Patent classifications
A23B4/22
Organic food preservative compositions
The subject invention provides compositions and methods for preserving food products. Specifically, the subject compositions and methods can be used to prolong the consumable life of food products, as well as to reduce and/or prevent spoilage and/or contamination by microbial agents. The compositions comprise a blend of one or more glycolipids and one or more lipopeptides. The compositions comprise sophorolipids and surfactin, lichenysin or another lipopeptide biosurfactant.
PROCESS FOR COMBATING BACTERIA AND FURTHER BACTERIA GROWTH IN MEAT
A method for combating bacteria and the further growth of bacteria in meat comprising: treating MSC, MDM, MSP, ground in poultry, turkey, beef, or pork with a granular additive, gel additive or paste additive,
PROCESS FOR COMBATING BACTERIA AND FURTHER BACTERIA GROWTH IN MEAT
A method for combating bacteria and the further growth of bacteria in meat comprising: treating MSC, MDM, MSP, ground in poultry, turkey, beef, or pork with a granular additive, gel additive or paste additive,
INCREASED BIOACTIVITY OF BIOPROTECTIVE CULTURES AGAINST PATHOGENIC BACTERIA
The present invention relates to a process for obtaining a biomass composition of a bacterium strain with bactericidal activity which inhibits or kills various pathogenic bacteria.
INCREASED BIOACTIVITY OF BIOPROTECTIVE CULTURES AGAINST PATHOGENIC BACTERIA
The present invention relates to a process for obtaining a biomass composition of a bacterium strain with bactericidal activity which inhibits or kills various pathogenic bacteria.
<i>Lactobacillus curvatus </i>strains useful for inhibition of <i>Listeria</i>
The Lactobacillus curvatus strain deposited as DSM18775 is used as a biopreservative culture in a wide range of meat products due to its production of bacteriocin. The present invention relates to Lactobacillus curvatus strains having an extended lag phase of at least 24 hours at 30° C. relative to DSM18775. In a presently preferred embodiment, the strains are mutants of DSM18775, such as the Lactobacillus curvatus strain deposited as DSM32590 and the Lactobacillus curvatus strain deposited as DSM 32591. Further, the invention relates to a method for inhibiting Listeria in a food product comprising adding bacteria of a Lactobacillus curvatus strain according to the invention to a food product in a concentration of at least 10.sup.5 CFU/g.
<i>Lactobacillus curvatus </i>strains useful for inhibition of <i>Listeria</i>
The Lactobacillus curvatus strain deposited as DSM18775 is used as a biopreservative culture in a wide range of meat products due to its production of bacteriocin. The present invention relates to Lactobacillus curvatus strains having an extended lag phase of at least 24 hours at 30° C. relative to DSM18775. In a presently preferred embodiment, the strains are mutants of DSM18775, such as the Lactobacillus curvatus strain deposited as DSM32590 and the Lactobacillus curvatus strain deposited as DSM 32591. Further, the invention relates to a method for inhibiting Listeria in a food product comprising adding bacteria of a Lactobacillus curvatus strain according to the invention to a food product in a concentration of at least 10.sup.5 CFU/g.
ANTIMICROBIAL CAPTURE SYSTEM WITH CARBON CONTAINER
According to one embodiment, a method for removing antimicrobial material from a composition includes providing a container that contains a plurality of carbon elements such as granules, rocks and sheets. The carbon elements are submerged with a liquid and a composition that includes an antimicrobial material is deposited in the container. The carbon elements are configured to remove the antimicrobial material from the composition. The level of the liquid in the container is monitored and controlled to maintain a submerged condition of the carbon elements.
ANTIMICROBIAL CAPTURE SYSTEM WITH CARBON CONTAINER
According to one embodiment, a method for removing antimicrobial material from a composition includes providing a container that contains a plurality of carbon elements such as granules, rocks and sheets. The carbon elements are submerged with a liquid and a composition that includes an antimicrobial material is deposited in the container. The carbon elements are configured to remove the antimicrobial material from the composition. The level of the liquid in the container is monitored and controlled to maintain a submerged condition of the carbon elements.
CROP TREATMENT
The presence of microorganisms in or on food can lead to, for example, disease, damage (loss of food), a shortening of shelf life, premature ripening, reduced yield, spoilage and/or rotting. Microbial contamination of food also represents a potential health risk, increasing the likelihood of food poisoning and the like. This disclosure provides methods, uses and compositions which may be exploited as a means to reduce or eliminate the presence of microorganisms on or in food and in turn, the various problems associated therewith. Provided is a method of decontaminating food or a food growing medium, substrate or compost of one or more microorganisms, said method comprising contacting the food and/or the food growing medium, substrate or compost with one or more phage.