| Literature DB >> 31385779 |
Surobhi Lahiri1, Rasika Venkataraman1, Akshaya Jagan1, Gargi Deshmukh1, Sudipta Patra2, Vani Reddy3, V Sangeetha4, Rachana Solanki5, Jyoti Gupta6, Karuna Patel7, Anuradha De8, Chiranjay Mukhopadhyay2, Mary Dias3, Reba Kanungo4, Deepak Mendiratta6, Pradeep Nawal7, Jayanthi Shastri8, Lakshmi Vemu9, Radha Rangarajan1.
Abstract
Purpose. Rapid and accurate detection of carbapenem resistance is a critical requirement for the selection of appropriate therapy and initiation of infection control measures. Although several tests are available, their use is limited by one or more factors. Phenotypic tests are lengthy, have variable sensitivity and specificity and do not generally identify the carbapenemase. Molecular assays overcome many of these issues but cost can be a barrier to adoption, particularly in low-resource settings. To address the need for affordable, molecular tools, we have assessed the performance characteristics of loop-mediated isothermal amplification (LAMP)-based assays for the major carbapenemase genes, blaNDM, blaKPC, blaOXA-48, blaOXA-23 blaVIM and blaIMP.Methodology. The assays were validated using 1849 Gram-negative Indian clinical isolates obtained from seven hospitals and diagnostic centres.Results. The assays had diagnostic sensitivities of 98.14 %, 98.92 %, 100 %, 98.48 %, and diagnostic specificities of 98.94 %, 99.61 %, 97.42 %, 99.38 % for blaNDM, blaOXA-48, blaOXA-23 and blaVIM, respectively. Due to a low number of isolates positive for blaKPC and blaIMP, the performance characteristics of assays for these two genes could not be suitably evaluated.Conclusion. The performance characteristics suggest suitability for diagnostic and surveillance purposes.Entities:
Keywords: LAMP; NDM; OXA-23; OXA-48; VIM; carbapenemases
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Year: 2019 PMID: 31385779 DOI: 10.1099/jmm.0.001050
Source DB: PubMed Journal: J Med Microbiol ISSN: 0022-2615 Impact factor: 2.472