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10/20/2025 09:00

Targeted Diet Enhances Effects of New Childhood Cancer Therapy

Kurt Bodenmüller Kommunikation
Universität Zürich

    A research team from the University of Zurich and the University Children’s Hospital Zurich has developed a new approach for treating children with malignant tumors of the nervous system. By combining an approved drug with a specialized diet, they were able to slow down tumor growth and stimulate cancer cells to mature into normal nerve cells.

    Neuroblastomas are malignant tumors of the nervous system and rank among the most common and aggressive solid tumors in children. Most affected children are younger than five years of age. Particularly in high-risk neuroblastoma, the prognosis remains poor despite intensive treatment, with only half of children being cured.

    Effects of drug boosted

    A research team led by Raphael Morscher, research group leader and attending physician at the University of Zurich (UZH) and the University Children’s Hospital Zurich, has now developed a novel therapeutic approach together with international partners. The researchers focused on a drug-diet combination with difluoromethylornithine (DFMO), a drug recently approved in Switzerland. DFMO inhibits the production of so-called polyamines, which play a key role in tumor cell growth in children. “We discovered that the effectiveness of DFMO can be more than doubled in mice when a targeted, proline- and arginine-free diet is applied under controlled conditions,” says Morscher. The diet amplifies the drug’s effects by additionally blocking the formation of polyamine precursors.

    Reprogramming cancer cells

    Rather than destroying the cancer cells, the treatment drives them to mature. This puts a stop to the tumor’s unrestrained cell division, and the cells begin to transform into more mature nerve cells – a natural process that is blocked in neuroblastoma.

    “The treatment not only slows down tumor growth but also brings about a functional change in the cancer cells,” says Morscher, describing the new therapeutic approach. In the pre-clinical mouse models, the tumors grew significantly more slowly or even regressed – and the treatment was well tolerated. It targets protein production in cancer cells by preventing specific genetic blueprints from being correctly read and translated. This changes the cells’ function and promotes the maturation of the cancer cells.

    Enzyme replaces diet

    Raphael Morscher’s research team is now collaborating with international partners at the Children’s Hospital of Philadelphia and Princeton University to prepare the therapy for clinical application. “To bring this innovative approach into clinical trials, we are using an enzyme that replaces the diet in children. Our goal is to offer affected children a new and gentler treatment option in the future,” says Morscher.

    Nutrition as a therapeutic approach in cancer medicine

    The role of nutrition in cancer treatment is gaining increasing scientific attention. Tumor cells display distinct metabolic characteristics that set them apart from healthy cells. These differences can be exploited to influence disease progression through nutritional changes or metabolic drugs. Recent studies show that restricting certain nutrients – such as amino acids – can slow down tumor growth and amplify the effects of drugs.


    Contact for scientific information:

    Dr. med. Dr. Raphael J. Morscher
    Department for Pediatric Oncology, Hematology, Immunology and Stem Cell
    University Children’s Hospital / University of Zurich
    +41 44 249 6584
    raphael.morscher@kispi.uzh.ch


    Original publication:

    Cherkaoui et al. Reprogramming neuroblastoma by diet-enhanced polyamine depletion. Nature. 24 September 2025. DOI: https://www.nature.com/articles/s41586-025-09564-0.


    More information:

    https://www.news.uzh.ch/en/articles/media/2025/childhood-cancer-therapy.html


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    Criteria of this press release:
    Journalists, Scientists and scholars
    Biology, Medicine, Nutrition / healthcare / nursing
    transregional, national
    Research results, Scientific Publications
    English


     

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