Clostridium difficile is responsible for a large proportion of nosocomial cases of antibiotic-associated diarrhoea and pseudomembranous colitis. The present study provides evidence that yeast, beef and pork extracts, ingredients commonly used to grow bacteria, can counteract C. difficile toxin A enterotoxicity in vitro and in vivo. In model intestinal epithelial cells the individual extracts could prevent the toxin A-induced decrease in epithelial barrier function and partially prevented actin disaggregation and cell rounding. Mice with ad libitum access to individual extracts for 1 week had almost complete reduction in toxin A-induced fluid secretion in intestinal loops. Concomitantly, the toxin A-induced expression of the essential proinflammatory mediator Cox-2 was normalized. Moreover this protective effect was also seen when mice received only two doses of extract by intragastric gavage within 1 week. These results show that yeast, beef and pork extracts have the potential to counteract the intestinal pathogenesis triggered by C. difficile toxin A.
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http://dx.doi.org/10.1111/j.1574-6968.2009.01598.x | DOI Listing |
Int J Food Microbiol
January 2025
Unit of Food Hygiene and Technology, Centre for Food Science and Veterinary Public Health, University of Veterinary Medicine Vienna, Veterinaerplatz 1, 1210 Vienna, Austria.
The increasing popularity of sous-vide (SV) cooking necessitates research into the microbiological quality, sensory changes, and shelf life of SV products. Studies show that SV cooking significantly reduces the levels of meat microbiota and pathogens, positively affecting the shelf life and safety of SV products. However, the meat spoilage organism Clostridium estertheticum can survive SV cooking as it can produce heat-tolerant spores.
View Article and Find Full Text PDFFood Res Int
January 2025
VTT Technical Research Centre of Finland, Tekniikantie 21, 02044 VTT Espoo, Finland. Electronic address:
Oleaginous yeasts offer a promising sustainable alternative for producing edible lipids, potentially replacing animal and unsustainable plant fats and oils. In this study, we screened 11 oleaginous yeast species for their lipid profiles and identified Apiotrichum brassicae as the most promising candidate due to its versatility across different growth media. A.
View Article and Find Full Text PDFAnimals (Basel)
December 2024
College of Animal Science and Technology, Gansu Agricultural University, Lanzhou 730070, China.
This study hypothesized that combining oregano essential oil () and yeast cultures (s) would modulate rumen microbiota to promote gastrointestinal homeostasis and function. Twenty-four newborn, healthy, disease-free, crossbred Simmental male calves (birth weight ≥ 35 kg) were assigned to one of four treatments based on birth data. Treatments were as follows: (1) Control (), calves fed calf starter without additives; (2) , calves fed calf starter containing 60 mg/kg body weight () of OEO per day; (3) s, calves fed calf starter containing 45 mg/kg BW of YC per day; and (4) , calves fed calf starter with OEO (60 mg/kg, BW) and YC (45 mg/kg, BW) combination.
View Article and Find Full Text PDFAnimals (Basel)
December 2024
Núcleo de Estudos em Pecuária Intensiva-NEPI, Universidade Federal de Mato Grosso, Campus Universitário de Sinop, Sinop 78557-267, Brazil.
Pasture-based beef cattle production systems aim to maximize the interaction between forage and supplements to increase activity. In addition, supplementation and the use of food additives help optimize production efficiency and improve the use of additional nutrients. The aim of this study was to evaluate the effects of the use of additives in protein-energy supplements (PESs) on the intake, digestibility, and ruminal parameters of beef cattle raised on pasture in the rearing phase.
View Article and Find Full Text PDFArch Razi Inst
June 2024
Department of Food Science and Technology, Science and Research Branch, Islamic Azad University, Tehran, Iran.
In this study, the nano chitosan particles were produced by ionotropic gelation between sodium tripolyphosphate and chitosan. The effect of nano chitosan with or without sodium lactate coating was evaluated on physicochemical (pH, thiobarbituric acid, total volatile basic nitrogen, and peroxide), microbial (total mesophilic and psychrotrophic viable counts, lactic acid bacteria, yeasts, and molds), and sensorial properties of beef burgers within 24 days of storage at 4°C. The solutions of 1% nano chitosan (T), 2% nano chitosan (T), 2.
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