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30 August 2018 Photo Xolisa Mnukwa
Haemophilia workshop the first of its kind at UFS
The UFS Department of Haematology and Cell Biology is producing quality medical graduates, addressing the high demand for trained graduates. Dr Anneke van Marle, Haematologist in the department, presented a lecture to final-year medical students on muscle and soft-tissue bleeding in haemophilia.

The Medical and Scientific Advisory Council (MASAC) of the South African Haemophilia Foundation (SAHF) has identified a need for more in-depth training of junior doctors on the basic aspects of the bleeding disorder haemophilia. 

Addressing this need in the sector, the Department of Haematology and Cell Biology at the University of the Free State (UFS) recently hosted a training workshop specifically targeting final-year medical students before they enter practice.

The Novo Nordisk Haemophilia Foundation is sponsoring this countrywide haemophilia training.

According to Jaco Joubert, Senior Lecturer and Pathologist in the Department of Haematology and Cell Biology, the department is very active in the field of haemophilia treatment, research and training, with representation on the Executive Committee of the Medical and Scientific Advisory Council of the South African Haemophilia Foundation.

Function with confidence

“The UFS Department of Haematology and Cell Biology has taken a proactive approach, by being the first department in South Africa to offer this training course to final-year medical students at the UFS; an investment in the future. The department runs the Bloemfontein Haemophilia Treatment Centre – which is the main haemophilia treatment and referral centre for patients from the Free State and Northern Cape. It is therefore ideally positioned to offer such training to students,” said Joubert.

Proactive role

The training workshop empowered and equipped students with more extensive knowledge on the practical aspects of managing patients with haemophilia; the various treatment products currently available in South Africa and laboratory diagnostic approaches in complicated cases. “This will enable students to function with more confidence during their internship and community service years,” said Joubert. 

He believes a training workshop of this calibre showcases the proactive role the department and the university is taking in the advancement of haemophilia training in South Africa.

News Archive

#Women'sMonth: Save the children
2017-08-10

Description: Trudi O'Neill Tags: : rotaviruses, young children, Dr Trudi O’Neill, Department of Microbial, Biochemical and Food Biotechnology, vaccine 

Dr Trudi O’Neill, Senior lecturer in the Department of
Microbial, Biochemical and Food Biotechnology.
Photo: Anja Aucamp

Dr Trudi O’Neill, Senior lecturer in the Department of Microbial, Biochemical and Food Biotechnology, is conducting research on rotavirus vaccines.

Dr O’Neill was inspired to conduct research on this issue through her fascination with the virus. “The biology of rotaviruses, especially the genome structure and the virus’ interaction with the host, is fascinating.”

“In fact, it is estimated that, globally, ALL children will be infected with rotavirus before the age of five, irrespective of their socio-economic standing. However, infants and young children in poor countries are more vulnerable due to inadequate healthcare. The WHO estimates that approximately 215 000 deaths occur each year. This roughly equates to eight Airbus A380 planes, the largest commercial carrier with a capacity of approximately 500 seats, filled with only children under the age of five, crashing each week of every year.”

Alternative to expensive medicines 
“Currently, there are two vaccines that have been licensed for global use. However, these vaccines are expensive and poor countries, where the need is the greatest, are struggling to introduce them sustainably. It is therefore appealing to study rotaviruses, as it is scientifically challenging, but could at the same time have an impact on child health,” Dr O’Neill said.

The main focus of Dr O’Neill’s research is to develop a more affordable vaccine that can promote child vaccination in countries/areas that cannot afford the current vaccines.

All about a different approach 

When asked about the most profound finding of her research, Dr O’Neill responded: “It is not so much a finding, but rather the approach. My rotavirus research group is making use of yeast as vehicle to produce a sub-unit vaccine. These microbes are attractive, as they are relatively easy to manipulate and cheap to cultivate. Downstream production costs can therefore be reduced. The system we use was developed by my colleagues, Profs Koos Albertyn and Martie Smit, and allows for the potential use of any yeast. This enables us to screen a vast number of yeasts in order to identify the best yeast producer.”

Vaccination recently acquired a bad name in the media for its adverse side effects. As researcher, Dr O’Neill has this to say: “Vaccines save lives. By vaccinating your child, you don’t just protect your own child from a potentially deadly infection, but also other children in your community that might be too young to be vaccinated or have pre-existing health problems that prevents vaccination.” 

A future without rotavirus vaccination?

Dr O’Neill believes a future without rotavirus vaccination will be a major step backwards, as the impact of rotavirus vaccines has been profound. “Studies in Mexico and Malawi actually show a reduction in deaths. A colleague in Mozambique has commented on the empty hospital beds that amazed both clinicians and scientists only one year after the introduction of the vaccine in that country. Although many parents, mostly in developed countries, don’t have to fear dehydrating diarrhoea and potential hospitalisation of their babies due to rotavirus infection anymore, such an infection could still be a death sentence in countries that have not been able to introduce the vaccine in their national vaccination programmes,” she said. 

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