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OtherTechnology/Application

Design, Development and Validation of a Culture-Independent Nucleic Acid Diagnostics Method for the Rapid Detection and Quantification of the Burkholderia cepacia Complex in Water with an Equivalence to ISO/TS 12869:2019

Huong Thu Duong, Shannon Fullbrook, Kate Reddington, Elizabeth Minogue and Thomas Barry
PDA Journal of Pharmaceutical Science and Technology February 2023, pdajpst.2021.012728; DOI: https://doi.org/10.5731/pdajpst.2021.012728
Huong Thu Duong
1 Nucleic Acid Diagnostics Laboratory, Microbiology, School of Natural Sciences, National University of Ireland Galway, Ireland;
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  • For correspondence: h.duong1@nuigalway.ie
Shannon Fullbrook
1 Nucleic Acid Diagnostics Laboratory, Microbiology, School of Natural Sciences, National University of Ireland Galway, Ireland;
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  • For correspondence: s.fullbrook1@nuigalway.ie
Kate Reddington
2 Microbial Diagnostics Research Laboratory, Microbiology, School of Natural Sciences, National University of Ireland Galway, Ireland
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  • For correspondence: kate.reddington@nuigalway.ie
Elizabeth Minogue
1 Nucleic Acid Diagnostics Laboratory, Microbiology, School of Natural Sciences, National University of Ireland Galway, Ireland;
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  • For correspondence: elizabeth.minogue@nuigalway.ie
Thomas Barry
1 Nucleic Acid Diagnostics Laboratory, Microbiology, School of Natural Sciences, National University of Ireland Galway, Ireland;
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  • For correspondence: thomas.barry@nuigalway.ie
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Abstract

In the wake of a series of outbreaks of pharmaceutical finished product related Burkholderia cepacia complex (Bcc) human infections worldwide, the United States Food and Drug Administration (FDA) in 2017, and subsequently in 2021, has issued advisory notifications to the pharmaceutical industry for stringent Bcc testing requirements for pharmaceutical manufacturing processes and for finished pharmaceutical products prior to release to the marketplace. The advisory notifications highlight non-sterile aqueous pharmaceutical finished products as being a major culprit associated with many of these human infection events. As such, there has been a significant number of Bcc contaminated finished product recalls resulting in company revenue losses, delayed finished product release, finished product shortages for patients, manufacturing plant shutdowns coupled with company reputational damage. With many of the finished product recall events, pharmaceutical grade water and / or manufacturing facility water distribution systems have been identified as the primary origin source of Bcc contamination. Testing and monitoring regimes currently employed to identify Bcc contamination of water associated with pharmaceutical manufacturing are often limited by costly, laborious, lengthy and nonspecific traditional microbial culture-based methodologies. Presently FDA approved, European Conformity (CE) marked and International Organization for Standardization (ISO) standard microbial culture-independent rapid, quantitative, specific and sensitive Nucleic Acid Diagnostics (NAD) methodologies are now gaining greater widespread acceptance in their routine usage in testing laboratories. Here we present the development of a rapid (<4 hours from sample in to result out) single test culture-independent Bcc NAD method, incorporating a quantitative real-time Polymerase Chain Reaction (qPCR) assay. This method can be used for the detection and simultaneous identification of all 24 Bcc species currently assigned, directly from water samples. This culture-independent Bcc NAD method is validated to the testing method equivalent of the ISO/TS 12869:2019 standard, which is a widely used rapid culture-independent NAD method for detecting Gram-negative Legionella species in water.

  • Burkholderia cepacia complex
  • ISO/TS 12869:2019
  • culture-independent nucleic acid diagnostics
  • finished pharmaceutical product recalls
  • non-sterile aqueous pharmaceutical products
  • water for manufacturing
  • Received December 14, 2021.
  • Accepted February 8, 2023.
  • Copyright © 2023, Parenteral Drug Association

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PDA Journal of Pharmaceutical Science and Technology: 77 (1)
PDA Journal of Pharmaceutical Science and Technology
Vol. 77, Issue 1
January/February 2023
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Design, Development and Validation of a Culture-Independent Nucleic Acid Diagnostics Method for the Rapid Detection and Quantification of the Burkholderia cepacia Complex in Water with an Equivalence to ISO/TS 12869:2019
Huong Thu Duong, Shannon Fullbrook, Kate Reddington, Elizabeth Minogue, Thomas Barry
PDA Journal of Pharmaceutical Science and Technology Feb 2023, pdajpst.2021.012728; DOI: 10.5731/pdajpst.2021.012728

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Design, Development and Validation of a Culture-Independent Nucleic Acid Diagnostics Method for the Rapid Detection and Quantification of the Burkholderia cepacia Complex in Water with an Equivalence to ISO/TS 12869:2019
Huong Thu Duong, Shannon Fullbrook, Kate Reddington, Elizabeth Minogue, Thomas Barry
PDA Journal of Pharmaceutical Science and Technology Feb 2023, pdajpst.2021.012728; DOI: 10.5731/pdajpst.2021.012728
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Keywords

  • Burkholderia cepacia complex
  • ISO/TS 12869:2019
  • culture-independent nucleic acid diagnostics
  • finished pharmaceutical product recalls
  • non-sterile aqueous pharmaceutical products
  • water for manufacturing

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