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19 June 2023 | Story André Damons | Photo André Damons
Prof Jan Du Plessis
Prof Jan du Plessis is Head of the Paediatric Oncology Unit at the University of the Free State.

Many children in South Africa diagnosed with childhood cancer have a poorer overall survival rate and are more likely to abandon their treatment because they experience high poverty and food insecurity at home.

This is according to findings from a new study which Prof Jan du Plessis, Head of the Paediatric Oncology Unit at the University of the Free State (UFS), was part of. The study, titled ‘Prevalence of Poverty and Hunger at Cancer Diagnosis and Its Association with Malnutrition and Overall Survival in South Africa’, was recently published in the journal Nutrition and Cancer.

It found a high prevalence of poverty and hunger among South African children diagnosed with cancer. Food insecurity was associated with treatment abandonment and poorer overall survival.

The research was conceptualised by Judy Schoeman, dietitian at the Steve Biko Academic Hospital, as part of her PhD study. Prof Du Plessis and departmental dietitian Mariechen Herholdt, who recognised the importance and value of this study, enrolled patients, collected data, and critically reviewed the manuscript. Five different paediatric oncology units throughout the country participated.

Stunting as indicator of chronic malnutrition

Prof Du Plessis says stunting is an indicator of chronic malnutrition, and causes tissue damage, reduced function of neurotransmitters, and decreased overall development of all factors. Stunting is also associated with reduced lung growth and -function, which can influence the prevalence of pulmonary infections, have an impact on morbidity, and increase the risk of mortality. It also affects cognitive development, with poorer academic achievement and reduced economic productivity for children and adults affected by stunting.

“Our study found that South African children with malnutrition at cancer diagnosis often experienced food insecurity at home, underscoring the need to address primary rather than secondary malnutrition. This observation was especially apparent among children from rural provinces,” Prof Du Plessis says. “Many children in our study experienced high poverty and food insecurity risk at diagnosis; thus, nutritional counselling targeting dietary intake in the home setting should be a priority for these patients.”

High-quality diet may have protective effect

Recent literature has found that a high-quality diet may have a protective effect against some treatment-related toxicities of cancer treatment. Hunger at home was significantly associated with increased risk for treatment abandonment and risk of death.

Prof Du Plessis states, “According to the South African census (2015), 30 million people live on less than R84.11 (US$5) per day, and 55% of South African children live below the ultra-poverty line (R800/month or US$45.81/month)…

“In a previous South African study of children with germ cell tumours from families with higher socioeconomic status (household income of US$191/year or US$6/day), they have experienced significantly improved overall survival (OS) at five years. Indonesian children from low-income families diagnosed with acute lymphoblastic leukaemia have also experienced significantly lower event-free survival two years or longer after diagnosis than those from higher-income families.”

Prof Du Plessis says nutritional intervention should be implemented from diagnosis to improve patients’ nutritional status and survival.

Enhance collaborations to enhance outcomes

The study further illustrated that children with stunting and malnutrition at cancer diagnosis were more likely to live in poverty, thereby highlighting a group of children needing social services and support networks over and above the existing structures available to South African children with cancer.

The study underscores the need for medical centres to enhance collaboration with organisations that provide financial and/or other support to families throughout treatment to enhance outcomes.

The study came about as poor nutritional status in children with cancer has been associated with poorer cancer outcomes. Identifying modifiable risk factors that lead to poor nutrition in children with cancer is an understudied area, especially in a country such as South Africa, explains Prof Du Plessis. 

“Understanding the scope of poverty and hunger and its association with nutritional status among children undergoing cancer treatment is needed. As half of South Africans experience chronic poverty over time, food insecurity will be affected; we investigated the prevalence of poverty and food insecurity at cancer diagnosis, their association with malnutrition at the time of diagnosis, and overall survival at one year post-diagnosis.

“Malnutrition is a modifiable prognostic risk factor. The findings underscore the importance of incorporating an assessment of the risk of living in poverty and/or with food insecurity at diagnosis – and potentially throughout therapy – to ensure that families are referred to appropriate support networks. Evaluating sociodemographic factors at diagnosis is essential among South African children to identify at-risk children and implement adequate nutritional support during cancer treatment,” Prof Du Plessis concludes.

This research aligns with the UFS’s Vision 130 – to not only be a university that cares and is sustainable, but also to be a research-led, student-centred, and regionally engaged university that contributes to development and social justice. This knowledge will assist in efficiently allocating hospital resources and establishing support networks to ensure that the most vulnerable children are supported with proactive nutrition interventions while undergoing cancer treatment.

News Archive

What do diamonds, chocolates, bugs and almost 30 Nobel Prizes have in common? Crystallography
2014-10-15

 

Some of the keynote speakers and chairpersons at the third world summit in the International Year of Crystallography (in Africa) were, from the left, front: Profs Abdelmalek Thalal (Morocco), Prosper Kanyankogote (University of Kinshasa, Democratic Republic of the Congo); Habib Bougzala (Tunisia), Santiago Garcia-Granda (IUCr, University Oviedo, Spain), Michele Zema (IYCr 2014, Italy/UK) and Dr Jean-Paul Ngome-Abiaga (UNESCO, Paris, France); back: Dr Thomas Auf der Heyde (Acting Director-general, South African Department of Science and Technology); Dr Petrie Steynberg (SASOL) and Prof André Roodt (UFS, host).

Photo: Marija Zbacnik
The third world summit in the International Year of Crystallography (in Africa) was hosted by Prof André Roodt, Head of the Department of Chemistry and President of the European Crystallographic Association,  at the University of the Free State in Bloemfontein.

A declaration with and appeal to support crystallography and science across Africa, was signed.

When one mentions 'Crystallography', or more simply 'crystals', what comes to mind? Diamonds? Perhaps jewellery in general? When thinking of crystals and Crystallography, you will need to think much bigger. And further – even to Mars and back.

Crystallography refers to the branch of science that is concerned with structure and properties of crystals. The obvious examples would include cut diamonds, gemstones such as amethysts, and ‘simple’ crystals such as selenite and quartz.

But have you thought about the irritating brown scales at the bottom of your kettle? The sand in your shoes? The salt over your lamb chops or the sugar in your coffee? All crystals. From egg shells to glucose, from bugs and insecticides to additives in food – even the compounds in chocolate – all fall under the close scrutiny of Crystallography.

The breakthroughs this field of science has produced have led to almost 30 Nobel Prizes over the years.

Determining the structure of DNA by crystallography was arguably one of the most significant scientific events of the 20th century. Different diseases have been cured or slowed by medicines obtained based on crystallographic studies. These include certain cancers, HIV/Aids, Tuberculosis and Malaria. Biological Crystallography enables the development of anti-viral drugs and vaccines.

This field of science influences our daily lives in virtually immeasurable ways. Here are but a few areas of study and development Crystallography contributes to:

•    LCD displays;
•    cellular smartphones;
•    insects and insecticides;
•    additives and products in foods;
•    improved effectiveness and security of credit cards;
•    new materials to preserve energy;
•    better gasoline with less by-products;
•    identify colour pigments used in paintings from the old masters, indicating if it’s an original or an imitation; and
•    beauty products such as nail polish, sun-block, mascara and eye shadow.

Crystallography is also currently used by the Curiosity Rover to analyse the substances and minerals on Mars.

Crystals and Crystallography form an integrated part of our daily lives – from bones and teeth to medicines and viruses, from chocolates to the blades in airplane turbines. Even down to the humble snowflake.


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