Literature DB >> 24646111

Rapid detection of contaminant bacteria in platelet concentrate using differential impedance.

Z Zhao1, A Chalmers, R Rieder.   

Abstract

BACKGROUND AND OBJECTIVES: Current FDA-approved culture-based methods for the bacterial testing of platelet concentrate (PC) can yield false-negative results attributed to Poisson-limited sampling errors incurred near the time of collection that result in undetectable bacterial concentrations. Testing PC at the point of issue (POI) extends the incubation period for any contaminant bacteria increasing the probability of detection. Data are presented from time-course experiments designed to simulate POI testing of bacterially contaminated PCs at different stages of growth using differential impedance sensing. STUDY DESIGN AND METHODS: Whole-blood-derived PCs were typically spiked with low numbers of bacteria (approximately 100 CFU/ml) and incubated under standard PC storage conditions. Each infected unit was evaluated every two hours over a 12-h period. All samples were treated with a chemical compound that induces stress in the bacterial cells only. The development of any bacterial stress was monitored by detecting changes in the dielectric properties of the PC using differential impedance.
RESULTS: Differential impedance measurements and corresponding cell counts at the different time-points are presented for six organisms implicated in post-transfusion-septic reactions. All infected PCs were detected once contaminant bacteria reached concentrations ranging between 0·6 × 10(3) and 6 × 10(3)  CFU/ml irrespective of the phase of growth. Results were obtained within 30 min after the start of the assay and without the need for cell lysis or centrifugation.
CONCLUSION: Differential impedance sensing can detect bacterial contamination in PC rapidly at concentrations below clinical thresholds known to cause adverse effects.
© 2014 International Society of Blood Transfusion.

Entities:  

Keywords:  bacterial detection; dielectric permittivity; differential impedance sensing; platelet contamination; stress response

Mesh:

Year:  2014        PMID: 24646111      PMCID: PMC4107012          DOI: 10.1111/vox.12144

Source DB:  PubMed          Journal:  Vox Sang        ISSN: 0042-9007            Impact factor:   2.144


  12 in total

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Authors:  P A Noble
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7.  Screening platelet concentrates for bacterial contamination: low numbers of bacteria and slow growth in contaminated units mandate an alternative approach to product safety.

Authors:  W G Murphy; M Foley; C Doherty; G Tierney; A Kinsella; A Salami; E Cadden; P Coakley
Journal:  Vox Sang       Date:  2008-04-02       Impact factor: 2.144

8.  Detection of bacterial contamination in prestorage culture-negative apheresis platelets on day of issue with the Pan Genera Detection test.

Authors:  Michael R Jacobs; Daniel Smith; W Andrew Heaton; Nicole D Zantek; Caryn E Good
Journal:  Transfusion       Date:  2011-08-29       Impact factor: 3.157

9.  Evolution of surveillance methods for detection of bacterial contamination of platelets in a university hospital, 1991 through 2004.

Authors:  Roslyn A Yomtovian; Elizabeth L Palavecino; Alden H Dysktra; Katharine A Downes; Anne M Morrissey; Saralee Bajaksouzian; Marcella A Pokorny; Hillard M Lazarus; Michael R Jacobs
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10.  Rapid microbiological testing: monitoring the development of bacterial stress.

Authors:  Boris Zavizion; Zhihui Zhao; Aphakorn Nittayajarn; Ronald J Rieder
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