Unlabelled: Public health and decontamination decisions following an event that causes indoor contamination with a biological agent require knowledge of the environmental persistence of the agent. The goals of this study were to develop methods for experimentally depositing bacteria onto indoor surfaces via aerosol, evaluate methods for sampling and enumerating the agent on surfaces, and use these methods to determine bacterial surface decay. A specialized aerosol deposition chamber was constructed, and methods were established for reproducible and uniform aerosol deposition of bacteria onto four coupon types. The deposition chamber facilitated the control of relative humidity (RH; 10 to 70%) following particle deposition to mimic the conditions of indoor environments, as RH is not controlled by standard heating, ventilation, and air conditioning (HVAC) systems. Extraction and culture-based enumeration methods to quantify the viable bacteria on coupons were shown to be highly sensitive and reproducible. To demonstrate the usefulness of the system for decay studies,Yersinia pestis persistence as a function of surface type at 21 °C and 40% RH was determined to be >40%/min for all surfaces. Based upon these results, at typical indoor temperature and RH, a 6-log reduction in titer would expected to be achieved within 1 h as the result of environmental decay on surfaces without active decontamination. The developed approach will facilitate future persistence and decontamination studies with a broad range of biological agents and surfaces, providing agent decay data to inform both assessments of risk to personnel entering a contaminated site and decontamination decisions following biological contamination of an indoor environment.
Importance: Public health and decontamination decisions following contamination of an indoor environment with a biological agent require knowledge of the environmental persistence of the agent. Previous studies on Y. pestis persistence have utilized large liquid droplet deposition to provide persistence data. As a result, methods were developed to deposit aerosols containing bacteria onto indoor surfaces, reproducibly enumerate bacteria harvested from coupons, and determine surface decay utilizing Y. pestis The results of this study provide foundational methods required to evaluate surface decay of bacteria and potentially other biological agents, such as viruses, in aerosol particles as a function of surface type and environment. Integrating the data from both aerosol and liquid deposition surface decay studies will provide medical and public health personnel with a more complete understanding of agent persistence on surfaces in contaminated areas for assessment of health risks and to inform decontamination decisions.
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http://dx.doi.org/10.1128/AEM.03989-15 | DOI Listing |
Materials (Basel)
November 2024
Department of Science and Engineering of Oxide Materials and Nanomaterials, National University of Science and Technology Politehnica Bucharest, 011061 Bucharest, Romania.
Iron oxide nanoparticles were synthesized using a vortex microfluidic system and subsequently functionalized with a primary shell of salicylic acid, recognized for its ability to increase the stability and biocompatibility of coated materials. In the second stage, the vortex platform was placed in a magnetic field to facilitate the growth and development of a porous silica shell. The selected drug for this study was micafungin, an antifungal agent well regarded for its effectiveness in combating fungal infections and identified as a priority compound by the World Health Organization (WHO).
View Article and Find Full Text PDFAnn Pharm Fr
December 2024
Hospital Pharmacy, CHU Henri-Mondor, AP-HP, 1, rue Gustave-Eiffel, 94000 Créteil, France.
Objectives: To review the literature and national practices concerning the handling and decontamination of live medications, in order to revise our local practices.
Methods: Literature searches and questionnaire sent to establishments handling live medications on several themes, including: preparation activity, circuits, preparation equipment, decontamination techniques and agents, personal protective equipment, viruses and genetically modified organisms.
Results: Twenty establishments responded to the questionnaire (response rate: 66%) with 16 responses usable.
PLoS One
December 2024
National Centre for Food Science, Singapore Food Agency, Singapore, Singapore.
Singapore has seen an increase in norovirus outbreaks in preschools from 2019 to 2022 primarily due to person-to-person transmission. This study describes the use of compartmental susceptible-exposed-infectious-recovered (SEIR) modelling to simulate the spread of norovirus among preschool children in a classroom setting. Different intervention measures, such as isolation of infected preschoolers, handwashing and surface decontamination were modelled to quantify their effectiveness at reducing the number of children infected.
View Article and Find Full Text PDFInt J Implant Dent
November 2024
Department of Periodontology, Hamidiye Dental Faculty, University of Health Sciences, Istanbul, Turkey.
Introduction And Aim: There is a need for studies assessing the efficacy of different therapeutic approaches in the reconstructive surgical treatment of peri-implantitis. The aim of this case series is to evaluate the clinical outcomes and radiographic bone fill of reconstructive surgical treatment using the oscilating chitosan brush for implant surface decontamination.
Materials And Methods: Nine patients with 11 Class I and III peri-implantitis defects were included.
Pathogens
November 2024
Biological Calorimetry Lab, Department of Biomedical Engineering, University of Basel, 4123 Allschwil, Switzerland.
Pharmaceutical preclinical tests using cell cultures are nowadays commonly automated. Incubator microbial contaminations impact such tests. Chlorine dioxide (ClO) is widely used in aqueous solutions.
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