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A2 beta-casein milk is gaining popularity as the health-oriented consumer base grows. Reliable A2 products start with pure A2 raw milk. Traditional genetic testing is limited to single cows and raw products. Eurofins offers assay and LC-MS/MS methods to test beta-casein protein levels in raw milk from individual cows and batches, as well as finished products. This article covers the science behind A2 beta-casein and the testing options at Eurofins DQCI.


A2 beta-casein milk is growing in popularity as consumers learn about the potential health effects of the A1 beta-casein variant. Understanding the testing options is the first step for brands and retailers to provide trustworthy A2 dairy product. This video explains the science of A2 beta-casein milk and the unique testing options at Eurofins.


Eurofins is proud to announce that our method for determining potency in hemp has been approved and validated by the AOAC.


Eurofins DQCI Announces Partnership with Southeast Milk, Inc. (SMI) to Assume Operational Responsibility of Belleview, Florida Site. Read more about this partnership in this press release.


FDA’s Eric Brown, Ph.D. and Marc Allard, Ph.D. explain in detail how FDA’s program for characterizing foodborne pathogens works in a two part column.


Flow cytometry provides rapid, accurate, and powerful results for probiotic brands and manufactures. This case study demonstrates how flow cytometry can assist with low-cell count investigations by reveling the number of live, injured, and dead cells.


Probiotic enumeration is a key component of a probiotic testing scheme. Traditional plate count methods can provide inaccurate results, especially considering non-culturable cells. This case study demonstrates how flow cytometry can determine an accurate cell count, even of non-culturable, live cells.


Combining multiple strains of bacteria in a single probiotic product is a popular way to increase its health benefits. Flow cytometry provides a method for enumerating individual strains or species with accurate total bacteria counts. This case study demonstrates how flow cytometry can assist with multi-species enumeration when plate count methods provide low counts.


Microencapsulated cells provide a way to introduce probiotics into new products, like drinks. However, plating methods often fail to recover live cells in this form. Flow cytometry provides rapid, accurate, and powerful results for the enumeration of microencapsulated probiotics. This case study demonstrates how flow cytometry can assist with microencapsulated enumeration in a drink product.


Postbiotics are increasing in popularity, but are difficult to enumerate with traditional plating methods. Flow cytometry provides an avenue for measuring the dead or inactive cells in postbiotic products. This case study demonstrates how flow cytometry can assist with postbiotic enumeration when plate methods result in low cell counts.


 

 

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