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- FAIREHR: a novel online research registry platform to advance global environmental and occupational health researchPublication . Galea, Karen S.; Brooker, Finlay; Rashid, Shahzad; Bader, Michael; Ait Bamai, Yu; Bessems, Jos; Beyene, Embialle Mengistie; Connolly, Alison; Costa, Carla; Deligannu, Pravina; Duca, Radu-Corneliu; Chbihi, Kaoutar; Eba, Kasahun; Ghosh, Manosij; Gonzales, Melissa; Harrad, Stuart; Haynes, Erin N.; Hopf, Nancy B.; Huang, Po-Chin; Jones, Kate; Kasiotis, Konstantinos M.; Chung, Ming Kei; Kil, Jihyon; Koch, Holger; Kwon, Jung-Hwan; Lin, Elizabeth Ziying; Louro, Henriqueta; Machera, Kyriaki; Magagna, Barbara; Menouni, Aziza; Mizuno, Yuki; Van Nieuwenhuyse, An; Nakayama, Shoji F.; Robert Pasanen-Kase; Pollock, Tyler; Quirós-Alcalá, Lesliam; Santonen, Tiina; Scheepers, Paul J.; Sepai, Ovnair; Bird, Emily; Serrano Ramòn, Blanca; Silva, Maria Joao; Souza, Gustavo; Stingone, Jeanette A.; Teitelbaum, L. Susan; Teixeira, João Paulo; Tranfo, Giovanna; Vekic, Ana Maria; Viegas, Susana; Xia, Yankai; Yunesian, Masud; Zare Jeddi, MaryamThe FAIREHR (Findable, Accessible, Interoperable, Reusable Environmental and Health Registry) platform is a state-of-the-art online registry for prospective harmonization of human biomonitoring (HBM). It was developed by the HBM working group of the Europe Regional Chapter of the International Society of Exposure Science (ISES Europe) and is supported by the HBM Global Network. FAIREHR is designed to harmonize HBM metadata and support the implementation of the FAIR (Findable, Accessible, Interoperable and Reusable) Guiding Principles throughout HBM studies or programs. The registry enables preregistration of HBM by capturing key metadata on study design, metadata management, and planned methods before participant recruitment. This process enhances transparency and reproducibility in environmental and occupational health research. FAIREHR includes both study-level and program-level metadata. Its harmonized metadata template facilitates the storage of results (measurement data) in repositories such as IPCHEM and PEH. Here we outline the unique features of the FAIREHR platform, emphasizing its role in increasing research visibility, improving metadata comparability and harmonization, and strengthening the exchange of information. By supporting the effective use of HBM data, FAIREHR is expected to yield significant benefits for researchers, policymakers, and the broader fields of environmental and occupational health.
- Genomic diversity of Enterobacteriaceae on food-processing surfaces: an overlooked non-clinical setting with public health implicationsPublication . Peixoto, Andreia; Nova, Lúcia; Mourão, Joana; Matos, Cátia; Santos, Susana; Rodrigues, João; Saraiva, Margarida; Correia, Cristina Belo; Batista, Rita; Peixe, Luísa; Novais, Carla; Antunes, PatríciaBacterial hazards on contaminated surfaces in food-processing environments pose significant food safety risks. Hygiene monitoring of surfaces in direct or indirect contact with food typically relies on a limited set of bacterial indicators, such as Enterobacteriaceae counts. However, their genomic diversity remains poorly characterised. The aim of this study was to provide a comprehensive genomic characterisation of Enterobacteriaceae recovered from food-contact surfaces after cleaning and disinfection with biocides in foodservice units. Diverse strains were identified, with some STs shared across samples and/or foodservices. - A diverse Enterobacteriaceae population persists on food-contact surfaces even after cleaning and disinfection with biocides, with evidence of cross-contamination. - These surfaces represent critical points of contact for strains that are genetically similar to those circulating in food, environment, and human clinical sources, including strains carrying clinically relevant AMR genes. - Further research is needed to understand the factors driving their persistence and dissemination in foodservice environments, aiming to enhance food safety risk management protocols and protect public health.
