For: | Csöngei V, Járomi L, Sáfrány E, Sipeky C, Magyari L, Faragó B, Bene J, Polgár N, Lakner L, Sarlós P, Varga M, Melegh B. Interaction of the major inflammatory bowel disease susceptibility alleles in Crohn’s disease patients. World J Gastroenterol 2010; 16(2): 176-183 [PMID: 20066736 DOI: 10.3748/wjg.v16.i2.176] |
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URL: | https://www.wjgnet.com/1007-9327/full/v16/i2/176.htm |
Number | Citing Articles |
1 |
J. Rusek, M. Klumplerova, D. Molinkova, M. Sedlinska, L. Dusek, J. Muzik, L. Putnova, I. Vrtkova, V. Celer, P. Horin. Genetics of anti-EHV antibody responses in a horse population. Research in Veterinary Science 2013; 95(1): 137 doi: 10.1016/j.rvsc.2013.03.011
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2 |
Marie Klumplerova, Leona Vychodilova, Olga Bobrova, Michaela Cvanova, Jan Futas, Eva Janova, Mirko Vyskocil, Irena Vrtkova, Lenka Putnova, Ladislav Dusek, Eliane Marti, Petr Horin. Major histocompatibility complex and other allergy-related candidate genes associated with insect bite hypersensitivity in Icelandic horses. Molecular Biology Reports 2013; 40(4): 3333 doi: 10.1007/s11033-012-2408-z
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3 |
Jiun-Sheng Chen, Fulan Hu, Subra Kugathasan, Lynn B Jorde, David Nix, Ann Rutherford, Lee Denson, W Scott Watkins, Sampath Prahalad, Chad Huff, Stephen L Guthery. Targeted Gene Sequencing in Children with Crohn’s Disease and Their Parents: Implications for Missing Heritability. G3 Genes|Genomes|Genetics 2018; 8(9): 2881 doi: 10.1534/g3.118.200404
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4 |
Ambika Sharma, Sargeet Kaur, Ajay Duseja, Harish Changotra. The autophagy gene ATG16L1 (T300A) variant is associated with the risk and progression of HBV infection. Infection, Genetics and Evolution 2020; 84: 104404 doi: 10.1016/j.meegid.2020.104404
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5 |
Bruno Lorenzo SCOLARO, Emily dos SANTOS, Leslie Ecker FERREIRA, Paulo Henrique Condeixa de FRANÇA, Harry KLEINUBING, Paulo Gustavo KOTZE, Mauro de Souza Leite PINHO. T300A GENETIC POLYMORPHISM: a susceptibility factor for Crohn’s disease?. Arquivos de Gastroenterologia 2014; 51(2): 97 doi: 10.1590/S0004-28032014000200005
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6 |
A. Kathrani, D. Werling, K. Allenspach. Canine breeds at high risk of developing inflammatory bowel disease in the south‐eastern UK. Veterinary Record 2011; 169(24): 635 doi: 10.1136/vr.d5380
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7 |
Wang-Dong Xu, Qi-Bing Xie, Yi Zhao, Yi Liu. Association of Interleukin-23 receptor gene polymorphisms with susceptibility to Crohn’s disease: A meta-analysis. Scientific Reports 2015; 5(1) doi: 10.1038/srep18584
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8 |
Maria Markelova, Anastasia Senina, Dilyara Khusnutdinova, Maria Siniagina, Elena Kupriyanova, Gulnaz Shakirova, Alfiya Odintsova, Rustam Abdulkhakov, Irina Kolesnikova, Olga Shagaleeva, Svetlana Lyamina, Sayar Abdulkhakov, Natalia Zakharzhevskaya, Tatiana Grigoryeva. Association between Taxonomic Composition of Gut Microbiota and Host Single Nucleotide Polymorphisms in Crohn’s Disease Patients from Russia. International Journal of Molecular Sciences 2023; 24(9): 7998 doi: 10.3390/ijms24097998
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9 |
Xiaohong Fu, Heting Liu, Gang Huang, Shuang‐Shuang Dai. The emerging role of neutrophils in autoimmune‐associated disorders: effector, predictor, and therapeutic targets. MedComm 2021; 2(3): 402 doi: 10.1002/mco2.69
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10 |
Holger Schäffler, Nina Schneider, Chih-Jen Hsieh, Johannes Reiner, Silvio Nadalin, Maria Witte, Alfred Königsrainer, Gunnar Blumenstock, Georg Lamprecht. NOD2 mutations are associated with the development of intestinal failure in the absence of Crohn's disease. Clinical Nutrition 2013; 32(6): 1029 doi: 10.1016/j.clnu.2013.02.014
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11 |
Nahla A. Azzam, Abdulelah Almutairdi, Hajer Y. Almudaiheem, Turki AlAmeel, Shakir A. Bakkari, Othman R. Alharbi, Khalidah A. Alenzi, Maha A. AlMolaiki, Bedor A. Al-Omari, Rayan G. Albarakati, Ahmed H. Al-Jedai, Omar I. Saadah, Majid A. Almadi, Badr Al-Bawardy, Mahmoud H. Mosli. Saudi consensus guidance for the management of inflammatory bowel disease during pregnancy. Saudi Journal of Gastroenterology 2023; doi: 10.4103/sjg.sjg_318_23
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12 |
Amy L. Lightner, Jean H. Ashburn, Mantaj S. Brar, Michele Carvello, Pramodh Chandrasinghe, Anthony de Buck van Overstraeten, Phillip R. Fleshner, Gaetano Gallo, Paulo Gustavo Kotze, Stefan D. Holubar, Lillian M. Reza, Antonino Spinelli, Scott A. Strong, Philip J. Tozer, Adam Truong, Janindra Warusavitarne, Takayuki Yamamoto, Karen Zaghiyan. Fistulizing Crohn's disease. Current Problems in Surgery 2020; 57(11): 100808 doi: 10.1016/j.cpsurg.2020.100808
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13 |
Károly Lapis. Barrier- and autophagic functions of the intestinal epithelia: role of disturbances in the pathogenesis of Crohn’s disease. Orvosi Hetilap 2010; 151(40): 1645 doi: 10.1556/oh.2010.28942
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14 |
Claudio Lera Orsatti, Marcone Lima Sobreira, Valéria Cristina Sandrim, Jorge Nahas-Neto, Fabio Lera Orsatti, Eliana Aguiar Petri Nahas. Autophagy-related 16-like 1gene polymorphism, risk factors for cardiovascular disease and associated carotid intima-media thickness in postmenopausal women. Clinical Biochemistry 2018; 61: 12 doi: 10.1016/j.clinbiochem.2018.09.006
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15 |
Alan R. Harris, Dorottya Nagy-Szakal, Natalia Pedersen, Antone Opekun, Jiri Bronsky, Pia Munkholm, Cathrine Jespersgaard, PaalSkytt Andersen, Bela Melegh, George Ferry, Tine Jess, Richard Kellermayer. Genome-wide peripheral blood leukocyte DNA methylation microarrays identified a single association with inflammatory bowel diseases. Inflammatory Bowel Diseases 2012; 18(12): 2334 doi: 10.1002/ibd.22956
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16 |
Christos A. Grigoras, Panayiotis D. Ziakas, Elamparithi Jayamani, Eleftherios Mylonakis. ATG16L1 and IL23R Variants and Genetic Susceptibility to Crohnʼs Disease. Inflammatory Bowel Diseases 2015; 21(4): 768 doi: 10.1097/MIB.0000000000000305
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17 |
Anton G. Kutikhin, Arseniy E. Yuzhalin. Genomics of Pattern Recognition Receptors. 2013; : 123 doi: 10.1007/978-3-0348-0688-6_7
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18 |
Nadia Serbati, Nezha Senhaji, Brehima Diakite, Wafaa Badre, Sellama Nadifi. IL23R and ATG16L1 variants in Moroccan patients with inflammatory bowel disease. BMC Research Notes 2014; 7(1) doi: 10.1186/1756-0500-7-570
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19 |
Anton G. Kutikhin. Role of NOD1/CARD4 and NOD2/CARD15 gene polymorphisms in cancer etiology. Human Immunology 2011; 72(10): 955 doi: 10.1016/j.humimm.2011.06.003
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20 |
N. Polgar, V. Csongei, M. Szabo, V. Zambo, B. I. Melegh, K. Sumegi, G. Nagy, Z. Tulassay, B. Melegh. Investigation of JAK2, STAT3 and CCR6 polymorphisms and their gene–gene interactions in inflammatory bowel disease. International Journal of Immunogenetics 2012; 39(3): 247 doi: 10.1111/j.1744-313X.2012.01084.x
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21 |
A. Kathrani, H. Lee, C. White, B. Catchpole, A. Murphy, A. German, D. Werling, K. Allenspach. Association between nucleotide oligomerisation domain two (Nod2) gene polymorphisms and canine inflammatory bowel disease. Veterinary Immunology and Immunopathology 2014; 161(1-2): 32 doi: 10.1016/j.vetimm.2014.06.003
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22 |
Pardis‐Sadat Tabatabaei‐Panah, Hamideh Moravvej, Sahel Aghaei, Maryam Akbari, Sakineh Rajabi, Atena Kia, Elaheh Ebrahimi, Zahra Sadaf, Alireza Atoon, Nasim Behravesh, Ralf J. Ludwig, Reza Akbarzadeh. TH17/IL23 cytokine gene polymorphisms in bullous pemphigoid. Molecular Genetics & Genomic Medicine 2020; 8(12) doi: 10.1002/mgg3.1519
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23 |
Veronika Csöngei, Luca Járomi, Enikő Sáfrány, Csilla Sipeky, Lili Magyari, Noémi Polgár, Judit Bene, Patrícia Sarlós, Lilla Lakner, Eszter Baricza, Melinda Szabó, Gábor Rappai, Béla Melegh. Interaction between CTLA4 gene and IBD5 locus in Hungarian Crohn’s disease patients. International Journal of Colorectal Disease 2011; 26(9): 1119 doi: 10.1007/s00384-011-1202-z
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24 |
Chiung-Zuei Chen, Chih-Ying Ou, Ru-Hsueh Wang, Cheng-Hung Lee, Chien-Chung Lin, Han-Yu Chang, Tzuen-Ren Hsiue. Association of Egr-1 and autophagy-related gene polymorphism in men with chronic obstructive pulmonary disease. Journal of the Formosan Medical Association 2015; 114(8): 750 doi: 10.1016/j.jfma.2013.07.015
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25 |
Raul Ramos Furtado Dias, Eulógio Carlos Queiroz de Carvalho, Carla Cristina da Silva Leite, Roberto Carlos Tedesco, Katia da Silva Calabrese, Antonio Carlos Silva, Renato Augusto DaMatta, Maria de Fatima Sarro-Silva, Ira J. Blader. Toxoplasma gondii Oral Infection Induces Intestinal Inflammation and Retinochoroiditis in Mice Genetically Selected for Immune Oral Tolerance Resistance. PLoS ONE 2014; 9(12): e113374 doi: 10.1371/journal.pone.0113374
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26 |
Sarah Householder, Joseph A. Picoraro. Diagnosis and Classification of Fistula from Inflammatory Bowel Disease and Inflammatory Bowel Disease-Related Surgery. Gastrointestinal Endoscopy Clinics of North America 2022; 32(4): 631 doi: 10.1016/j.giec.2022.04.003
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27 |
Loni Berkowitz, Catalina Pardo-Roa, Gigliola Ramírez, Omar P. Vallejos, Valentina P. Sebastián, Claudia A. Riedel, Manuel Álvarez-Lobos, Susan M. Bueno, Mathias Chamaillard. The absence of interleukin 10 affects the morphology, differentiation, granule content and the production of cryptidin-4 in Paneth cells in mice. PLOS ONE 2019; 14(9): e0221618 doi: 10.1371/journal.pone.0221618
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28 |
Skender Telaku, Arber Veliu, Marsela Sina, Mimoza Telaku, Hajrullah Fejza, Fitim Alidema. Twin Brothers and a Sister With CD: A Case Report. Clinical Medicine Insights: Case Reports 2022; 15 doi: 10.1177/11795476221123537
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29 |
Y. Meddour, S. Chaib, A. Bousseloub, N. Kaddache, L. Kecili, L. Gamar, M. Nakkemouche, R. Djidjik, M.C. Abbadi, D. Charron, T.E. Boucekkine, R. Tamouza. NOD2/CARD15 and IL23R genetic variability in 204 Algerian Crohn's disease. Clinics and Research in Hepatology and Gastroenterology 2014; 38(4): 499 doi: 10.1016/j.clinre.2014.02.003
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30 |
Boon Pin Kee, Jin Guan Ng, Ching Ching Ng, Ida Hilmi, Khean Lee Goh, Kek Heng Chua. Genetic polymorphisms of ATG16L1 and IRGM genes in Malaysian patients with Crohn's disease. Journal of Digestive Diseases 2020; 21(1): 29 doi: 10.1111/1751-2980.12829
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31 |
Kek Heng CHUA, Ida HILMI, Lay Hoong LIAN, Sathya Narayanan PATMANATHAN, See Ziau HOE, Way Seah LEE, Khean Lee GOH. Association between inflammatory bowel disease gene 5 (IBD5) and interleukin‐23 receptor (IL23R) genetic polymorphisms in Malaysian patients with Crohn's disease. Journal of Digestive Diseases 2012; 13(9): 459 doi: 10.1111/j.1751-2980.2012.00617.x
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32 |
Shirlee Jaffe, Neil Normand, Aswathi Jayaram, Theofano Orfanelli, Georgios Doulaveris, Mariana Passos, Tomi T. Kanninen, Ann Marie Bongiovanni, Iara M. Linhares, Steven S. Witkin. Unique variation in genetic selection among Black North American women and its potential influence on pregnancy outcome. Medical Hypotheses 2013; 81(5): 919 doi: 10.1016/j.mehy.2013.08.015
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33 |
Bei-Bei Zhang, Yu Liang, Bo Yang, Ying-Jun Tan. Association between ATG16L1 gene polymorphism and the risk of Crohn’s disease. Journal of International Medical Research 2017; 45(6): 1636 doi: 10.1177/0300060516662404
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34 |
Justyna Gil, Karolina A Pesz, Maria M Sąsiadek. May Autophagy be a Novel Biomarker and Antitumor Target in Colorectal Cancer?. Biomarkers in Medicine 2016; 10(10): 1081 doi: 10.2217/bmm-2016-0083
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35 |
Srinivasan Pugazhendhi, Kirankumar Baskaran, Srikanth Santhanam, Balakrishnan S. Ramakrishna, David L Boone. Association of ATG16L1 gene haplotype with inflammatory bowel disease in Indians. PLOS ONE 2017; 12(5): e0178291 doi: 10.1371/journal.pone.0178291
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36 |
Meghan Barrett, Sathees B. Chandra. A review of major Crohn’s disease susceptibility genes and their role in disease pathogenesis. Genes & Genomics 2011; 33(4): 317 doi: 10.1007/s13258-011-0076-3
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37 |
Jian Wang, Xi Wang, Hong Yang, Dong Wu, Li Wang, Jiaming Qian. Contribution of the IBD5 locus to inflammatory bowel disease: a meta-analysis. Human Genetics 2011; 129(6): 597 doi: 10.1007/s00439-011-0952-6
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38 |
Ambika Sharma, Arti Sharma, Jyoti Parkash, Harish Changotra.
An artificial-restriction fragment length polymorphism (A-RFLP) method for genotyping intronic SNP rs7587633 C/T of
ATG16L1
. Nucleosides, Nucleotides & Nucleic Acids 2024; : 1 doi: 10.1080/15257770.2024.2344736
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39 |
Isidora Simovic, Ida Hilmi, Ruey Terng Ng, Kee Seang Chew, Shin Yee Wong, Way Seah Lee, Stephen Riordan, Natalia Castaño‐Rodríguez. ATG16L1 rs2241880/T300A increases susceptibility to perianal Crohn's disease: An updated meta‐analysis on inflammatory bowel disease risk and clinical outcomes. United European Gastroenterology Journal 2023; doi: 10.1002/ueg2.12477
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