec de l’insuline dans le but de vérifier l’effet central et périphérique de l’insuline chez ces animaux. Les souris APOE4 montrent une plus importante élévation de la signalisation de l’insuline au cerveau comparativement aux souris APOE3. Cette plus haute réponse est aussi associée à une élévation plus importante de la phosphorylation de la protéine tau, un marqueur neuropathologique de la MA. En somme, ces résultats suggèrent qu’il existe un cercle vicieux entre la MA et le DT2. L’administration d’insuline a un potentiel thérapeutique intéressant pour la MA, malgré des effets limités chez les patients APOE4 en raison de son impact probable sur la phosphorylation de la protéine tau.

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A 70-year-old male rural worker was referred to our clinic with widespread grey pigmentation of the skin and nails. The condition had been asymptomatic for its entire duration (5 years). He reported past intranasal application of 10% Silver Vitellinate. A skin biopsy was performed and histology corroborated the clinical diagnosis of Argyria. This case represents a currently rare dermatological curiosity. Although silver colloids and salts have been withdrawn and/or banned by some drug surveillance agencies, they continue to be freely sold and unregulated as food supplements and as ingredients in alternative medicines, thereby risking the emergence of new cases of silver poisoning.

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To specifically induce a mucosal antibody response to purified human papillomavirus type 16 (HPV16) virus-like particles (VLP), we immunized female BALB/c mice orally, intranasally, and/or parenterally and evaluated cholera toxin (CT) as a mucosal adjuvant. Anti-HPV16 VLP immunoglobulin G (IgG) and IgA titers in serum, saliva, and genital secretions were measured by enzyme-linked immunosorbent assay (ELISA). Systemic immunizations alone induced HPV16 VLP-specific IgG in serum and, to a lesser extent, in genital secretions but no secretory IgA. Oral immunization, even in the presence of CT, was inefficient. However, three nasal immunizations with 5 microgram of VLP given at weekly intervals to anesthetized mice induced high (>10(4)) and long-lasting (>15 weeks) titers of anti-HPV16 VLP antibodies in all samples, including IgA and IgG in saliva and genital secretions. CT enhanced the VLP-specific antibody response 10-fold in serum and to a lesser extent in saliva and genital secretions. Nasal immunization of conscious mice compared to anesthetized mice was inefficient and correlated with the absence of uptake of a marker into the lung. However, a 1-microgram VLP systemic priming followed by two 5-microgram VLP intranasal boosts in conscious mice induced both HPV16 VLP-specific IgG and IgA in secretions, although the titers were lower than in anesthetized mice given three intranasal immunizations. Antibodies in serum, saliva, and genital secretions of immunized mice were strongly neutralizing in vitro (50% neutralization with ELISA titers of 65 to 125). The mucosal and systemic/mucosal HPV16 VLP immunization protocols that induced significant titers of neutralizing IgG and secretory IgA in mucosal secretions in mice may be relevant to genital HPV VLP-based human vaccine trials.

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Une morbidité et une mortalité néonatales élevées limitent l’efficacité du clonage somatique chez les bovins. Des malformations myoarthrosquelettiques, des anomalies ombilicales, des problèmes respiratoires et de la faiblesse ont été fréquemment observés chez les veaux clonés nouveaux-nés. Cette étude rétrospective porte sur 31 veaux clonés. Ses objectifs étaient de décrire les problèmes respiratoires rencontrés, leur évolution au cours du temps, les traitements instaurés pour soutenir la fonction respiratoire et la réponse aux traitements. Vingt-deux veaux ont souffert de problèmes respiratoires. La tachypnée, l’hypoxémie et l’hypercapnie sont les signes cliniques les plus fréquemment observés. L’analyse des gaz sanguins a été un outil essentiel dans le diagnostic et le suivi de la fonction respiratoire. La radiographie a permis une évaluation globale du poumon. L’oxygénothérapie intranasale et la ventilation mécanique ont permis de limiter la mortalité due à une insuffisance respiratoire à 18% (4/22). Cette étude a permis d’émettre des hypothèses quant à l’origine des problèmes respiratoires chez les veaux clonés. Plus d’une maladie semblent affecter les veaux clonés. La déficience en surfactant, l’hypertension pulmonaire persistante et le retard de résorption du fluide pulmonaire figurent parmi les entités pathologiques les plus probables.

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Objetivo: El siguiente estudio tiene como objetivo determinar, los valores de RANTES, posterior a la exposición a ácaros, para evaluar su asociación con la escala ARIA, en el grupo de pacientes seleccionado. Diseño: Estudio descriptivo correlacional, Materiales y Métodos: Se incluyeron 17 pacientes que consultaron por Rinitis Alérgica al Hospital de la Samaritana entre el 01 Julio del 2010 y el 01 Julio del 2011, y que cumplieron los criterios de selección, de los cuales se obtuvieron 34 muestras de lavados nasales posterior a provocación intranasal con ácaros. Resultados: Los pacientes mostraron mayor tendencia a pertenecer al grupo de síntomas de mayor severidad y frecuencia según la escala ARIA. Los valores de RANTES encontrados en lavados nasales tuvieron un promedio de 8,1 pg/ml (+/- 19DS). Conclusión: Se encontró una positividad en los valores de la citoquina CCL5 en los lavados nasales del 20% de los pacientes. El coeficiente de correlación obtenido, muestra una asociación débil.

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La butirilcolinesterasa humana (BChE; EC 3.1.1.8) es una enzima polimórfica sintetizada en el hígado y en el tejido adiposo, ampliamente distribuida en el organismo y encargada de hidrolizar algunos ésteres de colina como la procaína, ésteres alifáticos como el ácido acetilsalicílico, fármacos como la metilprednisolona, el mivacurium y la succinilcolina y drogas de uso y/o abuso como la heroína y la cocaína. Es codificada por el gen BCHE (OMIM 177400), habiéndose identificado más de 100 variantes, algunas no estudiadas plenamente, además de la forma más frecuente, llamada usual o silvestre. Diferentes polimorfismos del gen BCHE se han relacionado con la síntesis de enzimas con niveles variados de actividad catalítica. Las bases moleculares de algunas de esas variantes genéticas han sido reportadas, entre las que se encuentra las variantes Atípica (A), fluoruro-resistente del tipo 1 y 2 (F-1 y F-2), silente (S), Kalow (K), James (J) y Hammersmith (H). En este estudio, en un grupo de pacientes se aplicó el instrumento validado Lifetime Severity Index for Cocaine Use Disorder (LSI-C) para evaluar la gravedad del consumo de “cocaína” a lo largo de la vida. Además, se determinaron Polimorfismos de Nucleótido Simple (SNPs) en el gen BCHE conocidos como responsables de reacciones adversas en pacientes consumidores de “cocaína” mediante secuenciación del gen y se predijo el efecto delos SNPs sobre la función y la estructura de la proteína, mediante el uso de herramientas bio-informáticas. El instrumento LSI-C ofreció resultados en cuatro dimensiones: consumo a lo largo de la vida, consumo reciente, dependencia psicológica e intento de abandono del consumo. Los estudios de análisis molecular permitieron observar dos SNPs codificantes (cSNPs) no sinónimos en el 27.3% de la muestra, c.293A>G (p.Asp98Gly) y c.1699G>A (p.Ala567Thr), localizados en los exones 2 y 4, que corresponden, desde el punto de vista funcional, a la variante Atípica (A) [dbSNP: rs1799807] y a la variante Kalow (K) [dbSNP: rs1803274] de la enzima BChE, respectivamente. Los estudios de predicción In silico establecieron para el SNP p.Asp98Gly un carácter patogénico, mientras que para el SNP p.Ala567Thr, mostraron un comportamiento neutro. El análisis de los resultados permite proponer la existencia de una relación entre polimorfismos o variantes genéticas responsables de una baja actividad catalítica y/o baja concentración plasmática de la enzima BChE y algunas de las reacciones adversas ocurridas en pacientes consumidores de cocaína.

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La inducción anestésica en niños es uno de los mayores retos para los anestesiólogos ya que es la fase más estresante del período perioperatorio para el paciente pediátrico. Existen diferentes intervenciones para minimizar la ansiedad perioperatoria y aumentar la cooperación del paciente pediátrico con la inducción anestésica. Entre las intervenciones exitosas la premedicación farmacológica con midazolam ha mostrado grandes beneficios en pacientes pediátricos. Metodología: Se realizó un estudio de casos y controles en pacientes pediátricos llevados a cirugía en la Fundación Cardioinfantil entre 2011-2014. Por medio de muestreo aleatorio por conveniencia se tomaron como casos pacientes con premedicación y controles pacientes sin premedicación. El éxito en la inducción se midió por medio de la escala ICC, usada a nivel mundial. Resultados: El promedio de edad fue 4.9 σ 3.01 años para los casos y 5.02σ3.2 años para controles, presentaron la misma distribución por género, 40.6% femenino, 59.3% masculino. El éxito de la inducción anestésica con midazolam mostró resultados significativos (OR 7.3 IC95% 4.3 – 12.5 p0,000), en hombres (OR 9.44 IC95%4.5 – 19.8 p0,000), en menores de 5 años (OR 10.33 IC95% 5.07 – 21.04 p0,000), en pacientes con antecedentes quirúrgicos (OR 12.2 IC95% 5.28 – 27.8 p0.000) o anestesias previas (OR 7.9 IC95% 4.4 – 14.4 p0,000). Discusión: El midazolam como agente farmacológico usado para premedicación en pacientes pediátricos presenta resultados exitosos contundentes, por lo cual debe usarse en todos los casos.