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11 December 2019 | Story Leonie Bolleurs
Aids read more

According to Global Statistics, there were approximately 37,9 million people across the globe with HIV/Aids in 2018. They also state that in 2018, an estimated 1,7 million individuals worldwide became newly infected with HIV. 

In the city of Masvingo, Zimbabwe, Claris Shoko is a Statistics lecturer at the Great Zimbabwe University. In her PhD thesis at the University of the Free State (UFS) in the Department of Mathematical Statistics and Actuarial Sciences, she presented the argument that the inclusion of both the CD4 cell count and the viral-load counts in the monitoring and management of HIV+ patients on antiretroviral therapy (ART), is helping in reducing mortality rates, leading to improved life expectancy for HIV/Aids patients. 

She received her doctoral degree at the December UFS Graduation Ceremonies, with her thesis: Continuous-time Markov modelling of the effects of treatment regimens on HIV/Aids immunology and virology. 

CD4 cell count and viral-load count

Dr Shoko explains: “When the human immunodeficiency virus (HIV) enters the human body, the virus attacks the CD4 cells in their blood. This process damages CD4 cells, causing the number of white blood cells in the body to drop, making it difficult to fight infections.”

“Clinical markers such as CD4 cell count and viral-load count (number of HIV particles in a ml of blood) provide information about the progression of HIV/Aids in infected individuals. These markers fully define the immunology and the virology of HIV-infected individuals, thereby giving us a clear picture of how HIV/Aids evolve within an individual.”

Dr Shoko continues: “The development of highly active antiretroviral therapy (HAART) has helped substantially to reduce the death rate from HIV. HAART reduces viral load-count levels, blocking replication of HIV particles in the blood, resulting in an increase of CD4 cell counts and the life expectancy of individuals infected with HIV. This has made CD4 cell counts and viral-load counts the fundamental laboratory markers that are regularly used for patient management, in addition to predicting HIV/Aids disease progression or treatment outcomes.”

In the treatment of HIV/Aids, medical practitioners prescribe combination therapy to attack the virus at different stages of its life cycle, and medication to treat the opportunistic infections that may occur. “The introduction of combined antiretroviral therapy (cART) has led to the dramatic reduction in morbidity and mortality at both individual level and population level,” states Dr Shoko.

Once HIV-positive patients are put on cART, the effectiveness of treatment is monitored after the first three months and a further follow-up is done every six months thereafter. During the monitoring stages, CD4 cell count and viral load is measured. Patients are also screened for any tuberculosis (TB) co-infection and checked for any signs of drug resistance. These variables determine whether or not there is a need for treatment change. 

She continues: “Previous studies on HIV modelling could not include both CD4 cell count and viral load in one model, because of the collinearity between the two variables. In this study, the principal component approach for the treatment of collinearity between variables is used. Both variables were then included in one model, resulting in a better prediction of mortality than when only one of the variables is used.”

“Viral-load monitoring helps in checking for any possibilities of virologic failure or viral rebound, which increases the rate of mortality if not managed properly. CD4 cell count then comes in to monitor the potential development of opportunistic infections such as TB. TB is extremely fatal, but once detected and treated, the survival of HIV/Aids patients is assured,” Dr Shoko explains.

Markov model

She applied the Markov model in her study. The model, named after the Russian mathematician Andrey Markov, represents a general category of stochastic processes, characterised by six basic attributes: states, stages, actions, rewards, transitions, and constraints. 

According to Dr Shoko, Markov models assume that a patient is always in one of a finite number of discrete states, called Markov states. All events are modelled as transitions from one state to another. Each state is assigned a utility, and the contribution of this utility to the overall prognosis depends on the length of time spent in each state. For example, for a patient who is HIV positive, these states could be HIV+ (CD4 cell count above 200 cells/mm3), Aids (CD4 cell count below 200 cells/mm3) and Dead.

“Markov models are ideal for use in HIV/Aids studies, because they estimate the rate of transition between multiple-disease states while allowing for the possible reversibility of some states,” says Dr Shoko, quoting Hubbard and Zhou.

“Relatively fewer HIV modelling studies include a detailed description of the dynamics of HIV viral load count during stages of HIV disease progression. This could be due to the unavailability of data on viral load, particularly from low- and middle-income countries that have historically relied on monitoring CD4 cell counts for patients on ART because of higher costs of viral load-count testing,” Dr Shoko concludes

News Archive

Centre to enhance excellence in agriculture
2008-05-09

 

At the launch of the Centre for Excellence were, from the left, front: Ms Lesego Sejosengoe, Manager: Indigenous Food, Mangaung-University Community Partnership Project (MUCPP), Ms Kefuoe Mohapeloa, Deputy Director: national Department of Agriculture; back: Mr Garfield Whitebooi, Assistant Director: national Department of Agriculture, Dr Wimpie Nell, Director: Centre for Agricultural Management at the UFS, and Mr Petso Mokhatla, from the Centre for Agricultural Management and co-ordinator of the Excellence Model.
Photo: Leonie Bolleurs

UFS centre to enhance excellence in agriculture

The national Department of Agriculture (DoA) appointed the Centre for Agricultural Management within the Department of Agricultural Economics at the University of the Free State (UFS) as the centre of excellence to roll out the excellence model for small, medium and micro enterprises (SMME’s) for farmers in the Free State.

The centre was launched this week on the university’s Main Campus in Bloemfontein.

The excellence model, which is used worldwide, was adapted by the Department of Trade and Industry as an SMME Excellence Model. The DoA then adapted it for agricultural purposes.

“The excellence model aims to assist farmers in identifying gaps in business skills. These gaps will be addressed by means of short courses. It will help to close the gap between the 1st and 4th economy,” said Dr Wimpie Nell, Director of the Centre for Agricultural Management at the UFS.

The UFS – as co-ordinator of the SMME Excellence Model – the DoA, the private sector, municipalities, small enterprise development agencies, and non-governmental organisations will be working together to enhance excellence in agricultural businesses in the Free State.

The benefit of the model is that it changes the mindset of emerging farmers to see agriculture as a business and not as a way of living. Dr Nell said: “We also want to create a culture of competitiveness and sustainability amongst emerging farmers.”

“The Free State is the second province where the model has been implemented. Another four provinces will follow later this year. Altogether 23 officers from the DoA, NGO’s and private sector have already been trained as facilitators by the Centre of Excellence at the UFS,” said Dr Nell.

The facilitator training takes place during four contact sessions, which includes farm visits where facilitators get the opportunity to practically apply what they have learnt. On completion of the training facilitators use the excellence model to evaluate farming businesses and identify which skills (such as financial skills, entrepreneurship, etc.) the farmers need.

The co-ordinator from the Centre of Excellence, Mr Petso Mokhatla, will monitor the facilitators by visiting these farmers to establish the effectiveness of the implementation of the model. Facilitators must also report back to the centre on the progress of the farmers. This is an ongoing process where evaluation will be followed up by training and re-evaluation to ensure that successful establishment of emerging farmers has been achieved.

According to Ms Kefuoe Mohapeloa, Deputy Director from the national Department of Agriculture, one of the aims of government is to redistribute five million hectare of land (480 settled people per month) to previously disadvantaged individuals before 2010. The department also wants to increase black entrepreneurship in rural areas by 10% this year, increase food security by utilising scarce resources by 10%, and increase exports by black farmers by 10%.

“To fulfill these objectives it is very important for emerging farmers to get equipped with the necessary business skills. The UFS was a suitable candidate for this partnership because of its presence in the Accelerated and Shared Growth Initiative of South Africa (ASGISA). With the Jobs for Growth programme, ASGISA is an important extension to the Centre of Excellence and plays a major role in the implementation of the model to improve value-chain management,” said Ms Mohapeloa.

Twenty facilitators will receive training in June and another 20 in October this year. “The more facilitators we can train, the more farmers will benefit from the model,” said Dr Nell.

Media Release
Issued by: Lacea Loader
Assistant Director: Media Liaison
Tel: 051 401 2584
Cell: 083 645 2454
E-mail: loaderl.stg@ufs.ac.za  
8 May 2008

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