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TRAILblazing Strategies for Cancer Treatment
Anna-Laura Kretz1, Anna Trauzold2,3, Andreas Hillenbrand4
1Department of General and Visceral Surgery, Ulm University Hospital, Albert-Einstein-Allee 23, 89081 Ulm, Germany. anna-laura.kretz@uni-ulm.de.
Abstract:
In the late 1990s, tumor necrosis factor (TNF)-related apoptosis-inducing ligand (TRAIL), a member of the TNF-family, started receiving much attention for its potential in cancer therapy, due to its capacity to induce apoptosis selectively in tumour cells in vivo. TRAIL binds to its membrane-bound death receptors TRAIL-R1 (DR4) and TRAIL-R2 (DR5) inducing the formation of a death-inducing signalling complex (DISC) thereby activating the apoptotic cascade. The ability of TRAIL to also induce apoptosis independently of p53 makes TRAIL a promising anticancer agent, especially in p53-mutated tumour entities. Thus, several so-called TRAIL receptor agonists (TRAs) were developed. Unfortunately, clinical testing of these TRAs did not reveal any significant anticancer activity, presumably due to inherent or acquired TRAIL resistance of most primary tumour cells. Since the potential power of TRAIL-based therapies still lies in TRAIL's explicit cancer cell-selectivity, a desirable approach going forward for TRAIL-based cancer therapy is the identification of substances that sensitise tumour cells for TRAIL-induced apoptosis while sparing normal cells. Numerous of such TRAIL-sensitising strategies have been identified within the last decades. However, many of these approaches have not been verified in animal models, and therefore potential toxicity of these approaches has not been taken into consideration. Here, we critically summarise and discuss the status quo of TRAIL signalling in cancer cells and strategies to force tumour cells into undergoing apoptosis triggered by TRAIL as a cancer therapeutic approach. Moreover, we provide an overview and outlook on innovative and promising future TRAIL-based therapeutic strategies.
Insights
Tumor necrosis factor (TNF)-related apoptosis-inducing ligand (TRAIL) shows promise for cancer therapy by selectively inducing tumor cell death. Strategies are being developed to overcome TRAIL resistance and enhance its anticancer efficacy.
Area of Science:
- Molecular Biology
- Cancer Therapeutics
- Immunology
Background:
- Tumor necrosis factor (TNF)-related apoptosis-inducing ligand (TRAIL) selectively induces apoptosis in tumor cells via death receptors DR4/DR5.
- TRAIL's p53-independent apoptosis induction is promising for various cancers, including those with p53 mutations.
- Clinical trials of TRAIL receptor agonists (TRAs) showed limited efficacy due to TRAIL resistance in primary tumor cells.
Purpose of the Study:
- To critically review the current understanding of TRAIL signaling in cancer.
- To discuss strategies for sensitizing tumor cells to TRAIL-induced apoptosis.
- To provide an outlook on innovative future TRAIL-based therapeutic approaches.
Main Methods:
- Literature review and critical discussion of existing research on TRAIL signaling and therapeutic strategies.
- Analysis of TRAIL resistance mechanisms and sensitizing approaches.
- Evaluation of preclinical and clinical data for TRAIL-based therapies.
Main Results:
- TRAIL's selective tumoricidal activity is a significant therapeutic advantage.
- TRAIL resistance is a major hurdle limiting the clinical success of TRAs.
- Numerous TRAIL-sensitizing strategies have been identified, but many lack in vivo validation and toxicity assessment.
Conclusions:
- Overcoming TRAIL resistance is crucial for effective TRAIL-based cancer therapy.
- Future strategies should focus on validated sensitizing approaches with consideration for potential toxicity.
- Innovative therapeutic combinations hold promise for enhancing TRAIL's anticancer potential.
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