scholarly article | Q13442814 |
P50 | author | Ravindra P Turankar | Q60981261 |
P2093 | author name string | Utpal Sengupta | |
Anuj Kumar Gupta | |||
Mallika Lavania | |||
Itu Singh | |||
Madhvi Ahuja | |||
Vinay Pathak | |||
P2860 | cites work | Survey for secondary dapsone and rifampicin resistance in Cuba. | Q39027806 |
Drug resistance patterns in Mycobacterium leprae isolates from relapsed leprosy patients attending The Leprosy Mission (TLM) Hospitals in India | Q41687700 | ||
Drug resistance in Mycobacterium leprae from patients with leprosy in China | Q41727663 | ||
Monooxygenation of rifampicin catalyzed by the rox gene product of Nocardia farcinica: structure elucidation, gene identification and role in drug resistance | Q43234798 | ||
Mutation at codon 442 in the rpoB gene of Mycobacterium leprae does not confer resistance to rifampicin. | Q51723991 | ||
A Mycobacterium leprae isolate resistant to dapsone, rifampin, ofloxacin and sparfloxacin. | Q54011152 | ||
Emergence of primary drug resistance to rifampicin in Mycobacterium leprae strains from leprosy patients in India. | Q54250021 | ||
Comparative genomic and phylogeographic analysis of Mycobacterium leprae | Q57219307 | ||
Multidrug-resistance to dapsone, rifampicin, and ofloxacin in Mycobacterium leprae | Q71976010 | ||
Single nucleotide polymorphisms typing of Mycobacterium leprae reveals focal transmission of leprosy in high endemic regions of India | Q85919473 | ||
Massive gene decay in the leprosy bacillus | Q22122381 | ||
Detection of rifampicin-resistance mutations in Mycobacterium tuberculosis | Q28248794 | ||
mmpL7 gene of Mycobacterium tuberculosis is responsible for isoniazid efflux in Mycobacterium smegmatis | Q28487615 | ||
Co-infection of Mycobacterium tuberculosis and Mycobacterium leprae in human archaeological samples: a possible explanation for the historical decline of leprosy | Q28766858 | ||
Multidrug resistant Mycobacterium leprae from patients with leprosy. | Q31030417 | ||
The RND permease superfamily: an ancient, ubiquitous and diverse family that includes human disease and development proteins. | Q33913686 | ||
Contribution of rpoB2 RNA polymerase beta subunit gene to rifampin resistance in Nocardia species | Q34510650 | ||
Identification of primary drug resistance to rifampin in Mycobacterium leprae strains from leprosy patients in Amazonas State, Brazil | Q35036286 | ||
Molecular basis of rifampin resistance in Mycobacterium leprae | Q35809886 | ||
Distribution of Mycobacterium leprae strains among cases in a rural and urban population of Maharashtra, India | Q35867753 | ||
Drug and multidrug resistance among Mycobacterium leprae isolates from Brazilian relapsed leprosy patients | Q36023028 | ||
Influence of initial drug resistance on the response to short-course chemotherapy of pulmonary tuberculosis. | Q38160741 | ||
Leprosy and tuberculosis concomitant infection: a poorly understood, age-old relationship | Q38353059 | ||
P275 | copyright license | Creative Commons Attribution-NonCommercial 3.0 Unported | Q18810331 |
P6216 | copyright status | copyrighted | Q50423863 |
P407 | language of work or name | English | Q1860 |
P921 | main subject | Mycobacterium leprae | Q155891 |
whole genome sequencing | Q2068526 | ||
P304 | page(s) | 169-175 | |
P577 | publication date | 2018-01-25 | |
P1433 | published in | Infection and Drug Resistance | Q15716352 |
P1476 | title | Enriched whole genome sequencing identified compensatory mutations in the RNA polymerase gene of rifampicin-resistant Mycobacterium leprae strains | |
P478 | volume | 11 |
Search more.