Performance of MALDI–TOF mass spectrometry in the Philippines

Identification of the causative pathogen in infectious diseases is important for surveillance and to guide treatment. In low- and middle-income countries (LMIC), conventional culture and identification methods, including biochemical methods, are reference-standard. Biochemical methods can lack sensi...

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Main Authors: Osa, M, Belo, MC, Dela Merced, Z, Villanueva, AMG, Mauhay, J, Celis, A, Catli, M, Suzuki, S, Ukawa, T, Tamaki, S, Dhoubhadel, BG, Ariyoshi, K, Telan, EFO, Umipig, DV, Parry, CM, Saito, N, Smith, C
Format: Journal article
Language:English
Published: MDPI 2021
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author Osa, M
Belo, MC
Dela Merced, Z
Villanueva, AMG
Mauhay, J
Celis, A
Catli, M
Suzuki, S
Ukawa, T
Tamaki, S
Dhoubhadel, BG
Ariyoshi, K
Telan, EFO
Umipig, DV
Parry, CM
Saito, N
Smith, C
author_facet Osa, M
Belo, MC
Dela Merced, Z
Villanueva, AMG
Mauhay, J
Celis, A
Catli, M
Suzuki, S
Ukawa, T
Tamaki, S
Dhoubhadel, BG
Ariyoshi, K
Telan, EFO
Umipig, DV
Parry, CM
Saito, N
Smith, C
author_sort Osa, M
collection OXFORD
description Identification of the causative pathogen in infectious diseases is important for surveillance and to guide treatment. In low- and middle-income countries (LMIC), conventional culture and identification methods, including biochemical methods, are reference-standard. Biochemical methods can lack sensitivity and specificity and have slow turnaround times, causing delays in definitive therapy. Matrix-assisted laser desorption/ionization time of flight mass spectrometry (MALDI-TOF MS) is a rapid and accurate diagnostic method. Most studies comparing MALDI-TOF MS and biochemical methods are from high-income countries, with few reports from LMIC with tropical climates. The aim of this study was to assess the performance of MALDI-TOF MS compared to conventional methods in the Philippines. Clinical bacterial or fungal isolates were identified by both MALDI-TOF MS and automated (VITEK2) or manual biochemical methods in the San Lazaro Hospital, Metro Manila, the Philippines. The concordance between MALDI-TOF MS and automated (VITEK2) or manual biochemical methods was analyzed at the species and genus levels. In total, 3530 bacterial or fungal isolates were analyzed. The concordance rate between MALDI-TOF MS and biochemical methods was 96.2% at the species level and 99.9% at the genus level. Twenty-three isolates could not be identified by MALDI-TOF MS. In this setting, MALDI-TOF MS was accurate compared with biochemical methods, at both the genus and the species level. Additionally, MALDI-TOF MS improved the turnaround time for results. These advantages could lead to improved infection management and infection control in low- and middle-income countries, even though the initial cost is high.
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spelling oxford-uuid:9b43efb2-5bdf-4c46-98d0-6a619a4c8a982022-07-27T14:25:52ZPerformance of MALDI–TOF mass spectrometry in the PhilippinesJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:9b43efb2-5bdf-4c46-98d0-6a619a4c8a98EnglishSymplectic ElementsMDPI2021Osa, MBelo, MCDela Merced, ZVillanueva, AMGMauhay, JCelis, ACatli, MSuzuki, SUkawa, TTamaki, SDhoubhadel, BGAriyoshi, KTelan, EFOUmipig, DVParry, CMSaito, NSmith, CIdentification of the causative pathogen in infectious diseases is important for surveillance and to guide treatment. In low- and middle-income countries (LMIC), conventional culture and identification methods, including biochemical methods, are reference-standard. Biochemical methods can lack sensitivity and specificity and have slow turnaround times, causing delays in definitive therapy. Matrix-assisted laser desorption/ionization time of flight mass spectrometry (MALDI-TOF MS) is a rapid and accurate diagnostic method. Most studies comparing MALDI-TOF MS and biochemical methods are from high-income countries, with few reports from LMIC with tropical climates. The aim of this study was to assess the performance of MALDI-TOF MS compared to conventional methods in the Philippines. Clinical bacterial or fungal isolates were identified by both MALDI-TOF MS and automated (VITEK2) or manual biochemical methods in the San Lazaro Hospital, Metro Manila, the Philippines. The concordance between MALDI-TOF MS and automated (VITEK2) or manual biochemical methods was analyzed at the species and genus levels. In total, 3530 bacterial or fungal isolates were analyzed. The concordance rate between MALDI-TOF MS and biochemical methods was 96.2% at the species level and 99.9% at the genus level. Twenty-three isolates could not be identified by MALDI-TOF MS. In this setting, MALDI-TOF MS was accurate compared with biochemical methods, at both the genus and the species level. Additionally, MALDI-TOF MS improved the turnaround time for results. These advantages could lead to improved infection management and infection control in low- and middle-income countries, even though the initial cost is high.
spellingShingle Osa, M
Belo, MC
Dela Merced, Z
Villanueva, AMG
Mauhay, J
Celis, A
Catli, M
Suzuki, S
Ukawa, T
Tamaki, S
Dhoubhadel, BG
Ariyoshi, K
Telan, EFO
Umipig, DV
Parry, CM
Saito, N
Smith, C
Performance of MALDI–TOF mass spectrometry in the Philippines
title Performance of MALDI–TOF mass spectrometry in the Philippines
title_full Performance of MALDI–TOF mass spectrometry in the Philippines
title_fullStr Performance of MALDI–TOF mass spectrometry in the Philippines
title_full_unstemmed Performance of MALDI–TOF mass spectrometry in the Philippines
title_short Performance of MALDI–TOF mass spectrometry in the Philippines
title_sort performance of maldi tof mass spectrometry in the philippines
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