Literature DB >> 8458942

Polymerase chain reaction for detection of Mycobacterium leprae in nasal swab specimens.

M Y de Wit1, J T Douglas, J McFadden, P R Klatser.   

Abstract

The polymerase chain reaction based on the selective amplification of a 531-bp fragment of the gene encoding the proline-rich antigen of Mycobacterium leprae was applied to nasal swab specimens from leprosy patients, occupational contacts, and endemic and nonendemic controls. To prevent false-positive amplification, we used dUTP and uracil-DNA-glycosylase in all polymerase chain reactions. False-negative reactions were detected by using a 531-bp modified template as an internal control. Amplification products were found in 55% of untreated patients, in 19% of the occupational contacts, in 12% of endemic controls, and in none of the nonendemic controls. This study strongly suggests that not only leprosy patients but also healthy persons may carry M. leprae. We concluded that polymerase chain reaction is a reliable method to detect M. leprae in nasal specimens. The method holds promise for studying the spread and transmission of M. leprae within a population.

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Year:  1993        PMID: 8458942      PMCID: PMC262809          DOI: 10.1128/jcm.31.3.502-506.1993

Source DB:  PubMed          Journal:  J Clin Microbiol        ISSN: 0095-1137            Impact factor:   5.948


  16 in total

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Authors: 
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Journal:  Nucleic Acids Res       Date:  1990-03-25       Impact factor: 16.971

4.  The nose in leprosy: steps to a better understanding.

Authors:  T F Davey
Journal:  Lepr Rev       Date:  1974-06       Impact factor: 0.537

5.  Rapid and efficient cosmid cloning.

Authors:  D Ish-Horowicz; J F Burke
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6.  Comparison of polymerase chain reaction technique with other methods for detection of Mycobacterium leprae in tissues of wild nine-banded armadillos.

Authors:  C K Job; V Drain; D L Williams; T P Gillis; R W Truman; R M Sanchez; A T Deming; R C Hastings
Journal:  Lepr Rev       Date:  1991-12       Impact factor: 0.537

7.  Subclinical infection in leprosy.

Authors:  T Godal; K Negassi
Journal:  Br Med J       Date:  1973-09-15

8.  Leprosy: cause, transmission, and a new theory of pathogenesis.

Authors:  C V Reich
Journal:  Rev Infect Dis       Date:  1987 May-Jun

9.  Polymerase chain reaction for the detection of Mycobacterium leprae.

Authors:  R A Hartskeerl; M Y de Wit; P R Klatser
Journal:  J Gen Microbiol       Date:  1989-09

10.  Evaluation of Mycobacterium leprae antigens in the monitoring of a dapsone-based chemotherapy of previously untreated lepromatous patients in Cebu, Philippines.

Authors:  P R Klatser; M Y de Wit; T T Fajardo; R V Cellona; R M Abalos; E C de la Cruz; M G Madarang; D S Hirsch; J T Douglas
Journal:  Lepr Rev       Date:  1989-09       Impact factor: 0.537

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  12 in total

1.  Detection of Mycobacterium leprae infection by PCR.

Authors:  J Wichitwechkarn; S Karnjan; S Shuntawuttisettee; C Sornprasit; K Kampirapap; S Peerapakorn
Journal:  J Clin Microbiol       Date:  1995-01       Impact factor: 5.948

2.  Evaluation of 16S rRNA qPCR for detection of Mycobacterium leprae DNA in nasal secretion and skin biopsy samples from multibacillary and paucibacillary leprosy cases.

Authors:  Lívia Érika Carlos Marques; Cristiane Cunha Frota; Josiane da Silva Quetz; Alexandre Havt Bindá; Rosa Maria Salane Mota; Maria Araci de Andrade Pontes; Heitor de Sá Gonçalves; Carl Kendall; Ligia Regina Franco Sansigolo Kerr
Journal:  Pathog Glob Health       Date:  2017-12-26       Impact factor: 2.894

3.  Simultaneous detection of Mycobacterium leprae and its susceptibility to dapsone using DNA heteroduplex analysis.

Authors:  D L Williams; T L Pittman; T P Gillis; M Matsuoka; Y Kashiwabara
Journal:  J Clin Microbiol       Date:  2001-06       Impact factor: 5.948

Review 4.  The continuing challenges of leprosy.

Authors:  D M Scollard; L B Adams; T P Gillis; J L Krahenbuhl; R W Truman; D L Williams
Journal:  Clin Microbiol Rev       Date:  2006-04       Impact factor: 26.132

5.  Use of PCR for diagnosis of post-kala-azar dermal leishmaniasis.

Authors:  O F Osman; L Oskam; N C Kroon; G J Schoone; E T Khalil; A M El-Hassan; E E Zijlstra; P A Kager
Journal:  J Clin Microbiol       Date:  1998-06       Impact factor: 5.948

6.  Detection of Mycobacterium leprae nasal carriers in populations for which leprosy is endemic.

Authors:  P R Klatser; S van Beers; B Madjid; R Day; M Y de Wit
Journal:  J Clin Microbiol       Date:  1993-11       Impact factor: 5.948

7.  Limited susceptibility of cynomolgus monkeys (Macaca fascicularis) to leprosy after experimental administration of Mycobacterium leprae.

Authors:  Gerald P Walsh; Eduardo C Dela Cruz; Rodolfo M Abalos; Esterlina V Tan; Tranquilino T Fajardo; Laarni G Villahermosa; Roland V Cellona; Maria V Balagon; Valerie A White; Paul R Saunderson; Douglas S Walsh
Journal:  Am J Trop Med Hyg       Date:  2012-08       Impact factor: 2.345

8.  Nasal mucosa study of leprosy contacts with positive serology for the phenolic glycolipid 1 antigen.

Authors:  Ana Cristina da Costa Martins; Alice Miranda; Maria Leide Wan-del-Rey de Oliveira; Samira Bührer-Sékula; Alejandra Martinez
Journal:  Braz J Otorhinolaryngol       Date:  2010 Sep-Oct

9.  Widespread nasal carriage of Mycobacterium lepraeamong a healthy population in a hyperendemic region of northeastern Brazil.

Authors:  Luana Nepomuceno Gondim Costa Lima; Cristiane Cunha Frota; Rosa Maria Salani Mota; Rosa Livia Freitas Almeida; Maria Araci de Andrade Pontes; Heitor de Sá Gonçalves; Laura Cunha Rodrigues; Carl Kendall; Ligia Kerr
Journal:  Mem Inst Oswaldo Cruz       Date:  2015-11       Impact factor: 2.743

Review 10.  PCR-based techniques for leprosy diagnosis: from the laboratory to the clinic.

Authors:  Alejandra Nóbrega Martinez; Carolina Talhari; Milton Ozório Moraes; Sinésio Talhari
Journal:  PLoS Negl Trop Dis       Date:  2014-04-10
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