Literature DB >> 21033579

Simultaneous detection and differentiation of pathogenic and nonpathogenic Leptospira spp. by multiplex real-time PCR (TaqMan) assay.

Orhan Bedir1, Abdullah Kilic, Erdinc Atabek, Ahmet Mert Kuskucu, Vedat Turhan, A Celal Basustaoglu.   

Abstract

Leptospirosis, caused by pathogenic Leptospira, is one of the most important zoonoses in the world. Several molecular techniques have been developed for detection and differentiation between pathogenic and saprophytic Leptospira spp. The aim of this study was to develop a rapid and simple assay for specific detection and differentiation of pathogenic Leptospira spp. by multiplex real-time PCR (TaqMan) assay using primers and probes targeting Leptospira genus specific 16S ribosomal RNA gene, the pathogen specific lig A/B genes and nonpathogen Leptospira biflexa specific 23S ribosomal RNA gene. Sixteen reference strains of Leptospira spp. including pathogenic and nonpathogenic and ten other negative control bacterial strains were used in the study. While the 16S primers amplified target from both pathogenic and non-pathogenic leptospires, the ligA/B and the 23S primers amplified target DNA from pathogenic and non-pathogenic leptospires, respectively. The multiplex real-time PCR (TaqMan) assay detection limit, that is, the sensitivity was found approximately 1 x 10(2) cells/ml for ligA/B gene and 23S ribosomal RNA gene, and 10 cells/ml 16S ribosomal RNA. The reaction efficiencies were 83-105% with decision coefficients of more than 0.99 in all multiplex assays. The multiplex real-time PCR (TaqMan) assay yielded negative results with the ten other control bacteria. In conclusion, the developed multiplex real-time PCR (TaqMan) assay is highly useful for early diagnosis and differentiation between pathogenic and non-pathogenic leptospires in a reaction tube as having high sensitivity and specificity.

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Year:  2010        PMID: 21033579

Source DB:  PubMed          Journal:  Pol J Microbiol        ISSN: 1733-1331


  11 in total

1.  Molecular detection and speciation of pathogenic Leptospira spp. in blood from patients with culture-negative leptospirosis.

Authors:  Siriphan Boonsilp; Janjira Thaipadungpanit; Premjit Amornchai; Vanaporn Wuthiekanun; Wirongrong Chierakul; Direk Limmathurotsakul; Nicholas P Day; Sharon J Peacock
Journal:  BMC Infect Dis       Date:  2011-12-13       Impact factor: 3.090

2.  Characterization of Leptospira isolates from humans and the environment in Uruguay.

Authors:  Paulina Meny; Clara Menéndez; Jair Quintero; Elba Hernández; Cristina Ríos; Ilana Teruszkin Balassiano; Camilla Nunes Dos Reis Trindade; Juliana Magalhães Vital-Brazil; Tatiane Mendes Varela Ramos; Natalia Ashfield; Camila Feble; Esthefani Avila; Felipe Schelotto; Gustavo Varela
Journal:  Rev Inst Med Trop Sao Paulo       Date:  2017-12-21       Impact factor: 1.846

3.  Detection of Intestinal Pathogens in River, Shore, and Drinking Water in Lima, Peru.

Authors:  David C Grothen; Sydney J Zach; Paul H Davis
Journal:  J Genomics       Date:  2017-01-17

4.  Leptospira Survey in Wild Boar (Sus scrofa) Hunted in Tuscany, Central Italy.

Authors:  Giovanni Cilia; Fabrizio Bertelloni; Marta Angelini; Domenico Cerri; Filippo Fratini
Journal:  Pathogens       Date:  2020-05-14

5.  Presence of pathogenic Leptospira spp. in the reproductive system and fetuses of wild boars (Sus scrofa) in Italy.

Authors:  Giovanni Cilia; Fabrizio Bertelloni; Ivana Piredda; Maria Nicoletta Ponti; Barbara Turchi; Carlo Cantile; Francesca Parisi; Paolo Pinzauti; Andrea Armani; Bruna Palmas; Malgorzata Noworol; Domenico Cerri; Filippo Fratini
Journal:  PLoS Negl Trop Dis       Date:  2020-12-28

6.  Leptospira in Slaughtered Fattening Pigs in Southern Italy: Serological Survey and Molecular Typing.

Authors:  Giusi Macaluso; Alessandra Torina; Valeria Blanda; Annalisa Guercio; Antonio Lastra; Ilenia Giacchino; Rosalia D'Agostino; Carmela Sciacca; Mario D'Incau; Cristina Bertasio; Francesca Grippi
Journal:  Animals (Basel)       Date:  2022-02-25       Impact factor: 2.752

7.  A versatile isothermal amplification assay for the detection of leptospires from various sample types.

Authors:  Shuhaidah Othman; Pui-Yuei Lee; Jia-Yong Lam; Noraini Philip; Nurul Natasya Azhari; Norliza Bahtiar Affendy; Siti Norbaya Masri; Vasantha Kumari Neela; Farah Shafawati Mohd-Taib; Hui-Yee Chee
Journal:  PeerJ       Date:  2022-03-10       Impact factor: 2.984

8.  COMPARISON OF 16S rRNA-PCR-RFLP, LipL32-PCR AND OmpL1-PCR METHODS IN THE DIAGNOSIS OF LEPTOSPIROSIS.

Authors:  Tülin Güven Gökmen; Ayben Soyal; Yıldız Kalayci; Cansu Önlen; Fatih Köksal
Journal:  Rev Inst Med Trop Sao Paulo       Date:  2016-09-22       Impact factor: 1.846

9.  Leptospira fainei Detected in Testicles and Epididymis of Wild Boar (Sus scrofa).

Authors:  Giovanni Cilia; Fabrizio Bertelloni; Domenico Cerri; Filippo Fratini
Journal:  Biology (Basel)       Date:  2021-03-04

10.  First Isolation and Molecular Typing of Pathogenic and Intermediate Leptospira Species from Urine of Symptomatic Dogs.

Authors:  Ivana Piredda; Loris Bertoldi; Giuseppe Benvenuto; Bruna Palmas; Aureliana Pedditzi; Pierangela Pintore; Valentina Chisu
Journal:  Vet Sci       Date:  2021-12-02
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