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The Impact of Air Inflow and Interfering Factors on the Performance of Microbiological Safety Cabinets

INTRODUCTION: The operator protection factor (OPF) of four biological safety cabinets (BSCs) has been measured under standard and suboptimal conditions. METHODS: The OPF for one BSC1, two BSC2, and an acid-fast bacilli staining station (AFBSS) was measured using the potassium iodide method for in si...

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Autores principales: Parks, Simon, Hookway, Helen, Kojima, Kazunobu, Bennett, Allan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Mary Ann Liebert, Inc., publishers 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9402246/
https://www.ncbi.nlm.nih.gov/pubmed/36032323
http://dx.doi.org/10.1089/apb.2021.0010
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author Parks, Simon
Hookway, Helen
Kojima, Kazunobu
Bennett, Allan
author_facet Parks, Simon
Hookway, Helen
Kojima, Kazunobu
Bennett, Allan
author_sort Parks, Simon
collection PubMed
description INTRODUCTION: The operator protection factor (OPF) of four biological safety cabinets (BSCs) has been measured under standard and suboptimal conditions. METHODS: The OPF for one BSC1, two BSC2, and an acid-fast bacilli staining station (AFBSS) was measured using the potassium iodide method for in situ testing of BSCs (CEN12469) over a range of inflow velocities under standard conditions and with common interfering factors (fans, opening doors, and walk pasts). RESULTS: The BSC1 and the AFBSS gave a high level of protection under standard test conditions at all airflows (down to 0.3 and 0.38 m/s, respectively). During interfering processes, the BSC1 and AFBSS gave a high level of protection (OPF >10(5)) at the specified inward airflow. At lower airflows, there was a predictable deterioration in performance. There was a significant difference in performance between the two BSC2s tested, with one model passing all tests under all interfering conditions at all airflows. The second BSC2 failed the standard test at the lowest airflow and provided poor levels of protection (OPF <10(5)) in all tests carried out with interfering processes. CONCLUSION: Although BSC2s are capable of giving a high level of performance, this is design dependent and the BSC1 and AFBSS give a more predictable level of performance due to their simpler design. In environments where BSC certification is not possible, they may provide more robust and sustainable primary containment.
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spelling pubmed-94022462022-08-25 The Impact of Air Inflow and Interfering Factors on the Performance of Microbiological Safety Cabinets Parks, Simon Hookway, Helen Kojima, Kazunobu Bennett, Allan Appl Biosaf Original Articles INTRODUCTION: The operator protection factor (OPF) of four biological safety cabinets (BSCs) has been measured under standard and suboptimal conditions. METHODS: The OPF for one BSC1, two BSC2, and an acid-fast bacilli staining station (AFBSS) was measured using the potassium iodide method for in situ testing of BSCs (CEN12469) over a range of inflow velocities under standard conditions and with common interfering factors (fans, opening doors, and walk pasts). RESULTS: The BSC1 and the AFBSS gave a high level of protection under standard test conditions at all airflows (down to 0.3 and 0.38 m/s, respectively). During interfering processes, the BSC1 and AFBSS gave a high level of protection (OPF >10(5)) at the specified inward airflow. At lower airflows, there was a predictable deterioration in performance. There was a significant difference in performance between the two BSC2s tested, with one model passing all tests under all interfering conditions at all airflows. The second BSC2 failed the standard test at the lowest airflow and provided poor levels of protection (OPF <10(5)) in all tests carried out with interfering processes. CONCLUSION: Although BSC2s are capable of giving a high level of performance, this is design dependent and the BSC1 and AFBSS give a more predictable level of performance due to their simpler design. In environments where BSC certification is not possible, they may provide more robust and sustainable primary containment. Mary Ann Liebert, Inc., publishers 2022-03-01 2022-03-15 /pmc/articles/PMC9402246/ /pubmed/36032323 http://dx.doi.org/10.1089/apb.2021.0010 Text en © Simon Parks et al. 2022; Published by Mary Ann Liebert, Inc. https://creativecommons.org/licenses/by/4.0/This Open Access article is distributed under the terms of the Creative Commons License [CC-BY] (http://creativecommons.org/licenses/by/4.0 (https://creativecommons.org/licenses/by/4.0/) ), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Parks, Simon
Hookway, Helen
Kojima, Kazunobu
Bennett, Allan
The Impact of Air Inflow and Interfering Factors on the Performance of Microbiological Safety Cabinets
title The Impact of Air Inflow and Interfering Factors on the Performance of Microbiological Safety Cabinets
title_full The Impact of Air Inflow and Interfering Factors on the Performance of Microbiological Safety Cabinets
title_fullStr The Impact of Air Inflow and Interfering Factors on the Performance of Microbiological Safety Cabinets
title_full_unstemmed The Impact of Air Inflow and Interfering Factors on the Performance of Microbiological Safety Cabinets
title_short The Impact of Air Inflow and Interfering Factors on the Performance of Microbiological Safety Cabinets
title_sort impact of air inflow and interfering factors on the performance of microbiological safety cabinets
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9402246/
https://www.ncbi.nlm.nih.gov/pubmed/36032323
http://dx.doi.org/10.1089/apb.2021.0010
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