Targeting the biological clock could slow the progression of cancer

Cancer cells
Electron microscopic image of a single human lymphocyte. Credit: Dr. Triche National Cancer Institute

Does the biological clock in cancer cells influence tumour growth? Yes, according to a study conducted by Nicolas Cermakian, a professor in McGill University's Department of Psychiatry.

Published in the journal BMC Biology, these results show for the first time that directly targeting the biological clock in a has an impact on its development.

Most of the cells in the human body have an that sets a rhythm for the activities of our organs according to the time of the day. Cancer cells, however, often have a non-functioning or malfunctioning clock.

"There were indications suggesting that the malfunctioning clock contributed to rapid tumour growth, but this had never been demonstrated. Thanks to the use of a chemical or a thermic treatment, we succeeded in 'repairing' these cells' clock and restoring it to its normal functioning. In these conditions, tumour growth drops nearly in half", explains Cermakian, who is also Director of the Laboratory of Molecular Chronobiology at the Douglas Mental Health University Institute, one of the research centres of the CIUSSS de l'Ouest-de-l'Île-de-Montréal.

Although this preclinical demonstration was done on mice, this important discovery provides a glimpse of potential new ways to treat cancer in humans.

"Activating the in tumours could become an innovative approach in slowing their growth or that of metastases. This would give people more time to use more conventional treatment modalities, such as surgery or chemotherapy", says Cermakian. It now remains to be shown that we can target the clocks in human tumours the same way."

Of mice and men

For this study, Silke Kiessling, a postdoctoral fellow on Nicolas Cermakian's team, successfully adjusted the gears of the internal clocks in two types of -skin and colon- to make them function properly. This repair, which was tested in mice and tissue cultures, slowed cancerous . After about a week, the tumour treated in this manner was two-thirds smaller than the control tumour.

While it is difficult to say at this point what types of cancer might be amenable to such an approach, this new concept could lead to an improvement in human cancer treatment in the long term, the researchers say.

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More information: Silke Kiessling et al. Enhancing circadian clock function in cancer cells inhibits tumor growth, BMC Biology (2017). DOI: 10.1186/s12915-017-0349-7
Journal information: BMC Biology

Provided by McGill University
Citation: Targeting the biological clock could slow the progression of cancer (2017, February 16) retrieved 27 November 2021 from
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