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2020-06-24Zeitschriftenartikel DOI: 10.1371/journal.pone.0235160
Comprehensive integrated NGS-based surveillance and contact-network modeling unravels transmission dynamics of vancomycin-resistant enterococci in a high-risk population within a tertiary care hospital
dc.contributor.authorNeumann, Bernd
dc.contributor.authorBender, Jennifer K.
dc.contributor.authorMaier, Benjamin F.
dc.contributor.authorWittig, Alice
dc.contributor.authorFuchs, Stephan
dc.contributor.authorBrockmann, Dirk
dc.contributor.authorSemmler, Torsten
dc.contributor.authorEinsele, Hermann
dc.contributor.authorKraus, Sabrina
dc.contributor.authorWieler, Lothar H.
dc.contributor.authorVogel, Ulrich
dc.contributor.authorWerner, Guido
dc.date.accessioned2026-09-25T11:33:24Z
dc.date.available2026-09-25T11:33:24Z
dc.date.issued2020-06-24none
dc.identifier.urihttp://edoc.rki.de/176904/13941
dc.description.abstractVancomycin-resistant E. faecium (VRE) are an important cause of nosocomial infections, which are rapidly transmitted in hospitals. To identify possible transmission routes, we applied combined genomics and contact-network modeling to retrospectively evaluate routine VRE screening data generated by the infection control program of a hemato-oncology unit. Over 1 year, a total of 111 VRE isolates from 111 patients were collected by anal swabs in a tertiary care hospital in Southern Germany. All isolated VRE were whole-genome sequenced, followed by different in-depth bioinformatics analyses including genotyping and determination of phylogenetic relations, aiming to evaluate a standardized workflow. Patient movement data were used to overlay sequencing data to infer transmission events and strain dynamics over time. A predominant clone harboring vanB and exhibiting genotype ST117/CT469 (n = 67) was identified. Our comprehensive combined analyses suggested intra-hospital spread, especially of clone ST117/CT469, despite of extensive screening, single room placement, and contact isolation. A new interactive tool to visualize these complex data was designed. Furthermore, a patient-contact network-modeling approach was developed, which indicates both the periodic import of the clone into the hospital and its spread within the hospital due to patient movements. The analyzed spread of VRE was most likely due to placement of patients in the same room prior to positivity of screening. We successfully demonstrated the added value for this combined strategy to extract well-founded knowledge from interdisciplinary data sources. The combination of patient-contact modeling and high-resolution typing unraveled the transmission dynamics within the hospital department and, additionally, a constant VRE influx over time.eng
dc.language.isoengnone
dc.publisherRobert Koch-Institut
dc.rights(CC BY 3.0 DE) Namensnennung 3.0 Deutschlandger
dc.rights.urihttp://creativecommons.org/licenses/by/3.0/de/
dc.subject.ddc610 Medizin und Gesundheitnone
dc.titleComprehensive integrated NGS-based surveillance and contact-network modeling unravels transmission dynamics of vancomycin-resistant enterococci in a high-risk population within a tertiary care hospitalnone
dc.typearticle
dc.identifier.urnurn:nbn:de:0257-176904/13941-1
dc.identifier.doi10.1371/journal.pone.0235160
dc.type.versionpublishedVersionnone
local.edoc.container-titlePLOS Onenone
local.edoc.container-issn1932-6203none
local.edoc.pages25none
local.edoc.type-nameZeitschriftenartikel
local.edoc.container-typeperiodical
local.edoc.container-type-nameZeitschrift
local.edoc.container-urlhttps://journals.plos.org/plosone/none
local.edoc.container-publisher-namePLOSnone
local.edoc.container-volume15none
local.edoc.container-issue6none
local.edoc.container-reportyear2020none
dc.description.versionPeer Reviewednone

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