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20 August 2018 Photo Barend Nagel
WomenOfKovsies Dr Hoppener research affects access of rural youth to university
Dr Mikateko Höppener is also the author of a book titled, Engineering Education for Sustainable Development: A Capabilities Approach, which is based on her PhD research.

Since September 2016, Dr Mikateko Höppener and a team of researchers have been engaged in a four-year long investigation of the multidimensional factors and dynamics that influence low-income learners’ opportunities to access, participate, and succeed in higher education.

Dr Höppener is a Senior Researcher at the university, working under the leadership of Prof Melanie Walker, South African Research Chairs Initiative (SARChI) Chair and Director of the Higher Education and Human Development Research Programme.

Women in academia

Dr Höppener is part of a team comprised of women whom she constantly learns from and who inspire appreciation.. “I am filled with gratitude for being in the position I am in as a young woman. I have the privilege of working with a team of very inspirational, motivating and encouraging women. The Miratho Project is led by a woman and the rest of the team members are also women,” she says.

Access to higher education
The Miratho Project is undertaken in collaboration with Thusanani Foundation, a youth-led, nonprofit organisation. It is funded by the Economic and Social Research Council, and the UK’s Department for International Development. Rural and township learners from low-income backgrounds are the subject of this multimethod, longitudinal study which tracks their progress into higher education and through to employment.

Among its key objectives, Miratho aims to develop a multidimensional learning outcomes index as an instrument of public debate and guiding government policy. As such it contributes to transforming and decolonising higher education.  

News Archive

Collaboration between UFS and Mayo Clinic to revolutionise cancer treatment
2014-06-27



Attending the lecture were, from the left: Dr Chantel Swart, Prof Lodewyk Kock, Prof Debabrata Mukhopadhyay, Prof James du Preez; back: Prof Pieter van Wyk.
Dr Swart, Profs Kock and Du Preez are from the Department of Microbial, Biochemical and Food Biotechnology. Prof Mukhopadhyay is from the Mayo Clinic (US) and Prof Van Wyk is from the Centre for Microscopy at the UFS.
Photo: Supplied
The UFS made a discovery that may have enormous implications for the treatment of diseases in humans.

Since the discovery, the UFS joined forces with the Mayo Clinic in Rochester, US, in the fight against cancer.

In this collective effort, UFS researchers would be able to assist the Mayo team to:
• see how treatment in cancer patients is progressing,
• target treatments more effectively,
• reduce dosages in order to make treatment gentler on the patient,
• track the effectiveness of the chemotherapy drugs used, and
• gain an accurate view of how the cancer is being eliminated.

Prof Lodewyk Kock, Outstanding Professor at the Department of Microbial, Biochemical and Food Biotechnology, and his team incidentally created a technique to use argon gas particles for the first time on biological material to slice open cells to look inside.

The team that supported Prof Kock includes Dr Chantel Swart, Khumisho Dithebe (PhD student), Prof Hendrik Swart (Department of Physics) and Prof Pieter van Wyk (Centre for Microscopy).

Prof Debabrata Mukhopadhyay from the Mayo Clinic in Rochester, US, got to hear about this breakthrough at the UFS and a collaboration between the two institutions was established.

During a visit to the Bloemfontein Campus, Prof Mukhopadhyay explained novel techniques that make use of gold nanoparticles. These particles attach to chemotherapeutic drugs to selectively target cancer cells – dramatically decreasing the side effects to normal human cells.

For these new drugs (coupled to gold nanoparticles) to be accepted into clinical practice, visual and chemical proof is needed, though. This is where the technique developed by the UFS will play a vital role.

With the technique to look inside cells, the composition, location and metabolism of these drugs can be determined. This will aid in a proof of concept for the application of the nano-drugs. Furthermore, it will enable approval for use of these drugs in clinical trials and eventually could revolutionise cancer treatment as a whole.

For video lectures on the technique used, as well as its findings, follow these links:

1. http://vimeo.com/63643628 (Comic version for school kids)

2. http://vimeo.com/61521401 (Detailed version for fellow scientists)

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