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Search Results (1,118)

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Keywords = cancer chemoprevention

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35 pages, 2240 KB  
Review
Subtype-Conditioned NRF2–KEAP1 Signaling in Breast Cancer: A Narrative Review and Hypothesis-Generating Framework from Chemoprevention to Therapy Resistance
by Hye Young Choi, Hayeong Kwon and Young-Sool Hah
Antioxidants 2026, 15(10), 1223; https://doi.org/10.3390/antiox15101223 - 22 Sep 2026
Viewed by 247
Abstract
NRF2 (nuclear factor erythroid 2-related factor 2) and its repressor KEAP1 (Kelch-like ECH-associated protein 1) govern the antioxidant response; their role in breast cancer is paradoxical: the same program that prevents malignant transformation can later drive survival and therapy resistance. We argue that [...] Read more.
NRF2 (nuclear factor erythroid 2-related factor 2) and its repressor KEAP1 (Kelch-like ECH-associated protein 1) govern the antioxidant response; their role in breast cancer is paradoxical: the same program that prevents malignant transformation can later drive survival and therapy resistance. We argue that this behavior is not a fixed switch but a continuum conditioned by molecular subtype, disease stage, and therapeutic context. Synthesizing primary mechanistic and clinical evidence, we find that NRF2 activation is predominantly non-mutational and that its pathological dependence is strongest not in triple-negative breast cancer (TNBC) as a whole but in a candidate redox-addicted subset—defined by nuclear NRF2 with reduced cytoplasmic KEAP1 protein, cystine/SLC7A11 reliance, and active ferroptosis defense. This subset is hypothesis-generating rather than validated: current support derives chiefly from a single tissue microarray cohort and cell-line studies, and the co-occurrence and prevalence of its features remain unestablished. NRF2-driven suppression of ferroptosis is one major, tractable mechanism of resistance among several. We frame these as directions for future research: no NRF2-directed intervention is ready for biomarker-guided selection, and systemic NRF2 inhibition risks on-target toxicity, because NRF2 also protects normal tissues from oxidative stress. Full article
(This article belongs to the Section Health Outcomes of Antioxidants and Oxidative Stress)
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15 pages, 3956 KB  
Perspective
Palmitoylethanolamide as an Intestinal Gatekeeper: Linking Inflammation, Angiogenesis and Colorectal Cancer Interception
by Irene Palenca, Giovanni Sarnelli and Giuseppe Esposito
Biomedicines 2026, 14(9), 2080; https://doi.org/10.3390/biomedicines14092080 - 16 Sep 2026
Viewed by 242
Abstract
Angiogenesis is a major determinant of tumor growth, progression and metastatic potential, and its persistent activation is closely intertwined with chronic inflammation. This relationship is particularly relevant in malignancies that arise through a prolonged inflammation-to-carcinogenesis continuum, where pathological vascular remodeling can sustain tissue [...] Read more.
Angiogenesis is a major determinant of tumor growth, progression and metastatic potential, and its persistent activation is closely intertwined with chronic inflammation. This relationship is particularly relevant in malignancies that arise through a prolonged inflammation-to-carcinogenesis continuum, where pathological vascular remodeling can sustain tissue hypoxia, immune-cell recruitment and the establishment of a tumor-permissive microenvironment. Colorectal cancer (CRC), especially in inflammation-associated settings, represents a paradigmatic example in which the inflammatory–angiogenic axis contributes to disease progression and unfavorable prognosis. Accordingly, identifying well-tolerated strategies capable of restraining pathological angiogenic pressure before overt neoplasia is established may have important preventive and therapeutic implications. This perspective focuses on palmitoylethanolamide (PEA), an endogenous N-acylethanolamine and prototypical autacoid local injury antagonist amide (ALIAmide) generated on demand as part of tissue homeostasis. PEA may act within a proposed multilevel intestinal homeostatic framework by preserving epithelial barrier integrity, limiting inflammatory amplification, modulating PPARα-dependent signaling and mast-cell reactivity, and restraining pro-angiogenic pathways, with context- and compartment-dependent effects on Akt/mTOR–HIF-1α/VEGF signaling. Importantly, direct preclinical evidence now supports PEA-related chemoprevention at two complementary levels: ultramicronized PEA reduced colon cancer cell proliferation and migration and decreased preneoplastic lesions and tumors in the murine azoxymethane model, whereas NAPE-PLD-engineered Lactobacillus paracasei F19 (pNAPE-LP) increased local PEA and reduced tumor burden, epithelial proliferation and angiogenesis in AOM/DSS colitis-associated CRC while modulating Akt/mTOR/p70S6K–HIF-1α signaling. These findings move the PEA–CRC relationship beyond a purely hypothetical association while remaining preclinical. We therefore propose that reinforcement of PEA signaling, through supplementation, PEA-oriented pharmacological strategies or engineered local biosynthesis, deserves investigation as a cancer-interception approach aimed at maintaining angiogenic and inflammatory homeostasis before autonomous tumor biology becomes established. This concept should not be interpreted as established clinical CRC prevention or as a substitute for conventional anticancer therapy. Full article
(This article belongs to the Special Issue Tumour Angiogenesis and Anti-Angiogenic Therapy)
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21 pages, 2754 KB  
Review
Anticancer Potential of Cherry Extracts and Major Flavonols: Focus on Quercetin and Kaempferol Molecular Mechanisms in Breast Cancer
by Evangelia K. Konstantinou, Kallirroi Dimiza, Maria Dimitriou, Anastasios Darras and Athanasios A. Panagiotopoulos
Int. J. Mol. Sci. 2026, 27(18), 7999; https://doi.org/10.3390/ijms27187999 - 8 Sep 2026
Viewed by 263
Abstract
Breast cancer remains one of the leading causes of global mortality, which has growing driving interest in dietary natural products for potential chemopreventive and complementary approaches. Cherries (Prunus species) are rich in bioactive phytochemicals, notably anthocyanins, hydroxycinnamic acids, and the flavonols quercetin [...] Read more.
Breast cancer remains one of the leading causes of global mortality, which has growing driving interest in dietary natural products for potential chemopreventive and complementary approaches. Cherries (Prunus species) are rich in bioactive phytochemicals, notably anthocyanins, hydroxycinnamic acids, and the flavonols quercetin and kaempferol. This review aims to examine and discuss current research on the molecular targets and mechanisms of action of whole cherry extracts and their primary flavonols quercetin and kaempferol across various breast cancer subtypes. Preclinical studies indicate that these compounds exert multi-targeted effects by inducing apoptosis, inhibiting cell proliferation, and suppressing metastatic pathways. Additionally, these flavonols show potential in reversing multidrug resistance. A whole-food approach highlights the candidate synergistic properties of these phytochemical complexes, but low oral bioavailability and rapid metabolism severely limit their clinical translation. Therefore, utilizing innovative drug delivery systems remains crucial to improving their stability, absorption, and overall therapeutic efficacy. Full article
(This article belongs to the Special Issue Bioactive Compounds from Food in Health and Diseases)
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30 pages, 42988 KB  
Article
Liposomal Morin Attenuates DMH-Associated Colonic Oxidative Stress, Inflammation, and Apoptosis/Autophagy-Related Dysregulation in Rats
by Mohammed A. Akeel, Ekramy M. Elmorsy, Fahad M. Alshammari, Aly A. M. Shaalan, Abdulrahman S. Aldaghmi, Barakat M. Alrashdi, Saad M. Alrashidi, Gehad E. Elshopakey, Baraah Abu Alsel and Manal S. Fawzy
Pharmaceuticals 2026, 19(9), 1400; https://doi.org/10.3390/ph19091400 - 4 Sep 2026
Viewed by 358
Abstract
Background/Objectives: Oxidative stress, chronic inflammation, disrupted apoptosis, and altered autophagy are biological processes implicated in colorectal tumor development. Morin is a plant-derived flavonoid with antioxidant and anti-inflammatory properties, but its limited solubility and bioavailability may limit its biological activity. This study evaluated [...] Read more.
Background/Objectives: Oxidative stress, chronic inflammation, disrupted apoptosis, and altered autophagy are biological processes implicated in colorectal tumor development. Morin is a plant-derived flavonoid with antioxidant and anti-inflammatory properties, but its limited solubility and bioavailability may limit its biological activity. This study evaluated the effects of free morin and morin-loaded liposomes (MOR-Lips) on 1,2-dimethylhydrazine (DMH)-associated colonic biochemical, molecular, and histopathological alterations in rats. Methods: Rats were randomly assigned to six groups—vehicle control, MOR, MOR-Lips, DMH, DMH + MOR, and DMH + MOR-Lips—and treated for 10 weeks. Serum and colonic tissues were evaluated for cancer-associated biomarkers (CEA, CA19-9, CA125, HMG-CoA reductase), oxidative stress and antioxidant indices, nitrosative and oxidative DNA-damage markers (MDA, NO, 8-OHdG), inflammatory mediators (TLR4/NF-κB/COX-2, cytokines, MPO), proliferative indices (Ki-67, PCNA), apoptotic and autophagy-related regulators (Bax, caspase-3, p53, cytochrome c, BCL-2, p-AKT, LC3-II, Beclin-1, p62), and histopathological and immunohistochemical changes. Results: DMH exposure was associated with increased CEA, CA19-9, CA125, HMG-CoA reductase, MDA, NO, 8-OHdG, TLR4/NF-κB/COX-2, cytokines, MPO, Ki-67, and PCNA. DMH also reduced NRF2/HO-1 signaling and antioxidant defenses, shifted apoptosis-related markers toward a pro-survival profile, altered autophagy-related markers, and produced marked colonic histopathological abnormalities. Both free MOR and MOR-Lips attenuated several of these DMH-associated alterations, with MOR-Lips generally producing greater effects than free MOR. MOR-LIP treatment was associated with restoration of antioxidant marker profiles, reduced levels of inflammatory and proliferative markers, a shift toward a pro-apoptotic marker profile, partial normalization of autophagy-related markers, and improved colonic histopathological appearance. Conclusions: In DMH-exposed rats, MOR-Lips were associated with more favorable redox, inflammatory, proliferative, apoptosis-related, autophagy-related, and histopathological profiles than free MOR. These findings support further investigation of MOR-Lips as a formulation strategy for improving the biological activity of morin. Because quantitative preneoplastic and neoplastic endpoints were not measured, the results do not establish inhibition of colorectal carcinogenesis or chemopreventive efficacy. Full article
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30 pages, 10809 KB  
Article
Time-Dependent Multimechanistic Antitumor Effects of Olive Oil Phenolics in a Triple-Negative Breast Cancer Mouse Model
by Nikoleta Anna Madelou, Marianna Kapetanou, Katerina Papakonstantinou, Olga Koutsoni, Zacharias Kakazanis, Eleni Melliou, Prokopios Magiatis, Vasilis Zoumbourlis, Efstathios S. Gonos and Haralabia Boleti
Nutrients 2026, 18(17), 2756; https://doi.org/10.3390/nu18172756 - 23 Aug 2026
Viewed by 1545
Abstract
Background/Objectives: The health-protective properties of olive oil phenolics, including their potential chemopreventive and anticancer effects, have attracted considerable scientific interest. However, their in vivo efficacy and mechanisms of action remain insufficiently understood. Recent advances in extraction and purification technologies have enabled large-scale [...] Read more.
Background/Objectives: The health-protective properties of olive oil phenolics, including their potential chemopreventive and anticancer effects, have attracted considerable scientific interest. However, their in vivo efficacy and mechanisms of action remain insufficiently understood. Recent advances in extraction and purification technologies have enabled large-scale production of highly purified olive oil phenols and phenolic-rich extracts, facilitating translational research. Methods: Herein, the antitumor efficacy of isolated olive oil phenols and phenolic-rich formulations was investigated in an MDA-MB-231 triple-negative breast cancer (TNBC) xenograft model. Results: Intraperitoneal administration of oleocanthal (OLC), oleuropein aglycone (OleA) or their combination reduced endpoint tumor burden, with OLC exhibiting the most pronounced effect. Oral administration of total olive oil phenolics (OOPs) achieved comparable efficacy. Pre-treatment initiated before tumor cell implantation conferred the greatest protection, consistent with a prophylactic mode of action. In contrast, delayed intervention displayed diminished or no antitumor benefit. Phenolic-rich extra virgin olive oil likewise showed an inhibition trend in tumor progression. Mechanistically, OOPs attenuated plasma protein oxidation, modulated proteasome mediated proteolysis, and reduced γH2AX levels in vivo. Furthermore, OOPs negatively affected the MDA-MB-231 cell migration in a concentration-dependent manner in vitro. Conclusions: Collectively, these findings are consistent with antitumor activities of olive oil phenolics via multiple mechanisms and support their further investigation as prophylactic agents in TNBC and as nutraceuticals. Full article
(This article belongs to the Special Issue The Impact of Olive Oil on Human Health)
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31 pages, 5495 KB  
Review
Bergapten as a Multifunctional Phytochemical in Cancer Therapy: Mechanistic Insights, Pharmacokinetics, and Possible Nanotechnology-Enabled Formulation Strategies
by Victória Dogani Rodrigues, Maria Angélica Miglino, Claúdia Rucco Penteado Detregiachi, Sandra Maria Barbalho and Lucas Fornari Laurindo
Pharmaceutics 2026, 18(8), 1007; https://doi.org/10.3390/pharmaceutics18081007 - 14 Aug 2026
Viewed by 544
Abstract
Bergapten is a plant-derived linear furanocoumarin widely distributed in Rutaceae and Apiaceae species and increasingly recognized for its multifunctional anticancer potential. This review critically synthesizes current evidence on bergapten’s biosynthesis, physicochemical and pharmacokinetic properties, anti-inflammatory and antioxidant pharmacodynamics, and mechanistic antitumor activity, highlighting [...] Read more.
Bergapten is a plant-derived linear furanocoumarin widely distributed in Rutaceae and Apiaceae species and increasingly recognized for its multifunctional anticancer potential. This review critically synthesizes current evidence on bergapten’s biosynthesis, physicochemical and pharmacokinetic properties, anti-inflammatory and antioxidant pharmacodynamics, and mechanistic antitumor activity, highlighting its translational relevance within pharmaceutical development. Preclinical studies across diverse malignancies demonstrate pleiotropic anticancer effects. Mechanistically, bergapten activates mitochondrial apoptosis via Bax/Bcl-2 modulation and caspase cascades, induces cell cycle arrest through p53–p21 signaling, and suppresses PI3K/Akt/mTOR and NF-κB pathways. Additional effects include PTEN-mediated autophagy induction, interference with metabolic reprogramming, reversal of multidrug resistance through ABC transporter modulation, and context-dependent photoactivated cytotoxicity. Beyond direct tumor cell targeting, bergapten attenuates pro-inflammatory mediators and regulates redox homeostasis through downregulation of NOX4-derived ROS and activation of Nrf2-driven antioxidant defenses, addressing the redox–inflammatory axis implicated in carcinogenesis. Despite promising mechanistic depth, clinical translation is limited by incomplete human pharmacokinetic data and poor aqueous solubility. Nanotechnology-enabled delivery systems and structural derivatives offer strategies to enhance bioavailability and therapeutic index. Overall, bergapten emerges as a systems-level phytochemical candidate warranting further translational investigation in oncology. Full article
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22 pages, 1576 KB  
Article
Multidimensional LDCT Imaging Endpoints for a Randomized Pilot Phase II Trial of Curcumin and Omega-3 Fatty Acids for Lung Cancer Chemoprevention: Results of a Randomized Pilot Trial
by Nagi B. Kumar, Matthew Schabath, Mark Alexandrow, Jhanelle Gray, Tawee Tanventyanon, Farah Khalil, José Laborde, Michael J. Schell and Donald Klippenstein
Cancers 2026, 18(16), 2565; https://doi.org/10.3390/cancers18162565 - 10 Aug 2026
Viewed by 411
Abstract
Background: Former and current smokers in lung cancer screening remain at elevated risk for lung cancer despite smoking cessation. We and others have shown that curcumin (CUR) exhibits anti-inflammatory and antiproliferative effects but is limited by poor bioavailability. However, since CUR is lipophilic, [...] Read more.
Background: Former and current smokers in lung cancer screening remain at elevated risk for lung cancer despite smoking cessation. We and others have shown that curcumin (CUR) exhibits anti-inflammatory and antiproliferative effects but is limited by poor bioavailability. However, since CUR is lipophilic, co-administration with ω-3 FAs represents a mechanistically rational strategy to enhance delivery and target complementary pathways, including signal transducer and activator of transcription 3 (STAT3) and the transcription factor NF-κB (NF-κB) signaling for lung cancer chemoprevention. Methods: We conducted a randomized, single-blind, placebo-controlled Phase II pilot study evaluating CUR combined with ω-3 FAs in high-risk former and current smokers with CT-detected pulmonary nodules. Participants received intervention agents with active-dose groups (low dose = 3; high dose = 9) or a placebo (n = 7) for 6 months. Primary endpoints included radiologic changes in nodule size, number, and density. Secondary endpoints included safety, adherence to the study agent and exploratory biomarker analyses. Correlation analyses of imaging-derived metrics were performed to assess relationships among LDCT parameters. Results: Nineteen participants were enrolled (intervention, n = 12; placebo, n = 7). Eighteen (11 intervention, 7 placebo) subjects completed post-intervention imaging. One subject was unable to complete follow-up and study-related procedures. Data from the treatment arms were pooled for analysis and comparison with the placebo arm. No statistically significant between-group differences were observed in primary imaging endpoints. The intervention was well tolerated, with predominantly grade 1 adverse events. Exploratory analyses demonstrated consistent positive correlations among established imaging biomarkers, with clustering of size-based metrics (mean diameter, volume, sum of longest diameters) and density-based parameters. Multidimensional scaling supported this structure, indicating internal coherence among imaging-derived endpoints. Conclusions: Although no statistically significant treatment effect on the image biomarkers was observed, this pilot study demonstrates feasibility challenges and identifies coherent imaging biomarkers that may serve as intermediate endpoints in early-phase chemoprevention trials. These results support further investigation of strategies utilizing agent combinations with enhanced bioavailability and safety and refinement of trial design in high-risk lung cancer patient populations. Full article
(This article belongs to the Section Cancer Biomarkers)
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27 pages, 4534 KB  
Article
Nanoenabled Hyaluronic Acid-Based Topical Delivery of Kaempferol and Ferulic Acid: Chemomodulatory Potential Against DMBA-Croton Oil-Induced Skin Carcinogenesis in Male Swiss Albino Mice
by Moulika Todaria and Rajendra Awasthi
Pharmaceutics 2026, 18(8), 972; https://doi.org/10.3390/pharmaceutics18080972 - 7 Aug 2026
Viewed by 359
Abstract
Background/Objectives: Skin cancer is a major health concern worldwide and has led to the quest for safer and more effective topical chemopreventive agents. In this study, the in vivo efficacy of a hydrogel formulation containing kaempferol and ferulic acid-loaded nanoparticles was evaluated [...] Read more.
Background/Objectives: Skin cancer is a major health concern worldwide and has led to the quest for safer and more effective topical chemopreventive agents. In this study, the in vivo efficacy of a hydrogel formulation containing kaempferol and ferulic acid-loaded nanoparticles was evaluated for the management of DMBA-croton oil-induced skin cancer in Swiss albino mice. Methods: Drug-loaded nanoparticles prepared via nanoprecipitation were incorporated into hyaluronic acid to obtain single-drug (FAPG, KMPG) and dual-drug-loaded (FKMG) hydrogel formulations. Skin tumors were induced via DMBA as an initiator followed by croton oil as a promoter, with tumor onset observed after a similar latency period of approximately 5–6 weeks in all carcinogen-exposed groups. Treatment was initiated after week 6 and continued until week 16. Results: The gel formulation had a skin-compatible pH and the desired rheological and spreadability properties. The dual drug-loaded hydrogel formulation had a more controlled and prolonged release profile. Compared with the negative and vehicle control groups, the FKMG-treated group presented a marked reduction in tumor incidence and tumor burden, along with improved body weight gain. Biochemical analysis revealed the restoration of antioxidant and enzyme activity in treated animals, particularly in animals treated with FKMG. Histopathological examination revealed near-normal skin architecture in FKMG-treated mice, indicating strong protective effects. Additionally, significant downregulation of TNF-α and IL-6 suggested effective suppression of tumor-promoting inflammatory pathways. Conclusions: Overall, the FKMG formulation exhibited superior chemopreventive efficacy compared with the FAPG and KMPG treatments, highlighting its potential as a promising topical therapeutic strategy against chemically induced skin carcinogenesis. Full article
(This article belongs to the Section Drug Delivery and Controlled Release)
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16 pages, 988 KB  
Review
The Role of Sex Hormone Receptors in the Squamous Cell Carcinoma of the Uterine Ectocervix: A Review and Future Directions
by Mun-Kun Hong and Dah-Ching Ding
Diagnostics 2026, 16(15), 2424; https://doi.org/10.3390/diagnostics16152424 - 31 Jul 2026
Viewed by 666
Abstract
Cervical cancer (CxCa) remains a major global gynecological malignancy causally linked to high-risk human papillomavirus (HPV) infection. However, HPV alone is insufficient for carcinogenesis; sex hormones and their receptors serve as essential cofactors. This review aims to synthesize current knowledge on the role [...] Read more.
Cervical cancer (CxCa) remains a major global gynecological malignancy causally linked to high-risk human papillomavirus (HPV) infection. However, HPV alone is insufficient for carcinogenesis; sex hormones and their receptors serve as essential cofactors. This review aims to synthesize current knowledge on the role of cervical histoarchitecture and hormonal microenvironments in ectocervical squamous cell carcinoma (SCC), and to explore how receptor-mediated signals contribute to malignant transformation and metastatic spread. The review examines the expression patterns of estrogen receptor α (ERα) and progesterone receptor (PR) in the uterine cervix, which is a hormone-responsive tissue. It discusses how these receptors fluctuate throughout the menstrual cycle and evaluates evidence from HPV-transgenic mouse models and human tissue analyses. The findings converge on a compelling model: stromal ERα drives pro-carcinogenic paracrine signaling, epithelial PR suppresses neoplastic transformation, and stromal PRB confers antimetastatic protection. These insights highlight the complex interplay between hormonal signals and SCC development in the ectocervix. Future therapeutic exploitation of these mechanistic insights—including selective estrogen receptor modulators, selective progesterone receptor modulators, and PR status-guided chemoprevention—holds considerable promise. This review provides a coherent framework for translating laboratory findings into clinical diagnostics and targeted interventions. Full article
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43 pages, 3822 KB  
Review
Lycopene, Carotenoids, and Retinoids in Cancer Chemoprevention: Molecular Mechanisms and Clinical Implications
by Ecem Kalemoglu, Kazim Sahin, Nurhan Sahin and Omer Kucuk
Nutrients 2026, 18(14), 2318; https://doi.org/10.3390/nu18142318 - 15 Jul 2026
Cited by 1 | Viewed by 851
Abstract
Cancer development arises from dynamic interactions between inherited susceptibility and modifiable environmental exposures, among which diet plays a central role. Carotenoids, lipophilic plant-derived pigments including lycopene, α-carotene, and β-carotene, and retinoids, the vitamin A derivatives that regulate gene transcription via retinoic acid receptors [...] Read more.
Cancer development arises from dynamic interactions between inherited susceptibility and modifiable environmental exposures, among which diet plays a central role. Carotenoids, lipophilic plant-derived pigments including lycopene, α-carotene, and β-carotene, and retinoids, the vitamin A derivatives that regulate gene transcription via retinoic acid receptors (RARs) and retinoid X receptors (RXRs), have been extensively investigated for their chemopreventive and therapeutic potential. This review aims to provide an integrated, mechanism-based synthesis of the roles of lycopene, α- and β-carotene, and retinoids in cancer chemoprevention and to clarify the conditions under which they are most likely to be effective. Beyond summarizing established antioxidant and nuclear-receptor mechanisms, we highlight as a novel emphasis the epigenetic actions of these compounds, including effects on DNA methylation, histone modification, and microRNA regulation, and we integrate these with the well-recognized divergence between dietary and high-dose supplement outcomes. Experimental evidence demonstrates that carotenoids modulate oxidative stress, inflammation, proliferation, apoptosis, angiogenesis, and metastasis through pathways such as Nrf2/ARE, NF-κB, STAT3, Akt/mTOR, MAPK, and Wnt/β-catenin. Lycopene, in particular, exhibits strong antioxidant capacity and multi-target signaling effects, while provitamin A carotenoids additionally influence retinoid-mediated transcriptional programs. Retinoids exert broader differentiation-inducing and antiproliferative effects through direct nuclear receptor signaling and represent one of the few successful differentiation therapies in oncology, most notably in acute promyelocytic leukemia. Epidemiologic studies generally associate higher dietary carotenoid intake with reduced risk of several malignancies, including prostate, breast, lung, colorectal, and gastric cancers. However, randomized trials of isolated high-dose supplementation, particularly β-carotene in smokers, have demonstrated null or harmful effects, highlighting a critical divergence between whole-food dietary patterns and pharmacologic supplementation. In conclusion, carotenoids and retinoids possess biologically plausible anticancer properties, yet their clinical utility remains context dependent. Future research should prioritize biomarker-guided, precision-based strategies, standardized formulations, and whole-food dietary approaches to clarify their role in cancer prevention and treatment. Full article
(This article belongs to the Special Issue The Role of Dietary and Nutritional Factors in Cancer Treatment)
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36 pages, 1672 KB  
Review
Animal- and Plant-Derived Protein Nanocarriers for the Delivery of Natural Compounds in Breast Cancer Chemoprevention
by Zuzanna Senkowska, Julia Wojtkowicz, Dominik Zakrzewski, Katarzyna Owczarek, Karolina Niewinna and Urszula Lewandowska
Molecules 2026, 31(13), 2391; https://doi.org/10.3390/molecules31132391 - 7 Jul 2026
Viewed by 636
Abstract
Breast cancer remains one of the leading causes of cancer-related mortality among women worldwide, highlighting the need for safer and more effective chemopreventive strategies. Although many phytochemicals can modulate key molecular processes involved in breast carcinogenesis, their chemopreventive potential largely depends on delivery [...] Read more.
Breast cancer remains one of the leading causes of cancer-related mortality among women worldwide, highlighting the need for safer and more effective chemopreventive strategies. Although many phytochemicals can modulate key molecular processes involved in breast carcinogenesis, their chemopreventive potential largely depends on delivery strategies that preserve their biological activity and enable efficient accumulation at the target site. Protein-based nanocarriers have emerged as promising delivery systems capable of improving the protection, solubility, cellular uptake, targeted delivery, and controlled release of bioactive compounds in tumor tissues. This review summarizes recent advances in selected animal- and plant-derived protein nanocarriers used for the encapsulation and delivery of natural compounds in breast cancer chemoprevention. Particular attention is given to their physicochemical properties, encapsulation performance, release behavior, biological activity, targeting potential, and translational limitations. Furthermore, the mechanisms underlying the enhanced anticancer activity of encapsulated phytochemicals, including improved stability, receptor-mediated uptake, pH-responsive release, apoptosis induction, oxidative stress modulation, and inhibition of tumor growth and metastasis, are highlighted. Current challenges, including enzymatic degradation, formulation instability, immunogenicity concerns, manufacturing scalability, and limited clinical evidence, remain important barriers to translation. Overall, selected protein-based nanocarriers represent promising multifunctional platforms for improving the chemopreventive potential of natural compounds in breast cancer. Full article
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28 pages, 1576 KB  
Review
Co-Exposure to Lunasin and Other Drugs as a Potential Chemopreventive Strategy Against Breast and Colon Cancers: A Review
by Aleksandra Janiak, Agnieszka Kaufman-Szymczyk and Katarzyna Lubecka-Gajewska
Int. J. Mol. Sci. 2026, 27(13), 6079; https://doi.org/10.3390/ijms27136079 - 7 Jul 2026
Viewed by 1061
Abstract
More than 20 years after the discovery of lunasin, a clear shift in lunasin research is observable—from an initial focus on its direct in vitro anticancer effects toward strategies aimed at improving its bioavailability and repositioning it as a potential adjunct in cancer [...] Read more.
More than 20 years after the discovery of lunasin, a clear shift in lunasin research is observable—from an initial focus on its direct in vitro anticancer effects toward strategies aimed at improving its bioavailability and repositioning it as a potential adjunct in cancer therapy. Lunasin, a soy-derived bioactive peptide, has been extensively studied for its antineoplastic properties. However, its limited oral bioavailability restrains its efficacy in clinical trials. Therefore, recent research on lunasin points towards the possibility of using it as an adjunct in cancer treatment, rather than as a stand-alone nutraceutical in humans. In preclinical models, in vitro and in vivo, lunasin can enhance the effects of standard anticancer drugs in breast and colon cancers. Research suggests that lunasin can potentiate the effects of drugs, such as tamoxifen, aspirin, cisplatin, and oxaliplatin, by sensitizing cancer cells to apoptosis, modulating cell cycle progression, reducing metastatic potential, and attenuating drug-resistance pathways, including PI3K/Akt, FAK/MAPK1/NF-κB, and integrin-mediated signaling. In combination with those drugs, lunasin exerts significant anticancer effects at concentrations substantially lower than those proven as effective in monotherapy, suggesting a potential role in dose reduction in conventional agents and, subsequently, mitigation of their adverse effects. Although the enhanced effect of those combinations has been shown in preclinical models, there is a distinct lack of human clinical trials in this matter. Available evidence supports a promising concept of lunasin as a molecular “priming” agent that might complement cytotoxic therapies rather than replace them. This combination-oriented paradigm may represent a shift in lunasin research and offer a novel direction for the use of bioactive peptides in precision oncology; however, further studies exploring this possibility, including human clinical trials, are needed to elucidate lunasin’s role in nutraceutical-assisted cancer therapy. Full article
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20 pages, 2719 KB  
Article
Impact of Iron Speciation on the Cytotoxicity and Gene Expression Profile of Biofortified Hericium erinaceus in Human Colorectal Adenocarcinoma
by Klaudia Słyszyk, Kamila Rachwał, Ewa Baranowska-Wójcik, Dominik Szwajgier, Jan Sadurski and Adam Waśko
Molecules 2026, 31(13), 2295; https://doi.org/10.3390/molecules31132295 - 1 Jul 2026
Viewed by 421
Abstract
Colorectal cancer (CRC) is a major global health threat, necessitating the development of functional foods with chemopreventive potential. This study aimed to evaluate the modulation of the anticancer activity of Hericium erinaceus with different iron forms (FeCl3, FeSO4, and [...] Read more.
Colorectal cancer (CRC) is a major global health threat, necessitating the development of functional foods with chemopreventive potential. This study aimed to evaluate the modulation of the anticancer activity of Hericium erinaceus with different iron forms (FeCl3, FeSO4, and FeHBED) as it modulates its anticancer activity against HT-29 cells. The extracts were subjected to simulated in vitro digestion and analyzed for cytotoxicity (MTT), antioxidant capacity (DPPH), and morphological changes, alongside high-throughput RT-qPCR profiling of 92 cancer-related genes. The results demonstrated that iron speciation is critical, with FeHBED-biofortified extracts exhibiting the most potent concentration-dependent cytotoxic and antiproliferative effects. Treated cells displayed apoptotic morphology, including chromatin condensation and cell shrinkage. Molecular analysis revealed significant downregulation of key oncogenes (HRAS, MYC), cell cycle regulators (CDK4), and migration markers (RHOA, ITGB1), whereas VEGFA was upregulated as a stress-induced response. In conclusion, biofortification with FeHBED significantly enhanced the anticancer potential of H. erinaceus by targeting specific proliferative and survival pathways. These findings highlight the potential of iron-biofortified mushrooms as a functional dietary component for colorectal cancer prevention. Full article
(This article belongs to the Special Issue Exclusive Feature Papers in Natural Products Chemistry, 3rd Edition)
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21 pages, 3569 KB  
Article
Phenolic-Rich Extracts from Artichoke By-Products Promote Apoptosis in Human Colorectal Cancer Cell Lines
by Rosa Calvello, Antonia Cianciulli, Antonella Compierchio, Chiara Porro, Giusy Rita Caponio, Maria De Angelis and Maria Antonietta Panaro
Nutrients 2026, 18(13), 2077; https://doi.org/10.3390/nu18132077 - 25 Jun 2026
Viewed by 549
Abstract
Background: Apoptosis is a fundamental process for maintaining tissue homeostasis, and its dysregulation is closely linked to the development of numerous diseases, including colorectal cancer. In recent years, dietary polyphenols have gained interest due to their antioxidant, pro-apoptotic, and chemopreventive properties. Artichoke ( [...] Read more.
Background: Apoptosis is a fundamental process for maintaining tissue homeostasis, and its dysregulation is closely linked to the development of numerous diseases, including colorectal cancer. In recent years, dietary polyphenols have gained interest due to their antioxidant, pro-apoptotic, and chemopreventive properties. Artichoke (Cynara scolymus L.) by-products are rich source of hydroxycinnamic acids and flavonoids, making them promising source of bioactive compounds. Methods: In this study we evaluated the cytotoxic and pro-apoptotic activity of four aqueous extracts obtained from artichoke bract by-products, including one commercial hybrid (CAPB) and three local Apulian varieties (BriB, VaMB, LMTB), in human colorectal adenocarcinoma cell lines (Caco-2 and HT29). The extracts were characterized according to their total polyphenol content and phenolic profile. Results: The selected artichoke by-product extracts exhibited significant cytotoxic effects both in a concentration- and time-dependent manner, with concentrations ≥ 2 mg/mL significantly reducing cell viability and nearly abolishing it at 4 mg/mL after 48 h. Moreover, treatment with the extracts modulated the expression of apoptosis-related proteins, characterized by an increase in pro-apoptotic markers (Bax, caspase-9, caspase-3) and a decrease in the anti-apoptotic protein Bcl-2, suggesting activation of the mitochondrial apoptotic pathway. In particular, the BriB extract was able to induce an apoptosis rate higher than 80% in Caco-2 cells and achieved comparable rates in HT29 cells at concentrations of 2–3 mg/mL. Conclusions: Overall, these findings demonstrate that artichoke by-product extracts exert significant pro-apoptotic effects in colorectal cancer cells and highlight their potential as sustainable sources of bioactive compounds for nutraceutical or adjuvant anticancer applications. Full article
(This article belongs to the Section Nutrition and Public Health)
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Article
Paeonol-Loaded PLGA Nanoparticles Attenuate DMH-Induced Colorectal Carcinogenesis-Associated Oxidative Stress, Inflammation, and Cellular Dysregulation via Modulation of NRF2/HO-1 Signaling in Rats
by M. Alfawaz, Ekramy M. Elmorsy, Ahmad Najem Alshammari, Eida M. Alshammari, Mai A. Salem, Gehad E. Elshopakey, Manal S. Fawzy and Nagwa M. Aly
Int. J. Mol. Sci. 2026, 27(13), 5673; https://doi.org/10.3390/ijms27135673 - 23 Jun 2026
Cited by 1 | Viewed by 570
Abstract
Colorectal cancer (CRC) is driven by oxidative stress, chronic inflammation, and disruption of cytoprotective signaling pathways. This study aimed to evaluate whether poly(lactic-co-glycolic acid) (PLGA)-based nanoparticle delivery enhances the chemoprotective efficacy of paeonol against 1,2-dimethylhydrazine (DMH)-induced colorectal carcinogenesis, with a focus on modulation [...] Read more.
Colorectal cancer (CRC) is driven by oxidative stress, chronic inflammation, and disruption of cytoprotective signaling pathways. This study aimed to evaluate whether poly(lactic-co-glycolic acid) (PLGA)-based nanoparticle delivery enhances the chemoprotective efficacy of paeonol against 1,2-dimethylhydrazine (DMH)-induced colorectal carcinogenesis, with a focus on modulation of the NRF2/HO-1 pathway. Sixty male Wistar rats were randomly assigned to six groups: control, paeonol (PNL), PNL-PLGA, DMH, DMH + PNL, and DMH + PNL-PLGA. CRC was induced using DMH over 10 weeks. Serum tumor biomarkers (AFP, CEA, CA19-9, CA125, CA15-3), oxidative stress markers (ROS, MDA, antioxidant enzymes), inflammatory cytokines, DNA damage, apoptosis- and autophagy-related gene expression, and hepatic and renal function were assessed. Histopathological and ultrastructural analyses of colonic tissues were performed. DMH exposure was markedly associated with increased tumor biomarkers, oxidative stress, and inflammatory mediators, DNA damage, and impaired liver and kidney function. It was also associated with the restoration of NRF2/HO-1 signaling, improved redox balance, suppression of inflammation, reduction in DNA damage, and preservation of regulated NRF2/HO-1 signaling, antioxidant defenses, autophagy markers, and apoptotic proteins, as well as severe histological and ultrastructural alterations. Free paeonol partially attenuated these changes. In contrast, PNL-PLGA was significantly associated with restoring NRF2/HO-1 signaling, improving redox balance, suppressing inflammation, reducing DNA damage, and preserving colonic architecture and ultrastructure. These findings demonstrate that a PLGA-based nanoformulation of paeonol markedly improves its chemopreventive efficacy against DMH-induced CRC, primarily by activating NRF2/HO-1 signaling and modulating oxidative stress, inflammation, apoptosis, and autophagy, highlighting its potential as a promising nanotherapeutic strategy for colorectal cancer. Full article
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