New Debris Exclusion Features of Automated Colony Counter Saves Food Manufacturers Money by Rapidly Detecting Hazardous Organisms

5 Feb 2009
Sarah Sarah
Marketing / Sales

Product news

Synbiosis is pleased to announce its ProtoCOL automated colony counter offers new features to exclude food debris from the count. This makes counting faster and more reliable, ensuring microbiologists can easily determine the levels of bacteria or moulds in food earlier, thus avoiding costly product recalls.

The ProtoCOL system’s new software can simultaneously analyse images of the same or several different coloured colonies on spiral, pour or surface inoculated plates and has different levels of user access to provide lab managers with control of the system. The software has been upgraded so microbiologists can train the ProtoCOL to automatically recognise by either colour and shape colonies they would expect to see, whilst excluding fibrous food debris such as meat or fish from the count. This helps reduce manual analysis and means results are quickly obtained.

Results from the ProtoCOL system are highly reproducible and can be automatically transferred into Excel where a sample name can be entered into the database, thereby reducing the operator variation that can occur from different microbiologists’ manual colony counts. An image library is also created alongside the Excel database making it easy to produce evidence for each food tested and allowing lab managers the option to re-visit a plate if there is any query after its disposal. The ProtoCOL software is GLP compliant and tracks any changes to results, making ProtoCOL ideal for use as part of a HACCP programme.

Martin Smith of Synbiosis commented: “Rapid microbiological testing of food products and raw materials is vitally important in food production. However, the accurate analysis of colonies on plates is frequently made difficult by the presence of debris or bubbles, either embedded within or on the agar’s surface. By utilising the ProtoCOL’s excellent new software features, microbiologists can overcome these problems with ease to ensure food and ingredients are released more rapidly, thus saving money on storage costs and allowing products to have a longer shelf-life.”

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MicrobiologyMicrobiology is the study of microorganisms including protists, prokaryotes, fungi, and, often, viruses. Microorganisms are a useful research tool as genetic vectors and, in immunology, for antibiotic susceptibility testing, cellular biology and genetics. Microorganisms commonly grow readily in incubators with microbial culture media; this can contain chromogenic supplements to differentiate between cell lines. Estimate your culture’s density of microorganisms with colony counters, or screen and select colonies for desirable clones with automated colony pickers. Additionally, equipment is available to monitor environments for the presence of microbes and identify with microbial identification instruments. Find the best microbiology products in our peer-reviewed product directory: compare products, check customer reviews and receive pricing direct from manufacturers.Sample ManagementSample management systems include sample storage devices such as freezers and plate storers, sample environment enclosures and sample organization, retrieval and sorter systems. Useful system features include high-throughput, automation, robotic arms, automated liquid handling and associated database systems. Accessories in sample management include barcode scanners, heat sealers and tubes.Automation Supplies / AccessoriesAutomated accessories and consumables make lab processes fast, efficient and reliable. Useful automation accessories include microplate sealers, label printers and reagent reservoirs.Plate ProcessingAutomated plate processing is used in microplate technologies for high-throughput, speed and efficiency. Plate processing systems include microplate handlers for moving plates, heat sealers, stackers and carousels for storage, retrieval and delivery, microplate washers and piercers. Useful features of plate processors include walk-away automation, compatibility and easy integration with microplate systems.