24 results on '"Yentür, Sibel P."'
Search Results
2. Sex-specific analysis in Behçet's disease reveals higher genetic risk in male patients
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Jo, Yun Gun, Ortiz-Fernández, Lourdes, Coit, Patrick, Yilmaz, Vuslat, Yentür, Sibel P., Alibaz-Oner, Fatma, Aksu, Kenan, Erken, Eren, Düzgün, Nursen, Keser, Gokhan, Cefle, Ayse, Yazici, Ayten, Ergen, Andac, Alpsoy, Erkan, Salvarani, Carlo, Kısacık, Bünyamin, Kötter, Ina, Henes, Jörg, Çınar, Muhammet, Schaefer, Arne, Nohutcu, Rahime M., Takeuchi, Fujio, Harihara, Shinji, Kaburaki, Toshikatsu, Messedi, Meriam, Song, Yeong-Wook, Kaşifoğlu, Timuçin, Martin, Javier, González Escribano, María Francisca, Saruhan-Direskeneli, Güher, Direskeneli, Haner, and Sawalha, Amr H.
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- 2022
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3. Identification of susceptibility loci for Takayasu arteritis through a large multi-ancestral genome-wide association study
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Ortiz-Fernández, Lourdes, Saruhan-Direskeneli, Güher, Alibaz-Oner, Fatma, Kaymaz-Tahra, Sema, Coit, Patrick, Kong, Xiufang, Kiprianos, Allan P., Maughan, Robert T., Aydin, Sibel Z., Aksu, Kenan, Keser, Gokhan, Kamali, Sevil, Inanc, Murat, Springer, Jason, Akar, Servet, Onen, Fatos, Akkoc, Nurullah, Khalidi, Nader A., Koening, Curry, Karadag, Omer, Kiraz, Sedat, Forbess, Lindsy, Langford, Carol A., McAlear, Carol A., Ozbalkan, Zeynep, Yavuz, Sule, Çetin, Gozde Yildirim, Alpay-Kanitez, Nilufer, Chung, Sharon, Ates, Askin, Karaaslan, Yasar, McKinnon-Maksimowicz, Kathleen, Monach, Paul A., Ozer, Hüseyin T.E., Seyahi, Emire, Fresko, Izzet, Cefle, Ayse, Seo, Philip, Warrington, Kenneth J., Ozturk, Mehmet A., Ytterberg, Steven R., Cobankara, Veli, Onat, Ahmet Mesut, Duzgun, Nurşen, Bıcakcıgil, Muge, Yentür, Sibel P., Lally, Lindsay, Manfredi, Angelo A., Baldissera, Elena, Erken, Eren, Yazici, Ayten, Kısacık, Bünyamin, Kaşifoğlu, Timuçin, Dalkilic, Ediz, Cuthbertson, David, Pagnoux, Christian, Sreih, Antoine, Reales, Guillermo, Wallace, Chris, Wren, Jonathan D., Cunninghame-Graham, Deborah S., Vyse, Timothy J., Sun, Ying, Chen, Huiyong, Grayson, Peter C., Tombetti, Enrico, Jiang, Lindi, Mason, Justin C., Merkel, Peter A., Direskeneli, Haner, and Sawalha, Amr H.
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- 2021
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4. Reduced cerebrospinal fluid levels of interleukin-10 in children with febrile seizures
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Şahin, Sevim, Uysal, Serap, Yentür, Sibel P., and Kaçar, Alper
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- 2019
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5. Increased costimulatory molecule expression of thymic and peripheral B cells and a sensitivity to IL-21 in myasthenia gravis
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Hocaoğlu, Mehmet, Durmuş, Hacer, Özkan, Berker, Yentür, Sibel P., Doğan, Öner, Parman, Yeşim, Deymeer, Feza, and Saruhan-Direskeneli, Güher
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- 2018
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6. Genetic heterogeneity within the HLA region in three distinct clinical subgroups of myasthenia gravis
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Saruhan-Direskeneli, Güher, Hughes, Travis, Yilmaz, Vuslat, Durmus, Hacer, Adler, Adam, Alahgholi-Hajibehzad, Mahdi, Aysal, Fikret, Yentür, Sibel P., Akalin, Mehmet Ali, Dogan, Oner, Marx, Alexander, Gülsen-Parman, Yesim, Oflazer, Piraye, Deymeer, Feza, and Sawalha, Amr H.
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- 2016
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7. Interleukin-6 in neuro-Behçet’s disease: Association with disease subsets and long-term outcome
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Akman-Demir, Gülşen, Tüzün, Erdem, İçöz, Sema, Yeşilot, Nilüfer, Yentür, Sibel P., Kürtüncü, Murat, Mutlu, Melike, and Saruhan-Direskeneli, Güher
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- 2008
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8. Pro-inflammatory cellular immune response in Behçet’s disease
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Kulaber, Ayla, Tugal-Tutkun, Ilknur, Yentür, Sibel P., Akman-Demir, Gülşen, Kaneko, Fumio, Gül, Ahmet, and Saruhan-Direskeneli, Güher
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- 2007
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9. Interleukin (IL)-12, IL-2, interferon-γ gene polymorphisms in subacute sclerosing panencephalitis patients
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Yilmaz, Vuslat, Demirbilek, Veysi, Gürses, Candan, Yentür, Sibel P., Uysal, Serap, Yapici, Zuhal, Yilmaz, Gülden, Muncey, Aaron, Çokar, Özlem, Önal, Emel, Gökyiğit, Ayşen, and Saruhan-Direskeneli, Güher
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- 2007
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10. Anti-αB-crystallin immunoreactivity in inflammatory nervous system diseases
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Çelet, Burcu, Akman-Demir, Gülşen, Serdaroğlu, Piraye, Yentür, Sibel P., Taşcı, Banu, van Noort, Johannes M., Eraksoy, Mefkure, and Saruhan-Direskeneli, Güher
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- 2000
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11. Elevated interleukin-12 and CXCL10 in subacute sclerosing panencephalitis
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Saruhan-Direskeneli, Güher, Gürses, Candan, Demirbilek, Veysi, Yentür, Sibel P., Yılmaz, Gülden, Önal, Emel, Yapıcı, Zuhal, Yalçınkaya, Cengiz, Çokar, Özlem, Akman-Demir, Gülşen, and Gökyiğit, Ayşen
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- 2005
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12. IL-12 and IL-10 polymorphisms and their effects on cytokine production
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Yılmaz, Vuslat, Yentür, Sibel P., and Saruhan-Direskeneli, Güher
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- 2005
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13. Alterations in cell-mediated immune response in subacute sclerosing panencephalitis
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Yentür, Sibel P., Gürses, Candan, Demirbilek, Veysi, Yılmaz, Gülden, Önal, Ayşe Emel, Yapıcı, Zuhal, Yalçınkaya, Cengiz, Çokar, Özlem, Gökyiğit, Ayşen, and Saruhan-Direskeneli, Güher
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- 2005
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14. IL-12 and IL-10 polymorphisms and their effects on cytokine production
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Ylmaz, Vuslat, Yentür, Sibel P., and Saruhan-Direskeneli, Güher
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- 2005
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15. Cytokines and chemokines in neuro-Behçet's disease compared to multiple sclerosis and other neurological diseases
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Saruhan-Direskeneli, Güher, Yentür, Sibel P, Akman-Demir, Gülşen, Işık, Nihal, and Serdaroğlu, Piraye
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- 2003
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16. Genetic Association of a Gain‐of‐Function IFNGR1 Polymorphism and the Intergenic Region LNCAROD/DKK1 With Behçet's Disease.
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Ortiz Fernández, Lourdes, Coit, Patrick, Yilmaz, Vuslat, Yentür, Sibel P., Alibaz‐Oner, Fatma, Aksu, Kenan, Erken, Eren, Düzgün, Nursen, Keser, Gokhan, Cefle, Ayse, Yazici, Ayten, Ergen, Andac, Alpsoy, Erkan, Salvarani, Carlo, Casali, Bruno, Kısacık, Bünyamin, Kötter, Ina, Henes, Jörg, Çınar, Muhammet, and Schaefer, Arne
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GENETICS ,CONFIDENCE intervals ,BEHCET'S disease ,GENETIC polymorphisms ,RNA ,INTERFERONS ,GENE expression ,GENOTYPES ,DESCRIPTIVE statistics ,ETHNIC groups ,ODDS ratio ,MONOCYTES - Abstract
Objective: Behçet's disease is a complex systemic inflammatory vasculitis of incompletely understood etiology. This study was undertaken to investigate genetic associations with Behçet's disease in a diverse multiethnic population. Methods: A total of 9,444 patients and controls from 7 different populations were included in this study. Genotyping was performed using an Infinium ImmunoArray‐24 v.1.0 or v.2.0 BeadChip. Analysis of expression data from stimulated monocytes, and epigenetic and chromatin interaction analyses were performed. Results: We identified 2 novel genetic susceptibility loci for Behçet's disease, including a risk locus in IFNGR1 (rs4896243) (odds ratio [OR] 1.25; P = 2.42 × 10−9) and within the intergenic region LNCAROD/DKK1 (rs1660760) (OR 0.78; P = 2.75 × 10−8). The risk variants in IFNGR1 significantly increased IFNGR1 messenger RNA expression in lipopolysaccharide‐stimulated monocytes. In addition, our results replicated the association (P < 5 × 10−8) of 6 previously identified susceptibility loci in Behçet's disease: IL10, IL23R, IL12A‐AS1, CCR3, ADO, and LACC1, reinforcing the notion that these loci are strong genetic factors in Behçet's disease shared across ancestries. We also identified >30 genetic susceptibility loci with a suggestive level of association (P < 5 × 10−5), which will require replication. Finally, functional annotation of genetic susceptibility loci in Behçet's disease revealed their possible regulatory roles and suggested potential causal genes and molecular mechanisms that could be further investigated. Conclusion: We performed the largest genetic association study in Behçet's disease to date. Our findings reveal novel putative functional variants associated with the disease and replicate and extend the genetic associations in other loci across multiple ancestries. [ABSTRACT FROM AUTHOR]
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- 2021
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17. Corrigendum: Analysis of the common genetic component of large-vessel vasculitides through a meta-Immunochip strategy (Scientific Reports (2017) 7 (43953) DOI: 10.1038/srep43953)
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Martínez Berriochoa, Agustín, Unzurrunzaga, Ainhoa, Hidalgo Conde, Ana, Vuelta, Ana Belén Madroñero, Fernández Nebro, Antonio, Carmen Ordóñez Cañizares, M., Fernández Gutiérrez, Benjamín, Rodríguez Rodríguez, Luis, Escalante, Begoña, Alfonso, Begoña Marí, Sopeña, Bernardo, Gómez Vaquero, Carmen, Raya, Enrique, Grau, Elena, Román, José A., Vicente, Esther F., Miguel, Eugenio de, López Longo, Francisco J., Martínez, Lina, Morado, Inmaculada C., Bernardino Díaz López, J., Caminal Montero, Luis, Martínez Zapico, Aleida, Narváez, Javier, Monfort, Jordi, Tío, Laura, Filloy, José A. Miranda, Sánchez Martín, Julio, Alegre Sancho, Juan J., Sáez Comet, Luis, Conesa, Mercedes Pérez, Corbera Bellalta, Marc, Ramentol Sintas, Marc, García Villanueva, María Jesús, Rojas, Mercedes Guijarro, Ortego Centeno, Norberto, Fernández, Raquel Ríos, Callejas, José Luis, Pernaute, Olga Sanchez, Mateo, Patricia Fanlo, Blanco, Ricardo, González, Sergio Prieto, Soriano, Víctor Manuel Martínez T.a.b.o.a.d.a.1.1. Alessandra, Lunardi, Claudio, Gianfreda, Davide, Santilli, Daniele, Bonatti, Francesco, Muratore, Francesco, Pazzola, Giulia, ADDIMANDA, OLGA, Emmi, Giacomo, Ramirez, Giuseppe A., Beretta, Lorenzo, Govoni, Marcello, Onat, Marco A. C.i.m.m.i.n.o.5.2. Ahmet Mesut, Cefle, Ayse, Yazici, Ayten, Kısacık, Bünyamin, Dalkilic, Ediz, Seyahi, Emire, Fresko, Izzet, Tunc, Ercan, Erken, Eren, Ozer, Hüseyin TE, Aksu, Kenan, Keser, Gokhan, Ozturk, Mehmet A., Bıcakcıgil, Muge, Duzgun, Nurşen, Karadag, Omer, Kiraz, Sedat, Pamuk, Ömer N., Akar, Servet, Onen, Fatos, Akkoc, Nurullah, Kamali, Sevil, Inanc, Murat, Yentür, Sibel P., Aydin, Sibel Z., Alibaz Oner, Fatma, Kaşifoğlu, Timuçin, Cobankara, Veli, Ozbalkan, Zeynep, Ates, Askin, Carette, Yasar K.a.r.a.a.s.l.a.n.7.3. Simon, Chung, Sharon A., Cuthbertson, David, Forbess, Lindsay J., Hoffman, Gary S., Khalidi, Nader A., Koening, Curry L., Langford, Carol A., Mcalear, Carol A., McKinnon Maksimowicz, Kathleen, Monach, Paul A., Moreland, Larry, Pagnoux, Christian, Seo, Philip, Spiera, Robert, Sreih, Antoine G., Warrington, Kenneth J., Ytterberg87, Steven R. ., Martínez-Berriochoa, Agustín, Unzurrunzaga, Ainhoa, Hidalgo-Conde, Ana, Vuelta, Ana Belén Madroñero, Fernández-Nebro, Antonio, Carmen Ordóñez-Cañizares, M., Fernández-Gutiérrez, Benjamín, Rodríguez-Rodríguez, Lui, Escalante, Begoña, Alfonso, Begoña Marí, Sopeña, Bernardo, Gómez-Vaquero, Carmen, Raya, Enrique, Grau, Elena, Román, José A., Vicente, Esther F., Miguel, Eugenio de, López-Longo, Francisco J., Martínez, Lina, Morado, Inmaculada C., Bernardino Díaz-López, J., Caminal-Montero, Lui, Martínez-Zapico, Aleida, Narváez, Javier, Monfort, Jordi, Tío, Laura, Filloy, José A. Miranda, Sánchez-Martín, Julio, Alegre-Sancho, Juan J., Sáez-Comet, Lui, Conesa, Mercedes Pérez, Corbera-Bellalta, Marc, Ramentol-Sintas, Marc, García-Villanueva, María Jesú, Rojas, Mercedes Guijarro, Ortego-Centeno, Norberto, Fernández, Raquel Río, Callejas, José Lui, Pernaute, Olga Sanchez, Mateo, Patricia Fanlo, Blanco, Ricardo, González, Sergio Prieto, Soriano, Víctor Manuel Martínez-Taboada11.Alessandra, Lunardi, Claudio, Gianfreda, Davide, Santilli, Daniele, Bonatti, Francesco, Muratore, Francesco, Pazzola, Giulia, Addimanda, Olga, Emmi, Giacomo, Ramirez, Giuseppe A., Beretta, Lorenzo, Govoni, Marcello, Onat, Marco A. Cimmino52. Ahmet Mesut, Cefle, Ayse, Yazici, Ayten, Kısacık, Bünyamin, Dalkilic, Ediz, Seyahi, Emire, Fresko, Izzet, Tunc, Ercan, Erken, Eren, Ozer, Hüseyin TE, Aksu, Kenan, Keser, Gokhan, Ozturk, Mehmet A., Bıcakcıgil, Muge, Duzgun, Nurşen, Karadag, Omer, Kiraz, Sedat, Pamuk, Ömer N., Akar, Servet, Onen, Fato, Akkoc, Nurullah, Kamali, Sevil, Inanc, Murat, Yentür, Sibel P., Aydin, Sibel Z., Alibaz-Oner, Fatma, Kaşifoğlu, Timuçin, Cobankara, Veli, Ozbalkan, Zeynep, Ates, Askin, Carette, Yasar Karaaslan73. Simon, Chung, Sharon A., Cuthbertson, David, Forbess, Lindsay J., Hoffman, Gary S., Khalidi, Nader A., Koening, Curry L., Langford, Carol A., Mcalear, Carol A., McKinnon-Maksimowicz, Kathleen, Monach, Paul A., Moreland, Larry, Pagnoux, Christian, Seo, Philip, Spiera, Robert, Sreih, Antoine G., Warrington, Kenneth J., and Ytterberg87, Steven R. .
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Multidisciplinary ,skin and connective tissue diseases - Abstract
Giant cell arteritis (GCA) and Takayasu’s arteritis (TAK) are major forms of large-vessel vasculitis (LVV) that share clinical features. To evaluate their genetic similarities, we analysed Immunochip genotyping data from 1,434 LVV patients and 3,814 unaffected controls. Genetic pleiotropy was also estimated. The HLA region harboured the main disease-specific associations. GCA was mostly associated with class II genes (HLA-DRB1/HLA-DQA1) whereas TAK was mostly associated with class I genes (HLA-B/ MICA). Both the statistical significance and effect size of the HLA signals were considerably reduced in the cross-disease meta-analysis in comparison with the analysis of GCA and TAK separately. Consequently, no significant genetic correlation between these two diseases was observed when HLA variants were tested. Outside the HLA region, only one polymorphism located nearby the IL12B gene surpassed the study-wide significance threshold in the meta-analysis of the discovery datasets (rs755374, P = 7.54E-07; ORGCA = 1.19, ORTAK = 1.50). This marker was confirmed as novel GCA risk factor using four additional cohorts (PGCA = 5.52E-04, ORGCA = 1.16). Taken together, our results provide evidence of strong genetic differences between GCA and TAK in the HLA. Outside this region, common susceptibility factors were suggested, especially within the IL12B locus.
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- 2017
18. Analysis of the common genetic component of large-vessel vasculitides through a meta-Immunochip strategy
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Martínez Berriochoa, Agustín, Unzurrunzaga, Ainhoa, Hidalgo Conde, Ana, Vuelta, Ana Belén Madroñero, Fernández Nebro, Antonio, Carmen Ordóñez Cañizares, M., Fernández Gutiérrez, Benjamín, Rodríguez Rodríguez, Luis, Escalante, Begoña, Alfonso, Begoña Marí, Sopeña, Bernardo, Gómez Vaquero, Carmen, Raya, Enrique, Grau, Elena, Román, José A., Vicente, Esther F., Miguel, Eugenio de, López Longo, Francisco J., Martínez, Lina, Morado, Inmaculada C., Bernardino Díaz López, J., Caminal Montero, Luis, Martínez Zapico, Aleida, Narváez, Javier, Monfort, Jordi, Tío, Laura, Filloy, José A. Miranda, Sánchez Martín, Julio, Alegre Sancho, Juan J., Sáez Comet, Luis, Conesa, Mercedes Pérez, Corbera Bellalta, Marc, Ramentol Sintas, Marc, García Villanueva, María Jesús, Rojas, Mercedes Guijarro, Ortego Centeno, Norberto, Fernández, Raquel Ríos, Callejas, José Luis, Pernaute, Olga Sanchez, Mateo, Patricia Fanlo, Blanco, Ricardo, González, Sergio Prieto, Soriano, Víctor Manuel Martínez T.a.b.o.a.d.a.1.1. Alessandra, Lunardi, Claudio, Gianfreda, Davide, Santilli, Daniele, Bonatti, Francesco, Muratore, Francesco, Pazzola, Giulia, ADDIMANDA, OLGA, Emmi, Giacomo, Ramirez, Giuseppe A., Beretta, Lorenzo, Govoni, Marcello, Onat, Marco A. Cimmino52 Ahmet Mesut, Cefle, Ayse, Yazici, Ayten, Kısacık, Bünyamin, Dalkilic, Ediz, Seyahi, Emire, Fresko, Izzet, Tunc, Ercan, Erken, Eren, Ozer, Hüseyin TE, Aksu, Kenan, Keser, Gokhan, Ozturk, Mehmet A., Bıcakcıgil, Muge, Duzgun, Nurşen, Karadag, Omer, Kiraz, Sedat, Pamuk, Ömer N., Akar, Servet, Onen, Fatos, Akkoc, Nurullah, Kamali, Sevil, Inanc, Murat, Yentür, Sibel P., Aydin, Sibel Z., Alibaz Oner, Fatma, Kaşifoğlu, Timuçin, Cobankara, Veli, Ozbalkan, Zeynep, Ates, Askin, Carette, Yasar Karaaslan73 Simon, Chung, Sharon A., Cuthbertson, David, Forbess, Lindsay J., Hoffman, Gary S., Khalidi, Nader A., Koening, Curry L., Langford, Carol A., Mcalear, Carol A., McKinnon Maksimowicz, Kathleen, Monach, Paul A., Moreland, Larry, Pagnoux, Christian, Seo, Philip, Spiera, Robert, Sreih, Antoine G., Warrington, Kenneth J., Ytterberg87, Steven R. ., Universidad de Cantabria, David Carmona, F., Coit, Patrick, Saruhan-Direskeneli, Guher, Hernandez-Rodriguez, Jose, Cid, Maria C., Solans, Roser, Castaneda, Santos, Vaglio, Augusto, Direskeneli, Haner, Merkel, Peter A., Boiardi, Luigi, Salvarani, Carlo, Gonzalez-Gay, Miguel A., Martin, Javier, Sawalha, Amr H., Institut Català de la Salut, [Carmona FD] Instituto de Parasitología y Biomedicina ‘López-Neyra’, IPBLN-CSIC, PTS Granada, Granada, Spain. Departamento de Genética e Instituto de Biotecnología, Universidad de Granada, Granada 18016, Spain. [Coit P] Division of Rheumatology, Department of Internal Medicine, University of Michigan, Ann Arbor, Michigan, USA. [Saruhan-Direskeneli G] Department of Physiology, Istanbul Medical Faculty, Istanbul University, Istanbul, Turkey. [Hernández-Rodríguez J, Cid MC] Vasculitis Research Unit, Department of Autoimmune Diseases, Hospital Clínic, University of Barcelona, Institut d’Investigacions Biomèdiques August Pi i Sunyer (IDIBAPS), Barcelona, Spain. [Solans R] Unitat de Malalties Autoimmunes Sistèmiques, Servei de Medicina Interna, Vall d’Hebron Hospital Universitari, Barcelona, Spain. Universitat Autònoma de Barcelona, Bellaterra, Spain, Vall d'Hebron Barcelona Hospital Campus, Martínez-Berriochoa, Agustín, Unzurrunzaga, Ainhoa, Hidalgo-Conde, Ana, Vuelta, Ana Belén Madroñero, Fernández-Nebro, Antonio, Carmen Ordóñez-Cañizares, M., Fernández-Gutiérrez, Benjamín, Rodríguez-Rodríguez, Lui, Escalante, Begoña, Alfonso, Begoña Marí, Sopeña, Bernardo, Gómez-Vaquero, Carmen, Raya, Enrique, Grau, Elena, Román, José A., Vicente, Esther F., Miguel, Eugenio de, López-Longo, Francisco J., Martínez, Lina, Morado, Inmaculada C., Bernardino Díaz-López, J., Caminal-Montero, Lui, Martínez-Zapico, Aleida, Narváez, Javier, Monfort, Jordi, Tío, Laura, Filloy, José A. Miranda, Sánchez-Martín, Julio, Alegre-Sancho, Juan J., Sáez-Comet, Lui, Conesa, Mercedes Pérez, Corbera-Bellalta, Marc, Ramentol-Sintas, Marc, García-Villanueva, María Jesú, Rojas, Mercedes Guijarro, Ortego-Centeno, Norberto, Fernández, Raquel Río, Callejas, José Lui, Pernaute, Olga Sanchez, Mateo, Patricia Fanlo, Blanco, Ricardo, González, Sergio Prieto, Soriano, Víctor Manuel Martínez-Taboada11.Alessandra, Lunardi, Claudio, Gianfreda, Davide, Santilli, Daniele, Bonatti, Francesco, Muratore, Francesco, Pazzola, Giulia, Addimanda, Olga, Emmi, Giacomo, Ramirez, Giuseppe A., Beretta, Lorenzo, Govoni, Marcello, Onat, Marco A. Cimmino52 Ahmet Mesut, Cefle, Ayse, Yazici, Ayten, Kısacık, Bünyamin, Dalkilic, Ediz, Seyahi, Emire, Fresko, Izzet, Tunc, Ercan, Erken, Eren, Ozer, Hüseyin TE, Aksu, Kenan, Keser, Gokhan, Ozturk, Mehmet A., Bıcakcıgil, Muge, Duzgun, Nurşen, Karadag, Omer, Kiraz, Sedat, Pamuk, Ömer N., Akar, Servet, Onen, Fato, Akkoc, Nurullah, Kamali, Sevil, Inanc, Murat, Yentür, Sibel P., Aydin, Sibel Z., Alibaz-Oner, Fatma, Kaşifoğlu, Timuçin, Cobankara, Veli, Ozbalkan, Zeynep, Ates, Askin, Carette, Yasar Karaaslan73 Simon, Chung, Sharon A., Cuthbertson, David, Forbess, Lindsay J., Hoffman, Gary S., Khalidi, Nader A., Koening, Curry L., Langford, Carol A., Mcalear, Carol A., McKinnon-Maksimowicz, Kathleen, Monach, Paul A., Moreland, Larry, Pagnoux, Christian, Seo, Philip, Spiera, Robert, Sreih, Antoine G., Warrington, Kenneth J., Ytterberg87, Steven R. ., and Universitat de Barcelona
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Male ,0301 basic medicine ,PATHOGENESIS ,enfermedades cardiovasculares::enfermedades vasculares::vasculitis [ENFERMEDADES] ,Genome-wide association study ,Cardiovascular Diseases::Vascular Diseases::Vasculitis [DISEASES] ,0302 clinical medicine ,vasculitides, Immunochip strategy ,HLA Antigens ,RHEUMATOLOGY 1990 CRITERIA ,Medicine ,skin and connective tissue diseases ,Genetics ,RISK ,Multidisciplinary ,Nervous System Diseases::Autoimmune Diseases of the Nervous System::Vasculitis, Central Nervous System::Giant Cell Arteritis [DISEASES] ,TAKAYASU ARTERITIS ,ASSOCIATION ,Genomics ,Corrigenda ,predisposición ,3. Good health ,enfermedades del sistema nervioso::enfermedades autoinmunitarias del sistema nervioso::vasculitis del sistema nervioso central::arteritis de células gigantes [ENFERMEDADES] ,Female ,meta-Immunochip strategy ,Vasculitis ,Genotype ,SUSCEPTIBILITY LOCI ,Giant Cell Arteritis ,Locus (genetics) ,POLYMYALGIA-RHEUMATICA ,Human leukocyte antigen ,Genetic correlation ,03 medical and health sciences ,GIANT-CELL ARTERITIS ,Genetic Pleiotropy ,Humans ,Genetic Predisposition to Disease ,cardiovascular diseases ,Arteritis ,Genotyping ,Arteritis de cèl·lules gegants ,030203 arthritis & rheumatology ,Polymorphism, Genetic ,IDENTIFICATION ,business.industry ,medicine.disease ,common genetic component ,Takayasu Arteritis ,Giant cell arteritis ,Genòmica ,030104 developmental biology ,business ,INFLAMMATORY-BOWEL-DISEASE ,arge-vessel vasculitides - Abstract
Giant cell arteritis (GCA) and Takayasu's arteritis (TAK) are major forms of large-vessel vasculitis (LVV) that share clinical features. To evaluate their genetic similarities, we analysed Immunochip genotyping data from 1,434 LVV patients and 3,814 unaffected controls. Genetic pleiotropy was also estimated. The HLA region harboured the main disease-specific associations. GCA was mostly associated with class II genes (HLA-DRB1/HLA-DQA1) whereas TAK was mostly associated with class I genes (HLA-B/MICA). Both the statistical significance and effect size of the HLA signals were considerably reduced in the cross-disease meta-analysis in comparison with the analysis of GCA and TAK separately. Consequently, no significant genetic correlation between these two diseases was observed when HLA variants were tested. Outside the HLA region, only one polymorphism located nearby the IL12B gene surpassed the study-wide significance threshold in the meta-analysis of the discovery datasets (rs755374, P = 7.54E-07; ORGCA = 1.19, ORTAK = 1.50). This marker was confirmed as novel GCA risk factor using four additional cohorts (PGCA = 5.52E-04, ORGCA = 1.16). Taken together, our results provide evidence of strong genetic differences between GCA and TAK in the HLA. Outside this region, common susceptibility factors were suggested, especially within the IL12B locus., This work was supported by SAF2012– 34435 from the Spanish Ministry of Economy and Competitiveness, BIO-1395 from Junta de Andalucía, and RD12/0009/0004 from the RETICS Program (RIER) of Instituto de Salud Carlos III (ISCIII). FDC was recipient of a grant from the ‘Ramón y Cajal’ programme of the Spanish Ministry of Economy and Competitiveness (RYC-2014–16458). MCC and JHR are supported by Ministerio de Economía y Competitividad (SAF 14/57708R), cofunded by “Fondo Europeo de Desarrollo Regional, Unión Europea, Una manera de hacer Europa” [Instituto de Salud Carlos III and Fondo Europeo de desarrollo regional (FEDER) (PIE 13/00033)]. The Vasculitis Clinical Research Consortium has received support from the National Institute of Arthritis and Musculoskeletal and Skin Diseases (U54AR057319), the National Center for Research Resources (U54 RR019497), the Office of Rare Diseases Research, and the National Center for Advancing Translational Science. The VCRC is part of the Rare Diseases Clinical Research Network (RDCRN).
- Published
- 2017
19. Immune alterations in subacute sclerosing panencephalitis reflect an incompetent response to eliminate the measles virus.
- Author
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Yentür, Sibel P., Demirbilek, Veysi, Gurses, Candan, Baris, Safa, Kuru, Umit, Ayta, Semih, Yapici, Zuhal, Adin-Cinar, Suzan, Uysal, Serap, Celik Yilmaz, Gulden, Onal, Emel, Cokar, Ozlem, and Saruhan-Direskeneli, Güher
- Subjects
- *
MEASLES virus , *CELL membranes , *BLOOD cells , *MONOCYTES , *T cells , *FLOW cytometry - Abstract
In subacute sclerosing panencephalitis (SSPE) the persistence of measles virus (MeV) may be related to the altered immune response. In this study, cytokine responses of lymphocytes and monocytes were evaluated in SSPE compared to controls with non-inflammatory (NICON) and inflammatory (ICON) diseases. Patients with SSPE (n = 120), 78 patients with ICON and 63 patients with NICON were included in this study. Phenotypes of peripheral blood mononuclear cells (PBMC) have been analyzed by flow cytometry. CD3 and CD28, and S. aureus Cowan strain I (SAC) stimulated and unstimulated cells were cultured and IL-2, IL-10, IFN-γ, IL-12p40, IL-12p70 and IL-23 were detected in supernatants by ELISA. MeV peptides were used for MeV-specific stimulation and IFN-γ secretion of PBMC was measured by ELISPOT. Spontaneous and stimulated secretions of IL-10 were lower in SSPE compared to both control groups. T cell stimulation induced lower IFN-γ production than ICON group, but higher IL-2 than NICON group in SSPE. Stimulated PBMC produced lower IL-12p70 in SSPE and had decreased CD46 on the cell surface, suggesting the interaction with the virus. IFN-γ responses against MeV peptides were not prominent and similar to NICON patients. The immune response did not reveal an inflammatory activity to eliminate the virus in SSPE patients. Even IL-10 production was diminished implicating that the response is self-limited in controlling the disease. [ABSTRACT FROM AUTHOR]
- Published
- 2021
- Full Text
- View/download PDF
20. CD4+ T Cells of Myasthenia Gravis Patients Are Characterized by Increased IL-21, IL-4, and IL-17A Productions and Higher Presence of PD-1 and ICOS.
- Author
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Çebi, Merve, Durmus, Hacer, Aysal, Fikret, Özkan, Berker, Gül, Gizem Engin, Çakar, Arman, Hocaoglu, Mehmet, Mercan, Metin, Yentür, Sibel P., Tütüncü, Melih, Yayla, Vildan, Akan, Onur, Dogan, Öner, Parman, Yeşim, and Saruhan-Direskeneli, Güher
- Subjects
MYASTHENIA gravis ,T cells ,T helper cells ,CHEMOKINE receptors ,BLOOD cells ,TH2 cells - Abstract
Myasthenia gravis (MG) is an autoimmune disease mediated by autoantibodies predominantly against the acetylcholine receptor (AChR). Specific T cell subsets are required for long-term antibody responses, and cytokines secreted mainly from CD4
+ T cells regulate B cell antibody production. The aim of this study was to assess the differences in the cytokine expressions of CD4+ T cells in MG patients with AChR antibodies (AChR-MG) and the effect of immunosuppressive (IS) therapy on cytokine activity and to test these findings also in MG patients without detectable antibodies (SN-MG). Clinically diagnosed AChR-MG and SN-MG patients were included. The AChR-MG patients were grouped as IS-positive and -negative and compared with age- and sex-matched healthy controls. Peripheral blood mononuclear cells were used for ex vivo intracellular cytokine production, and subsets of CD4+ T cells and circulating follicular helper T (cTfh) cells were detected phenotypically by the expression of the chemokine and the costimulatory receptors. Thymocytes obtained from patients who had thymectomy were also analyzed. IL-21, IL-4, IL-10, and IL-17A productions in CD4+ T cells were increased in AChR-MG compared to those in healthy controls. IS treatment enhanced IL-10 and reduced IFN-γ production in AChR-MG patients compared to those in IS-negative patients. Increased IL-21 and IL-4 productions were also demonstrated in SN-MG patients. Among CD4+ T cells, Th17 cells were increased in both disease subgroups. Treatment induced higher proportions of Th2 cells in AChR-MG patients. Both CXCR5+ and CXCR5− CD4+ T cells expressed higher programmed cell death protein 1 (PD-1) and inducible costimulatory (ICOS) in AChR-MG and SN-MG groups, mostly irrespective of the treatment. Based on chemokine receptors on CXCR5+ PD-1+ in CD4+ T (cTfh) cells, in AChR-MG patients without treatment, the proportions of Tfh17 cells were higher than those in the treated group, whereas the Tfh1 cells were decreased compared with those in the controls. The relevance of CXCR5 and PD-1 in the pathogenesis of AChR-MG was also suggested by the increased presence of these molecules on mature CD4 single-positive thymocytes from the thymic samples. The study provides further evidence for the importance of IL-21, IL-17A, IL-4, and IL-10 in AChR-MG. Disease-related CD4+ T cells are identified mainly as PD-1+ or ICOS+ with or without CXCR5, resembling cTfh cells in the circulation or probably in the thymus. AChR-MG and SN-MG seem to have some similar characteristics. IS treatment has distinctive effects on cytokine expression. [ABSTRACT FROM AUTHOR]- Published
- 2020
- Full Text
- View/download PDF
21. Identification of Multiple Genetic Susceptibility Loci in Takayasu Arteritis
- Author
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Saruhan-Direskeneli, Güher, Hughes, Travis, Aksu, Kenan, Keser, Gokhan, Coit, Patrick, Aydin, Sibel Z., Alibaz-Oner, Fatma, Kamalı, Sevil, Inanc, Murat, Carette, Simon, Hoffman, Gary S., Akar, Servet, Onen, Fatos, Akkoc, Nurullah, Khalidi, Nader A., Koening, Curry, Karadag, Omer, Kiraz, Sedat, Langford, Carol A., McAlear, Carol A., Ozbalkan, Zeynep, Ates, Askin, Karaaslan, Yasar, Maksimowicz-McKinnon, Kathleen, Monach, Paul A., Ozer, Hüseyin T., Seyahi, Emire, Fresko, Izzet, Cefle, Ayse, Seo, Philip, Warrington, Kenneth J., Ozturk, Mehmet A., Ytterberg, Steven R., Cobankara, Veli, Onat, A. Mesut, Guthridge, Joel M., James, Judith A., Tunc, Ercan, Duzgun, Nurşen, Bıcakcıgil, Muge, Yentür, Sibel P., Merkel, Peter A., Direskeneli, Haner, and Sawalha, Amr H.
- Published
- 2013
- Full Text
- View/download PDF
22. IFN-gamma response against measles virus peptides in subacute sclerosing panencephalitis patients
- Author
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Yentür, Sibel P., Adin-cinar, Suzan, Gürses, Candan, Demirbilek, Veysi, Baris, Safa, Ayta, Semih, Kuru, Ümit, Yapici, Zuhal, Uysal, Serap, Cokar, Ozlem, Gokyigit, Aysen, and Saruhan-direskeneli, Guher
- Published
- 2014
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23. Interleukin (IL)-12, IL-2, interferon-γ gene polymorphisms in subacute sclerosing panencephalitis patients.
- Author
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Yılmaz, Vuslat, Demirbilek, Veysi, Gürses, Candan, Yentür, Sibel P., Uysal, Serap, Yapıcı, Zuhal, Yılmaz, Gülden, Muncey, Aaron, Çokar, Özlem, Önal, Emel, Gökyiğit, Ayşen, and Saruhan-Direskeneli, Güher
- Subjects
SUBACUTE sclerosing panencephalitis ,GENETIC polymorphisms ,GENETIC research ,MEASLES complications ,DIFFUSE cerebral sclerosis ,ANTINEOPLASTIC agents ,ANTIVIRAL agents ,POLYMERASE chain reaction - Abstract
Mutated measles virus variants have been claimed as the causing agent for subacute sclerosing panencephalitis (SSPE) developing several years after the recovery from measles infection. However, immune dysfunction may be considered related to a genetic susceptibility to this rare disease. Interleukin (IL)-2 -330 (rs2069 762) and +160 (rs2069 763), IL-12 p40 3' UTR (rs3213113), and interferon (IFN)-γ +874 (rs2430561) polymorphisms are screened by polymerase chain reaction-restriction fragment length polymorphism (PCR-RFLP) and PCR-sequence-specific priming (SSP) methods in 87 SSPE patients and 106 healthy controls (HCs) as candidate genes of susceptibility. The distribution of the IL12B genotypes (rs3213113) showed a trend for a significant difference (P = .053). The frequency of IL12B C allele (P = .04, OR: 1.6) and CC genotype (P = .03, OR: 3.2) were both higher in SSPE patients than in HC. The IL2 -330 genotypes revealed lower frequencies of GG genotype (P = .03, OR: 0.4) as well as G allele (P = .02, OR: 0.6) in SSPE. IL2 -330+160 TG haplotype was more frequent in patients (P = .005, OR: 1.8), whereas GG haplotype was less frequent, compared to controls (P = .02, OR: 0.6). IFNG +874 polymorphism revealed no difference. These findings implicate possible effects of genetic polymorphisms in the susceptibility to SSPE, which need to be confirmed in other populations. [ABSTRACT FROM AUTHOR]
- Published
- 2007
- Full Text
- View/download PDF
24. CD4 + T Cells of Myasthenia Gravis Patients Are Characterized by Increased IL-21, IL-4, and IL-17A Productions and Higher Presence of PD-1 and ICOS.
- Author
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Çebi M, Durmus H, Aysal F, Özkan B, Gül GE, Çakar A, Hocaoglu M, Mercan M, Yentür SP, Tütüncü M, Yayla V, Akan O, Dogan Ö, Parman Y, and Saruhan-Direskeneli G
- Subjects
- Adolescent, Adult, Aged, Autoantibodies immunology, Female, Humans, Immunosuppression Therapy methods, Immunosuppressive Agents therapeutic use, Male, Middle Aged, Myasthenia Gravis therapy, Receptors, Cholinergic immunology, Signal Transduction drug effects, Young Adult, Interleukin-21, CD4-Positive T-Lymphocytes immunology, Inducible T-Cell Co-Stimulator Protein metabolism, Interleukin-17 biosynthesis, Interleukin-4 biosynthesis, Interleukins biosynthesis, Myasthenia Gravis immunology, Programmed Cell Death 1 Receptor metabolism
- Abstract
Myasthenia gravis (MG) is an autoimmune disease mediated by autoantibodies predominantly against the acetylcholine receptor (AChR). Specific T cell subsets are required for long-term antibody responses, and cytokines secreted mainly from CD4
+ T cells regulate B cell antibody production. The aim of this study was to assess the differences in the cytokine expressions of CD4+ T cells in MG patients with AChR antibodies (AChR-MG) and the effect of immunosuppressive (IS) therapy on cytokine activity and to test these findings also in MG patients without detectable antibodies (SN-MG). Clinically diagnosed AChR-MG and SN-MG patients were included. The AChR-MG patients were grouped as IS-positive and -negative and compared with age- and sex-matched healthy controls. Peripheral blood mononuclear cells were used for ex vivo intracellular cytokine production, and subsets of CD4+ T cells and circulating follicular helper T (cTfh) cells were detected phenotypically by the expression of the chemokine and the costimulatory receptors. Thymocytes obtained from patients who had thymectomy were also analyzed. IL-21, IL-4, IL-10, and IL-17A productions in CD4+ T cells were increased in AChR-MG compared to those in healthy controls. IS treatment enhanced IL-10 and reduced IFN-γ production in AChR-MG patients compared to those in IS-negative patients. Increased IL-21 and IL-4 productions were also demonstrated in SN-MG patients. Among CD4+ T cells, Th17 cells were increased in both disease subgroups. Treatment induced higher proportions of Th2 cells in AChR-MG patients. Both CXCR5+ and CXCR5- CD4+ T cells expressed higher programmed cell death protein 1 (PD-1) and inducible costimulatory (ICOS) in AChR-MG and SN-MG groups, mostly irrespective of the treatment. Based on chemokine receptors on CXCR5+ PD-1+ in CD4+ T (cTfh) cells, in AChR-MG patients without treatment, the proportions of Tfh17 cells were higher than those in the treated group, whereas the Tfh1 cells were decreased compared with those in the controls. The relevance of CXCR5 and PD-1 in the pathogenesis of AChR-MG was also suggested by the increased presence of these molecules on mature CD4 single-positive thymocytes from the thymic samples. The study provides further evidence for the importance of IL-21, IL-17A, IL-4, and IL-10 in AChR-MG. Disease-related CD4+ T cells are identified mainly as PD-1+ or ICOS+ with or without CXCR5, resembling cTfh cells in the circulation or probably in the thymus. AChR-MG and SN-MG seem to have some similar characteristics. IS treatment has distinctive effects on cytokine expression., (Copyright © 2020 Çebi, Durmus, Aysal, Özkan, Gül, Çakar, Hocaoglu, Mercan, Yentür, Tütüncü, Yayla, Akan, Dogan, Parman and Saruhan-Direskeneli.)- Published
- 2020
- Full Text
- View/download PDF
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