Advances in the development of molecular genetic tools for Mycobacterium tuberculosis

2018 ◽  
Vol 45 (6) ◽  
pp. 281-297 ◽  
Author(s):  
Chiranjibi Chhotaray ◽  
Yaoju Tan ◽  
Julius Mugweru ◽  
Md Mahmudul Islam ◽  
H.M. Adnan Hameed ◽  
...  
2022 ◽  
Vol 99 (12) ◽  
pp. 44-50
Author(s):  
D. V. Plotkin ◽  
T. I. Vinogradova ◽  
M. N. Reshetnikov ◽  
Yu. R. Zyuzya ◽  
M. S. Serdobintsev ◽  
...  

The objective: to create a reproducible model of chronic tuberculosis peritonitis to study pathophysiological mechanisms of its progression and to develop pathogenetically based therapy.Subjects and Methods. The study was performed using 10 male rabbits of the Chinchilla breed. The animals were administered intraperitoneal culture of Mycobacterium tuberculosis, tuberculosis peritonitis modeling was performed according to the proposed method.Results. In the course of the experiment, it was proved that all animals developed tuberculous peritonitis with lesions of the large omentum and serous integuments of internal organs. Molecular genetic tests of fragments of the omentum and peritoneum detected DNA of Mycobacterium tuberculosis.


2020 ◽  
pp. 397-422
Author(s):  
Noor-ul-Huda Ghori ◽  
Tahir Ghori ◽  
Sameen Ruqia Imadi ◽  
Alvina Gul

2016 ◽  
Vol 2016 (5) ◽  
pp. pdb.top087601 ◽  
Author(s):  
Johanne M. Murray ◽  
Adam T. Watson ◽  
Antony M. Carr

2003 ◽  
Vol 47 (4) ◽  
pp. 1241-1250 ◽  
Author(s):  
Srinivas V. Ramaswamy ◽  
Robert Reich ◽  
Shu-Jun Dou ◽  
Linda Jasperse ◽  
Xi Pan ◽  
...  

ABSTRACT Isoniazid (INH) is a central component of drug regimens used worldwide to treat tuberculosis. Previous studies have identified resistance-associated mutations in katG, inhA, kasA, ndh, and the oxyR-ahpC intergenic region. DNA microarray-based experiments have shown that INH induces several genes in Mycobacterium tuberculosis that encode proteins physiologically relevant to the drug's mode of action. To gain further insight into the molecular genetic basis of INH resistance, 20 genes implicated in INH resistance were sequenced for INH resistance-associated mutations. Thirty-eight INH-monoresistant clinical isolates and 86 INH-susceptible isolates of M. tuberculosis were obtained from the Texas Department of Health and the Houston Tuberculosis Initiative. Epidemiologic independence was established for all isolates by IS6110 restriction fragment length polymorphism analysis. Susceptible isolates were matched with resistant isolates by molecular genetic group and IS6110 profiles. Spoligotyping was done with isolates with five or fewer IS6110 copies. A major genetic group was established on the basis of the polymorphisms in katG codon 463 and gyrA codon 95. MICs were determined by the E-test. Semiquantitative catalase assays were performed with isolates with mutations in the katG gene. When the 20 genes were sequenced, it was found that 17 (44.7%) INH-resistant isolates had a single-locus, resistance-associated mutation in the katG, mabA, or Rv1772 gene. Seventeen (44.7%) INH-resistant isolates had resistance-associated mutations in two or more genes, and 76% of all INH-resistant isolates had a mutation in the katG gene. Mutations were also identified in the fadE24, Rv1592c, Rv1772, Rv0340, and iniBAC genes, recently shown by DNA-based microarray experiments to be upregulated in response to INH. In general, the MICs were higher for isolates with mutations in katG and the isolates had reduced catalase activities. The results show that a variety of single nucleotide polymorphisms in multiple genes are found exclusively in INH-resistant clinical isolates. These genes either are involved in mycolic acid biosynthesis or are overexpressed as a response to the buildup or cellular toxicity of INH.


2009 ◽  
Vol 85 (5) ◽  
pp. 1251-1258 ◽  
Author(s):  
Reiner Finkeldey ◽  
Ludger Leinemann ◽  
Oliver Gailing

Yeast ◽  
2016 ◽  
Vol 33 (12) ◽  
pp. 633-646 ◽  
Author(s):  
Ahu Karademir Andersson ◽  
Stina Oredsson ◽  
Marita Cohn

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