The real-time PCR-based diagnostic kits, COBAS TaqMan MTB and COBAS TaqMan MAI (Roche Diagnostics, Tokyo, Japan), were developed to detect Mycobacterium tuberculosis (MTB) and M. avium (MAV)/M. intracellulare (MIN), respectively. The TaqMan kits simultaneously perform amplification and detection of mycobacterial DNA to reduce assay time. We evaluated the diagnostic accuracy of both TaqMan kits in 781 clinical specimens, and compared the results with those obtained from the AMPLICOR MTB and MAI kits. With smear-positive specimens, the TaqMan kits showed 100% concordance with AMPLICOR in MTB, MAV and MIN. With all specimens, the concordances of TaqMan with AMPLICOR were 99.1%, 99.0%, and 99.7% in MTB, MAV and MIN, respectively. Four specimens for MTB and one for MAV were AMPLICOR positive/TaqMan negative. Among them, two specimens were culture-positive for MTB and one for MAV. Three specimens for MTB, seven for MAV, and two for MIN were AMPLICOR negative/TaqMan positive. Among them, two specimens were culture-positive for MTB, seven for MAV, and one for MIN. In twelve out of 21 specimens in which AMPLICOR failed to activate PCR, TaqMan successfully determined the results which were in concordance with those of mycobacterial culture. Thus, our data suggest that the accuracy of TaqMan in detecting mycobacterial DNA is superior to that of AMPLICOR. We conclude that TaqMan, which is an easy and rapid DNA amplification test, is useful for detecting MTB, MAV and MIN.
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Microorganisms
July 2023
Department of Preventive Medicine and Public Health and Microbiology, School of Medicine, Autonoma University of Madrid, 28029 Madrid, Spain.
Bone marrow is a cell-rich tissue of the reticuloendothelial system essential in the homeostasis and accurate functioning of hematopoiesis and of the immune system; moreover, it is also rich in lipids because it contains marrow adipocytes. This work aimed to evaluate the detection of mycobacterial DNA in human bone marrow as a tool to understand the complex pathology caused by the main pathogen (). Formalin-fixed paraffin-embedded human bone marrow samples were studied using both conventional PCR + hybridization and PCR to figure out the cell distribution of the targeted DNA.
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March 2023
Department of Microbiology, Chungnam National University School of Medicine, Daejeon, South Korea.
Background: Itaconate, a crucial immunometabolite, plays a critical role in linking immune and metabolic functions to influence host defense and inflammation. Due to its polar structure, the esterified cell-permeable derivatives of itaconate are being developed to provide therapeutic opportunities in infectious and inflammatory diseases. Yet, it remains largely uncharacterized whether itaconate derivatives have potentials in promoting host-directed therapeutics (HDT) against mycobacterial infections.
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October 2022
Department of Medicine, University of Washington, Seattle, WA, United States.
Immunological mechanisms of susceptibility to nontuberculous mycobacterial (NTM) disease are poorly understood. To understand NTM pathogenesis, we evaluated innate and antigen-specific adaptive immune responses to complex (MAC) in asymptomatic individuals with a previous history of MAC lung disease (MACDZ). We hypothesized that Mav-specific immune responses are associated with susceptibility to MAC lung disease.
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October 2020
Division of Infectious Diseases, Allergy and Immunology, Department of Internal Medicine, Saint Louis University, St. Louis, MO, United States.
Pulmonary non-tuberculous mycobacterial (NTM) infections particularly caused by complex (MAC) and (MAB) are becoming major health problems in the U.S. New therapies or vaccines which will help prevent the disease, shorten treatment duration and/or increase treatment success rates are urgently needed.
View Article and Find Full Text PDFPLoS One
October 2017
State Key Laboratory of Agrobiotechnology, Key Laboratory of Animal Epidemiology of the Ministry of Agriculture and College of Veterinary Medicine, China Agricultural University, Beijing, China.
Animal mycobacterioses are among the most important zoonoses worldwide. These are generally caused by either Mycobacterium tuberculosis (MTB), M. bovis (MBO) or M.
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