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12 November 2019 | Story Leonie Bolleurs | Photo Leonie Bolleurs
Farmovs
At a first for South Africa, the SACRA clinical trials capacity-building workshop with government, research institutions, and industry, were from the left: Dr Nathaniel Mofolo, Dr Rita Nathan, Dr Mojalefa Maseloa (Head: Clinical Services in the Clinical Unit at the Universitas Hospital) and Sue Baily (Site Management Head at IQVIA).

Whether it is to treat the flu or a more serious illness, all medicines go through a very costly and lengthy research process before being approved for prescription to patients. The cumulative time from the beginning of trials to marketing approval has increased over the past ten years. 

According to Dr Vathi Papu-Zamxaka from the South African Clinical Research Association (SACRA), South Africans would not have had access to safe and effective medicines, had it not been for the intensive research conducted on new medicines. 

On 7 November 2019, a group of 115 delegates representing the Free State Department of Health, the UFS, private research sites, and the pharmaceutical industry met at FARMOVS on the Bloemfontein Campus of the University of the Free State (UFS) for the SACRA clinical trials capacity-building workshop.

2,1 billion dollars to develop one successful drug

Dr Michelle Middle, Chief Medical Officer at FARMOVS, provided some interesting stats on the process for drugs to hit the shelves: “One out of 10 drugs entering human research will be approved. The cost of development of one successful drug is approximately 2,1 billion dollars. And the time to develop a drug, from submission of the Investigational New Drug Application (IND) to approval by the Food and Drug Administration (FDA), is between 12 and 15 years.”

Dr Middle stated that drug development is one of the most regulated processes, with ethics and patient safety governing the undertaking. “With SAHPRA (South African Health Products Regulatory Agency) having some of the strictest regulations in the world, South Africa has a good history of running trials.  In addition, fast growth is expected for the pharmaceutical market on the African continent, necessitating the need for increased clinical trials on this continent,” she said. 

Very few clinical trials hosted in South Africa 

Although Africa has the broadest genetic variability of all human populations and carries 17% of the global population, very few clinical trials are hosted on the continent. Globally, there are currently approximately 322 000 clinical trials being actively conducted, of which only 1 700 are conducted in Africa, i.e. less than 3%.  Even worse, only 304 of the 1 700 trials running in Africa are conducted in South Africa.  There is thus a critical need for South Africa as a country to market itself as a clinical trial destination and to attract more trials to the country.

South Africa’s competitive edge lies in being known for its ICH (International Council for Harmonisation of Technical Requirements for Pharmaceuticals for Human Use)-compliant top-quality research, racial and genetic diverse trial participants, good medical infrastructure and expertise, and the good reputation of the regulator (SAHPRA). “There are, however, a need for transformation and capacity building in clinical research in the country,” said Dr Middle. 

Dr Rita Nathan, Head of Clinical Services in the Clinical Department at the Universitas Hospital, who was representing government at the workshop, is looking to strengthen clinical trials across government and industry by focusing on, among others, funding models, operations management, and service delivery. 

From the UFS Faculty of Health Sciences, Dr Nathaniel Mofolo, Head of the School of Clinical Medicine, said collaboration between stakeholders is important. “This initiative is giving direction to the UFS vision of being a research-led university.” 

Other topics discussed at the workshop include the clinical trials landscape, how clinical trials work, the patient factor, ethics in clinical trials, and the economic aspect of clinical trials. 

News Archive

UFS leads the way with GMO testing
2003-08-25

A formal agreement linking Africa’s first testing facility for genetically modified organisms (GMO) to an international organization was signed at the University of the Free State.

According to the manager of the GMO testing facility, Dr Chris Viljoen of the Department of Plant Sciences, the facility is now part of GeneScan, a world leader in food diagnostic testing, which has its headquarters in Germany with subsidiaries in the Unites States, Brazil and Hong Kong.

The facility at the UFS has been selected by the second largest international food company to do all its South African GMO testing for export products.

The GMO testing facility is the brainchild of Dr Viljoen, who is a specialist in the field of marker biotechnology and its applications in crop science.

He says the need for such a testing facility arose due to the international regulations on GMOs in food, especially Europe and Asia that requires South African exporters to certify whether their products contain any GMO.

“The regulations in Europe and Asia reflect a consumer need for choice in what they eat due to concerns over the safety of GMOs, as well as environmental and ethical issues. GMO testing and labelling allow consumers the right of choice to eat genetically modified foods or not. According to EU regulations, any product with a GMO content of 1% or higher is labelled as containing GMO.”

According to Dr Viljoen only four products in South Africa are currently GMO. They are white and yellow maize that have been made insect resistant, soya bean that is herbicide tolerant and insect resistant cotton. He says that the awareness of GMOs among South Africans is still very limited, especially in poorer communities, but it is likely to increase with the efforts being made in consumer education by government, seed companies and NGOs.

The testing facility has been established to accommodate the local as well as international market. The GMO testing at the UFS facility is performed using real time PCR, the most advanced means of GMO detection currently available, and using GeneScan developed technology that is recognized worldwide.
 

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