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New strategy for treating cancer

Using a strategy based on treating cancer cells that carry a specific genetic signature – hyper-expression of the protein Myc – with therapy that affects the stability of the cell’s DNA, more effective results can be achieved. This was discovered by Andreas Höglund in his dissertation to be publicly defended at Umeå University on September 9.

Today cancer is a public health disease that statistically afflicts every third Swede some time during their lifetimes. Although certain external factors such as smoking, obesity, and exaggerated sunbathing increase the risk of cancer, everyone can develop this disease, regardless of these factors. This is because during our lifetime we gather mutations in our genes that govern how the body’s cells grow and multiply. Sometimes these mutations affect important cellular programmes, entailing that a cell somewhere in the body receives a growth advantage that makes it grow and multiply until a tumour has been formed.

In his dissertation, Andreas Höglund shows that cancer cells that carry a specific genetic defect are extra susceptible to treatment that damages the cells’ DNA.

"Cancer cells that express the protein Myc at unnaturally high levels are extra sensitive to these types of treatment," says Andreas Höglund.

Myc is a vital protein in the body that governs the reading of thousands of genes. Myc does not cause cancer until mutations lead to abnormally high levels of this protein, and further defense mechanisms are knocked out. Defective expression of Myc is one of the most common causes of cancer.

In the dissertation studies Andreas Höglund also maps signaling paths that govern the cell’s ability to recognise and repair damaged DNA. In collaboration with pharmaceutical companies, small chemical compounds have been tested in the hope of being able to develop these beyond a preclinical setting. By steering the binding of these compounds to precisely those signal paths that govern the cell’s ability to recognise and repair DNA damage, it was possible to neutralize the cancer cells.

"Directing treatment toward the signal paths we have identified is highly appropriate for cancer cells with high Myc levels. The hope is to be able to use the Myc signature in a number of cancer diseases in order to attain more specific treatment, which also has the potential of reducing side effects in comparison with current treatment methods," says Andreas Höglund.

Andreas Höglund was born and raised in Härnösand, where he majored in science in high school, graduating in 1999. In 2001 he started the master’s programme in biotechnology at Umeå University, finishing in 2006.

About the public defence

On Friday, September 9, Andreas Höglund, Department of Molecular Biology, Umeå University, will publicly defend his dissertation titled: Regulation of DNA damage responses by the MYC oncogene – Implications for future anti-cancer therapies.

The external examiner is Professor Thomas Helleday, Department of Genetics, Microbiology, and Toxicology, Stockholm University, Stockholm, Sweden and Gray Institute for Radiation and Biology, Oxford University, UK.

Read the entire or parts of the dissertation at:

http://urn.kb.se/resolve?urn=urn:nbn:se:umu:diva-44284

For further information, please contact:

Andreas Höglund, Department of Molecular Biology
Mobile phone: +46 (0)70-264 44 94
E-mail: andreas.hoglund@molbiol.umu.se

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Umeå University

Umeå University is one of Sweden's largest universities with over 37,000 students and 4,300 employees. The university is home to a wide range of education programmes and world-class research in a number of fields. Umeå University was also where the gene-editing tool CRISPR-Cas9 was discovered – a revolution in gene-technology that was awarded the 2020 Nobel Prize in Chemistry.

Founded in 1965, Umeå University is characterised by tradition and stability as well as innovation and change. Education and research on a high international level contributes to new knowledge of global importance, inspired, among other things, by the 2030 Agenda for Sustainable Development. The university houses creative and innovative people that take on societal challenges. Through long-term collaboration with organisations, trade and industry, and other universities, Umeå University continues to develop northern Sweden as a knowledge region.

The international atmosphere at the university and its unified campus encourages academic meetings, an exchange of ideas and interdisciplinary co-operation. The cohesive environment enables a strong sense of community and a dynamic and open culture in which students and staff rejoice in the success of others.

Campus Umeå and Umeå Arts Campus are only a stone's throw away from Umeå town centre and are situated next to one of Sweden's largest and most well-renowned university hospitals. The university also has campuses in the neighbouring towns Skellefteå and Örnsköldsvik.

At Umeå University, you will also find the highly-ranked Umeå Institute of Design, the environmentally certified Umeå School of Business, Economics and Statistics and the only architectural school with an artistic orientation – Umeå School of Architecture. The university also hosts a contemporary art museum Bildmuseet and Umeå's science centre – Curiosum. Umeå University is one of Sweden's five national sports universities and hosts an internationally recognised Arctic Research Centre.