Antibiotics are used extensively in the dairy industry to combat disease and to improve animal performance. Antibiotics such as penicillin, cephalosporin, streptomycin, and tetracycline are used for the treatment and prevention of diseases affecting dairy cows caused by a variety of gram-positive and gram-negative bacteria. Antibiotics are often administrated routinely to entire herds to prevent mastitis during the dry period. An increase in the incidence of disease in a herd generally results in increased use of antimicrobials, which in turn increases the potential for antibiotic residues in milk and the potential for increased bacterial resistance to antimicrobials. Continued use of antibiotics in the treatment and prevention of diseases of dairy cows will continue to be scrutinized. It is clear that strategies employing the prudent use of antimicrobials are needed. This clearly illustrates the importance of effective herd disease prevention and control programs. Based on studies published to date, scientific evidence does not support widespread, emerging resistance among mastitis pathogens to antibacterial drugs even though many of these antibiotics have been used in the dairy industry for treatment and prevention of disease for several decades. However, it is clear that use of antibiotics in dairy cows can contribute to increased antimicrobial resistance. While antimicrobial resistance does occur, we are of the opinion that the advantages of using antibiotics for the treatment of mastitis far outweigh the disadvantages. The clinical consequences of antimicrobial resistance of dairy pathogens affecting humans appear small. Antimicrobial resistance among dairy pathogens, particularly those found in milk, is likely not a human health concern as long as the milk is pasteurized. However, there are an increasing number of people who choose to consume raw milk. Transmission of an antimicrobial-resistant mastitis pathogen and/or foodborne pathogen to humans could occur if contaminated unpasteurized milk is consumed, which is another important reason why people should not consume raw milk. Likewise, resistant bacteria contaminating meat from dairy cows should not be a significant human health concern if the meat is cooked properly. Prudent use of antibiotics in the dairy industry is important, worthwhile, and necessary. Use of antibiotics at times when animals are susceptible to new infection such as the dry period is a sound management decision and a prudent use of antibiotics on the farm. Strategies involving prudent use of antibiotics for treatment encompass identification of the pathogen causing the infection, determining the susceptibility/resistance of the pathogen to assess the most appropriate antibiotic to use for treatment, and a sufficient treatment duration to ensure effective concentrations of the antibiotic to eliminate the pathogen. As the debate on the use of antibiotics in animal agriculture continues, we need to consider the consequences of, “What would happen if antibiotics are banned for use in the dairy industry and in other food-producing animals?” The implications of this question are far reaching and include such aspects as animal welfare, health, and well-being and impacts on food quantity, quality, and food costs. This question should be an important aspect in this ongoing and controversial debate!
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http://dx.doi.org/10.1016/j.cvfa.2012.03.005 | DOI Listing |
Antimicrob Resist Infect Control
December 2024
Division of Infectious Diseases and Infection Control, Hospital Epidemiology, University Hospital Basel, University Basel, Petersgraben 4, CH-4031, Basel, Switzerland.
While screening the rectal site and urine may be appropriate for detection of carbapenemase-producing Enterobacterales, respiratory samples, throat and wound swabs may increase the sensitivity of screening protocols when aiming to detect colonization with carbapenemase-producing non-fermenting bacteria. Our results support the need for tailoring screening recommendations according to the bacterial species targeted.
View Article and Find Full Text PDFPorcine Health Manag
December 2024
Pig Development Department, Animal and Grassland Research and Innovation Centre, Teagasc Moorepark, P61C996, Fermoy, Co. Cork, Ireland.
Background: Oral fluid contains analytes that may be reflective of health and welfare in pig herds. Additionally, oral fluid collection is a more convenient and cost-effective option when compared to blood sampling, increasing the potential of oral fluid as a non-invasive alternative tool. While a growing number of biomarkers can be measured in porcine oral fluid, the use of these analytes to compare commercial herds in veterinary practice is still limited.
View Article and Find Full Text PDFEur J Intern Med
December 2024
Department of Biomedical Sciences, IRCCS Humanitas Research Hospital, 20089 Milano, Italy.
Background And Aim: The aim of the present study was to evaluate the prevalence and to identify the independent predictors of multi-drug resistance among a cohort of patients admitted to emergency department for urinary tract infections (UTI), and to assess the impact of antimicrobial resistance on the clinical outcomes.
Methods: We conducted a prospective multicentre study enrolling all adult patients admitted to one of the eight emergency departments participating in the study with a microbiologically confirmed diagnosis of UTI from February 2023 to July 2024. The primary outcome evaluated was 30-day mortality; secondary outcomes included 7-day mortality and clinical response.
Br J Gen Pract
December 2024
University of Bristol, School of Psychological Science, Bristol, United Kingdom.
Background: Rapid microbiological point-of-care tests (POCTRM) present an opportunity to reduce antibiotic exposure and antimicrobial resistance. So far, there is limited understanding of how POCTRM may support clinicians in primary care in the UK and how POCTs might be integrated into practice.
Aim: To investigate clinicians' views on how POCTRM could influence clinical decisions and routine practice, and perspectives on how POCTRM may impact the clinician-patient relationship.
Int J Biol Macromol
December 2024
CSIR-Institute of Himalayan Bioresource Technology, Palampur 176061, Himachal Pradesh, India; Academy of Scientific and Innovative Research (AcSIR), Ghaziabad 201002, India. Electronic address:
The pervasive use of petroleum-based food packaging has caused significant ecological damage due to their unsustainability and non-biodegradability. Polysaccharide-based biodegradable materials are promising alternatives, but low hydrophobicity and functional properties limit their practical applications which can be overcome by incorporation of phytochemical(s). Therefore, by leveraging the strong antioxidant and antibacterial potential of pterostilbene (PTB), we have developed PTB nanoemulsion (NE) incorporated chitosan/sodium alginate (CS/SA) film for food packaging applications.
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