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Targeting Cancer Stem Cells with Phytochemicals: Molecular Mechanisms and Therapeutic Potential
Ashok Kumar Sah1, Joy Das2, Abdulkhakov Ikhtiyor Umarovich3
1Department of Medical Laboratory Sciences, College of Applied and Health Sciences, A' Sharqiyah University, Ibra 400, Oman.
Abstract:
Cancer stem cells (CSCs) represent a small but highly resilient tumor subpopulation responsible for sustained growth, metastasis, therapeutic resistance, and recurrence. Their survival is supported by aberrant activation of developmental and inflammatory pathways, including Wnt/β-catenin, Notch, Hedgehog, PI3K/Akt/mTOR, STAT3, and NF-κB, as well as epithelial-mesenchymal transition (EMT) programs and niche-driven cues. Increasing evidence shows that phytochemicals, naturally occurring bioactive compounds from medicinal plants, can disrupt these networks through multi-targeted mechanisms. This review synthesizes current findings on prominent phytochemicals such as curcumin, sulforaphane, resveratrol, EGCG, genistein, quercetin, parthenolide, berberine, and withaferin A. Collectively, these compounds suppress CSC self-renewal, reduce sphere-forming capacity, diminish ALDH+ and CD44+/CD24- fractions, reverse EMT features, and interfere with key transcriptional regulators that maintain stemness. Many phytochemicals also sensitize CSCs to chemotherapeutic agents by downregulating drug-efflux transporters (e.g., ABCB1, ABCG2) and lowering survival thresholds, resulting in enhanced apoptosis and reduced tumor-initiating potential. This review further highlights the translational challenges associated with poor solubility, rapid metabolism, and limited bioavailability of free phytochemicals. Emerging nanotechnology-based delivery systems, including polymeric nanoparticles, lipid carriers, hybrid nanocapsules, and ligand-targeted formulations, show promise in improving stability, tumor accumulation, and CSC-specific targeting. These nanoformulations consistently enhance intracellular uptake and amplify anti-CSC effects in preclinical models. Overall, the consolidated evidence supports phytochemicals as potent modulators of CSC biology and underscores the need for optimized delivery strategies and evidence-based combination regimens to achieve meaningful clinical benefit.
Insights
Phytochemicals, natural plant compounds, can target cancer stem cells (CSCs) by disrupting pathways that drive tumor growth and resistance. Nanotechnology enhances their delivery, improving effectiveness against cancer recurrence.
Area of Science:
- Oncology
- Pharmacology
- Natural Products Chemistry
Background:
- Cancer stem cells (CSCs) drive tumor growth, metastasis, and therapeutic resistance.
- CSCs rely on developmental and inflammatory pathways (e.g., Wnt, Notch, STAT3) and epithelial-mesenchymal transition (EMT).
- Phytochemicals are natural compounds with multi-targeted anti-cancer potential.
Purpose of the Study:
- To review the role of phytochemicals in targeting cancer stem cells (CSCs).
- To explore how phytochemicals modulate CSC self-renewal, stemness pathways, and drug resistance.
- To discuss nanotechnology-based delivery systems for enhancing phytochemical efficacy against CSCs.
Main Methods:
- Literature review synthesizing findings on specific phytochemicals (curcumin, sulforaphane, resveratrol, EGCG, genistein, quercetin, parthenolide, berberine, withaferin A).
- Analysis of phytochemical effects on CSC markers (ALDH+, CD44+/CD24-), EMT, and drug-efflux transporters.
- Evaluation of nanotechnology-based delivery systems (nanoparticles, lipid carriers) for improved phytochemical bioavailability and targeting.
Main Results:
- Prominent phytochemicals suppress CSC self-renewal, sphere formation, and EMT.
- Phytochemicals interfere with key stemness regulators and sensitize CSCs to chemotherapy by downregulating drug efflux.
- Nanotechnology-based delivery systems improve phytochemical stability, tumor accumulation, and CSC-specific targeting, enhancing anti-CSC effects in preclinical models.
Conclusions:
- Phytochemicals are potent modulators of cancer stem cell biology.
- Optimized delivery strategies, particularly nanotechnology, are crucial for enhancing phytochemical efficacy.
- Evidence supports phytochemicals and nanoformulations for combination regimens to improve clinical outcomes in cancer therapy.
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