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Learnings from a Cutibacterium acnes pseudo-outbreak in pediatric neurosurgical patients

Background: Cutibacterium acnes is normal skin flora as well as a common culture contaminant. It can cause infections in the setting of sterile implants, although clinical presentations can be subtle. Differentiating true infection from sample contamination is challenging and has implications for pa...

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Autores principales: Huang, Felicia Scaggs, Ankrum, Andrea, Hospital, Cincinnati, Teoh, Zheyi, Courter, Joshua, , Francesco, Mangano, Bierbrauer, Karin, Josh
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cambridge University Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9614850/
http://dx.doi.org/10.1017/ash.2022.166
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author Huang, Felicia Scaggs
Ankrum, Andrea
Hospital, Cincinnati
Teoh, Zheyi
Courter, Joshua
, Francesco
Mangano,
Bierbrauer, Karin
Josh,
author_facet Huang, Felicia Scaggs
Ankrum, Andrea
Hospital, Cincinnati
Teoh, Zheyi
Courter, Joshua
, Francesco
Mangano,
Bierbrauer, Karin
Josh,
author_sort Huang, Felicia Scaggs
collection PubMed
description Background: Cutibacterium acnes is normal skin flora as well as a common culture contaminant. It can cause infections in the setting of sterile implants, although clinical presentations can be subtle. Differentiating true infection from sample contamination is challenging and has implications for patient care. We describe an investigation of a cluster of 7 hospitalized pediatric patients with C. acnes isolated from anaerobic cultures of cerebrospinal fluid (CSF) over 3 weeks at a quaternary-care children’s hospital. Methods: An outbreak response was coordinated between the infection prevention and control (IPC), microbiology, and neurosurgery teams. We defined a case as a hospitalized patient with C. acnes isolated from a CSF culture beginning in November 2020. We reviewed charts of all cases and CSF culture collection on all case units, transport to and processing at the microbiology laboratory, and the IPC team measured adherence for all processes. Results: There were 8 positive cultures in 7 cases from November 10 to 27, 2020. The median case age was 2 months (range, 0–119). Cases occurred on 4 different units. All positive patients had at least 1 implanted neurosurgical device used for CSF drainage. There were no clear commonalities in surgeon responsible for device placement, hardware type placed, or staff collecting CSF samples. A standard protocol for CSF collection was followed for all cases. Overall, 3 patients cleared cultures without intervention, 2 received oral antibiotics, and 2 underwent surgical removal of their device. Specimen processing was unchanged, although due to supply issues, an alternative anaerobic culture media (Anaerobic Systems, Morgan Hills, CA) was used for 6 weeks, during which all cases were identified. Compared to routine media, the alternative is known to enhance organism detection. The company reported no concerns for media contamination or C. acnes outbreaks. Once routine media became available, CSF culture positivity for C. acnes returned to baseline (late November or early December) (Fig. 1). Conclusions: We identified a likely pseudo-outbreak related to temporary use of a more sensitive culture media. No direct patient harm was identified, although many had increased risk of harm by surgical intervention or prolonged length of stay. Technological advances may enhance organism identification but challenge existing paradigms of care. More studies are needed to better delineate the intersection of diagnostic advancements with patient care standards. Funding: None Disclosures: None
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spelling pubmed-96148502022-10-29 Learnings from a Cutibacterium acnes pseudo-outbreak in pediatric neurosurgical patients Huang, Felicia Scaggs Ankrum, Andrea Hospital, Cincinnati Teoh, Zheyi Courter, Joshua , Francesco Mangano, Bierbrauer, Karin Josh, Antimicrob Steward Healthc Epidemiol Outbreaks Background: Cutibacterium acnes is normal skin flora as well as a common culture contaminant. It can cause infections in the setting of sterile implants, although clinical presentations can be subtle. Differentiating true infection from sample contamination is challenging and has implications for patient care. We describe an investigation of a cluster of 7 hospitalized pediatric patients with C. acnes isolated from anaerobic cultures of cerebrospinal fluid (CSF) over 3 weeks at a quaternary-care children’s hospital. Methods: An outbreak response was coordinated between the infection prevention and control (IPC), microbiology, and neurosurgery teams. We defined a case as a hospitalized patient with C. acnes isolated from a CSF culture beginning in November 2020. We reviewed charts of all cases and CSF culture collection on all case units, transport to and processing at the microbiology laboratory, and the IPC team measured adherence for all processes. Results: There were 8 positive cultures in 7 cases from November 10 to 27, 2020. The median case age was 2 months (range, 0–119). Cases occurred on 4 different units. All positive patients had at least 1 implanted neurosurgical device used for CSF drainage. There were no clear commonalities in surgeon responsible for device placement, hardware type placed, or staff collecting CSF samples. A standard protocol for CSF collection was followed for all cases. Overall, 3 patients cleared cultures without intervention, 2 received oral antibiotics, and 2 underwent surgical removal of their device. Specimen processing was unchanged, although due to supply issues, an alternative anaerobic culture media (Anaerobic Systems, Morgan Hills, CA) was used for 6 weeks, during which all cases were identified. Compared to routine media, the alternative is known to enhance organism detection. The company reported no concerns for media contamination or C. acnes outbreaks. Once routine media became available, CSF culture positivity for C. acnes returned to baseline (late November or early December) (Fig. 1). Conclusions: We identified a likely pseudo-outbreak related to temporary use of a more sensitive culture media. No direct patient harm was identified, although many had increased risk of harm by surgical intervention or prolonged length of stay. Technological advances may enhance organism identification but challenge existing paradigms of care. More studies are needed to better delineate the intersection of diagnostic advancements with patient care standards. Funding: None Disclosures: None Cambridge University Press 2022-05-16 /pmc/articles/PMC9614850/ http://dx.doi.org/10.1017/ash.2022.166 Text en © The Society for Healthcare Epidemiology of America 2022 https://creativecommons.org/licenses/by/4.0/This is an Open Access article, distributed under the terms of the Creative Commons Attribution licence (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted re-use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Outbreaks
Huang, Felicia Scaggs
Ankrum, Andrea
Hospital, Cincinnati
Teoh, Zheyi
Courter, Joshua
, Francesco
Mangano,
Bierbrauer, Karin
Josh,
Learnings from a Cutibacterium acnes pseudo-outbreak in pediatric neurosurgical patients
title Learnings from a Cutibacterium acnes pseudo-outbreak in pediatric neurosurgical patients
title_full Learnings from a Cutibacterium acnes pseudo-outbreak in pediatric neurosurgical patients
title_fullStr Learnings from a Cutibacterium acnes pseudo-outbreak in pediatric neurosurgical patients
title_full_unstemmed Learnings from a Cutibacterium acnes pseudo-outbreak in pediatric neurosurgical patients
title_short Learnings from a Cutibacterium acnes pseudo-outbreak in pediatric neurosurgical patients
title_sort learnings from a cutibacterium acnes pseudo-outbreak in pediatric neurosurgical patients
topic Outbreaks
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9614850/
http://dx.doi.org/10.1017/ash.2022.166
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