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24 September 2021 | Story André Damons | Photo Charl Devenish
Heritage Day
Rejoyce Ncube is representing the Zulu culture (left), Itumeleng Mopasi is representing the Xhosas, while Itumeleng Mopasi also represents the Zulu culture during Thursday’s feasting.

Staff members of the Faculty of Health Sciences working in the Muller Potgieter Building celebrated Heritage Day on Thursday (23 September 2021) by feasting together on different traditional meals and enjoying their diverse cultural backgrounds.

For Ms Rejoyce Ncube, an Assistant Officer in Undergraduate Medical Programme Management, Heritage Day is an important reminder of who we are as South Africans. She has been wearing different cultural attire since the start of Heritage Month.

“I love wearing different attires. It is so unique and colourful.  It is also important because, when you look at the young people, they do not always know the difference between the cultures.

“As much as I am Zulu, I wear attires from different cultures. I need Tsonga and Ndebele attire.  It is just to make people aware that we are all South African and also to teach the young people that they have a history behind who they are. I love the uniqueness, the colours, and the designs,” says Ncube.

Heritage Day important to teach young people about different cultures in South Africa
According to her, Heritage Day is important to teach young people about the different cultures in South Africa and the history behind them. Ncube says she also tries to cook a traditional African dish for her family every Sunday.

Ms Joyce Phindela, an Assistant Officer in the School of Clinical Medicine, says Heritage Day helps her to remember who she is and where she comes from. Says Joyce: “I am Xhosa, but mostly grew up in the Sotho and Coloured community and I went to an all-Afrikaans school. This is what is meant by being South African and what makes us unique.”

“Heritage Day gives me an opportunity to represent who I am and to teach other people about my culture. I also get to learn from other people and their cultures, because on a normal day we do not learn from each other. I can teach this to my kids one day.”

Some of the traditional treats shared included dombolo, samp and beans, droëwors, koeksisters, and melktert.

Dr Lynette van der Merwe, Undergraduate Medical Programme Director in the School of Clinical Medicine, indicated that the staff working in the Muller Potgieter Building consider themselves part of a diverse, multicultural, multilingual family who try to make one another’s lives enjoyable by being friendly, courteous, supportive, and kind.  Sharing and learning from one another and realising that we all have unique stories to tell about our varied backgrounds bring us closer together and help us grow in unity.

News Archive

Research contributes to improving quality of life for cancer patients
2016-11-21

Description: Inorganic Chemistry supervisors  Tags: Inorganic Chemistry supervisors

Inorganic Chemistry supervisors in the Radiopharmacy
Laboratory during the preparation of a typical complex
mixture to see how fast it reacts. Here are, from the left,
front: Dr Marietjie Schutte-Smith, Dr Alice Brink
(both scholars from the UFS Prestige
Scholar Programme), and Dr Truidie Venter (all three
are Thuthuka-funded researchers).
Back: Prof André Roodt and Dr Johan Venter.
Photo: Supplied

Imagine that you have been diagnosed with bone cancer and only have six months to live. You are in a wheelchair because the pain in your legs is so immense that you can’t walk anymore – similar to a mechanism eating your bones from the inside.

You are lucky though, since you could be injected with a drug to control the pain so effective that you will be able to get out of the wheelchair within a day-and-a-half and be able to walk again. Real-life incidents like these provide intense job satisfaction to Prof André Roodt, Head of Inorganic Chemistry at the University of the Free State (UFS). The research, which is conducted by the Inorganic Group at the UFS, contributes greatly to the availability of pain therapy that does not involve drugs, but improves the quality of life for cancer patients.

The research conducted by the Inorganic Group under the leadership of Prof Roodt, plays a major role in the clever design of model medicines to better detect and treat cancer.

The Department of Chemistry is one of approximately 10 institutions worldwide that conducts research on chemical mechanisms to identify and control cancer. “The fact that we are able to cooperate with the Departments of Nuclear Medicine and Medical Physics at the UFS, the Animal Research Centre, and other collaborators in South Africa and abroad, but especially the methodology we utilise to conduct research (studying the chemical manner in which drugs are absorbed in cancer as well as the time involved), enhances the possibility of making a contribution to cancer research,” says Prof Roodt.

Technique to detect cancer spots on bone
According to the professor, there are various ways of detecting cancer in the body. Cancer can, inter alia, be identified by analysing blood, X-rays (external) or through an internal technique where the patient is injected with a radioactive isotope.

Prof Roodt explains: “The doctor suspects that the patient has bone cancer and injects the person with a drug consisting of an isotope (only emits X-rays and does no damage to tissue) that is connected to a phosphonate (similar to those used for osteoporosis). Once the drug is injected, the isotope (Technetium-99m) moves to the spot on the bone where the cancer is located. The gamma rays in the isotope illuminate the area and the doctor can see exactly where treatment should be applied. The Technetium-99m has the same intensity gamma rays as normal X-rays and therefore operates the same as an internal X-ray supply.” With this technique, the doctor can see where the cancer spots are within a few hours.

The same technique can be used to identify inactive parts of the brain in Alzheimer patients, as well as areas of the heart where there is no blood supply or where the heart muscle is dead.

Therapeutic irradiation of cancer
For the treatment of pain connected with cancer, the isotope Rhenium-186 is injected. Similar to the manner in which the Technetium-99m phosphonate compound is ingested into the body, the Rhenium-186 phosphonate travels to the cancer spots. Patients thus receive therapeutic irradiation – a technique known as palliative therapy, which is excellent for treating pain. A dosage of this therapy usually lasts for about two months.

The therapy is, however, patient specific. The dosages should correspond with the occurrence and size of cancer spots in the patient’s body. First, the location of the cancer will be determined by means of a technetium scan. After that, the size of the area where the cancer occurs has to be determined. The dosage for addressing total pain distribution will be calculated according to these results.

Technique to detect cancer spots on soft tissue
Another technique to detect cancer as spots on bone or in soft tissue and organs throughout the body is by utilising a different type of irradiation, a so-called PET isotope. The Fluor-18 isotope is currently used widely, and in Pretoria a machine called a cyclotron was produced by Dr Gerdus Kemp, who is a former PhD graduate from the Inorganic Research Group. The F-18 is then hidden within a glucose molecule and a patient will be injected with the drug after being tranquillised and after the metabolism has been lowered considerably. The glucose, which is the ‘food' that cancer needs to grow, will then travel directly to the cancer area and the specific area where the cancer is located will thus be traced and ‘illuminated’ by the Fluor-18, which emits its own 'X-rays'.

In the late 80s, Prof Roodt did his own postdoctoral study on this research in the US. He started collaborating with the Department of Nuclear Medicine at the UFS in the early 90s, when he initiated testing for this research.

Through their research of more than 15 years, the Inorganic Group in the Department of Chemistry has made a major contribution to cancer research. Research on mechanisms for the detection of cancer, by designing new clever chemical agents, and the chemical ways in which these agents are taken up in the body, especially contributes to the development in terms of cancer therapy and imaging, and has been used by a number of hospitals in South Africa.

The future holds great promise
Prof Roodt and his team are already working on a bilateral study between the UFS and Kenya. It involves the linking of radio isotopes, as mentioned above, to known natural products (such as rooibos tea), which possess anti-cancer qualities.

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