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.

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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