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Research

PI3K activation in neural stem cells drives tumorigenesis which can be ameliorated by targeting the cAMP response element binding protein

A novel mouse model for glioma demonstrating that the PI3K pathway is important for initiation of tumorigenesis

Research

Activation of ERBB4 in Glioblastoma Can Contribute to Increased Tumorigenicity and Influence Therapeutic Response

The functional effects of increased ERBB4 activation identify ERBB4 as a potential prognostic and therapeutic target

Research

CMV drives the expansion of highly functional memory T cells expressing NK-cell receptors in renal transplant recipients

Cytomegalovirus (CMV) is a common opportunistic infection encountered in renal transplant recipients (RTRs) and may be reactivated without symptoms at any time post-transplant.

Research

Timing of excision after a non-severe burn has a significant impact on the subsequent immune response in a murine model

Early excision of the wound, during the phase of immune down-regulation initiated by the burn, maintains an innate and adaptive immune cell response

Research

Accumulation of CD103+ CD8+ T cells in a cutaneous melanoma micrometastasis

Results support the emerging concept that CD103+ CD8+ tissue‐resident memory T cells are key mediators of cancer surveillance

Research

The dystroglycan receptor maintains glioma stem cells in the vascular niche

These findings reveal a central role of the DG receptor, not only as a structural element, but also as a critical factor promoting mesenchymal-like GBM

Research

Tissue-resident memory T cells orchestrate tumour-immune equilibrium

Our findings provide insight into the immune cell populations important for maintaining long-term tumour dormancy in peripheral tissues

Research

PI3K activation in neural stem cells drives tumorigenesis which can be ameliorated by targeting the cAMP response element binding protein

Our findings present a novel mouse model for glioma demonstrating that the PI3K pathway is important for initiation of tumorigenesis

Research

Potassium Ion Channels in Malignant Central Nervous System Cancers

Malignant central nervous system (CNS) cancers are among the most difficult to treat, with low rates of survival and a high likelihood of recurrence. This is primarily due to their location within the CNS, hindering adequate drug delivery and tumour access via surgery. Furthermore, CNS cancer cells are highly plastic, an adaptive property that enables them to bypass targeted treatment strategies and develop drug resistance.

Research

Targeting cross-presentation as a route to improve the efficiency of peptide-based cancer vaccines

Cross-presenting dendritic cells (DC) offer an attractive target for vaccination due to their unique ability to process exogenous antigens for presentation on MHC class I molecules. Recent reports have established that these DC express unique surface receptors and play a critical role in the initiation of anti-tumor immunity, opening the way for the development of vaccination strategies specifically targeting these cells.