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Published on: March 6, 2018
Targeting death receptors in bladder, prostate and renal cancer
Hugh F O'Kane1, Chris J Watson, Samuel R Johnston
1Uro-oncology Group, Queen's University Belfast, Belfast, United Kingdom. hugh_o_kane@hotmail.com
Purpose:
We describe key components of normal and aberrant death receptor pathways, the association of these abnormalities with tumorigenesis in bladder, prostate and renal cancer, and their potential application in novel therapeutic strategies targeted toward patients with cancer.
Materials And Methods:
A MEDLINE literature search of the key words death receptors, TRAIL (tumor necrosis factor related apoptosis inducing ligand), FAS, bladder, prostate, renal and cancer was done to obtain information for review. A brief overview of the TRAIL and FAS death receptor pathways, and their relationship to apoptosis is described. Mechanisms that lead to nonfunction of these pathways and how they may contribute to tumorigenesis are linked. Current efforts to target death receptor pathways as a therapeutic strategy are highlighted.
Results:
Activation of tumor cell expressing death receptors by cytotoxic immune cells is the main mechanism by which the immune system eliminates malignant cells. Death receptor triggering induces a caspase cascade, leading to tumor cell apoptosis. Receptor gene mutation or hypermethylation, decoy receptor or splice variant over expression, and downstream inhibitor interference are examples of the ways that normal pathway functioning is lost in cancers of the bladder and prostate. Targeting death receptors directly through synthetic ligand administration and blocking downstream inhibitor molecules with siRNA or antisense oligonucleotides represent novel therapeutic strategies under development.
Conclusions:
Research into the death receptor pathways has demonstrated the key role that pathway aberrations have in the initiation and progression of malignancies of the bladder, prostate and kidney. This new understanding has resulted in exciting approaches to restore the functionality of these pathways as a novel therapeutic strategy.
Insights
Aberrant death receptor pathways are linked to bladder, prostate, and kidney cancers. Restoring these pathways offers a novel therapeutic strategy for cancer patients.
Area of Science:
- Oncology
- Molecular Biology
- Immunology
Background:
- Death receptor pathways are crucial for immune-mediated tumor elimination.
- Dysregulation of these pathways contributes to tumorigenesis in various cancers.
- Apoptosis induction is a key outcome of death receptor activation.
Purpose of the Study:
- To outline normal and aberrant death receptor pathways.
- To associate pathway abnormalities with bladder, prostate, and renal cancer.
- To explore therapeutic strategies targeting these pathways in cancer patients.
Main Methods:
- A literature search was conducted using keywords: death receptors, TRAIL, FAS, bladder, prostate, renal, and cancer.
- Reviewed the roles of TRAIL and FAS pathways in apoptosis.
- Examined mechanisms of pathway dysfunction and their link to tumorigenesis.
Main Results:
- Immune cells eliminate malignant cells by activating death receptors on tumor cells.
- Activation triggers a caspase cascade, leading to tumor cell apoptosis.
- Pathway dysfunction in cancer arises from mutations, altered gene expression, or inhibitor interference.
Conclusions:
- Pathway aberrations play a key role in the initiation and progression of bladder, prostate, and kidney cancers.
- Understanding these aberrations has led to novel therapeutic strategies.
- Restoring death receptor pathway functionality is a promising approach for cancer therapy.
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