
Last Posted: Jul 07, 2022
- Making cough count in tuberculosis care
AJ Zimmer et al, Comm Medicine, July 6, 2022 - Non-Sputum CRISPR-Based Tuberculosis Test Shows High Sensitivity in HIV-Infected Children
Johnson M. GenomeWeb, Jun 24, 2022. - Whole genome sequencing analysis to evaluate the influence of T2DM on polymorphisms associated with drug resistance in M. tuberculosis.
Bermudez-Hernández Gustavo Adolfo et al. BMC genomics 2022 6 (1) 465 - Detection of M. tuberculosis in the environment as a tool for identifying high-risk locations for tuberculosis transmission.
Verma Renu et al. The Science of the total environment 2022 6 156970 - Origin and Global Expansion of Mycobacterium tuberculosis Complex Lineage 3.
Shuaib Yassir A et al. Genes 2022 6 (6) - Comprehensive genomic analysis of Mycobacterium tuberculosis reveals limited impact of high-fitness genotypes on MDR-TB transmission.
Chen Yiwang et al. The Journal of infection 2022 5 (1) 49-56 - M. tuberculosis microvariation is common and is associated with transmission: Analysis of three years prospective universal sequencing in England.
Wyllie David et al. The Journal of infection 2022 5 (1) 31-39 - Tuberculosis reinfection and relapse in eastern China: A prospective study using whole-genome sequencing.
Liu Qiao et al. Clinical microbiology and infection : the official publication of the European Society of Clinical Microbiology and Infectious Diseases 2022 6 - The MtZ Strain: Molecular Characteristics and Outbreak Investigation of the Most Successful Mycobacterium tuberculosis Strain in Aragon Using Whole-Genome Sequencing.
Comín Jessica et al. Frontiers in cellular and infection microbiology 2022 6 887134 - Uncovering Beta-Lactam Susceptibility Patterns in Clinical Isolates of Mycobacterium tuberculosis through Whole-Genome Sequencing.
Olivença Francisco et al. Microbiology spectrum 2022 6 e0067422 - CRISPRi chemical genetics and comparative genomics identify genes mediating drug potency in Mycobacterium tuberculosis.
Li Shuqi et al. Nature microbiology 2022 5 (6) 766-779 - Emergence of multi-drug-resistant Mycobacterium tuberculosis in Niger: A snapshot based on whole-genome sequencing.
Harouna Hamidou Zelika et al. PLoS neglected tropical diseases 2022 5 (5) e0010443 - Molecular characterization of drug-resistant Mycobacterium tuberculosis among Filipino patients derived from the national tuberculosis prevalence survey Philippines 2016.
Montoya Jaime C et al. Tuberculosis (Edinburgh, Scotland) 2022 5 102211 - The role of prisons in disseminating tuberculosis in Brazil: A genomic epidemiology study.
Walter Katharine S et al. Lancet Regional Health. Americas 2022 6 - Prediction and Diagnosis of Respiratory Disease by Combining Convolutional Neural Network and Bi-directional Long Short-Term Memory Methods.
Li Li et al. Frontiers in public health 2022 10881234 - Diagnostic accuracy of a commercially-available, deep learning-based chest-Xray interpretation software for detecting culture-confirmed pulmonary tuberculosis.
Tavaziva Gamuchirai et al. International journal of infectious diseases : IJID : official publication of the International Society for Infectious Diseases 2022 - Use of Nucleic Acid Amplification Testing for Rapid Detection of Mycobacterium tuberculosis Complex Among US Tuberculosis Patients, 2011‒2017.
Kumar Varsha et al. Open forum infectious diseases 2022 5 (11) ofab528 - Whole-genome sequencing of Mycobacterium tuberculosis from Cambodia.
Edokimov Konstantin et al. Scientific reports 2022 5 (1) 7693 - Characterisation of drug-resistant Mycobacterium tuberculosis mutations and transmission in Pakistan.
Napier Gary et al. Scientific reports 2022 5 (1) 7703 - atpE Mutation in Mycobacterium tuberculosis Not Always Predictive of Bedaquiline Treatment Failure.
Le Ray Laure Fournier et al. Emerging infectious diseases 2022 4 (5) 1062-1064
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Disclaimer: Articles listed in the Public Health Genomics and Precision Health Knowledge Base are selected by the CDC Office of Public Health Genomics 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.
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- Page last updated:Jul 07, 2022
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