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11 July 2024 | Story André Damons | Photo supplied
From top (left to right): Dr Angélique Lewies (researcher from the Robert WM Frater Cardiovascular Research Centre within the UFS Department of Cardiothoracic Surgery), Zurika Murray (behavioural geneticist from the UFS Department of Genetics), Dr Marieka Gryzenhout (C-rated scientist and Senior Lecturer in the Department of Genetics), and Dr Jaco Wentzel (serves as the pharmaceutical industry partner and consultant for the project at FARMOVS).

In an effort to advance drug discovery and disease research, researchers from the University of the Free State (UFS), the Central University of Technology (CUT), and FARMOVS, a clinical research company associated with the UFS, is developing innovative 3D cell culture models using 3D printed mini bioreactors.

This interdisciplinary project, led by Dr Angélique Lewies, researcher from the Robert WM Frater Cardiovascular Research Centre (Frater Centre) within the UFS Department of Cardiothoracic Surgery, is creating more accurate and human-like models for this purpose, reducing the need for animal testing, and improving the safety and effectiveness of new treatments.

The project was initiated to address the challenges associated with current 3D cell culture techniques, which are often expensive and complex. Recognising the need for a more cost-effective and user-friendly solution, the researchers embarked on this collaboration to develop a novel 3D cell culture system. By making these advanced techniques more accessible, the team aims to enhance the reliability of drug testing and significantly reduce the reliance on animal experiments. This innovative approach not only promises to cut costs but also promotes ethical research practices in the scientific community.

Dr Lewies, whose research specialises in cardio-oncology (relationship between cancer treatment and heart health), particularly in understanding and preventing damage to cardiac cells caused by chemotherapy, leads the cell biology aspects of the project, focusing on the cultivation of 3D cancer spheroid and organoid cultures.

According to her, the project focuses on creating 3D cell cultures, known as spheroids and organoids, that mimic human tissues more closely. These 3D models can improve the reliability of drug testing and reduce the need for animal experiments, aligning with the 3R principles: Reduction, Replacement, and Refinement.

Creating a versatile platform

“Traditional drug discovery and disease studies often rely on flat (2D) cell cultures and animal models. While animal models are essential for understanding disease and testing drug safety, they don't always predict how humans will respond, and their use raises ethical concerns.

“We aim to develop affordable and efficient 3D-printed mini bioreactors for growing these advanced cell cultures. These bioreactors will be designed to fit into existing cell culture labs, making them accessible to researchers. By leveraging the cutting-edge 3D printing technology at CUT's Centre for Rapid Prototyping and Manufacturing (CRPM), the team hopes to create a versatile platform for various research applications,” says Dr Lewies.

She is joined in this project by UFS colleagues; Zurika Murray, a behavioural geneticist, and her colleague from the Department of Genetics, Dr Marieka Gryzenhout, a C-rated scientist and Senior Lecturer. Dr Jaco Wentzel from FARMOVS. is also involved in the project. Dr Wentzel serves as the pharmaceutical industry partner and consultant for the project. With experience in cellular biology and pharmaceuticals, he ensures that the new 3D cell culture models meet industry standards and can be effectively used in drug development. Dr Wentzel’s role is crucial in bridging the gap between academic research and practical application in the pharmaceutical industry.

Goals

According to Dr Lewies, this project aims to create more accurate and ethical models for drug testing and improving the development of new treatments. By combining expertise from engineering, biology, and mycology, the team is set to revolutionise how diseases are studied, and medicines developed. Funded by the CUT and UFS Joint Research Programme, this initiative promises to foster innovation and lead to new research collaborations.

“Cardiac cell damage, known as cardiotoxicity, can lead to serious cardiovascular diseases and is a major reason why some drugs are removed from the market. By developing 3D cancer spheroids and cardiac organoids (mini heart models), my team aims to find ways to prevent this cardiotoxicity while enhancing the effectiveness of chemotherapy drugs.

“Additionally, they are exploring the cardiotoxic effects of natural products, such as medicinal plants and mushrooms, which show potential for both anticancer and cardio-protective properties,” says Dr Lewies.

Experts

Murray is interested in how the psychedelic compounds psilocybin and psilocin affect the brain with her research focusing on the epigenome of genes within the serotonin pathway, which could explain the therapeutic potential of these compounds. “As part of this project, Murray will work with the Frater Centre to develop neuronal organoids (mini brain models) using the 3D mini-bioreactor platform.

“This will allow her to investigate the effects of psilocybin and psilocin on brain function, which have shown promise in treating mental health disorders like depression and anxiety, aiming to understand how these substances might help treat mental health issues,” says Dr Lewies.

Dr Gryzenhout brings her expertise in mycology and is responsible for cultivating medicinal mushrooms used in the project. Dr Gryzenhout's research focuses on the genetic characterisation of medicinal mushrooms and evaluating their therapeutic potential. These mushrooms produce a variety of bioactive compounds with therapeutic benefits, including anticancer activities, heart protection, and immune system support.

Her team is also approved by the South African Health Products Regulatory Authority (SAHPRA) to research the controlled psychedelic compounds psilocybin and psilocin.

Drug Discovery Goals

The project’s long-term focus is on potentially discovering new drugs to prevent and treat heart and brain diseases. Specifically, the team is working on developing therapies for cardio-oncology and neurological applications. In the realm of cardio-oncology, the goal is to find treatments that prevent cardiac cell damage and downstream cardiovascular diseases caused by cancer therapies, while still effectively targeting cancer cells. For neurological applications, the researchers are exploring the potential of drugs derived from medicinal mushrooms, including those with psychedelic properties, to treat conditions like depression, anxiety, and other mental health disorders.

News Archive

Researcher finds ways to serve justice efficiently
2016-01-07

Description: Prof Monwabisi Ralarala  Tags: Prof Monwabisi Ralarala

Prof Monwabisi Ralarala tackled the serving of justice from a linguistic viewpoint.
Photo: Supplied

In 2012, local and international media was saturated with reports of the Eugène Terre’Blanche murder trial. At the judgment, Judge John Horn read a lengthy extensive document, of which three pages were dedicated to voicing his concern about how police officers distort statements in the process of translation. Considering the fact that statements are the entry points to the criminal justice system, Prof Monwabisi Ralarala’s attention was drawn to the negative impact such distortion had insofar as the administration of justice was concerned. Of the three PhD degrees conferred by the University of the Free State (UFS) Faculty of Humanities at the 2015 Summer Graduation, one was in Language Practice with Prof Ralarala’s name on it.

Prof Ralarala’s research interests in language rights, forensic linguistics, and translation studies led him to use the Terre’Blanche trial as the basis for his second PhD case study titled: Implications and explications of police translation of complainants' sworn statements: evidence lost in translation. The doctoral dissertation focused on police stations in the Xhosa-speaking community of Khayelitsha in Cape Town.

Language and the law

When the victim of a crime approaches the South African Police Services (SAPS), the requirements are that a sworn statement be taken. However, as a prerequisite, the narration needs to be translated into English.  “The process unfolds in this manner: the complainant or the person laying the charges speaks in a language that they understand, and then the police officers translate that information into English because English is still the de facto language of record,” explained Prof Ralarala.

In the process of translation, the original narrative is lost, and so is some of the evidence. “They [the statements] have to be packaged in a certain way, in the form of a summary. As a police officer, you have to discard all the original narrative and create another narrative which is in English,” added the Associate Professor and Institutional Language Coordinator at the Cape Peninsula University of Technology.

Evidence is the basis of any court case and, when it is translated by police officers who do not hold the credentials of professional translators, a problem inevitably arises.

Because police officers are not trained in translation, “Some of the statements are filled with distortions, changing of information all together. In some cases, one would come across a case which was initially an assault but then - through the change and transformation, re-narration, retelling of the story by someone else - it becomes a case of attempted murder.”

Considering that a statement determines a suspect’s fate, it becomes all the more important to ensure that accuracy is upheld.

His internal and external supervisors, Prof Kobus Marais and Prof Russel Kaschula from the UFS and Rhodes University respectively stated that his PhD work has been hailed as a gem by international scholars. “According to one international assessor, he has made an exceptional contribution to the humanities and social sciences in general and to the fields of linguistics and translation studies in particular.”

Reshaping the landscape

According to Prof Ralarala, there are huge gaps in the translated versions of statements which create a problem when a ruling is made. Some of the recommendations put forward in his dissertation to bridge that gap are:

• to review the language policy insofar as the criminal justice system is concerned. The languages we speak are official and constitutionally embraced, and they hold the same status as English, hence they need to be used in criminal justice processes;
• to revisit the constitution and review if the provisions made for the Nguni languages are implemented;
• to supplement paper and pen with technology such as tape recorders. Statements can be revisited in cases where a controversy arises;
• to deploy professional translators and interpreters at police stations;
• to design a manual for police officers which contains all the techniques on how a statement should be taken.
• to enforce constitutional  provisions in order to reinforce the language implementation plan in as far as African languages are concerned .

These recommendations serve to undo or eliminate any perceived injustices perpetuated and institutionalised by current linguistic and formal practices in South Africa's criminal justice system.

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