Brucellosis
What's New
Last Posted: Jan 21, 2024
- In vivo biological validation of in silico analysis: A novel approach for predicting the effects of TLR4 exon 3 polymorphisms on brucellosis.
Antonio Gentile, et al. Infection, genetics and evolution : journal of molecular epidemiology and evolutionary genetics in infectious diseases 2024 0 105552 - Association of an IRF3 putative functional uORF variant with resistance to Brucella infection: A candidate gene based analysis of InDel polymorphisms in goats.
Rossi Ursula A, et al. Cytokine 2018 0 109-115 - Polymorphisms in Promoter Region of the Interferon-Gamma Receptor-1 Gene and its Relation with Susceptibility to Brucellosis.
Naseri Zahra, et al. Iranian journal of pathology 2019 0 (3) 206-211 - Association of TNF rs668920841 and INRA111 polymorphisms with caprine brucellosis: A case-control study of candidate genes involved in innate immunity.
Hasenauer F C, et al. Genomics 2020 0 (6) 3925-3932 - Association between the IL-10 and IL-6 polymorphisms and brucellosis susceptibility: a meta-analysis.
Jin Xiaochun, et al. BMC medical genetics 2020 0 (1) 63 - Association between risk of brucellosis and genetic variations in MicroRNA-146a.
Kazemi Sima, et al. BMC infectious diseases 2021 0 (1) 1070 - Polymorphisms in vitamin D receptor genes and its relation with susceptibility to brucellosis: a case-control study.
Mahmoudi Hassan, et al. Molecular biology reports 2022 0 - An Autoimmune Disease-Associated Risk Variant in the TNFAIP3 Gene Plays a Protective Role in Brucellosis That Is Mediated by the NF-?B Signaling Pathway.
Lou Lixin, et al. Journal of clinical microbiology 2018 0 (4) - Assessment of Association between miR-146a Polymorphisms and Expression of miR-146a, TRAF-6, and IRAK-1 Genes in Patients with Brucellosis.
Kazemi Sima, et al. Molecular biology reports 2022 0 (3) 1995-2002 - Whole-genome Sequencing of Rough Brucella melitensis in China Provides Insights into its Genetic Features.
Yang Xiaowen et al. Emerging microbes & infections 2020 Sep 1-14 - Forecasting the monthly incidence rate of brucellosis in west of Iran using time series and data mining from 2010 to 2019.
Bagheri Hadi et al. PloS one 2020 15(5) e0232910 - Association between the IL-10-1082G/A, IL-10-819T/C and IL-10-592A/C polymorphisms and Brucellosis susceptibility: a meta-analysis.
Jin Xiaochun, et al. Epidemiology and infection 2019 12 e316 - Evaluation of the relationship between IL-12, IL-13 and TNF-a gene polymorphisms with the susceptibility to brucellosis: a case control study.
Kazemi Sima, et al. BMC infectious diseases 2019 12 (1) 1036 - Association between polymorphisms of cytokine genes and brucellosis: A comprehensive systematic review and meta-analysis.
Zafari Parisa, et al. Cytokine 2019 12 154949 - Association of IL-6, IL-10 and TGF-?1 gene polymorphisms with brucellosis: A systematic review with meta-analysis.
Fu Juan, et al. Microbial pathogenesis 2019 7 103640 - Time series analysis of human brucellosis in mainland China by using Elman and Jordan recurrent neural networks.
Wu Wei et al. BMC infectious diseases 2019 May 19(1) 414 - [PECULIARITIES OF THE PREVALENCE OF POLYMORPHISM (C-589T) OF THE IL-4 GENE AND ITS RELATIONSHIP WITH SERUM IL-4 LEVEL IN PATIENTS WITH ACUTE BRUCELLOSIS IN THE REPUBLIC OF AZERBAIJAN].
Huseynov E, et al. Georgian medical news 2019 3 (288) 120-125 - Association of interleukin-17 gene polymorphisms and susceptibility to brucellosis in Hamadan, western Iran.
Keramat Fariba, et al. Microbiology and immunology 2019 3 - Interferon-? receptor-1 gene promoter polymorphisms and susceptibility for brucellosis in Makkah region.
Ismael A B, et al. African health sciences 2018 12 (4) 1157-1165 - The relationship between IFN-? and TNF-? gene polymorphisms and brucellosis: A meta-analysis.
Eskandari-Nasab Ebrahim, et al. Advances in clinical and experimental medicine : official organ Wroclaw Medical University 2018 8
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- Alpha-1 Antitrypsin Deficiency
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Disclaimer: Articles listed in the Public Health Knowledge Base are selected by Public Health Genomics Branch to provide current awareness of the literature and news. Inclusion in the update does not necessarily represent the views of the Centers for Disease Control and Prevention nor does it imply endorsement of the article's methods or findings. CDC and DHHS assume no responsibility for the factual accuracy of the items presented. The selection, omission, or content of items does not imply any endorsement or other position taken by CDC or DHHS. Opinion, findings and conclusions expressed by the original authors of items included in the update, or persons quoted therein, are strictly their own and are in no way meant to represent the opinion or views of CDC or DHHS. References to publications, news sources, and non-CDC Websites are provided solely for informational purposes and do not imply endorsement by CDC or DHHS.
- Page last reviewed:Feb 1, 2024
- Page last updated:May 07, 2024
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