965 resultados para DIAMETRO APICAL
Resumo:
Four pigs, three with focal infarctions in the apical intraventricular septum (IVS) and/or left ventricular free wall (LVFW), were imaged with an intracardiac echocardiography (ICE) transducer. Custom beam sequences were used to excite the myocardium with focused acoustic radiation force (ARF) impulses and image the subsequent tissue response. Tissue displacement in response to the ARF excitation was calculated with a phase-based estimator, and transverse wave magnitude and velocity were each estimated at every depth. The excitation sequence was repeated rapidly, either in the same location to generate 40 Hz M-modes at a single steering angle, or with a modulated steering angle to synthesize 2-D displacement magnitude and shear wave velocity images at 17 points in the cardiac cycle. Both types of images were acquired from various views in the right and left ventricles, in and out of infarcted regions. In all animals, acoustic radiation force impulse (ARFI) and shear wave elasticity imaging (SWEI) estimates indicated diastolic relaxation and systolic contraction in noninfarcted tissues. The M-mode sequences showed high beat-to-beat spatio-temporal repeatability of the measurements for each imaging plane. In views of noninfarcted tissue in the diseased animals, no significant elastic remodeling was indicated when compared with the control. Where available, views of infarcted tissue were compared with similar views from the control animal. In views of the LVFW, the infarcted tissue presented as stiff and non-contractile compared with the control. In a view of the IVS, no significant difference was seen between infarcted and healthy tissue, whereas in another view, a heterogeneous infarction was seen to be presenting itself as non-contractile in systole.
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Algunas especies nativas andino - patagónica poseen alto valor maderero. La utilización de las mismas en cultivo requiere del conocimiento de su respuesta fisiológica y morfológica frente a factores ambientales generadores de estrés (hídrico, lumínico y térmico) en zonas potenciales de plantación. El presente trabajo, tuvo como objetivo generar conocimiento acerca de los mecanismos ecofisiológicos en respuesta a dichos factores de estrés en plantines de dos especies nativas: Nothofagus nervosa y N. obliqua. Los experimentos de estrés hídrico mostraron que ambas especies poseen, a bajos niveles de contenido hídrico, mecanismos anisohídricos de regulación del potencial mínimo, pero con un estricto cierre estomático ante aumentos del déficit de presión de vapor atmosférico. Los mayores valores de conductividad hidráulica máxima y menor vulnerabilidad a la cavitación del tallo sugieren que, ante condiciones de escaso déficit hídrico en suelo pero alta demanda evaporativa, N. obliqua poseería una ventaja comparativa frente a N. nervosa. En respuesta a la radiación, ambas especies respondieron mejor a condiciones intermedias de sombra. Se observó una alta incidencia de muerte apical ante condiciones de alta irradiancia. El principal mecanismo de aclimatación ante estas condiciones se relacionaría con la producción de hojas preformadas y neoformadas, presentando estas últimas una ventaja funcional en relación al grado de aclimatación. En relación a la temperatura, N. obliqua mostró un mayor rango de temperaturas óptimas para la fotosíntesis, sugiriendo una mayor adaptación a condiciones climáticas variables. El óptimo fotosintético se encuentra por encima de las actuales temperaturas medias, por lo que, las dos especies se verían beneficiadas ante escenarios climáticos con aumento de la misma, siempre que no haya déficit hídrico. Los resultados de esta tesis contribuyen a entender la distribución restringida de ambas especies en el NO de la Patagonia argentina donde la variación ambiental es grande en cortas distancias. Si bien existe aún incertidumbre, con el estado actual del conocimiento, N. obliqua parecería poseer una mayor potencialidad de crecimiento que N. nervosa en respuesta a los distintos factores de estrés considerados.
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En plantas forrajeras como la alfalfa, la senescencia foliar produce tanto una pérdida de la biomasa de forraje como una reducción de la calidad del mismo. Una estrategia molecular para retrasar la senescencia mediante la ingeniería genética se basa en la expresión de la secuencia codificante de la isopentenil transferasa (ipt), enzima clave en la biosíntesis de citoquininas. Para lograrlo resulta crítico la utilización de promotores con expresión no constitutiva que permitan la producción sitio-específica y autorregulada de citoquininas. La manipulación de la senescencia constituye un objetivo particularmente atractivo en especies forrajeras. Se transformaron clones de alfalfa con las construcción AtMYB32-ipt, se logró la regeneración de 3 plantas transgénicas, las cuales fueron confirmadas por PCR al amplificar el transgen ipt. La expresión del transgen se confirmó por RT-PCR y a través de la técnica de Southern blot se observó un patrón de inserción múltiple. También se estableció el patrón de expresión de la construcción AtMYB32-gus, la cual se limitó a los tejidos vasculares, con cierta variabilidad de expresión en la parte aérea las plantas. Los fenotipos observados en las plantas AtMYB32-ipt fueron desde plantas normales a plantas que perdieron la dominancia apical con raíces necrosadas en su mayoría. Se evaluó la senescencia foliar a través de bioensayos de hojas de plantas que incorporaron el transgen ipt y plantas que no lo incorporaron, se observó una senescencia foliar retrasada en plantas transgénicas, se cuantificó dicho retraso a través de los contenidos de clorofila a y b, proteínas foliares totales y cambios en el perfil de las proteínas foliares en geles SDS-PAGE (subunidad mayor de Rubisco). Se observó a los 35 días un mayor contenido de clorofila a y b, proteínas foliares y una mayor intensidad de las bandas de la subunidad mayor de Rubisco en las plantas que incorporaron el transgen ipt
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p.77-85
Resumo:
Algunas especies nativas andino - patagónica poseen alto valor maderero. La utilización de las mismas en cultivo requiere del conocimiento de su respuesta fisiológica y morfológica frente a factores ambientales generadores de estrés (hídrico, lumínico y térmico)en zonas potenciales de plantación. El presente trabajo, tuvo como objetivo generar conocimiento acerca de los mecanismos ecofisiológicos en respuesta a dichos factores de estrés en plantines de dos especies nativas: Nothofagus nervosa y N. obliqua. Los experimentos de estrés hídrico mostraron que ambas especies poseen, a bajos niveles de contenido hídrico, mecanismos anisohídricos de regulación del potencial mínimo, pero con un estricto cierre estomático ante aumentos del déficit de presión de vapor atmosférico. Los mayores valores de conductividad hidráulica máxima y menor vulnerabilidad a la cavitación del tallo sugieren que, ante condiciones de escaso déficit hídrico en suelo pero alta demanda evaporativa, N. obliqua poseería una ventaja comparativa frente a N. nervosa. En respuesta a la radiación, ambas especies respondieron mejor a condiciones intermedias de sombra. Se observó una alta incidencia de muerte apical ante condiciones de alta irradiancia. El principal mecanismo de aclimatación ante estas condiciones se relacionaría con la producción de hojas preformadas y neoformadas, presentando estas últimas una ventaja funcional en relación al grado de aclimatación. En relación a la temperatura, N. obliqua mostró un mayor rango de temperaturas óptimas para la fotosíntesis, sugiriendo una mayor adaptación a condiciones climáticas variables. El óptimo fotosintético se encuentra por encima de las actuales temperaturas medias, por lo que, las dos especies se verían beneficiadas ante escenarios climáticos con aumento de la misma, siempre que no haya déficit hídrico. Los resultados de esta tesis contribuyen a entender la distribución restringida de ambas especies en el NO de la Patagonia argentina donde la variación ambiental es grande en cortas distancias. Si bien existe aún incertidumbre, con el estado actual del conocimiento, N. obliqua parecería poseer una mayor potencialidad de crecimiento que N. nervosa en respuesta a los distintos factores de estrés considerados.
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p.7-12
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p.219-226
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The intracellular distribution of aminopeptidase-I in the intestinal and digestive cells of Mytilus edulishas been shown to be the same as the lysosomal marker enzymes β-glucuronidase and N-acetyl-β-hexosaminidase. Activity for these enzymes was also associated with the intestinal apical cytoplasm and microvillous border where there was pronounced staining for aminopeptidase-I. Experimental alterations of salinity induced changes in both microdensitometrically and spectrophotometrically determined aminopeptidase-I activity, as an increase with raised salinity and a decrease with lowered salinity. Lysosomal hexosaminidase showed similar changes in activity with altered salinity. Cytochemically determined lysosomal stability was also responsive to salinity changes, indicative of alterations in lysosomal functional capability. The lysosomal distribution of aminopeptidase-I is discussed in terms of the function of lysosomes in intracellular protein turnover, their high concentrations of free amino acids, and the possible roles which these might play in intracellular osmoregulation in response to salinity change.
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Hemos llevado a cabo la revisión del género Saxifraga L., sección Dactyloides Tausch (grex Ceratophyllae Willk., Gemmiferae Willk., y Exarato-Moschatae Engler & Itmsch.) del centro y norte de la Península Ibérica, mediante el estudio de caracteres morfológicos, palinológicos y seminológicos, de entre los que destacamos por su valor diagnóstico los siguientes: longitud y anchura máxima de las hojas basilares, longitud del peciolo real de las mismas, número total de segmentos y tipo de segmento central de las hojas basilares, anchura del segmento central de las hojas basilares, presencia-ausencia de mucrón en el ápice foliar, contorno de la lámina de las hojas basilares, forma de los segmentos laterales de la lámina de las hojas basilares, tipo de indumento de las hojas basilares, distribución de los pelos glandulares y número de células de los mismos, clasificación de las hojas en base a la presencia-ausencia de surco, longitud del tallo florífero, mitad apical o basal del tallo florífero cubierta de pelos glandulares, presencia de yemas hibemantes, forma apical de los dientes del cáliz, longitud y anchura de los pétalos, porción del pétalo que sobrepasa al sépalo, longitud y anchura de la semilla y omamentación de la cubierta seminal. Los caracteres estudiados nos han permitido reconocer un total de treinta y tres táxones de los que aportamos datos corológicos, ecológicos y fitosociológicos. Se añade una clave de identificación de todos los táxones objeto de estudio, en la que también se incluyen S. conifera Cosson, S. x martyi Luizet & Soulié, S. pubescens Pourret subsp. pubescens, S. pubescens subsp. iratiana (F.W. Schultz) Engler & Irmsch., y S. vayredana Luizet, los cuales aunque no tratados en nuestra revisión, se distribuyen por el norte de la Península Ibérica.
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Small proline-rich protein-2 (SPRR2) functions as a determinant of flexibility and permeability in the mature cornified envelope of the skin. SPRR2 is strongly upregulated by the commensal flora and may mediate signaling to differentiated epithelia of the small intestine and colon. Yet, SPRR2 function in the GI tract is largely unexplored. Using the Caco-2 model of intestinal epithelial differentiation along the crypt-villus axis, we hypothesized that SPRR2 would be preferentially expressed in post-confluent differentiated Caco-2 cells and examined SPRR2 regulation by the protein kinase A pathway (PKA) and short chain fatty acids (SCFAs). Differentiation-dependent SPRR2 expression was examined in cytoskeletal-, membrane-, and nuclear-enriched fractions by immunoblotting and confocal immunofluorescence. We studied the effect of SCFAs, known inducers of differentiation, on SPRR2 expression in pre-confluent undifferentiated Caco-2 cells and explored potential mechanisms involved in this induction using MAP kinase inhibitors. SPRR2 expression was also compared between HIEC crypt cells and 16 to 20 week primary fetal villus cells as well as in different segments in mouse small intestine and colon. We determined if SPRR2 is increased by gram negative bacteria such as S. typhimurium. SPRR2 expression increased in a differentiation-dependent manner in Caco-2 cells and was present in human fetal epithelial villus cells but absent in HIEC crypt cells. Differentiation-induced SPRR2 was down-regulated by 8-Br-cAMP as well as by forskolin/IBMX co-treatment. SPRR2 was predominantly cytoplasmic and did not accumulate in Triton X-100-insoluble cytoskeletal fractions. SPRR2 was present in the membrane- and nuclear-enriched fractions and demonstrated co-localization with F-actin at the apical actin ring. No induction was seen with the specific HDAC inhibitor trichostatin A, while SCFAs and the HDAC inhibitor SBHA all induced SPRR2. SCFA responses were inhibited by MAP kinase inhibitors SB203580 and U0126, thus suggesting that the SCFA effect may be mediated by orphan G-protein receptors GPR41 and GPR43. S. typhimurium induced SPRR2 in undifferentiated cells. We conclude that SPRR2 protein expression is associated with differentiated epithelia and is regulated by PKA signaling and by by-products of the bowel flora. This is the first report to establish an in vitro model to study the physiology and regulation of SPRR2.
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Purpose: We characterized interleukin-8 (IL-8) and IL-8 receptor expression (CXCR1 and CXCR2) in prostate cancer to address their significance to this disease. Experimental Design: Immunohistochemistry was conducted on 40 cases of human prostate biopsy containing histologically normal and neoplastic tissue, excised from patients with locally confined or invasive androgen-dependent prostate cancer, and 10 cases of transurethral resection of the prostate material from patients with androgen-independent disease. Results: Weak to moderate IL-8 expression was strictly localized to the apical membrane of normal prostate epithelium. In contrast, membranous expression of IL-8, CXCR1, and CXCR2 was nonapical in cancer cells of Gleason pattern 3 and 4, whereas circumferential expression was present in Gleason pattern 5 and androgen-independent prostate cancer. Each of IL-8, CXCR1, and CXCR2 were also increasingly localized to the cytoplasm of cancer cells in correlation with advancing stage of disease. Cytoplasmic expression (but not apical membrane expression) of IL-8 in Gleason pattern 3 and 4 cancer correlated with Ki-67 expression (R = 0.79; P <0.001), cyclin D1 expression (R = 0.79; P <0.001), and microvessel density (R = 0.81; P <0.001). In vitro studies on androgen-independent PC3 cells confirmed the mitogenic activity of IL-8, increasing the rate of cell proliferation through activation of both CXCR1 and CXCR2 receptors. Conclusions: We propose that the concurrent increase in IL-8 and IL-8 receptor expression in human prostate cancer induces autocrine signaling that may be functionally significant in initiating and promoting the progression of prostate cancer by underpinning cell proliferation and angiogenesis.
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BACKGROUND: Diabetics have a significantly higher percentage of sperm with nuclear DNA (nDNA) fragmentation and increased levels of advanced glycation end products (AGEs), in their testis, epididymis and sperm. As the receptor for AGEs (RAGE) is important to oxidative stress and cell dysfunction, we hypothesise, that it may be involved in sperm nDNA damage. METHODS: Immunohistochemistry was performed to determine the presence of RAGE in the human testis and epididymis. A comparison of the receptor's incidence and localisation on sperm from 10 diabetic and 11 non-diabetic men was conducted by blind semi-quantitative assessment of the immunostaining. ELISA analysis ascertained RAGE levels in seminal plasma and sperm from 21 diabetic and 31 non-diabetic subjects. Dual labelling immunolocalisation was employed to evaluate RAGE's precise location on the sperm head. RESULTS: RAGE was found throughout the testis, caput epididymis, particularly the principle cells apical region, and on sperm acrosomes. The number of sperm displaying RAGE and the overall protein amount found in sperm and seminal plasma were significantly higher in samples from diabetic men (p
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PURPOSE. A spontaneously arising retinal pigment epithelial (RPE) cell line (B6-RPE07) was cloned from a primary culture of mouse RPE cells and maintained in culture for more than 18 months. Morphologic and functional properties of this cell line have been characterized.
METHODS. The morphology of the B6-RPE07 cells was examined by phase-contrast light microscopy, electron microscopy, and confocal microscopy. Barrier properties were measured by the flux of fluorescence from the apical to the basolateral compartment of culture chambers. The abilities of the cells to bind/phagocytose photoreceptor outer segments (POS) were determined by confocal microscopy, electron microscopy, and flow cytometry. Cytokine/chemokine secretion was measured by cytometric bead array. The expression of visual cycle proteins was determined by RT-PCR and Western blotting.
RESULTS. In standard culture conditions, B6-RPE07 cells display cobblestone morphology. When cultured on three-dimensional (3D) collagen gel–coated membranes, B6-RPE07 cells exhibit a monolayer epithelial polarization with apical surface microvilli. Immunohistochemistry of B6-RPE07 cultures revealed a high expression of pan-cytokeratin. B6-RPE07 cells also expressed the retinal pigment epithelium-specific marker CRALBP, but not RPE65. Cell junction proteins ZO-1 and ß-catenin, but not claudin-1/3 or occludin-1, were observed in B6-RPE07 cells. B6-RPE07 cells are able to bind, phagocytose, and digest POS. Finally, B6-RPE07 cells produce high levels of IL-6 and CCL2.
CONCLUSIONS. This is the first report of a mouse RPE cell line with morphology, phenotype, and function similar to those of in vivo mouse RPE cells. This cell line will be a valuable resource for future RPE studies, in particular for in vivo gene modification and transplantation studies.
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There is a need for reproducible and effective models of pediatric bronchial epithelium to study disease states such as asthma. We aimed to develop, characterize, and differentiate an effective, an efficient, and a reliable three-dimensional model of pediatric bronchial epithelium to test the hypothesis that children with asthma differ in their epithelial morphologic phenotype when compared with nonasthmatic children. Primary cell cultures from both asthmatic and nonasthmatic children were grown and differentiated at the air-liquid interface for 28 d. Tight junction formation, MUC5AC secretion, IL-8, IL-6, prostaglandin E2 production, and the percentage of goblet and ciliated cells in culture were assessed. Well-differentiated, multilayered, columnar epithelium containing both ciliated and goblet cells from asthmatic and nonasthmatic subjects were generated. All cultures demonstrated tight junction formation at the apical surface and exhibited mucus production and secretion. Asthmatic and nonasthmatic cultures secreted similar quantities of IL-8, IL-6, and prostaglandin E2. Cultures developed from asthmatic children contained considerably more goblet cells and fewer ciliated cells compared with those from nonasthmatic children. A well-differentiated model of pediatric epithelium has been developed that will be useful for more in vivo like study of the mechanisms at play during asthma.
Cytopathogenesis of Sendai virus in well-differentiated primary pediatric bronchial epithelial cells
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Sendai virus (SeV) is a murine respiratory virus of considerable interest as a gene therapy or vaccine vector, as it is considered nonpathogenic in humans. However, little is known about its interaction with the human respiratory tract. To address this, we developed a model of respiratory virus infection based on well-differentiated primary pediatric bronchial epithelial cells (WD-PBECs). These physiologically authentic cultures are comprised of polarized pseudostratified multilayered epithelium containing ciliated, goblet, and basal cells and intact tight junctions. To facilitate our studies, we rescued a replication-competent recombinant SeV expressing enhanced green fluorescent protein (rSeV/eGFP). rSeV/eGFP infected WD-PBECs efficiently and progressively and was restricted to ciliated and nonciliated cells, not goblet cells, on the apical surface. Considerable cytopathology was evident in the rSeV/eGFP-infected cultures postinfection. This manifested itself by ciliostasis, cell sloughing, apoptosis, and extensive degeneration of WD-PBEC cultures. Syncytia were also evident, along with significant basolateral secretion of proinflammatory chemokines, including IP-10, RANTES, tumor necrosis factor (TNF)-related apoptosis-inducing ligand (TRAIL), interleukin 6 (IL-6), and IL-8. Such deleterious responses are difficult to reconcile with a lack of pathogenesis in humans and suggest that caution may be required in exploiting replication-competent SeV as a vaccine vector. Alternatively, such robust responses might constitute appropriate normal host responses to viral infection and be a prerequisite for the induction of efficient immune responses.