Targeted Molecular Therapies And Predictive Biomarkers In A Novel Orthotopic Xenograft Model Of Oesophageal Carcinoma
Funder
National Health and Medical Research Council
Funding Amount
$120,253.00
Summary
Oesophageal cancer is the most rapidly increasing malignancy in Western society. This disease often presents in advanced stages with poor response to established medical and surgical therapies. Our aim is to develop a novel mouse model of oesophageal cancer, allowing us to tailor cancer-inhibiting molecular treatments to individual patients by predicting therapeutic success or resistance with the use of cellular markers identified in our animal mode.
Understanding Intrinsic And Acquired Resistance To Anti-FGFR Therapies
Funder
National Health and Medical Research Council
Funding Amount
$797,051.00
Summary
In vitro and in vivo preclinical data suggests that inhibition of FGFR in endometrial cancer patients may be a viable therapeutic approach. Data from other cancers suggests that despite remarkable initial responses to kinase inhibitors, cancer cells eventually develop resistance. This project aims to identify and characterize the mechanisms of resistance that emerge following FGFR inhibition in order to design combination therapies that may delay and/or prevent the emergence of resistance.
Therapeutic Targeting Of MYCN Oncoprotein Stability In Neuroblastoma
Funder
National Health and Medical Research Council
Funding Amount
$590,206.00
Summary
A high level of MYCN protein is a major indicator of aggressive neuroblastoma (NB) but unfortunately there have been many barriers to the design of targeted therapies. We have identified a protein called PA2G4 which is a cofactor for MYCN in promoting cancer cell growth. We have developed a compound which inhibits PA2G4 and MYCN protein levels and reduces tumour growth. We will examine how PA2G4 cause aggressive tumour characteristics and test new methods to block PA2G4.
Immunotherapy has recently shown promise in bone cancer. We have found that while immune modulators Il-6 and Ifn?? contribute to tumour suppression Il-23 promotes the growth of radiation-induced bone cancer. We have generated mouse models of bone cancer to investigate tumour growth and immune surveillance in immune competent mice with an overall aim of identifying therapeutic targets in this disease.
The critical role of the class III histone deacetylase SIRT2 in stabilizing N-Myc oncoprotein. Cancer is the commonest cause of death from disease in children. Neuroblastoma is the commonest solid tumor in early childhood. This project will investigate the critical roles of SIRT2 protein in increasing the expression of N-Myc oncoprotein and consequently inducing neuroblastoma, and SIRT2 inhibitors as anticancer agents.
Mitochondrially targeted anti-cancer drugs modulate the mitochondrial genome. Successful cancer management requires novel therapeutical approaches. This project will test the effect of a new class of compounds that target mitochondria, the powerhouse of the cells, where they suppress expression of mitochondrial genes. By this mechanism, cancers that are resistant to apoptosis induction can be inhibited.
Towards Better Treatments For Acral Melanoma Through Functional Genomics
Funder
National Health and Medical Research Council
Funding Amount
$1,456,823.00
Summary
Acral melanoma is an uncommon melanoma subtype with bad prognosis that has been poorly characterised at the molecular level. The project will conduct comprehensive analysis of acral melanoma at the DNA, RNA and protein levels. Through subsequent functional follow-up studies of key drivers of this cancer type we will identify novel drug targets to treat this disease.
Optimising Targeted Polyamine Depletion For Treatment Of Childhood Neuroblastoma And Brain Tumours
Funder
National Health and Medical Research Council
Funding Amount
$928,152.00
Summary
Paediatric neuroblastoma and brain tumours, which often have dismal outcomes despite intensive therapy, have high levels of polyamines, which are essential for cell growth. We have shown that depleting polyamines, combined with chemotherapy, represents a highly promising therapy for neuroblastoma. We will make this exciting new treatment approach even more effective by comparing three ways of enhancing polyamine depletion, as a precursor to future neuroblastoma and brain tumour clinical trials.
Development Of Follistatin As Novel Cancer Therapeutic
Funder
National Health and Medical Research Council
Funding Amount
$494,324.00
Summary
In this project, we aim to rapidly commercialise our discovery that Follistatin, an endogenous hormone, can dramatically improve the efficacy of platinum-based chemotherapy in lung cancer.
The FGFR Family As Drivers And Biomarkers Of Regorafenib Response In Gastric Cancer.
Funder
National Health and Medical Research Council
Funding Amount
$670,784.00
Summary
The drug regorafenib has recently emerged as a potential new treatment for patients with gastric (stomach) cancer. We have discovered that gastric cancer cell lines which express high levels of members of the FGFR family are highly sensitive to this drug. This project will define the potential of targeting the FGFR family in gastric cancer,the value of FGFR1-4 as markers of regorafenib response, and develop strategies for enhancing regorafenib activity in this difficult to treat disease.