Recipient organisationAnimal and Plant Health Agency
Funding£268K
PeriodMar 2025 — Sept 2027
In plain English
AI plain-English summary
Disinfectants used on farms and in hospitals may be inadvertently driving the spread of antibiotic-resistant bacteria. The problem is that bacteria can develop resistance not only to antibiotics but also to the biocides in disinfectants, and the genes for biocide resistance often sit on mobile DNA segments that bacteria swap freely. This means heavy use of disinfectants could select for bacteria that carry both biocide and antibiotic resistance genes, undermining efforts to cut antibiotic use. The research team will analyse bacterial samples from European and African reference laboratories to measure how common biocide resistance is, whether it has risen over time, and whether it is physically linked to antibiotic resistance on mobile genetic elements. They will also survey attitudes toward biocide use, since usage data is not publicly tracked the way antibiotic use is. If the work confirms that biocide use indirectly selects for antimicrobial resistance, it could reshape disinfection protocols in food production and healthcare, and push for routine monitoring of biocide resistance alongside antibiotic resistance.
View original technical description
Due to imprudent use of antimicrobials in the past, resistance to antimicrobials (AMR) is now present at high rates in all kinds of settings, including hospitals, food production sectors, the environment and human population. As these settings are interconnected, AMR is transmitted between them. One of the most successful interventions to AMR has been decreasing the usage of antimicrobials to reduce selection pressure, especially in livestock farms. In order to reduce the risk of spreading disease while keeping the possibility for intensive farming, biocide chemicals are currently more used for disinfection. However, resistance mechanisms against biocides also exist which may lead to selection of the spread of these mechanisms. Europe has a well-defined monitoring system for AMR in food production and hospital settings conducted by several reference laboratories, therefore, we will use the data and collections of bacteria from these laboratories to determine the prevalence and mechanism of biocide resistance and whether it have been increasing over time. We will determine if biocide resistance is present on mobile DNA elements that can be exchanged between bacteria and may have an indirect selective effect on AMR. As antimicrobial and biocide usage in Europe and developing nations in Africa have been very different, we will compare the DNA of bacteria from countries in both continents. As biocide usage is not yet publicly available as antibiotic usage in most countries, the attitude towards usage of biocides will be studied, and compared between the countries.
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