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Published on: September 13, 2024
Journey of TRAIL from Bench to Bedside and its Potential Role in Immuno-Oncology
George E Naoum1, Donald J Buchsbaum2, Fady Tawadros3
1Alexandria Comprehensive Cancer Center, Alexandria, Egypt.
Abstract:
Induction of apoptosis in cancer cells has increasingly been the focus of many therapeutic approaches in oncology field. Since its identification as a TNF family member, TRAIL (TNF-related apoptosis-inducing ligand) paved a new path in apoptosis inducing cancer therapies. Its selective ability to activate extrinsic and intrinsic cell death pathways in cancer cells only, independently from p53 mutations responsible for conventional therapeutics resistance, spotted TRAIL as a potent cancer apoptotic agent. Many recombinant preparations of TRAIL and death receptor targeting monoclonal antibodies have been developed and being tested pre-clinically and clinically both as a single agent and in combinations. Of note, the monoclonal antibodies were not the only type of antibodies developed to target TRAIL receptors. Recent technology has brought forth several single chain variable domains (scFv) designs fused recombinantly to TRAIL as well. Also, it is becoming progressively more understandable that field of nanotechnology has revolutionized cancer diagnosis and therapy. The recent breakthroughs in materials science and protein engineering have helped considerably in strategically loading drugs into nanoparticles or conjugating drugs to their surface. In this review we aim to comprehensively highlight the molecular knowledge of TRAIL in the context of its pathway, receptors and resistance factors. We also aim to review the clinical trials that have been done using TRAIL based therapies and to review various scFv designs, the arsenal of nano-carriers and molecules available to selectively target tumor cells with TRAIL.
Insights
Tumor necrosis factor-related apoptosis-inducing ligand (TRAIL) offers a novel approach to cancer therapy by selectively inducing apoptosis in cancer cells. This review explores TRAIL
Area of Science:
- Oncology
- Molecular Biology
- Biotechnology
Background:
- Apoptosis induction in cancer cells is a key therapeutic strategy.
- TRAIL (TNF-related apoptosis-inducing ligand) is a promising agent due to its selective cancer cell targeting.
- TRAIL's efficacy is independent of p53 mutations, overcoming resistance to conventional therapies.
Purpose of the Study:
- To comprehensively review the molecular mechanisms of TRAIL, including its pathways, receptors, and resistance factors.
- To summarize clinical trials investigating TRAIL-based therapies.
- To explore advancements in TRAIL targeting, including single chain variable domains (scFv) and nanotechnology applications.
Main Methods:
- Literature review of molecular mechanisms, clinical trials, and technological advancements related to TRAIL.
- Analysis of recombinant TRAIL preparations, monoclonal antibodies, and scFv designs.
- Exploration of nanotechnology-based drug delivery systems for targeted cancer therapy.
Main Results:
- TRAIL demonstrates selective apoptosis induction in cancer cells.
- Various TRAIL-based therapeutic strategies, including antibodies and recombinant proteins, are under clinical investigation.
- Nanotechnology offers novel platforms for targeted delivery of TRAIL and related therapeutics.
Conclusions:
- TRAIL represents a significant advancement in cancer apoptosis-inducing therapies.
- Combination therapies and advanced delivery systems, such as nanotechnology, hold potential for enhancing TRAIL efficacy.
- Further research into TRAIL resistance mechanisms and optimized delivery strategies is warranted.
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