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Aggressive breast cancer sets a trap for itself – and that is just where researchers intend to strike

08.28.26 | University of Helsinki
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For all its persistence as an adversary, aggressive breast cancer carries a weakness of its own making. A University of Helsinki research group has been investigating where this weakness comes from and how it can be exploited.

The key lies in a protein called MYC, one of the most intriguing molecules in all of cancer research.

“Although MYC is overactive in over 70% of all cancers, it remains among the most challenging targets in drug development,” says Research Professor Juha Klefström of the University of Helsinki.

The difficulty is that the MYC protein is hard to tackle directly. Rather than targeting the protein itself, the researchers thus focused on how it affects the energy metabolism of cancer cells.

Cancer cells set their own trap

The research group found that in cells with high concentrations of the MYC protein, the mitochondria – the powerhouses of the cell – were working harder than usual.

Unlike healthy cells, which can switch energy source, cancer cells with strong MYC protein expression were locked into dependence on a single fuel: glutamine.

“Cancer cells set a trap for themselves, and we realised that was exactly where we should strike. By combining two investigational drugs, one inhibiting energy production and the other blocking glutamine uptake, we were able to significantly slow breast cancer growth in mice,” says Researcher Johanna Anttila .

A step towards personalised treatment

Klefström stresses that while the findings mark a major leap forward in understanding the biology of MYC-driven cancers, they represent only a first step on the road to new treatments. The results are based on cell cultures and rodent experiments, and have not yet been extended to human patients.

The findings may lead to new and more personalised treatments. Since the activity of the MYC gene can be measured from a patient’s tumour sample, treatment would be offered not to all breast cancer patients, but only to those in whose tumours MYC is highly active.

“The next big step is to find not two drugs but a single drug capable of killing cancer cells that express the MYC protein. That would greatly simplify treatment. The first drug development projects aimed at this are already under way at the University of Helsinki,” says a hopeful Klefström.

Cell Reports

10.1016/j.celrep.2026.117629

Experimental study

Animals

Complex I drives glutamine-dependent TCA cycle to support viability of MYChigh breast cancer cells

28-Jul-2026

Keywords

Article Information

Contact Information

Janne Huovila
University of Helsinki
janne.huovila@helsinki.fi

Source

This article is based on a news release from University of Helsinki. BrightSurf curates and republishes science news from research institutions worldwide; the original release is linked below.

How to Cite This Article

APA:
University of Helsinki. (2026, August 28). Aggressive breast cancer sets a trap for itself – and that is just where researchers intend to strike. Brightsurf News. https://www.brightsurf.com/news/8J45ZXZL/aggressive-breast-cancer-sets-a-trap-for-itself-and-that-is-just-where-researchers-intend-to-strike.html
MLA:
"Aggressive breast cancer sets a trap for itself – and that is just where researchers intend to strike." Brightsurf News, Aug. 28 2026, https://www.brightsurf.com/news/8J45ZXZL/aggressive-breast-cancer-sets-a-trap-for-itself-and-that-is-just-where-researchers-intend-to-strike.html.