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Doctorat Actif Anglais
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Détails de l’opportunité

PhD candidate 'Modulating the tumor microenvironment to enhance radiosensitivity'

Salaire
EUR 3,217 - 4,077 per month
Date limite de candidature
October 4, 2026
Type de poste
Doctorat
Département
Radiation Oncology
Date de publication
September 7, 2026
Domaine de recherche
Medicine
Les détails de la source peuvent être limités

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Résumé Explicify

Résumé de l'offre

Radboud University Medical Center in Nijmegen is recruiting a PhD candidate to study how the tumor microenvironment (TME) can be modulated to improve radiosensitivity. The project combines patient‑derived and in‑vivo tumour models to investigate TME features such as hypoxia, senescence and cancer‑associated fibroblasts, using preclinical approaches including hypoxia modulation, senescent‑cell targeting, image‑guided radiotherapy and immune checkpoint inhibition. Outcomes will be measured by DNA damage, tumour growth and TME characterisation. The role offers a €3,217–€4,077 monthly salary, 36 working hours per week, and requires an MSc in biomedical sciences or related field, with experience in molecular biology, tumour biology or preclinical animal work. A Certificate of Conduct (VOG) is mandatory.

Généré à partir du contenu enregistré de l'offre. Vérifiez toujours les détails dans l'annonce officielle.

Description du projet

Job description

The tumor microenvironment (TME) plays an important role in determining how tumors respond to radiotherapy. Features such as stromal composition, hypoxia, and cellular senescence can contribute to radioresistance and may therefore represent potential therapeutic targets.

In this PhD project, you will investigate how modulation of the TME can enhance the response to radiotherapy. The project will combine patient-derived models and in vivo tumor models to study how different TME characteristics contribute to treatment response and to explore potential strategies to target these mechanisms. A range of complementary preclinical approaches is used, including hypoxia modulation, targeting of senescent cells or cancer associated fibroblasts (CAFs), (image-guided) radiotherapy and immune checkpoint inhibition. Treatment response and underlying mechanisms will be assessed through readouts such as DNA damage and repair, tumor growth and characterization of the TME. The precise experimental approaches will be guided by the scientific findings and direction of the project.

Place of work

At the Radiotherapy & OncoImmunology (ROI) lab of the department of Radiation oncology, ~ 20 researchers aim at better understanding how tumor cells interact with the surrounding tumor microenvironment (TME), and how these interactions influence response to cancer treatment, with a particular focus on radiotherapy.

Research is centred around the complex interplay between tumor cells, cancer-associated fibroblasts (CAFs), immune cells and other components of the TME. We aim to identify and therapeutically target TME features that contribute to treatment resistance, and to develop strategies that enhance the efficacy of radiotherapy. Our work combines imaging, molecular, cellular and immunological approaches, ranging from mechanistic studies to preclinical in vivo models.

The ROI lab is located within the department of Radiation Oncology, allowing for frequent interaction between basic and translational research and clinical practice. This provides an excellent environment for translating mechanistic insights into novel therapeutic strategies.

Profile

Requirements

  • An MSc degree in Biomedical Sciences, Biology, Cancer Biology, or a related field, or an equivalent degree,
  • A strong interest in preclinical cancer research,
  • Motivated to investigate biological mechanisms underlying treatment response,
  • Curious, enthusiastic about experimental science, and enjoy working in an interdisciplinary research environment.

Experience with molecular and cellular biology, tumor biology, radiobiology or immunology is an advantage. Experience with preclinical animal models is welcome, and candidates holding an Article 9 certificate for working with experimental animals are especially encouraged to apply.

Good to know

  • This position requires a Certificate of Conduct (VOG).

We are recruiting for this position ourselves. Unsolicited marketing is not appreciated, but do feel free to share the vacancy in your network!


Contact académique

Radiation Oncology
Last Update Radboud University Medical Center (Radboudumc) careersatradboudumc.com
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