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14 November 2019 | Story Charlene Stanley | Photo Supplied
DIABETES read more
The modern clinical research facilities at FARMOVS where the two ground breaking diabetes studies will be conducted.

Diabetes is no longer seen simply as a disease, but as a worldwide epidemic, with alarming increases recorded in both developed and developing countries over the past few years.

About 3,5 million South Africans have diabetes, and many more are unaware that they have it. 

The FARMOVS clinical research facility on the Bloemfontein Campus of the University of the Free State is currently involved in two exciting research studies that could lead to the development of medication for diabetes sufferers burdened by some of its most common complications.

Diabetes in a nutshell

Diabetes is a group of diseases where the sugar (glucose) levels in the blood are too high. 

In diabetes mellitus (DM), the high blood-sugar levels are caused by the body not being able to control the blood-sugar levels properly, because of the body’s inability to produce or use insulin. Insulin is a hormone produced by the pancreas and lowers the blood-sugar levels by helping to move the sugar from the blood into the body cells where the sugar is used as a source of energy.

Type 1 DM is often diagnosed in children or teenagers and occurs when the pancreas does not produce any insulin. Type 2 DM occurs when the pancreas does not make enough insulin, or if the body can no longer use the insulin properly; this is often associated with poor lifestyle choices. Where this type of diabetes used to develop primarily in adults of 40 years and older, it is nowadays not uncommon for children to be diagnosed with it.


It is essential that people who are displaying one or more of the risk factors go for screening. This includes a search Physician at FARMOVS. “If DM is detected early enough, up to 90% of people don’t have to use medication but can address it through changes to their diet and exercise programmes.”

High blood-sugar levels essentially damage the blood vessels, which can lead to long-term implications for a person’s heart, kidneys, eyes, and blood circulation. 
The international studies that FARMOVS forms part of, aim to develop treatments for two of the most common secondary conditions that develop as a result of diabetes. 

Diabetic gastroparesis study

A sufferer’s intestines often don’t function properly due to the damage diabetes causes to the nerves which helps the stomach to empty properly; a condition called gastroparesis. Alleviating this condition, typically marked by abdominal pain, bloating, nausea, vomiting, and early satiety (feeling full after eating only a small amount of food), is the aim of one of the studies.

Diabetic impaired kidney function study

A second research study focuses on developing medication that will have a protective effect on a diabetic’s kidneys.  Although nothing can be done to reverse kidney damage, it is hoped that the treatment will slow down kidney degradation.

Focus on prevention

“Both of these studies are aimed at giving diabetics an increased quality of life, and by no means constitute a cure for their condition,” says Dr Van Jaarsveld.
 “The solution lies in combining the correct and committed use of medication with a decreased calorie intake and an increase in exercise – even if it’s just 30 minutes three times a week.”

Value of educating sufferers

A major benefit for participants in the FARMOVS diabetes research trials, is that they gain valuable insight in their own condition.
Diabetes has been called the ‘silent disease’, since sufferers initially have no symptoms.  For that reason, when the average patient is diagnosed with the disease, he/she already has had it for 10 years.   

For me, diabetes is such a sad disease – especially when you see patients with amputated body parts, knowing that it could have been prevented. It is really up to each individual to take responsibility for their own health,” Dr Van Jaarsveld concludes.

Diabetics who are interested in becoming part of the research studies can register online at www.farmovs.com, or contact FARMOVS at +27 51 410 3111.

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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