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24 January 2019 | Story Zama Feni | Photo Barend Nagel
Prof Matlabisa
Prof Motlalepula Matlabisa of the Department of Pharmacology.

Two South African government departments have granted the University of the Free State’s Department of Pharmacology a combined amount of R15 million for the establishment of four tea farms in the disadvantaged communities in the North West and Eastern Cape Communities.

The head of the project Prof Motlalepula Matsabisa at the Department of Pharmacology said that that Department of Environmental Affairs (DEA) has granted an amount of R10 million for the community research in the respective provinces.

This grant is a top up to the R5 million they received from the Department of Science and Technology for the “community implementation on indigenous health infusions or teas as commonly known.”

The DEA will in the near future sign a Memorandum of Agreement (MOA) with the university.


Tea project set to empower communities


“The project is to implement and build structures in the four communities we work with in the North West and Eastern Cape,” he said.

The identified areas for the project are in the Eastern Cape towns of Alice and Idutywa as well another two North West communities in Zeerust.

Prof Matsabisa indicated that the project will be a manifestation of “how science can contribute to economic growth, poverty alleviation and job creation.” 

“It was very interesting to have discovered that some French and German companies have already displayed interest in the projects,” he said.

He stated that a project of this nature is a good initiative by the UFS and it will also show that the university’s research activities are national. “We have been researching and developing indigenous teas which have now attracted interest locally and internationally by huge companies such as Nestle, Tiger Brands, Moringa World etc,” he said. 


Taking it slowly


At the initial stages of the tea farming project, Prof Matsabisa said they would start in small portions of utilising five hectares in each of the four projects and as the project gains momentum, they would expand.

Prof Matlabisa said that an environmental impact assessment has already been conducted and they were waiting for the DEA to give them a go ahead for the land preparations.



News Archive

Dr Charlotte Boucher and Lindi Heyns examine possible anti-microbial activity in the skin of Western olive toad species
2014-12-22

 

Researchers Lindi Heyns and Dr Charlotte Boucher are working together on an interdisciplinary project between the Departments of Zoology and Entomology and Veterinary Biotechnology at the University of the Free State (UFS). The focus of their research is on the preliminary biochemical description of skin secretions in some South African toads.

The project forms part of an Honours study executed by Dwayne Pike under Heyns’ supervision. He is co-supervised by Dr Boucher who is assisting with the biochemical and microbiological assays.

Dr Boucher said, “Amphibians are characterised by the presence of cutaneous glands spread over the skin. There are two types of glands, namely mucous and granular (poison), located on the inner surface of the epidermis. Mucous glands are widely dispersed over the skin, while granular glands can be grouped and enlarged in specific regions. Mucous glands are generally associated with maintenance of humidity and cutaneous respiration, whereas granular glands function in chemical defence against predators and/or microbial infection. Studies indicate that the compounds produced by the granular glands belong to numerous chemical classes with diverse pharmacological activities.”

The products secreted by granular glands are rich in low molecular weight constituents of varied molecular types, including proteins, peptides and toxins. These secretions make the toad foul-tasting to predators and even toxic to other frog species. In addition, amphibians offer an attractive source of novel antimicrobials. Studies indicate that as a response to inhabiting microorganism-rich environments they synthesise and secrete a diverse array of antimicrobial peptides (AMPs) as an innate form of defence. Extensive research by various other research groups has been carried out on antimicrobial peptides of the genus Rana; however, hardly any studies have investigated the antimicrobial activity of African frog species.

The focus of this preliminary project is to determine the protein composition of the glandular secretions of the Western olive toad (Amietophrynus poweri), using biochemical tests, such as SDS-PAGE also known as protein gel electrophoresis combined with mass-spectrometry used to identify unknown peptides and proteins. This will give us an overview of the composition of the glandular secretions. Furthermore, we are also looking at microbiological tests, which include assays that test for possible anti-microbial activity against various bacterial and fungal species.

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