Comparison of four DNA extraction methods for the detection of Mycobacterium leprae from Ziehl-Neelsen-stained microscopic slides

被引:11
作者
Laura Ruiz-Fuentes, Jenny [1 ]
Diaz, Alexis [2 ]
Elena Entenza, Anayma [1 ]
Frion, Yahima [3 ]
Suarez, Odelaisy [1 ]
Torres, Pedro [4 ]
de Armas, Yaxsier [5 ]
Acosta, Lucrecia [4 ]
机构
[1] Pedro Kouri Trop Med Inst, Dept Microbiol, Natl Reference Lab TB Leprosy & Other Mycobacteri, Havana, Cuba
[2] Lab Chem & Biopharmaceut LABIOFAM, Havana, Cuba
[3] Univ La Habana, Inst Pharm & Food, Havana, Cuba
[4] Sanatorio Fontilles, Mol Biol & Res Unit, Ctra Orba Vall de Laguar,Km 4, Alicante, Spain
[5] Pedro Kouri Trop Med Inst, Dept Pathol, Havana, Cuba
关键词
DNA extraction methods; Leprosy; Molecular diagnosis; Mycobacterium leprae; Ziehl-Neelsen-stained microscopic slides;
D O I
10.1016/j.ijmyco.2015.06.005
中图分类号
R51 [传染病];
学科分类号
100401 ;
摘要
Objective/background: The diagnosis of leprosy has been a challenge due to the low sensibility of the conventional methods and the impossibility of culturing the causative organism. In this study, four methods for Mycobacterium leprae nucleic-acid extraction from Ziehl-Neelsen-stained slides (ZNS slides) were compared: Phenol/chloroform, Chelex 100 resin, and two commercial kits (Wizard Genomic DNA Purification Kit and QIAamp DNA Mini Kit). Methods: DNA was extracted from four groups of slides: a high-codification-slide group (bacteriological index [BI] >= 4), a low-codification-slide group (BI = 1), a negative-slide group (BI = 0), and a negative-control-slide group (BI = 0). Quality DNA was evidenced by the amplification of specific repetitive element present in M. leprae genomic DNA (RLEP) using a nested polymerase chain reaction. Results: This is the first report comparing four different extraction methods for obtaining M. leprae DNA from ZNS slides in Cuban patients, and applied in molecular diagnosis. Good-quality DNA and positive amplification were detected in the high-codification-slide group with the four methods, while from the low-codification-slide group only the QIAGEN and phenol-chloroform methods obtained amplification of M. leprae. In the negative-slide group, only the QIAGEN method was able to obtain DNA with sufficient quality for positive amplification of the RLEP region. No amplification was observed in the negative-controlslide group by any method. Patients with ZNS negative slides can still transmit the infection, and molecular methods can help identify and treat them, interrupting the chain of transmission and preventing the onset of disabilities. Conclusion: The ZNS slides can be sent easily to reference laboratories for later molecular analysis that can be useful not only to improve the diagnosis, but also for the application of other molecular techniques. (C) 2015 Asian African Society for Mycobacteriology. Production and hosting by Elsevier Ltd. All rights reserved.
引用
收藏
页码:284 / 289
页数:6
相关论文
共 22 条
[1]   Comparison of a DNA based PCR method with conventional methods for the detection of M. tuberculosis in Jos, Nigeria [J].
Ani, Agatha ;
Okpe, Silvanis ;
Akambi, Maxwell ;
Ejelionu, Emeka ;
Yakubu, Bitrus ;
Owolodun, Olajide ;
Ekeh, Peter ;
Oche, Agbaji ;
Tyem, Dinchi ;
Idoko, John .
JOURNAL OF INFECTION IN DEVELOPING COUNTRIES, 2009, 3 (06) :470-475
[2]   PCR diagnostics of Mycobacterium tuberculosis in historic human long bone remains from 18th century burials in Kaiserebersdorf, Austria [J].
Bachmann L. ;
Däubl B. ;
Lindqvist C. ;
Kruckenhauser L. ;
Teschler-Nicola M. ;
Haring E. .
BMC Research Notes, 1 (1)
[3]   Genotyping of Mycobacterium leprae present on Ziehl-Neelsen-stained microscopic slides and in skin biopsy samples from leprosy patients in different geographic regions of Brazil [J].
Brum Fontes, Amanda Nogueira ;
Gomes, Harrison Magdinier ;
de Araujo, Marcelo Ivens ;
Araripe de Albuquerque, Edson Claudio ;
Foschiani Dias Baptista, Ida Maria ;
da Fonseca Moura, Maria Manuela ;
Rezende, Denise Silva ;
Vidal Pessolani, Maria Cristina ;
Lara, Flavio Alves ;
de Andrade Pontes, Maria Araci ;
Goncalves, Heitor de Sa ;
Lucena-Silva, Norma ;
Sarno, Euzenir Nunes ;
Vissa, Varalakshmi D. ;
Brennan, Patrick J. ;
Suffys, Philip Noel .
MEMORIAS DO INSTITUTO OSWALDO CRUZ, 2012, 107 :143-149
[4]  
Capo V., 2011, BIOTECNOL APL, V28, P40
[5]  
Chang Jing-Jing, 2009, Fa Yi Xue Za Zhi, V25, P109
[6]   PCR and in-situ hybridization for diagnosis of leprosy [J].
Dayal, R. ;
Agarwal, M. ;
Natrajan, M. ;
Katoch, V. M. ;
Katoch, K. ;
Singh, Kalpna ;
Chauhan, D. S. .
INDIAN JOURNAL OF PEDIATRICS, 2007, 74 (07) :645-648
[7]   PCR primers that can detect low levels of Mycobacterium leprae DNA [J].
Donoghue, HD ;
Holton, J ;
Spigelman, M .
JOURNAL OF MEDICAL MICROBIOLOGY, 2001, 50 (02) :177-182
[8]   Comparative analysis of four methods to extract DNA from paraffin-embedded tissues: Effect on downstream molecular applications [J].
Huijsmans C.J.J. ;
Damen J. ;
Van Der Linden J.C. ;
Savelkoul P.H.M. ;
Hermans M.H.A. .
BMC Research Notes, 3 (1)
[9]  
JAMIL S, 1994, INT J LEPROSY, V62, P512
[10]   Extraction and detection of Mycobacterium leprae DNA from ZNCF-stained skin smear slides for better identification of negative skin smears [J].
Kamble, R. R. ;
Shinde, V. S. ;
Madhale, S. P. ;
Kamble, A. A. ;
Ravikumar, B. P. ;
Jadhav, R. S. .
INDIAN JOURNAL OF MEDICAL MICROBIOLOGY, 2010, 28 (01) :57-59