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1.
Front Microbiol ; 15: 1412269, 2024.
Artigo em Inglês | MEDLINE | ID: mdl-38933019

RESUMO

The global rise in antimicrobial resistance (AMR) poses a significant public health threat, especially in healthcare settings, where controlling the spread of antimicrobial genes is crucial. While person-to-person transmission remains the primary route for healthcare-associated infections (HAIs), hospital surfaces serve as key reservoirs for antimicrobial-resistant microorganisms. Regular cleaning and disinfection of these surfaces are essential. Microbial-based products for sanitizing hospital surfaces have emerged as promising tools to combat HAIs and AMR. However, a review of 32 publications found inconsistencies and potential risks. A total of 15 publications included hospital-based trials, while the rest were either in vitro or in situ assays, reviews, book chapters, or commentaries. In most of the hospital-based studies, specific strains of applied microorganisms were not identified, and the term "probiotic" was inaccurately used. These products mainly featured spores from Bacillus and Priestia genera, which was mainly hypothesized to work through competitive exclusion. Most hospital-based studies have shown that the application of microbial-based products resulted in a significant reduction in pathogens on surfaces, thereby contributing to a decrease in the incidence of healthcare-associated infections (HAIs). Further research is however needed to understand the effectiveness, mechanisms of action, and safety of microbial-based sanitizing agents. Strain-level identification is crucial for safety assessments, yet many reviewed products lacked this information. Consequently, there is a need for rigorous safety evaluations within existing regulatory frameworks to ensure the efficacy and safety of microbial-based cleaning products in healthcare settings.

2.
Microorganisms ; 9(12)2021 Dec 10.
Artigo em Inglês | MEDLINE | ID: mdl-34946151

RESUMO

Disinfectants are used to reduce the concentration of pathogenic microorganisms to a safe level and help to prevent the transmission of infectious diseases. However, bacteria have a tremendous ability to respond to chemical stress caused by biocides, where overuse and improper use of disinfectants can be reflected in a reduced susceptibility of microorganisms. This review aims to describe whether mutations and thus decreased susceptibility to disinfectants occur in bacteria during disinfectant exposure. A systematic literature review following PRISMA guidelines was conducted with the databases PubMed, Science Direct and Web of Science. For the final analysis, 28 sources that remained of interest were included. Articles describing reduced susceptibility or the resistance of bacteria against seven different disinfectants were identified. The important deviation of the minimum inhibitory concentration was observed in multiple studies for disinfectants based on triclosan and chlorhexidine. A reduced susceptibility to disinfectants and potentially related problems with antibiotic resistance in clinically important bacterial strains are increasing. Since the use of disinfectants in the community is rising, it is clear that reasonable use of available and effective disinfectants is needed. It is necessary to develop and adopt strategies to control disinfectant resistance.

3.
J Virol Methods ; 148(1-2): 66-73, 2008 Mar.
Artigo em Inglês | MEDLINE | ID: mdl-18061282

RESUMO

The aim of this investigative study was to determine the presence of rotaviral RNA at various control points (CP) of a hospital laundry. One of the possible sources of hospital infections is inappropriately laundered and disinfected hospital textiles. RT-PCR and nested PCR for gene amplification using specific primers following RNA isolation were used to determine the presence of rotaviral RNA on swabs. In addition, rotavirus suspensions were inoculated on marked surfaces as positive controls for different surfaces (cotton textiles, folding table and industrial dryer). Rotaviral RNA was found on various laundry surfaces: technical equipment, storage shelves, transport vehicles, personnel's hands, damp textiles, and folded laundry. Rotaviral RNA was also detected at all positive controls on tested surfaces after 24h. Based on the results, it is very important to take into consideration the proper handling of textiles after washing as one of the precautions against hospital-acquired infections. This paper reports the presence of rotaviral RNA for the first time on surfaces in laundries and equipment, as well as textiles.


Assuntos
Roupas de Cama, Mesa e Banho/virologia , RNA/isolamento & purificação , Rotavirus/isolamento & purificação , Equipamentos e Provisões Hospitalares/virologia , Mãos/virologia , Hospitais , Humanos , RNA/genética , Reação em Cadeia da Polimerase Via Transcriptase Reversa , Rotavirus/genética
4.
Int J Hyg Environ Health ; 209(1): 97-102, 2006 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-16373207

RESUMO

The aim of this prospective study was to determine the presence of rotaviral RNA in water from a hospital laundry. Since rotaviruses are known as major causal agents of diarrhoea in humans, it is necessary that laundering hospital textiles results in efficient chemo-thermal disinfection, thus minimizing the possibility of transmission of rotaviruses to immune-compromised patients in hospitals. RT-PCR and second round PCR for gene amplification using specific primers, succeeding ultra-filtration and RNA isolation, was used to determine the presence of rotaviral RNA in water samples. The results show that rotaviral RNA was found in wastewater after the washing process, thus confirming an inadequate disinfecting effect of the examined laundering procedures.


Assuntos
RNA Viral/análise , Rotavirus/isolamento & purificação , Roupas de Cama, Mesa e Banho , Desinfecção , Humanos , Serviço Hospitalar de Lavanderia , Infecções por Rotavirus/transmissão , Resíduos
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