Bacterial Meningitis
What's New
Last Posted: Oct 09, 2024
- CARD8 polymorphisms among bacterial meningitis patients in North-West Ethiopia.
Meseret Belayneh, et al. BMC infectious diseases 2024 0 (1) 1084 - Gene polymorphisms of IL-17A and bacterial meningitis in Angolan children.
Johanna Teräsjärvi, et al. Infection, genetics and evolution : journal of molecular epidemiology and evolutionary genetics in infectious diseases 2024 0 105553 - Genes and their single nucleotide polymorphism involved in innate immune response in central nervous system in bacterial meningitis: review of literature data.
Gowin Ewelina, et al. Inflammation research : official journal of the European Histamine Research Society ... [et al.] 2018 0 (8) 655-661 - Clinical presentations, Laboratory analysis and Linear Growth in 50 Neonates and Young Infants with Acute Meningitis: One Year Experience of a Single Center in Qatar.
Abdelmaguid Nadra, et al. Mediterranean journal of hematology and infectious diseases 2019 0 (1) e2019028 - Gene Polymorphisms of TLR4 and TLR9 and Haemophilus influenzae Meningitis in Angolan Children.
Tenhu Elina, et al. Genes 2020 0 (9) - TLR9 Rs352140 polymorphism contributes to a decreased risk of bacterial meningitis: evidence from a meta-analysis.
Xue Haiyi, et al. Epidemiology and infection 2020 0 e294 - Complement factor H contributes to mortality in humans and mice with bacterial meningitis.
Kasanmoentalib E Soemirien, et al. Journal of neuroinflammation 2019 0 (1) 279 - Individual responsiveness of macrophage migration inhibitory factor predicts long-term cognitive impairment after bacterial meningitis.
Kloek Anne T, et al. Acta neuropathologica communications 2021 0 (1) 4 - Study protocol: The Dutch 20|30 Postmeningitis study: a cross-sectional follow-up of two historical childhood bacterial meningitis cohorts on long-term outcomes.
El Tahir O, et al. BMC pediatrics 2020 0 (1) 519 - Derivation of a clinical-based model to detect invasive bacterial infections in febrile infants.
Yaeger Jeffrey P et al. Journal of hospital medicine 2022 - Gene polymorphisms of TLR10: effects on bacterial meningitis outcomes in Angolan children.
Tenhu Elina, et al. APMIS : acta pathologica, microbiologica, et immunologica Scandinavica 2022 2 - Ability of Procalcitonin and C-Reactive Protein for Discriminating between Bacterial and Enteroviral Meningitis in Children Using Decision Tree.
Babenko Dmitriy et al. BioMed research international 2021 20215519436 - Polymorphisms of toll-like receptors 2 and 9 and severity and prognosis of bacterial meningitis in Chinese children.
Zhang Pingping, et al. Scientific reports 2017 0 42796 - Variation of 46 Innate Immune Genes Evaluated for their Contribution in Pneumococcal Meningitis Susceptibility and Outcome.
Ferwerda Bart, et al. EBioMedicine 2016 8 77-84 - Next-Generation Sequencing Could be a Promising Diagnostic Approach for Pathogen Detection: Pathogenic Analysis of Pediatric Bacterial Meningitis by Next-Generation Sequencing Technology Directly from Cerebrospinal Fluid Specimens
L Guo et al, BioRXIV, June 6, 2018 - Variation in coagulation and fibrinolysis genes evaluated for their contribution to cerebrovascular complications in adults with bacterial meningitis in the Netherlands.
Kloek A T, et al. The Journal of infection 2018 5 - A world without bacterial meningitis: how genomic epidemiology can inform vaccination strategy.
Rodrigues Charlene M C et al. F1000Research 2018 401 - How many single-nucleotide polymorphisms (SNPs) must be tested in order to prove susceptibility to bacterial meningitis in children? Analysis of 11 SNPs in seven genes involved in the immune response and their effect on the susceptibility to bacterial meningitis in children.
Gowin Ewelina, et al. Innate immunity 2018 1 1753425918762038 - Association between TLR2 + 2477G/A polymorphism and bacterial meningitis: a meta-analysis.
Jin Xiaochun, et al. Epidemiology and infection 2018 2 1-6 - Genome-wide association and HLA region fine-mapping studies identify susceptibility loci for multiple common infections.
Tian Chao, et al. Nature communications 2017 0 (1) 599
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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
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