<rdf:RDF xmlns:rdf="http://www.w3.org/1999/02/22-rdf-syntax-ns#" xmlns:dcterms="http://purl.org/dc/terms/">
<rdf:Description rdf:about="https://riquim.fq.edu.uy/items/show/4141">
    <dcterms:title><![CDATA[<p><strong>T&iacute;tulo y avidez de anticuerpos antigliadina en enfermos cel&iacute;acos (Ec)</strong></p>]]></dcterms:title>
    <dcterms:subject><![CDATA[ANTICUERPOS]]></dcterms:subject>
    <dcterms:subject><![CDATA[ENFERMEDAD CEL&Iacute;ACA]]></dcterms:subject>
    <dcterms:subject><![CDATA[ANTICUERPOS ANTIGLIADINA]]></dcterms:subject>
    <dcterms:subject><![CDATA[ENFERMEDADES AUTOINMUNES]]></dcterms:subject>
    <dcterms:subject><![CDATA[BIBLIOGRAFIA NACIONAL QUIMICA]]></dcterms:subject>
    <dcterms:subject><![CDATA[1989]]></dcterms:subject>
    <dcterms:abstract><![CDATA[<img src="data:image/png;base64,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" alt="" />]]></dcterms:abstract>
    <dcterms:creator><![CDATA[<strong>Molina, M.C.</strong>]]></dcterms:creator>
    <dcterms:creator><![CDATA[<a title="Curriculum vitae" href="http://buscadores.anii.org.uy/buscador_sni/exportador/ExportarPdf?hash=8b2cacb0aafc512133624fa7b9bf174c" target="_blank"><strong>Salinas, G.</strong></a>]]></dcterms:creator>
    <dcterms:creator><![CDATA[<a title="Curriculum vitae" href="http://buscadores.anii.org.uy/buscador_sni/exportador/ExportarPdf?hash=9d36a9655c915bddd80b664491d73ec8" target="_blank"><strong>Nieto, Alberto</strong></a>]]></dcterms:creator>
    <dcterms:source><![CDATA[Inmunolog&iacute;a&nbsp; v. 8, no. 3, 1989. -- p. 102-106]]></dcterms:source>
    <dcterms:rights><![CDATA[<p class="western" lang="es-ES" align="left"><strong>Informaci&oacute;n sobre Derechos de Autor</strong></p>
<p class="western" lang="es-ES">(Por favor lea este aviso antes de abrir los documentos u objetos)</p>
<p class="western" lang="es-ES"><strong>La legislaci&oacute;n uruguaya</strong> protege el derecho de autor sobre toda creaci&oacute;n literaria, cient&iacute;fica o art&iacute;stica, tanto en lo que tiene que ver con sus derechos morales, como en lo referente a los derechos patrimoniales con sujeci&oacute;n a lo establecido por el derecho com&uacute;n y las siguientes leyes</p>
<p class="western" lang="es-ES">(LEY 9.739 DE 17 DE DICIEMBRE DE 1937 SOBRE PROPIEDAD LITERARIA Y ARTISTICA CON LAS MODIFICACIONES INTRODUCIDAS POR LA LEY DE DERECHO DE AUTOR Y DERECHOS CONEXOS No. 17.616 DE 10 DE ENERO DE 2003, LEY 17.805 DE 26 DE AGOSTO DE 2004, LEY 18.046 DE 24 DE OCTUBRE DE 2006 LEY 18.046 DE 24 DE OCTUBRE DE 2006)</p>
<p class="western" style="margin-bottom: 0cm;" lang="es-ES"><strong>ADVERTENCIA</strong> - La consulta de este documento queda condicionada a la aceptaci&oacute;n de las siguientes condiciones de uso: Este documento es &uacute;nicamente para usos privados enmarcados en actividades de investigaci&oacute;n y docencia. No se autoriza su reproducci&oacute;n con fines de lucro. Esta reserva de derechos afecta tanto los datos del documento como a sus contenidos. En la utilizaci&oacute;n o cita de partes debe indicarse el nombre de la persona autora.</p>]]></dcterms:rights>
    <dcterms:format><![CDATA[PDF]]></dcterms:format>
    <dcterms:language><![CDATA[Espa&ntilde;ol]]></dcterms:language>
    <dcterms:type><![CDATA[Art&iacute;culo]]></dcterms:type>
    <dcterms:identifier><![CDATA[ISSN (digital) 0213-0626]]></dcterms:identifier>
</rdf:Description><rdf:Description rdf:about="https://riquim.fq.edu.uy/items/show/6086">
    <dcterms:title><![CDATA[<strong>Immune profiling of breast milk from mothers with treated celiac disease</strong>]]></dcterms:title>
    <dcterms:subject><![CDATA[ENFERMEDAD CELIACA]]></dcterms:subject>
    <dcterms:subject><![CDATA[LECHE MATERNA]]></dcterms:subject>
    <dcterms:subject><![CDATA[PERFIL INMUNE]]></dcterms:subject>
    <dcterms:subject><![CDATA[BIBLIOGRAFIA NACIONAL QUIMICA]]></dcterms:subject>
    <dcterms:subject><![CDATA[2020]]></dcterms:subject>
    <dcterms:abstract><![CDATA[Background The protective effect of breastfeeding on celiac disease (CD) onset is controversial. We studied a wide range of milk components in milk produced by celiac mothers following long-term gluten-free diet (GFD) in comparison to milk produced by healthy mothers. Methods Breast-milk samples from celiac (n&thinsp;=&thinsp;33) and healthy (n&thinsp;=&thinsp;41) mothers were obtained during the first year of lactation. A panel of bioactive components was analyzed by enzyme-linked immunosorbent assay in the aqueous fraction. We studied molecules involved in defenses, immunoregulation, and strengthening of the gut&ndash;epithelial barrier. Results During late lactation (from 6 to 12 months after delivery), the content of total immunoglobulin A (IgA) and IgM was significantly lower in the milk produced by celiac patients. Nevertheless, gliadin (GFD)-specific IgA relative contribution was higher in this group, in contrast to tetanus toxoid-specific antibodies. The balance between pro-inflammatory and anti-inflammatory molecules was different. While interleukin-6, tumor necrosis factor-&alpha;, and monocyte chemoattractant protein-1 were most frequently found in samples from celiac mothers, soluble Toll-like receptor-2 prevalence was lower. Conclusions We describe differences between the innate and adaptive immune profile of milk produced by celiac and healthy mothers. These results might explain previous controversial reports about breastfeeding and CD protection.]]></dcterms:abstract>
    <dcterms:creator><![CDATA[<strong>Villamil, Emilia</strong>]]></dcterms:creator>
    <dcterms:creator><![CDATA[<strong>Rodr&iacute;guez-Camejo, Claudio</strong>]]></dcterms:creator>
    <dcterms:creator><![CDATA[<strong>Puyol, Arturo</strong>]]></dcterms:creator>
    <dcterms:creator><![CDATA[<strong>Fazio, Laura</strong>]]></dcterms:creator>
    <dcterms:creator><![CDATA[<strong>Colistro, Valentina</strong>]]></dcterms:creator>
    <dcterms:creator><![CDATA[<strong>Hern&aacute;ndez, Ana</strong>]]></dcterms:creator>
    <dcterms:source><![CDATA[Pediatric Research 2020.-- p. 1-9]]></dcterms:source>
    <dcterms:publisher><![CDATA[Springer]]></dcterms:publisher>
    <dcterms:date><![CDATA[2020]]></dcterms:date>
    <dcterms:rights><![CDATA[<strong>Informaci&oacute;n sobre Derechos de Auto</strong>r (Por favor lea este aviso antes de abrir los documentos u objetos) <strong>La legislaci&oacute;n uruguaya protege el derecho de autor sobre toda creaci&oacute;</strong>n literaria, cient&iacute;fica o art&iacute;stica, tanto en lo que tiene que ver con sus derechos morales, como en lo referente a los derechos patrimoniales con sujeci&oacute;n a lo establecido por el derecho com&uacute;n y las siguientes leyes (LEY 9.739 DE 17 DE DICIEMBRE DE 1937 SOBRE PROPIEDAD LITERARIA Y ARTISTICA CON LAS MODIFICACIONES INTRODUCIDAS POR LA LEY DE DERECHO DE AUTOR Y DERECHOS CONEXOS No. 17.616 DE 10 DE ENERO DE 2003, LEY 17.805 DE 26 DE AGOSTO DE 2004, LEY 18.046 DE 24 DE OCTUBRE DE 2006 LEY 18.046 DE 24 DE OCTUBRE DE 2006) ADVERTENCIA - La consulta de este documento queda condicionada a la aceptaci&oacute;n de las siguientes condiciones de uso: Este documento es &uacute;nicamente para usos privados enmarcados en actividades de investigaci&oacute;n y docencia. No se autoriza su reproducci&oacute;n con fines de lucro. Esta reserva de derechos afecta tanto los datos del documento como a sus contenidos. En la utilizaci&oacute;n o cita de partes debe indicarse el nombre de la persona autora.]]></dcterms:rights>
    <dcterms:format><![CDATA[PDF]]></dcterms:format>
    <dcterms:language><![CDATA[Ingl&eacute;s]]></dcterms:language>
    <dcterms:type><![CDATA[Art&iacute;culo]]></dcterms:type>
    <dcterms:identifier><![CDATA[DOI: 10.1038/s41390-020-0901-y]]></dcterms:identifier>
</rdf:Description><rdf:Description rdf:about="https://riquim.fq.edu.uy/items/show/1000">
    <dcterms:title><![CDATA[<strong>Celiac disease and gyneco-obstetrics complications : Can serum antibodies modulate tissue transglutaminase functions and contribute to clinical pattern?</strong>]]></dcterms:title>
    <dcterms:subject><![CDATA[ENFERMEDADES INMUNOLOGICAS]]></dcterms:subject>
    <dcterms:subject><![CDATA[ENFERMEDAD CELIACA]]></dcterms:subject>
    <dcterms:subject><![CDATA[TRASTORNOS DEL SISTEMA REPRODUCTOR]]></dcterms:subject>
    <dcterms:subject><![CDATA[BIBLIOGRAFIA NACIONAL QUIMICA]]></dcterms:subject>
    <dcterms:subject><![CDATA[2011]]></dcterms:subject>
    <dcterms:abstract><![CDATA[<p>Problem<br />Untreated celiac disease (CD) is often associated with early miscarriages,&nbsp;infertility, and alterations in menstrual cycle. Tissue transglutaminase&nbsp;(tTG) antibodies could be involved by interfering with tTG transamidating&nbsp;activity and &frasl; or biological functions mediated by its interaction with&nbsp;fibronectin (FN).</p>
<p><br />Method of study<br />The correlation between the presence of extra-digestive disorders and&nbsp;the reactivity of sera against tTG-FN and its effects on tTG transamidating&nbsp;activity was analyzed in a group or 50 women with recently diagnosed&nbsp;CD.</p>
<p><br />Results<br />Heterogeneous behavior was observed among serum samples derived&nbsp;from patients with different complaints, suggesting that differences in&nbsp;fine specificity patterns could condition clinical outcome. Sera from&nbsp;women with gynecological and &frasl; or obstetric problems induced significant<br />inhibition of in vitro enzymatic activity in comparison with those without&nbsp;these kinds of disorders.</p>
<p><br />Conclusions<br />The significant correlation observed between serum effects and clinical&nbsp;profile suggests a putative involvement of tTG-specific antibodies in&nbsp;gynecological and &frasl; or obstetric disorders during active CD.</p>]]></dcterms:abstract>
    <dcterms:creator><![CDATA[<strong>S&oacute;&ntilde;ora, Cecilia</strong>]]></dcterms:creator>
    <dcterms:creator><![CDATA[<strong>Mu&ntilde;oz, Federico</strong>]]></dcterms:creator>
    <dcterms:creator><![CDATA[<strong>Del R&iacute;o, Natalia</strong>]]></dcterms:creator>
    <dcterms:creator><![CDATA[<strong>Acosta, Gis&eacute;le</strong>]]></dcterms:creator>
    <dcterms:creator><![CDATA[<strong>Montenegro, Cecilia</strong>]]></dcterms:creator>
    <dcterms:creator><![CDATA[<strong>Trucco, Elena</strong>]]></dcterms:creator>
    <dcterms:creator><![CDATA[<strong>Hern&aacute;ndez, Ana</strong>]]></dcterms:creator>
    <dcterms:source><![CDATA[American Journal of Reproductive Immunology v. 66, no. 6, 2011. -- p. 476-481]]></dcterms:source>
    <dcterms:publisher><![CDATA[John Wiley &amp; Sons A/S]]></dcterms:publisher>
    <dcterms:date><![CDATA[2011]]></dcterms:date>
    <dcterms:rights><![CDATA[<p align="LEFT"><strong>Informaci&oacute;n sobre Derechos de Autor</strong></p>
<p>(Por favor lea este aviso antes de abrir los documentos u objetos)</p>
<p><strong>La legislaci&oacute;n uruguaya</strong> protege el derecho de autor sobre toda creaci&oacute;n literaria, cient&iacute;fica o art&iacute;stica, tanto en lo que tiene que ver con sus derechos morales, como en lo referente a los derechos patrimoniales con sujeci&oacute;n a lo establecido por el derecho com&uacute;n y las siguientes leyes</p>
<p>(LEY 9.739 DE 17 DE DICIEMBRE DE 1937 SOBRE PROPIEDAD LITERARIA Y ARTISTICA CON LAS MODIFICACIONES INTRODUCIDAS POR LA LEY DE DERECHO DE AUTOR Y DERECHOS CONEXOS No. 17.616 DE 10 DE ENERO DE 2003, LEY 17.805 DE 26 DE AGOSTO DE 2004, LEY 18.046 DE 24 DE OCTUBRE DE 2006 LEY 18.046 DE 24 DE OCTUBRE DE 2006)</p>
<p><strong>ADVERTENCIA</strong> - La consulta de este documento queda condicionada a la aceptaci&oacute;n de las siguientes condiciones de uso: Este documento es &uacute;nicamente para usos privados enmarcados en actividades de investigaci&oacute;n y docencia. No se autoriza su reproducci&oacute;n con fines de lucro. Esta reserva de derechos afecta tanto los datos del documento como a sus contenidos. En la utilizaci&oacute;n o cita de partes debe indicarse el nombre de la persona autora.</p>]]></dcterms:rights>
    <dcterms:format><![CDATA[PDF]]></dcterms:format>
    <dcterms:language><![CDATA[Ingl&eacute;s]]></dcterms:language>
    <dcterms:type><![CDATA[Art&iacute;culo]]></dcterms:type>
    <dcterms:identifier><![CDATA[doi:10.1111/j.1600-0897.2011.01020.x]]></dcterms:identifier>
</rdf:Description><rdf:Description rdf:about="https://riquim.fq.edu.uy/items/show/99">
    <dcterms:title><![CDATA[<strong>Enamel defects associated with coeliac disease : putative role of antibodies against gliadin in pathogenesis</strong>]]></dcterms:title>
    <dcterms:subject><![CDATA[ENFERMEDADES INMUNOLOGICAS]]></dcterms:subject>
    <dcterms:subject><![CDATA[ENFERMEDAD CELIACA]]></dcterms:subject>
    <dcterms:subject><![CDATA[ANTICUERPOS]]></dcterms:subject>
    <dcterms:subject><![CDATA[BIBLIOGRAFIA NACIONAL QUIMICA]]></dcterms:subject>
    <dcterms:subject><![CDATA[2012]]></dcterms:subject>
    <dcterms:abstract><![CDATA[<p>Enamel defects in the permanent teeth of patients with coeliac disease (CD) are often reported as an atypical manifestation, sometimes being suggestive of an undiagnosed atypical disease. We proposed to explore the pathogenesis of these oral defects, which are poorly studied. Sequence analyses of proteins from gluten (gliadins) and of prolinerich enamel proteins (amelogenin and ameloblastin) suggested the presence of common antigenic motifs. Therefore, we analyzed, by ELISA and western blotting, the reactivity of sera from patients with CD against gliadin and enamel-derived peptides. Correlation analyses between the levels of specific antibodies against gliadin and enamel derived peptides and inhibition experiments confirmed the presence of cross-reactive antibodies. Immunoblot analysis revealed that the most prominent component in enamel matrix derivative (of approximately 18.6 kDa), identified by an amelogenin-specific antibody, is recognized by sera from patients with CD; in addition, several fractions of pure gliadin were recognized by amelogenin-specific antibody. In agreement, sera from mice immunized with enamel matrix-derived proteins generated antibodies that recognized a peptide (of approximately 21.2 kDa) derived from gliadin. In conclusion, antibodies against gliadin generated in patients with CD can react in vitro with a major enamel protein. The involvement of anti-gliadin serum in the pathogenesis of enamel defects in children with untreated CD can be hypothesized on the basis of these novel results.</p>]]></dcterms:abstract>
    <dcterms:creator><![CDATA[<strong>Mu&ntilde;oz, Florencia</strong>]]></dcterms:creator>
    <dcterms:creator><![CDATA[<strong>Del R&iacute;o, Natalia</strong>]]></dcterms:creator>
    <dcterms:creator><![CDATA[<strong>S&oacute;&ntilde;ora Muniz, Cecilia Beatriz</strong>]]></dcterms:creator>
    <dcterms:creator><![CDATA[<strong>Tiscornia, In&eacute;s</strong>]]></dcterms:creator>
    <dcterms:creator><![CDATA[<strong>Marco, Alicia</strong>]]></dcterms:creator>
    <dcterms:creator><![CDATA[<strong>Hern&aacute;ndez, Ana</strong>]]></dcterms:creator>
    <dcterms:source><![CDATA[European Journal of Oral Sciences v. 120, no. 2, 2012. -- 104-112]]></dcterms:source>
    <dcterms:publisher><![CDATA[Wiley]]></dcterms:publisher>
    <dcterms:date><![CDATA[2012]]></dcterms:date>
    <dcterms:rights><![CDATA[<p align="LEFT"><strong>Informaci&oacute;n sobre Derechos de Autor</strong></p>
<p>(Por favor lea este aviso antes de abrir los documentos u objetos)</p>
<p><strong>La legislaci&oacute;n uruguaya</strong> protege el derecho de autor sobre toda creaci&oacute;n literaria, cient&iacute;fica o art&iacute;stica, tanto en lo que tiene que ver con sus derechos morales, como en lo referente a los derechos patrimoniales con sujeci&oacute;n a lo establecido por el derecho com&uacute;n y las siguientes leyes</p>
<p>(LEY 9.739 DE 17 DE DICIEMBRE DE 1937 SOBRE PROPIEDAD LITERARIA Y ARTISTICA CON LAS MODIFICACIONES INTRODUCIDAS POR LA LEY DE DERECHO DE AUTOR Y DERECHOS CONEXOS No. 17.616 DE 10 DE ENERO DE 2003, LEY 17.805 DE 26 DE AGOSTO DE 2004, LEY 18.046 DE 24 DE OCTUBRE DE 2006 LEY 18.046 DE 24 DE OCTUBRE DE 2006)</p>
<p style="margin-bottom: 0cm;"><strong>ADVERTENCIA</strong> - La consulta de este documento queda condicionada a la aceptaci&oacute;n de las siguientes condiciones de uso: Este documento es &uacute;nicamente para usos privados enmarcados en actividades de investigaci&oacute;n y docencia. No se autoriza su reproducci&oacute;n con fines de lucro. Esta reserva de derechos afecta tanto los datos del documento como a sus contenidos. En la utilizaci&oacute;n o cita de partes debe indicarse el nombre de la persona autora.</p>
<p><br /><br /></p>
<p style="margin-bottom: 0cm;">&nbsp;</p>]]></dcterms:rights>
    <dcterms:format><![CDATA[PDF]]></dcterms:format>
    <dcterms:language><![CDATA[Ingl&eacute;s]]></dcterms:language>
    <dcterms:type><![CDATA[Art&iacute;culo]]></dcterms:type>
    <dcterms:identifier><![CDATA[DOI: 10.1111/j.1600-0722.2012.00949.x]]></dcterms:identifier>
</rdf:Description><rdf:Description rdf:about="https://riquim.fq.edu.uy/items/show/4200">
    <dcterms:title><![CDATA[<strong>Enamel organ proteins as targets for antibodies in celiac disease : implications for oral health</strong>]]></dcterms:title>
    <dcterms:subject><![CDATA[ENFERMEDAD CELIACA]]></dcterms:subject>
    <dcterms:subject><![CDATA[SALUD ORAL]]></dcterms:subject>
    <dcterms:subject><![CDATA[BIBLIOGRAFIA NACIONAL QUIMICA]]></dcterms:subject>
    <dcterms:subject><![CDATA[2016]]></dcterms:subject>
    <dcterms:abstract><![CDATA[Enamel defects in permanent and deciduous teeth may be oral manifestations of celiac disease. Sometimes they are the only sign that points to this underdiagnosed autoimmune pathology. However, the etiology of these specific enamel defects remains unknown. Based on previously reported cross-reactivity of antibodies to gliadin with the enamel proteins, amelogenin and ameloblastin, we analyzed (using immunohistochemistry) the ability of anti-gliadin IgG, produced during untreated disease, to recognize enamel organ structures. We used swine germ teeth as a tissue model because they are highly homologous to human teeth in terms of proteins and development biology. Strong staining of the enamel matrix and of the layer of ameloblasts was observed with serum samples from women with celiac disease; high IgG reactivity was found against both gliadin peptides and enamel matrix protein extract, but there was no IgG reactivity against tissue antigens. In line with these findings, the gamma globulin fraction from gliadin-immunized BALB/c mice showed a similar staining pattern to that of amelogenin-specific staining. These results strongly suggest a pathological role for antibodies to gliadin in enamel defect dentition for both deciduous and permanent teeth, considering that IgG can be transported through the placenta during fetal tooth development.]]></dcterms:abstract>
    <dcterms:creator><![CDATA[<strong>S&oacute;&ntilde;ora, Cecilia</strong>]]></dcterms:creator>
    <dcterms:creator><![CDATA[<strong>Arbildi Torres, Paula</strong>]]></dcterms:creator>
    <dcterms:creator><![CDATA[<strong>Rodr&iacute;guez-Camejo, Claudio</strong>]]></dcterms:creator>
    <dcterms:creator><![CDATA[<strong>Beovide, Ver&oacute;nica</strong>]]></dcterms:creator>
    <dcterms:creator><![CDATA[<strong>Marco, Alicia</strong>]]></dcterms:creator>
    <dcterms:creator><![CDATA[<strong>Hern&aacute;ndez, Ana</strong>]]></dcterms:creator>
    <dcterms:source><![CDATA[European Journal of Oral Sciences v. 124, 2016. -- p. 11-16]]></dcterms:source>
    <dcterms:publisher><![CDATA[Willey]]></dcterms:publisher>
    <dcterms:date><![CDATA[2016]]></dcterms:date>
    <dcterms:rights><![CDATA[<p><strong>Informaci&oacute;n sobre Derechos de Autor</strong></p>
<p>(Por favor lea este aviso antes de abrir los documentos u objetos)</p>
<p><strong> La legislaci&oacute;n uruguaya protege el derecho</strong> de autor sobre toda creaci&oacute;n literaria, cient&iacute;fica o art&iacute;stica, tanto en lo que tiene que ver con sus derechos morales, como en lo referente a los derechos patrimoniales con sujeci&oacute;n a lo establecido por el derecho com&uacute;n y las siguientes leyes (LEY 9.739 DE 17 DE DICIEMBRE DE 1937 SOBRE PROPIEDAD LITERARIA Y ARTISTICA CON LAS MODIFICACIONES INTRODUCIDAS POR LA LEY DE DERECHO DE AUTOR Y DERECHOS CONEXOS No. 17.616 DE 10 DE ENERO DE 2003, LEY 17.805 DE 26 DE AGOSTO DE 2004, LEY 18.046 DE 24 DE OCTUBRE DE 2006 LEY 18.046 DE 24 DE OCTUBRE DE 2006)</p>
<p><strong>ADVERTENCIA -</strong> La consulta de este documento queda condicionada a la aceptaci&oacute;n de las siguientes condiciones de uso: Este documento es &uacute;nicamente para usos privados enmarcados en actividades de investigaci&oacute;n y docencia. No se autoriza su reproducci&oacute;n con fines de lucro. Esta reserva de derechos afecta tanto los datos del documento como a sus contenidos. En la utilizaci&oacute;n o cita de partes debe indicarse el nombre de la persona autora.</p>]]></dcterms:rights>
    <dcterms:format><![CDATA[PDF]]></dcterms:format>
    <dcterms:language><![CDATA[Ingl&eacute;s]]></dcterms:language>
    <dcterms:type><![CDATA[Art&iacute;culo]]></dcterms:type>
    <dcterms:identifier><![CDATA[DOI: 10.1111/eos.12241]]></dcterms:identifier>
</rdf:Description><rdf:Description rdf:about="https://riquim.fq.edu.uy/items/show/2227">
    <dcterms:title><![CDATA[<strong>Tissue transglutaminase on trophoblast cells as a possible target of autoantibodies contributing to pregnancy complications in celiac patients</strong>]]></dcterms:title>
    <dcterms:subject><![CDATA[ENZIMAS]]></dcterms:subject>
    <dcterms:subject><![CDATA[ENFERMEDAD CELIACA]]></dcterms:subject>
    <dcterms:subject><![CDATA[EMBARAZO-COMPLICACIONES]]></dcterms:subject>
    <dcterms:subject><![CDATA[TRANSGLUTAMINASAS]]></dcterms:subject>
    <dcterms:subject><![CDATA[BIBLIOGRAFIA NACIONAL QUIMICA]]></dcterms:subject>
    <dcterms:subject><![CDATA[2014]]></dcterms:subject>
    <dcterms:abstract><![CDATA[<div id="aji12290-sec-0001" class="section">
<h4>Problem</h4>
<div class="para">
<p>Women with celiac disease (CD) are often affected by atypical presentations of the disease associated with reproductive disorders as a main extra-digestive complaint. Here, we analyzed if autoantibodies against tissue transglutaminase (tTG) in sera from CD patients with reproductive disorders could display direct effects through their interaction with tTG expressed on trophoblast cells and phagocytes inducing tissue damage and interfering in the clearance of trophoblast apoptotic bodies.</p>
</div>
</div>
<div id="aji12290-sec-0002" class="section">
<h4>Method of study</h4>
<div class="para">
<p>Sera from CD women with reproductive disorders were obtained, and their ability to induce apoptosis of Swan-71 (cytotrophoblast cell line) and to modulate the wound-healing and phagocytes process was tested.</p>
</div>
</div>
<div id="aji12290-sec-0003" class="section">
<h4>Results</h4>
<div class="para">
<p>Swan-71 cells expressed tTG and CD sera displayed a significant decrease in trophoblast cell migration and a delay in injury healing on trophoblast cells, compared with those observed with control sera. Moreover, CD sera significantly reduced trophoblast cell proliferation and increased apoptosis levels in comparison with those observed in the control sera. Finally, autoantibodies against tTG interfere in the clearance of trophoblast apoptotic bodies through a mechanism involving MFG-E8 (milk fat globulin-EGF factor 8)&ndash;tTG binding.</p>
</div>
</div>
<div id="aji12290-sec-0004" class="section">
<h4>Conclusion</h4>
<div class="para">
<p>The anti-tTG antibodies might contribute to trophoblast damage and disrupt the phagocytosis process of apoptotic bodies that could promote a pro-inflammatory microenvironment.</p>
</div>
</div>]]></dcterms:abstract>
    <dcterms:creator><![CDATA[<strong>S&oacute;&ntilde;ora Muniz, Cecilia Beatriz</strong>]]></dcterms:creator>
    <dcterms:creator><![CDATA[<strong>Calo, Guillermina</strong>]]></dcterms:creator>
    <dcterms:creator><![CDATA[<strong>Fraccaroli, Laura</strong>]]></dcterms:creator>
    <dcterms:creator><![CDATA[<strong>P&eacute;rez-Leir&oacute;s, Claudia</strong>]]></dcterms:creator>
    <dcterms:creator><![CDATA[<strong>Hern&aacute;ndez, Ana</strong>]]></dcterms:creator>
    <dcterms:creator><![CDATA[<strong>Ramhorst, Rosanna</strong>]]></dcterms:creator>
    <dcterms:source><![CDATA[American Journal of Reproductive Immunology v. 72, no. 5, 2014. -- p. 485-495]]></dcterms:source>
    <dcterms:publisher><![CDATA[Wiley-Blackwell]]></dcterms:publisher>
    <dcterms:date><![CDATA[2014]]></dcterms:date>
    <dcterms:rights><![CDATA[<p><strong>Informaci&oacute;n sobre Derechos de Autor</strong></p>
<p>(Por favor lea este aviso antes de abrir los documentos u objetos)</p>
<p><strong>La legislaci&oacute;n uruguaya</strong> protege el derecho de autor sobre toda creaci&oacute;n literaria, cient&iacute;fica o art&iacute;stica, tanto en lo que tiene que ver con sus derechos morales, como en lo referente a los derechos patrimoniales con sujeci&oacute;n a lo establecido por el derecho com&uacute;n y las siguientes leyes</p>
<p>(LEY 9.739 DE 17 DE DICIEMBRE DE 1937 SOBRE PROPIEDAD LITERARIA Y ARTISTICA CON LAS MODIFICACIONES INTRODUCIDAS POR LA LEY DE DERECHO DE AUTOR Y DERECHOS CONEXOS No. 17.616 DE 10 DE ENERO DE 2003, LEY 17.805 DE 26 DE AGOSTO DE 2004, LEY 18.046 DE 24 DE OCTUBRE DE 2006 LEY 18.046 DE 24 DE OCTUBRE DE 2006)</p>
<p><strong>ADVERTENCIA</strong> - La consulta de este documento queda condicionada a la aceptaci&oacute;n de las siguientes condiciones de uso: Este documento es &uacute;nicamente para usos privados enmarcados en actividades de investigaci&oacute;n y docencia. No se autoriza su reproducci&oacute;n con fines de lucro. Esta reserva de derechos afecta tanto los datos del documento como a sus contenidos. En la utilizaci&oacute;n o cita de partes debe indicarse el nombre de la persona autora.</p>
<p>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;</p>
<p>&nbsp;</p>]]></dcterms:rights>
    <dcterms:format><![CDATA[PDF]]></dcterms:format>
    <dcterms:language><![CDATA[Ingl&eacute;s]]></dcterms:language>
    <dcterms:type><![CDATA[Art&iacute;culo]]></dcterms:type>
    <dcterms:identifier><![CDATA[DOI: 10.1111/aji.12290]]></dcterms:identifier>
</rdf:Description><rdf:Description rdf:about="https://riquim.fq.edu.uy/items/show/5500">
    <dcterms:title><![CDATA[<strong>Alternative RNA splicing of leukocyte tissue transglutaminase in coeliac disease</strong>]]></dcterms:title>
    <dcterms:subject><![CDATA[ENFERMEDAD CELIACA]]></dcterms:subject>
    <dcterms:subject><![CDATA[TRANSGLUTAMINASA]]></dcterms:subject>
    <dcterms:subject><![CDATA[BIBLIOGRAFIA NACIONAL QUIMICA]]></dcterms:subject>
    <dcterms:subject><![CDATA[2018]]></dcterms:subject>
    <dcterms:abstract><![CDATA[Tissue transglutaminase is a ubiquitous and multifunctional protein that contributes to several processes such as apoptosis/survival, efferocytosis, inflammation and tissue repairing under physiological and pathological conditions. Several activities can be associated with well-established functional domains; in addition, four RNA alternative splice variants have been described, characterized by sequence divergences and residues deletion at the C-terminal domains. Tissue transglutaminase is recognized as the central player in the physiopathology of coeliac disease (CD) mainly through calcium-dependent enzymatic activities. It can be hypothesized that differential regulation of tissue transglutaminase splice variants expression in persons with CD contributes to pathology by altering the protein functionality. We characterized the expression pattern of RNA alternative splice variants by RT-PCR in peripheral cells from patients with CD under free gluten diet adhesion; we considered inflammatory parameters and specific antibodies as markers of the stage of disease. We found significant higher expression of both the full length and the shortest C-truncated splice variants in leucocytes from patients with CD in comparison with healthy individuals. As tissue transglutaminase expression and canonical enzymatic activity are linked to inflammation, we studied the RNA expression of inflammatory cytokines in peripheral leucocytes of persons with CD in relation with splice variants expression; interestingly, we found that recently diagnosed patients showed significant correlation between both the full length and the shortest alternative spliced variants with IL-1 expression. Our results points that regulation of alternative splicing of tissue transglutaminase could account for the complex physiopathology of CD.]]></dcterms:abstract>
    <dcterms:creator><![CDATA[<a title="Curriculum Vitae" href="https://exportcvuy.anii.org.uy/CvEstatico/?urlId=bfe227546a2028af9fe0009a3b142e6e82229612052827038624d99e8a062a5d186fc68be2f95524dafffa549de03562a0a98184872c25e7c089cba638716975&amp;formato=pdf&amp;convocatoria=21" target="_self"><strong>Arbildi Torres, Paula</strong></a>]]></dcterms:creator>
    <dcterms:creator><![CDATA[<strong>S&oacute;&ntilde;ora, Cecilia.</strong>]]></dcterms:creator>
    <dcterms:creator><![CDATA[<strong>Del R&iacute;o, Natalia</strong>]]></dcterms:creator>
    <dcterms:creator><![CDATA[<strong>Marques, Juan Mart&iacute;n</strong>]]></dcterms:creator>
    <dcterms:creator><![CDATA[<strong>Hern&aacute;ndez, Ana</strong>]]></dcterms:creator>
    <dcterms:source><![CDATA[Scandinavian Journal of Immunology v.87, no. 5, 2018. --e12659]]></dcterms:source>
    <dcterms:publisher><![CDATA[Wiley]]></dcterms:publisher>
    <dcterms:date><![CDATA[2018]]></dcterms:date>
    <dcterms:rights><![CDATA[<p><strong>Informaci&oacute;n sobre Derechos de Autor</strong></p>
<p>(Por favor lea este aviso antes de abrir los documentos u objetos)</p>
<p><strong>La legislaci&oacute;n uruguaya protege el derecho</strong> de autor sobre toda creaci&oacute;n literaria, cient&iacute;fica o art&iacute;stica, tanto en lo que tiene que ver con sus derechos morales, como en lo referente a los derechos patrimoniales con sujeci&oacute;n a lo establecido por el derecho com&uacute;n y las siguientes leyes (LEY 9.739 DE 17 DE DICIEMBRE DE 1937 SOBRE PROPIEDAD LITERARIA Y ARTISTICA CON LAS MODIFICACIONES INTRODUCIDAS POR LA LEY DE DERECHO DE AUTOR Y DERECHOS CONEXOS No. 17.616 DE 10 DE ENERO DE 2003, LEY 17.805 DE 26 DE AGOSTO DE 2004, LEY 18.046 DE 24 DE OCTUBRE DE 2006)</p>
<p><strong>ADVERTENCIA -</strong> La consulta de este documento queda condicionada a la aceptaci&oacute;n de las siguientes condiciones de uso: Este documento es &uacute;nicamente para usos privados enmarcados en actividades de investigaci&oacute;n y docencia. No se autoriza su reproducci&oacute;n con fines de lucro. Esta reserva de derechos afecta tanto los datos del documento como a sus contenidos. En la utilizaci&oacute;n o cita de partes debe indicarse el nombre de la persona autora.</p>]]></dcterms:rights>
    <dcterms:format><![CDATA[PDF]]></dcterms:format>
    <dcterms:language><![CDATA[Ingl&eacute;s]]></dcterms:language>
    <dcterms:type><![CDATA[Art&iacute;culo]]></dcterms:type>
    <dcterms:identifier><![CDATA[DOI: 10.1111/sji.12659]]></dcterms:identifier>
</rdf:Description><rdf:Description rdf:about="https://riquim.fq.edu.uy/items/show/5575">
    <dcterms:title><![CDATA[<strong>Diabetes y enfermedad cel&iacute;aca</strong>]]></dcterms:title>
    <dcterms:subject><![CDATA[<strong>DIABETES</strong>]]></dcterms:subject>
    <dcterms:subject><![CDATA[<strong>ENFERMEDAD CELIACA</strong>]]></dcterms:subject>
    <dcterms:publisher><![CDATA[Biblioteca-FQ]]></dcterms:publisher>
    <dcterms:date><![CDATA[1997]]></dcterms:date>
    <dcterms:format><![CDATA[Papel]]></dcterms:format>
    <dcterms:format><![CDATA[PDF]]></dcterms:format>
    <dcterms:language><![CDATA[Ingl&eacute;s]]></dcterms:language>
    <dcterms:type><![CDATA[Bibliograf&iacute;a]]></dcterms:type>
    <dcterms:temporal><![CDATA[1981-1997]]></dcterms:temporal>
</rdf:Description><rdf:Description rdf:about="https://riquim.fq.edu.uy/items/show/5586">
    <dcterms:title><![CDATA[<strong>Enfermedad cel&iacute;aca y trastornos de la coagulaci&oacute;n</strong>]]></dcterms:title>
    <dcterms:subject><![CDATA[<strong>ENFERMEDAD CELIACA</strong>]]></dcterms:subject>
    <dcterms:subject><![CDATA[<strong>COAGULACION</strong>]]></dcterms:subject>
    <dcterms:subject><![CDATA[<strong>TRASTORNOS METABOLICOS</strong>]]></dcterms:subject>
    <dcterms:publisher><![CDATA[Biblioteca-FQ]]></dcterms:publisher>
    <dcterms:date><![CDATA[1998]]></dcterms:date>
    <dcterms:format><![CDATA[Papel]]></dcterms:format>
    <dcterms:format><![CDATA[PDF]]></dcterms:format>
    <dcterms:language><![CDATA[Ingl&eacute;s]]></dcterms:language>
    <dcterms:language><![CDATA[Alem&aacute;n]]></dcterms:language>
    <dcterms:language><![CDATA[Espa&ntilde;ol]]></dcterms:language>
    <dcterms:type><![CDATA[Bibliograf&iacute;a]]></dcterms:type>
    <dcterms:temporal><![CDATA[1969-1996]]></dcterms:temporal>
</rdf:Description></rdf:RDF>
