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16 November 2020 | Story Dr Nitha Ramnath

In this webinar, Prof Brownhilder Neneh of the University of the Free State, and Christopher Rothmann, co-founder of LiquidCulture, discuss the intersection between the two fields of science and entrepreneurship, and entrepreneurship and the university curriculum from an interdisciplinary perspective. The webinar will provide insight into entrepreneurship at universities, particularly the UFS, advancing entrepreneurship development and entrepreneurship-related programmes that are student focused, and illustrate the critical role that entrepreneurship plays in the lives of students.

This webinar is part of a series of three webinars on Interdisciplinarity that is presented from November to December 2020 via Microsoft Teams for a duration of 45 minutes each. The webinar topics in the series explore the intersection between Neuroscience and Music, between Science and Entrepreneurship, and between Science and Visual Arts.  

Date: Tuesday 24 November 2020
Topic: The intersection between science and entrepreneurship 
Time: 13:00-13:45 (SAST)
RSVP: Alicia Pienaar, pienaaran1@ufs.ac.za by 23 November 2020 
Platform: Microsoft Teams

Introduction and welcome

Prof Corli Witthuhn 
Vice-Rector: Research at the University of the Free State 


Presenters

Prof Brownhilder Neneh 

Prof Neneh is Associate Professor and Academic Chair (HOD) in the Department of Business Management at the University of the Free State.  She is an NRF-rated researcher in the field of entrepreneurship and small business development. Her research is primarily based in the field of entrepreneurship, where she looks at different aspects of a business venture – from business gestation activities to performance, growth, and exit.  She also focuses on some niche areas in entrepreneurship, such as women and student entrepreneurship. She was a 2019 winner of the Emerald Literati Awards in the category Outstanding and Highly Commended papers. 

Christopher Rothmann – Co-founder of LiquidCulture

Liquid Culture (LC) was started by Christopher Rothmann and Dr Errol Cason in the UFS Department of Microbial, Biochemical and Food Biotechnology in 2018. They produce yeast in its purest liquid form. LC is the only company in Africa to do so. Their yeast is mainly used by breweries for the fermentation of beer and they have since also branched out to the baking and distillery industries. Christopher was awarded the joint runner-up position in the Existing Tech Business category of the 2019 Entrepreneurship Intervarsity.

News Archive

Nanotechnology breakthrough at UFS
2010-08-19

 Ph.D students, Chantel Swart and Ntsoaki Leeuw


Scientists at the University of the Free State (UFS) made an important breakthrough in the use of nanotechnology in medical and biological research. The UFS team’s research has been accepted for publication by the internationally accredited Canadian Journal of Microbiology.

The UFS study dissected yeast cells exposed to over-used cooking oil by peeling microscopically thin layers off the yeast cells through the use of nanotechnology.

The yeast cells were enlarged thousands of times to study what was going on inside the cells, whilst at the same time establishing the chemical elements the cells are composed of. This was done by making microscopically small surgical incisions into the cell walls.

This groundbreaking research opens up a host of new uses for nanotechnology, as it was the first study ever in which biological cells were surgically manipulated and at the same time elemental analysis performed through nanotechnology. According to Prof. Lodewyk Kock, head of the Division Lipid Biotechnology at the UFS, the study has far reaching implications for biological and medical research.

The research was the result of collaboration between the Department of Microbial, Biochemical and Food Biotechnology, the Department of Physics (under the leadership of Prof. Hendrik Swart) and the Centre for Microscopy (under the leadership of Prof.Pieter van Wyk).

Two Ph.D. students, Chantel Swart and Ntsoaki Leeuw, overseen by professors Kock and Van Wyk, managed to successfully prepare yeast that was exposed to over-used cooking oil (used for deep frying of food) for this first ever method of nanotechnological research.

According to Prof. Kock, a single yeast cell is approximately 5 micrometres long. “A micrometre is one millionth of a metre – in laymen’s terms, even less than the diameter of a single hair – and completely invisible to the human eye.”

Through the use of nanotechnology, the chemical composition of the surface of the yeast cells could be established by making a surgical incision into the surface. The cells could be peeled off in layers of approximately three (3) nanometres at a time to establish the effect of the oil on the yeast cell’s composition. A nanometre is one thousandth of a micrometre.

Each cell was enlarged by between 40 000 and 50 000 times. This was done by using the Department of Physics’ PHI700 Scanning Auger Nanoprobe linked to a Scanning Electron Microscope and Argon-etching. Under the guidance of Prof. Swart, Mss. Swart en Leeuw could dissect the surfaces of yeast cells exposed to over-used cooking oil. 

The study noted wart like outgrowths - some only a few nanometres in diameter – on the cell surfaces. Research concluded that these outgrowths were caused by the oil. The exposure to the oil also drastically hampered the growth of the yeast cells. (See figure 1)  

Researchers worldwide have warned about the over-usage of cooking oil for deep frying of food, as it can be linked to the cause of diseases like cancer. The over-usage of cooking oil in the preparation of food is therefore strictly regulated by laws worldwide.

The UFS-research doesn’t only show that over-used cooking oil is harmful to micro-organisms like yeast, but also suggests how nanotechnology can be used in biological and medical research on, amongst others, cancer cells.

 

Figure 1. Yeast cells exposed to over-used cooking oil. Wart like protuberances/ outgrowths (WP) is clearly visible on the surfaces of the elongated yeast cells. With the use of nanotechnology, it is possible to peel off the warts – some with a diameter of only a few nanometres – in layers only a few nanometres thick. At the same time, the 3D-structure of the warts as well as its chemical composition can be established.  

Media Release
Issued by: Mangaliso Radebe
Assistant Director: Media Liaison
Tel: 051 401 2828
Cell: 078 460 3320
E-mail: radebemt@ufs.ac.za  
18 August 2010
 

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