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Dealing naturally with stumbling blocks on highways and byways of TRAIL induced signaling
Aamir Rana1, Rukset Attar, Muhammad Zahid Qureshi
1National Institute for Genomics and Advanced Biotechnology (NIGAB), NARC, Islamabad, Pakistan
Abstract:
In-depth analysis of how TRAIL signals through death receptors to induce apoptosis in cancer cells using high throughput technologies has added new layers of knowledge. However, the wealth of information has also highlighted the fact that TRAIL induced apoptosis may be impaired as evidenced by experimental findings obtained from TRAIL resistant cancer cell lines. Overwhelmingly, increasing understanding of TRAIL mediated apoptosis has helped in identifying synthetic and natural compounds which can restore TRAIL induced apoptosis via functionalization of either extrinsic or intrinsic pathways. Increasingly it is being realized that biologically active phytochemicals modulate TRAIL induced apoptosis, as evidenced by cell-based studies. In this review we have attempted to provide an overview of how different phytonutrients have shown efficacy in restoring apoptosis in TRAIL resistant cancer cells. We partition this review into how the TRAIL mediated signaling landscape has broadened over the years and how TRAIL induced signaling machinery crosstalks with autophagic protein networks. Subsequently, we provide a generalized view of considerable biological activity of coumarins against a wide range of cancer cell lines and how coumarins (psoralidin and esculetin) isolated from natural sources have improved TRAIL induced apoptosis in resistant cancer cells. We summarize recent updates on piperlongumine, phenethyl isothiocyanate and luteolin induced activation of TRAIL mediated apoptosis. The data obtained from pre-clinical studies will be helpful in translation of information from benchtop to the bedside.
Insights
Certain natural compounds, like coumarins, can restore tumor necrosis factor-related apoptosis-inducing ligand (TRAIL) induced apoptosis in resistant cancer cells. This review explores phytochemicals that enhance TRAIL signaling for cancer therapy.
Area of Science:
- Molecular Biology
- Cancer Research
- Pharmacology
Background:
- Tumor necrosis factor-related apoptosis-inducing ligand (TRAIL) induces programmed cell death (apoptosis) in cancer cells.
- TRAIL-induced apoptosis can be impaired in resistant cancer cell lines, limiting therapeutic efficacy.
- Phytochemicals are increasingly recognized for their potential to modulate TRAIL-mediated apoptosis.
Purpose of the Study:
- To review how phytochemicals restore TRAIL-induced apoptosis in TRAIL-resistant cancer cells.
- To explore the signaling landscape of TRAIL-mediated apoptosis and its crosstalk with autophagy.
- To summarize the efficacy of specific phytonutrients, including coumarins, piperlongumine, phenethyl isothiocyanate, and luteolin.
Main Methods:
- Literature review of high-throughput studies on TRAIL signaling.
- Analysis of cell-based studies investigating phytochemical effects on apoptosis.
- Examination of preclinical data on natural compounds and TRAIL resistance.
Main Results:
- Phytonutrients demonstrate efficacy in restoring apoptosis in TRAIL-resistant cancer cells.
- Coumarins (psoralidin, esculetin) enhance TRAIL-induced apoptosis in resistant cells.
- Piperlongumine, phenethyl isothiocyanate, and luteolin activate TRAIL-mediated apoptosis.
Conclusions:
- Natural compounds can overcome TRAIL resistance in cancer therapy.
- Understanding TRAIL signaling and its modulation by phytochemicals is crucial for developing new treatments.
- Preclinical findings suggest potential for translating these discoveries to clinical applications.
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