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21 January 2020 | Story Leonie Bolleurs | Photo Leonie Bolleurs
Prof Danie Vermeulen, Prof Arno Hugo, and master’s student in Consumer Sciences, Mandisa Masuku in the newly renovated sensory laboratory in the Agricultural Building on the UFS Bloemfontein Campus.
Prof Danie Vermeulen, Prof Arno Hugo, and master’s student in Consumer Sciences, Mandisa Masuku in the newly renovated sensory laboratory in the Agricultural Building on the UFS Bloemfontein Campus.

Imagine all food tasting the same …

Fortunately, this is not the case, as consumers like to enjoy what they eat. Tasting food is important because it enables suppliers to adapt food products to consumers’ preferences.

According to Prof Arno Hugo of the Department of Microbial, Biochemical and Food Biotechnology at the University of the Free State (UFS), it is important for food companies to make sure that new food products are acceptable to consumers before launching such products. Often, companies also want to confidentially compare and profile their new or even established products against their competitors’ products. Lately, food companies also have the need to adapt European or North American food products for the local consumer (Africanisation of food products). Independent sensory laboratories are needed for such work. 

Dr Carina Bothma, Senior Lecturer and sensory science expert – also from the Department of Microbial, Biochemical and Food Biotechnology – who manages the sensory laboratory, says the laboratory at the university performs sensory analysis, which is a scientific discipline used to evoke reactions from humans regarding the five senses of sight, smell, touch, taste, and hearing. These reactions can be captured from first bite to complete mastication and are then statistically analysed and interpreted by a sensory analyst.

With the support of the Dean of the Faculty of Natural and Agricultural Sciences, Prof Danie Vermeulen, a project to the value of R3 million to upgrade the existing sensory laboratory in the Agricultural Building on the UFS Bloemfontein Campus, is nearing completion. Minor improvements will be completed by June 2020.

According to Dr Bothma, upgrades were done in three sections, including a training area (with seating for 12 trained panellists); a computerised 12-booth tasting area (with a three-light communication system); and a preparation area. The latter consists of a walk-in fridge and walk-in freezer, a 10-rack industrial steam-jet oven, a ventilation system to control and maintain a negative pressure in the preparation area – so that odours do not move to the tasting area, two mobile units with four gas plates in each unit, and a sputum and control area equipped with a computer.

Prof Hugo, who is mainly responsible for planning trials and statistical analyses of sensory data, says the sensory laboratory is truly a fantastic facility and big asset for the university. “I think it is one of the best-planned and best-equipped sensory laboratories in South Africa.”

Alternative food products profiled

He continues: “Several sensory studies have been done regarding the influence of salt reduction on the meat quality of various meat products, as well as the effect of different feed supplements on meat quality. Meat was also evaluated, comparing the meat quality of animals from different production systems.”

Dr Bothma states that food products to be evaluated vary and may include new products in product development. “Several interesting food products have been tested in the lab so far. Underutilised vegetables such as amaranth and cactus pears, and newly introduced crops such as edamame, have been evaluated.  Ancient grains such as fonio have also been profiled.  An African staple, amagwinya, is currently being profiled, as well as food products containing insect flour,” she says.

Testing and teaching

According to Dr Bothma, a trained panel consisting of 10 to 12 panellists is highly trained to verbally describe a food product or characteristic.  For other tests, consumers of a specific food product to be tested, are sourced. Such a panel can consist of between 75 and 300 persons, depending on the requirements of the client.  Panels can also be compiled according to specific demographics. All demographic information remains anonymous.  

Sensory analysis forms part of academic research projects and a number of PhD and master’s degrees have been done in the laboratory. 

She says: “Postgraduate students work in the sensory lab under supervision of the sensory analyst. They personally recruit panellists on the campus, referred to as 'convenience sampling'. These assistants do the preparation for the tasting, preparing up to 500 individual samples for a test that has 100 panellists and five products.  They attend to the panellists, serve the samples, collect and decode ballot sheets, and enter data into Excel for statistical analysis.”

More than 20 accredited scientific articles have already been published from research done in this laboratory.

News Archive

Champagne and cancer have more in common than you might think
2013-05-08

 

Photo: Supplied
08 May 2013

No, a glass of champagne will not cure cancer....

…But they have more in common than you might think.

Researchers from the Departments of Microbial Biochemical and Food Biotechnology, Physics and the Centre for Microscopy at the University of the Free State in South Africa were recently exploring the properties of yeast cells in wine and food to find out more of how yeast was able to manufacture the gas that caused bread to rise, champagne to fizz and traditional beer to foam. And the discovery they made is a breakthrough that may have enormous implications for the treatment of diseases in humans.

The team discovered that they could slice open cells with argon gas particles, and look inside. They were surprised to find a maze of tiny passages like gas chambers that allowed each cell to ‘breathe.’ It is this tiny set of ‘lungs’ that puts the bubbles in your bubbly and the bounce in your bread.

But it was the technique that the researchers used to open up the cells that caught the attention of the scientists at the Mayo Clinic (Tumor Angiogenesis and Vascular Biology Research Centre) in the US.

Using this technology, they ultimately aim to peer inside cells taken from a cancer patient to see how treatment was progressing. In this way they would be able to assist the Mayo team to target treatments more effectively, reduce dosages in order to make treatment gentler on the patient, and have an accurate view of how the cancer was being eliminated.

“Yes, we are working with the Mayo Clinic,” said Profes Lodewyk Kock from the Microbial, Biochemical and Food Biotechnology Department at the UFS.

“This technique we developed has enormous potential for cell research, whether it is for cancer treatment or any other investigation into the working of cells. Through nanotechnology, and our own invention called Auger-architectomics, we are able to see where no-one has been able to see before.”

The team of Prof Kock including Dr Chantel Swart, Kumisho Dithebe, Prof Hendrik Swart (Physics, UFS) and Prof Pieter van Wyk (Centre for Microscopy, UFS) unlocked the ‘missing link’ that explains the existence of bubbles inside yeasts, and incidentally have created a possible technique for tracking drug and chemotherapy treatment in human cells.

Their work has been published recently in FEMS Yeast Research, the leading international journal on yeast research. In addition, their discovery has been selected for display on the cover page of all 2013 issues of this journal.

One can most certainly raise a glass of champagne to celebrate that!

There are links for video lectures on the technique used and findings on the Internet at:

1. http://vimeo.com/63643628 (Comic version for school kids)

2. http://vimeo.com/61521401 (Detailed version for fellow scientists)

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