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PhD studentship: Unmasking mechanisms of resistance to KRAS inhibition across pancreatic cancer genetic profiles

Closes:

671

Supervisor: Dr Giulia Biffi
Department/location: Cancer Research UK Cambridge Institute
Deadline for application: 16th October 2026
Course start date: 1st October 2027

Project details

For further information about the research group, including their most recent publications, please visit their website at https://biffilab.wordpress.com

Pancreatic ductal adenocarcinoma (PDAC) remains a formidable clinical challenge. A major recent advance has been the development of KRAS inhibitors, which have shown considerable promise in clinical trials (1). For decades, KRAS was considered undruggable; however, these new inhibitors represent a potential turning point for patients with PDAC. Despite this progress, rapid therapy resistance has already been observed in both patients and pre-clinical mouse models, highlighting the urgent need to define the mechanisms that drive resistance and to identify rational combination therapies.

In our laboratory, we have established and validated a panel of genetically heterogeneous PDAC models. These studies have shown that malignant-cell genetics shape distinct, therapeutically actionable vulnerabilities through both cell-intrinsic programmes and changes in the surrounding tumour microenvironment [(2) and unpublished]. These observations create an important opportunity: we hypothesise that malignant–stromal crosstalk within defined genetic contexts drives distinct mechanisms of resistance to KRAS inhibition. In support of this, our work indicates that cancer-associated fibroblasts play diverse roles in PDAC progression and activate pathways that may contribute to therapy resistance (3, 4). This PhD project will therefore identify malignant cell-intrinsic and malignant cell-extrinsic mechanisms of resistance to KRAS inhibition, including fibroblast-mediated mechanisms, across genetically distinct PDACs. We will prioritise PDAC genotypes for which we already have preliminary data suggesting candidate mechanisms of resistance.

The project will combine complementary models and techniques, including co-transplantation of organoids in mouse models, in vivo CRISPR, single-cell RNA sequencing, flow cytometry, multiplex immunofluorescence, spatial transcriptomics, and standard molecular biology approaches. A computational component may also be available, depending on the skills and interests of the student. Together, these strategies will define how intra-tumour genetic heterogeneity influences response and resistance to KRAS inhibition, complementing ongoing studies in the laboratory investigating inter-tumour genetic heterogeneity.

References/further reading

  • Daraxonrasib or Chemotherapy in Previously Treated Metastatic Pancreatic Cancer. N Engl J Med. 2026. (PMID: 42223072)
  • SMAD4 and KRAS status shape malignant-stromal crosstalk in pancreatic cancer. Cancer Res. 2025. (PMID: 39841099)
  • EGFR-activated myofibroblasts promote metastasis of pancreatic cancer. Cancer Cell. 2024. (PMID: 38157863)
  • Functional heterogeneity of fibroblasts in primary tumours and metastases. Trends in Cancer. 2024. (PMID: 39674792)

Preferred skills/knowledge

We are looking for a motivated student who is excited by this project, enthusiastic about joining a collaborative and hard-working laboratory, and committed to the complementary experimental strategies required for its successful completion. As this project will rely heavily on mouse models, willingness to work with mouse models throughout the PhD is essential. Prior experience in a laboratory or industry research environment is required. Experience with tissue culture, including cell lines and/or organoids, common laboratory techniques such as immunohistochemistry, western blotting and/or PCR, and work with mouse models would be viewed favourably. Prior experience or knowledge of pancreatic cancer or cancer biology would also be advantageous.

Eligibility

We welcome applications from both UK and overseas students.

How to apply

Please apply via the University Applicant Portal at https://www.postgraduate.study.cam.ac.uk/courses/directory/cvcrpdmsc

You should select to commence study in October 2027.

Please quote reference SW51012 on your application and in any correspondence about this vacancy.

The University actively supports equality, diversity and inclusion and encourages applications from all sections of society.

The University has a responsibility to ensure that all employees are eligible to live and work in the UK.

Key information

Department/location: Cancer Research UK Cambridge Institute
Reference: SW51012
Category: Studentships
Date published: 9 September 2026
Closing date: 16 October 2026

Job details

Title
PhD studentship: Unmasking mechanisms of resistance to KRAS inhibition across pancreatic cancer genetic profiles
Employer
University of Cambridge
Location
Cambridge, UK
Published
Sep 9, 2026
Closes:
Oct 16, 2026
Job type
Full time, Student / Phd Jobs
Field
Postgrad Student Opportunity

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Frequently Asked Questions

🎓What are the eligibility and experience requirements for this PhD studentship?

Applicants should be motivated students with prior laboratory or industry research experience. The project relies heavily on mouse models, so willingness to work with them is essential. Experience in tissue culture (cell lines and/or organoids), immunohistochemistry, western blotting, and PCR is viewed favourably. Knowledge of pancreatic cancer or cancer biology is advantageous. Both UK and overseas students are welcome to apply. For help presenting your lab experience, see how to write a winning academic CV.

🔬What is the research focus of this PhD project?

The project aims to unmask mechanisms of resistance to KRAS inhibition across genetically distinct pancreatic ductal adenocarcinoma (PDAC) models. It will examine malignant cell-intrinsic and malignant cell-extrinsic resistance, including cancer-associated fibroblast-mediated mechanisms, and test rational combination therapies. Related research includes landmark RAS inhibitor trial success in pancreatic cancer and Daraxonrasib doubles pancreatic cancer survival in Phase 3 trial.

🧫What techniques and models will I use during the PhD?

You will combine co-transplantation of organoids in mouse models, in vivo CRISPR, single-cell RNA sequencing, flow cytometry, multiplex immunofluorescence, spatial transcriptomics, and standard molecular biology approaches. A computational component may also be available depending on your skills and interests. This multi-modal training will support research into therapy resistance and tumour microenvironment interactions.

📝How do I apply and what is the deadline?

Apply via the University Applicant Portal for the PhD in Medical Science at the Cancer Research UK Cambridge Institute. Select October 2027 as the start date and quote reference SW51012. The application deadline is 16 October 2026. For help with your application, see how to write a winning academic CV and landmark RAS inhibitor trial success in pancreatic cancer.

🌍Can international students apply and is visa sponsorship available?

Yes, the project welcomes applications from both UK and overseas students. The University of Cambridge will need to ensure you meet UK right-to-work/study eligibility; successful international applicants typically apply for a Student visa. The listing does not specify a separate visa sponsorship award, so contact the department if you need confirmation about international funding and visa support.

🏛️Where is the lab based and who supervises the project?

The project is based at the Cancer Research UK Cambridge Institute, University of Cambridge. The supervisor is Dr Giulia Biffi, whose group studies tumour microenvironment and fibroblast heterogeneity in pancreatic cancer. You can explore related roles at research jobs and higher education jobs.

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