Menno van der Voort
Overview
Explore the profile of Menno van der Voort including associated specialties, affiliations and a list of published articles.
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Articles
33
Citations
1729
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Recent Articles
1.
Friesema I, van der Voort M, Wit B, van Hoek A, van den Beld M, van der Weijden C, et al.
Euro Surveill
. 2024 Dec;
29(49).
PMID: 39639817
Shiga toxin-producing (STEC) is a zoonotic pathogen associated with illness ranging from mild diarrhoea to haemolytic uremic syndrome (HUS) or even death. Cross-sectoral data sharing provides an opportunity to gain...
2.
Mughini-Gras L, Paganini J, Guo R, Coipan C, Friesema I, van Hoek A, et al.
Int J Food Microbiol
. 2024 Nov;
427:110953.
PMID: 39500210
The aim of this study was to determine the relative contributions of various potential food sources of human listeriosis and to identify source-specific risk factors, at exposure level, for human...
3.
Friesema I, Verbart C, van der Voort M, Stassen J, Lanzl M, van der Weijden C, et al.
Microorganisms
. 2023 Nov;
11(11).
PMID: 38004629
() is ubiquitous in nature and known for its ability to contaminate foods during production processes. Near real-time monitoring of whole genome sequences from food and human isolates, complemented with...
4.
van Hoek A, Lee S, van den Berg R, Rapallini M, van Overbeeke L, Opsteegh M, et al.
J Appl Microbiol
. 2023 Jun;
134(6).
PMID: 37291695
Aims: The aim of our study was to investigate the virulence and resistance of STEC from small ruminants farms in The Netherlands. Moreover, the potential transmission of STEC between animals...
5.
Coipan C, Friesema I, van Hoek A, van den Bosch T, van den Beld M, Kuiling S, et al.
Front Microbiol
. 2023 Apr;
14:1147137.
PMID: 37089559
Introduction: Listeriosis, caused by infection with (), is a relatively rare but severe disease with one of the highest mortality rates among bacterial foodborne illnesses. A better understanding on the...
6.
Coipan C, Friesema I, van den Beld M, Bosch T, Schlager S, van der Voort M, et al.
Emerg Infect Dis
. 2022 Aug;
28(9):1890-1894.
PMID: 35997633
We describe the recent detection of 3 Shiga toxin-producing enteroaggregative Escherichia coli O104:H4 isolates from patients and 1 from pork in the Netherlands that were genetically highly similar to isolates...
7.
Kirchner N, Cano-Prieto C, Schulz-Fincke A, Gutschow M, Ortlieb N, Moschny J, et al.
J Nat Prod
. 2020 Dec;
84(1):101-109.
PMID: 33382250
Genome mining of the bacterial strains sp. SH-C52 and DSM 11579 showed that both strains contained a highly similar gene cluster encoding an octamodular nonribosomal peptide synthetase (NRPS) system which...
8.
Mughini-Gras L, Pijnacker R, Coipan C, Mulder A, Veludo A, de Rijk S, et al.
J Infect
. 2020 Dec;
82(2):216-226.
PMID: 33275955
Objectives: To determine the contributions of several animal and environmental sources of human campylobacteriosis and identify source-specific risk factors. Methods: 1417 Campylobacter jejuni/coli isolates from the Netherlands in 2017-2019 were...
9.
Kirchner N, Cano-Prieto C, van der Voort M, Raaijmakers J, Gross H
Microbiol Resour Announc
. 2020 May;
9(21).
PMID: 32439665
DSM 11579 is known to be a producer of the lipopeptides brabantamide and thanamycin. Its draft genome gives insight into the complete secondary metabolite production capacity of the strain and...
10.
Coipan C, Dallman T, Brown D, Hartman H, van der Voort M, van den Berg R, et al.
Microb Genom
. 2020 Feb;
6(3).
PMID: 32101514
A large European multi-country serovar Enteritidis outbreak associated with Polish eggs was characterized by whole-genome sequencing (WGS)-based analysis, with various European institutes using different analysis workflows to identify isolates potentially...