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Strategies for Tracking Anastasis, A Cell Survival Phenomenon that Reverses Apoptosis
Published on: February 16, 2015
The TRAIL of oncogenes to apoptosis
Eftychia Oikonomou1, Alexander Pintzas
1Laboratory of Signal Mediated Gene Expression, Institute of Biology, Medicinal Chemistry and Biotechnology, National Hellenic Research Foundation, 48, Vasileos Konstantinou Ave., 11635, Athens, Greece.
Abstract:
Despite the significant advances in clinical research, surgical resection, radiotherapy and chemotherapy are still used as the primary method for cancer treatment. As compared to conventional therapies that often induce systemic toxicity and eventually contribute to tumor resistance, the TNF-related apoptosis-inducing ligand (TRAIL) is a promising anticancer agent that selectively triggers apoptosis in various cancer cells by interacting with its proapoptotic receptors DR4 and KILLER/DR5, while sparing the normal surrounding tissue. The intensive studies of TRAIL signaling pathways over the past decade have provided clues for understanding the molecular mechanisms of TRAIL-induced apoptosis in carcinogenesis and identified an array of therapeutic responses elicited by TRAIL and its receptor agonists. Analysis of its activity at the molecular level has shown that TRAIL improves survival either as monotherapies or combinatorial therapies with other mediators of apoptosis or anticancer chemotherapy. Combinatorial treatments amplify the activities of anticancer agents and widen the therapeutic window by overcoming tumor resistance to apoptosis and driving cancer cells to self-destruction. Although TRAIL sensitivity varies widely depending on the cell type, nontransformed cells are largely resistant to death mediated by TRAIL Death Receptors (DRs). Genetic alterations in cancer can contribute in tumor progression and often play an important role in evasion of apoptosis by tumor cells. Remarkably, RAS, MYC and HER2 oncogenes have been shown to sensitise tumor cells to TRAIL induced cell death. Here, we summarise the cross-talk of oncogenic and apoptotic pathways and how they can be exploited toward efficient combinatorial therapeutic protocols.
Insights
TNF-related apoptosis-inducing ligand (TRAIL) offers targeted cancer cell death, sparing normal tissues. Combining TRAIL with other therapies enhances effectiveness and overcomes tumor resistance, improving patient survival.
Area of Science:
- Oncology
- Molecular Biology
- Immunology
Background:
- Conventional cancer therapies like chemotherapy and radiotherapy often cause systemic toxicity and tumor resistance.
- TNF-related apoptosis-inducing ligand (TRAIL) selectively induces apoptosis in cancer cells via DR4/DR5 receptors, sparing normal cells.
Purpose of the Study:
- To summarize the molecular mechanisms of TRAIL-induced apoptosis.
- To explore the potential of TRAIL in monotherapy and combinatorial treatments.
- To investigate how oncogenic pathways influence TRAIL sensitivity.
Main Methods:
- Review of TRAIL signaling pathways and molecular mechanisms.
- Analysis of TRAIL's efficacy in monotherapy and combination with other agents.
- Examination of genetic alterations (RAS, MYC, HER2) impacting TRAIL sensitivity.
Main Results:
- TRAIL effectively triggers apoptosis in cancer cells while sparing normal tissues.
- Combinatorial therapies involving TRAIL enhance anti-cancer activity and overcome resistance.
- Specific oncogenes (RAS, MYC, HER2) can sensitize tumor cells to TRAIL.
Conclusions:
- TRAIL is a promising anticancer agent with selective toxicity.
- Exploiting the cross-talk between oncogenic and apoptotic pathways can lead to efficient combinatorial therapeutic strategies.
- Further research into TRAIL-based combination therapies holds significant therapeutic potential.
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