QUT offers a diverse range of student topics for Honours, Masters and PhD study. Search to find a topic that interests you or propose your own research topic to a prospective QUT supervisor. You may also ask a prospective supervisor to help you identify or refine a research topic.
Found 3 matching student topics
Displaying 1–3 of 3 results
Automation-enabled microphysiological systems for multicellular oncology NAMs
New approach methodologies (NAMs), including microphysiological systems (MPS), are transforming preclinical cancer research by providing human-relevant alternatives to conventional preclinical models. However, increasing the biological complexity of these models also creates major challenges in reproducibility, scalability and experimental throughput.Oncology provides a compelling application for addressing these challenges. Tumours are complex tissues in which cancer cells interact dynamically with extracellular matrix, immune cells, vascular cells and other components of the tumour microenvironment. Reproducing these interactions in vitro requires technologies that can …
- Study level
- PhD
- Faculty
- Faculty of Health
- School
- School of Biomedical Sciences
- Research centre(s)
- Centre for Biomedical Technologies
Novel therapeutic strategies to treat advanced colorectal cancer
Colorectal cancer is a very common disease, with over 15,000 new cases diagnosed in Australia annually. Metastatic colorectal cancer describes advanced disease that has spread beyond the primary site. This is very aggressive and incurable in the vast majority of these patients. To improve outcomes for colorectal cancer, we are using cutting edge genomic and cell biology techniques to understand disease heterogeneity and optimise drug response. We are developing novel therapeutic interventions based on unique molecular signatures and are testing …
- Study level
- Master of Philosophy, Honours
- Faculty
- Faculty of Health
- School
- School of Biomedical Sciences
Investigating immunosuppression downstream of activated FGFR2 in endometrial cancer
FGFR2 encodes two alternatively spliced isoforms that differ in their ligand binding domain and the combination of tissue specific expression of these isoforms and tissue specific expression of the FGF ligands is the foundation of normal paracrine signalling. Isoform switching from FGFR2b (inclusion of exon 8) to FGFR2c (inclusion of exon 9) occurs in tumorigenesis as it establishes an autocrine loop in epithelial cancer cells. Our lab has reported that FGFR2 activation by mutations or isoform switching is associated with …
- Study level
- PhD
- Faculty
- Faculty of Health
- School
- School of Biomedical Sciences
Contact us
If you have questions about the best options for you, the application process, your research topic, finding a supervisor or anything else, get in touch with us today.