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Cited by in CrossRef
For: Worthley DL, Bardy PG, Gordon DL, Mullighan CG. Mannose-binding lectin and maladies of the bowel and liver. World J Gastroenterol 2006; 12(40): 6420-6428 [PMID: 17072973 DOI: 10.3748/wjg.v12.i40.6420]
URL: https://www.wjgnet.com/1007-9327/full/v12/i40/6420.htm
Number Citing Articles
1
Umang Jain, Anthony R. Otley, Johan Van Limbergen, Andrew W. Stadnyk. The Complement System in Inflammatory Bowel DiseaseInflammatory Bowel Diseases 2014; 20(9): 1628 doi: 10.1097/MIB.0000000000000056
2
Noha M. Hammad, Nissreen E. El Badawy, Ashraf M. Nasr, Hamed A. Ghramh, Laila M. Al Kady. Mannose-Binding Lectin Gene Polymorphism and Its Association with Susceptibility to Recurrent Vulvovaginal CandidiasisBioMed Research International 2018; 2018: 1 doi: 10.1155/2018/7648152
3
Andreza Barkokebas, Alessandra de Albuquerque T. Carvalho, Paulo Roberto Eleutério de Souza, Ricardo Santiago Gomez, Guilherme Machado Xavier, Camila Maria Beder Ribeiro, Sergio Crovella, Stephen Ross Porter, Jair Carneiro Leão. Mannose-binding lectin gene (MBL-2) polymorphism in oral lichen planusClinical Oral Investigations 2011; 15(5): 699 doi: 10.1007/s00784-010-0428-4
4
Eirini Koutsounaki, George N. Goulielmos, Mary Koulentaki, Christianna Choulaki, Elias Kouroumalis, Emmanouil Galanakis. Mannose-binding Lectin MBL2 Gene Polymorphisms and Outcome of Hepatitis C Virus-infected PatientsJournal of Clinical Immunology 2008; 28(5): 495 doi: 10.1007/s10875-008-9201-8
5
Maria Papp, Peter Laszlo Lakatos, Jolan Harsfalvi, Gyula Farkas, Karoly Palatka, Miklos Udvardy, Tamas Molnar, Klaudia Farkas, Ferenc Nagy, Gabor Veres, Laszlo Lakatos, Agota Kovacs, Tamas Dinya, Agnes Katalin Kocsis, Janos Papp, Istvan Altorjay. Mannose-binding lectin level and deficiency is not associated with inflammatory bowel diseases, disease phenotype, serology profile, and NOD2/CARD15 genotype in a large Hungarian cohortHuman Immunology 2010; 71(4): 407 doi: 10.1016/j.humimm.2010.01.012
6
Daniel L. Worthley, Douglas F. Johnson, Damon P. Eisen, Melinda M. Dean, Susan L. Heatley, John‐Paul Tung, Justin Scott, Robert T. A. Padbury, Hugh A. Harley, Peter G. Bardy, Peter W. Angus, Charles G. Mullighan. Donor Mannose‐Binding Lectin Deficiency Increases the Likelihood of Clinically Significant Infection after Liver TransplantationClinical Infectious Diseases 2009; 48(4): 410 doi: 10.1086/596313
7
Christoph T Berger, Victor Greiff, Matthias Mehling, Stefanie Fritz, Marc A Meier, Gideon Hoenger, Anna Conen, Mike Recher, Manuel Battegay, Sai T Reddy, Christoph Hess. Influenza vaccine response profiles are affected by vaccine preparation and preexisting immunity, but not HIV infectionHuman Vaccines & Immunotherapeutics 2015; 11(2): 391 doi: 10.1080/21645515.2015.1008930
8
Rema Rajagopalan, Veena P. Salvi, Jens Chr. Jensenius, Nenoo Rawal. New insights on the structural/functional properties of recombinant human mannan-binding lectin and its variantsImmunology Letters 2009; 123(2): 114 doi: 10.1016/j.imlet.2009.02.013
9
Maria Cristina Halla, Rodrigo Feliciano do Carmo, Luydson Richardson Silva Vasconcelos, Luciano Beltrão Pereira, Patricia Moura, Erika Rabelo Forte de Siqueira, Leila Maria Moreira Beltrão Pereira, Maria do Socorro de Mendonça Cavalcanti. Association of hepatitis C virus infection and liver fibrosis severity with the variants alleles of MBL2 gene in a Brazilian populationHuman Immunology 2010; 71(9): 883 doi: 10.1016/j.humimm.2010.05.021
10
T.A.M. Bouwens, L.A. Trouw, R. Veerhuis, C.M.F. Dirven, M.L.M. Lamfers, H. Al-Khawaja. Complement activation in Glioblastoma Multiforme pathophysiology: Evidence from serum levels and presence of complement activation products in tumor tissueJournal of Neuroimmunology 2015; 278: 271 doi: 10.1016/j.jneuroim.2014.11.016
11
Tatiana A. Korolenko, Nataliya P. Bgatova, Marina V. Ovsyukova, Alexandra Shintyapina, Vaclav Vetvicka. Hypolipidemic Effects of β-Glucans, Mannans, and Fucoidans: Mechanism of Action and Their Prospects for Clinical ApplicationMolecules 2020; 25(8): 1819 doi: 10.3390/molecules25081819
12
G Sivaram, Santosh K Tiwari, Avinash Bardia, G Manoj, B Santhosh, R Saikant, Habeeb Aejaz, S Vishnupriya, Aleem A Khan, CM Habibullah. Association of genetic variants of mannan-binding (MBL) lectin-2 gene, MBL levels and function in ulcerative colitis and Crohn’s diseaseInnate Immunity 2011; 17(6): 526 doi: 10.1177/1753425910384531
13
Noha M. Hammad, Nissreen E. El Badawy, Hamed A. Ghramh, Laila M. Al Kady. Mannose-Binding Lectin: A Potential Therapeutic Candidate against Candida InfectionBioMed Research International 2018; 2018: 1 doi: 10.1155/2018/2813737
14
Astha Malik, Unmesha Thanekar, Surya Amarachintha, Reena Mourya, Shreya Nalluri, Alexander Bondoc, Pranavkumar Shivakumar. “Complimenting the Complement”: Mechanistic Insights and Opportunities for Therapeutics in Hepatocellular CarcinomaFrontiers in Oncology 2021; 10 doi: 10.3389/fonc.2020.627701
15
Petra Koudelkova, Victor Costina, Gerhard Weber, Steven Dooley, Peter Findeisen, Peter Winter, Rahul Agarwal, Karin Schlangen, Wolfgang Mikulits. Transforming Growth Factor-β Drives the Transendothelial Migration of Hepatocellular Carcinoma CellsInternational Journal of Molecular Sciences 2017; 18(10): 2119 doi: 10.3390/ijms18102119
16
Anita Gupta. Animal Lectins: Form, Function and Clinical Applications2012; : 483 doi: 10.1007/978-3-7091-1065-2_23
17
Mohammed Y. Behairy, Ali A. Abdelrahman, Hoda Y. Abdallah, Emad El-Deen A. Ibrahim, Hany R. Hashem, Anwar A. Sayed, Marwa M. Azab. Role of MBL2 Polymorphisms in Sepsis and Survival: A Pilot Study and In Silico AnalysisDiagnostics 2022; 12(2): 460 doi: 10.3390/diagnostics12020460
18
Anita Gupta. Animal Lectins: Form, Function and Clinical Applications2012; : 933 doi: 10.1007/978-3-7091-1065-2_42