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Search Results (204)

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17 pages, 900 KiB  
Review
Watercress (Nasturtium officinale) as a Functional Food for Non-Communicable Diseases Prevention and Management: A Narrative Review
by Chikondi Maluwa, Blecious Zinan’dala, Hataichanok Chuljerm, Wason Parklak and Kanokwan Kulprachakarn
Life 2025, 15(7), 1104; https://doi.org/10.3390/life15071104 - 15 Jul 2025
Viewed by 1455
Abstract
Non-communicable diseases (NCDs) such as cardiovascular disease, diabetes, cancer, and chronic respiratory conditions are the leading causes of death globally, largely driven by modifiable lifestyle factors. With growing interest in dietary strategies for NCDs prevention and management, functional foods like watercress (Nasturtium [...] Read more.
Non-communicable diseases (NCDs) such as cardiovascular disease, diabetes, cancer, and chronic respiratory conditions are the leading causes of death globally, largely driven by modifiable lifestyle factors. With growing interest in dietary strategies for NCDs prevention and management, functional foods like watercress (Nasturtium officinale) have attracted attention for their rich phytochemical content and potential health benefits. This narrative review synthesizes 88 sources published between 2019 and March 2025, exploring the effects of watercress bioactive compounds on major NCDs. Watercress is abundant in glucosinolates, isothiocyanates (especially phenethyl isothiocyanate), flavonoids, vitamins, and minerals. These compounds contribute to antioxidant, anti-inflammatory, and metabolic regulatory effects. Preclinical and clinical studies show that watercress supplementation may improve lipid profiles, reduce oxidative stress, and modulate inflammation in cardiovascular and respiratory conditions. It also appears to enhance insulin function and reduce blood glucose levels. In cancer models, watercress extracts exhibit antiproliferative, pro-apoptotic, and chemoprotective properties, with selective toxicity towards cancer cells and protective effects on normal cells. These findings highlight the therapeutic potential of watercress as a dietary adjunct in NCDs prevention and management, supporting the need for further clinical research. Full article
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15 pages, 966 KiB  
Article
Isolation of a Novel Bioactive Fraction from Saffron (Crocus sativus L.) Leaf Waste: Optimized Extraction and Evaluation of Its Promising Antiproliferative and Chemoprotective Effects as a Plant-Based Antitumor Agent
by Raúl Sánchez-Vioque, Julio Girón-Calle, Manuel Alaiz, Javier Vioque-Peña, Adela Mena-Morales, Esteban García-Romero, Lourdes Marchante-Cuevas and Gonzalo Ortiz de Elguea-Culebras
Appl. Sci. 2025, 15(13), 7376; https://doi.org/10.3390/app15137376 - 30 Jun 2025
Viewed by 307
Abstract
Saffron spice is obtained from the flower’s stigmas through a labor-intensive process. However, other organs (particularly the leaves and tepals) are often regarded as waste. To investigate the health benefits of saffron leaf by-products, an optimized methodology was developed to obtain a phenol-enriched [...] Read more.
Saffron spice is obtained from the flower’s stigmas through a labor-intensive process. However, other organs (particularly the leaves and tepals) are often regarded as waste. To investigate the health benefits of saffron leaf by-products, an optimized methodology was developed to obtain a phenol-enriched fraction. The main components of this fraction were identified by HPLC-DAD/ESI-MS and the antiproliferative and metal-chelating effects on colon cancer cells (Caco-2) and Fe2+ and Cu2+ ions, respectively, were evaluated. The process involved the extraction of saffron leaves with a 70% hydroalcoholic solution, followed by purification using liquid chromatography. Chemical characterization revealed the presence of several phenolic compounds, including flavonoids (kaempferol, luteolin and quercetin glycosides) as major constituents; whereas, in vitro assays revealed a strong dose-dependent inhibition of cell proliferation. Likewise, the sample exhibited significant iron- and copper-chelating activity, suggesting its potential as a natural chelator to help mitigate the carcinogenic effects of metal accumulation in humans. In summary, this study underscores the potential of the saffron leaf fraction as a promising natural and complementary chemoprotective agent in colorectal cancer. Additionally, these results underscore the value of agricultural by-products, supporting a circular bioeconomy by reducing environmental impact and promoting the sustainable use of natural resources. Full article
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20 pages, 2926 KiB  
Article
An Experimental Rat Model for Simultaneous Induction of Peripheral Neuropathy and Myelotoxicity by Docetaxel Administration: Evaluating the Protective Role of Dimethyl Fumarate
by Sebastian Cubides-Cely, Alexander David Castro, Pablo Prado-Guevara, Julio César Mantilla-Hernández and Mario Negrette-Guzmán
Int. J. Mol. Sci. 2025, 26(12), 5859; https://doi.org/10.3390/ijms26125859 - 19 Jun 2025
Viewed by 425
Abstract
Docetaxel is extensively used for treating different types of cancer; however, its clinical efficacy is primarily limited by myelotoxicity and peripheral neuropathy, adverse effects that often lead to treatment discontinuation. This study aimed to establish a preclinical model in Wistar rats for the [...] Read more.
Docetaxel is extensively used for treating different types of cancer; however, its clinical efficacy is primarily limited by myelotoxicity and peripheral neuropathy, adverse effects that often lead to treatment discontinuation. This study aimed to establish a preclinical model in Wistar rats for the simultaneous induction of myelotoxicity and peripheral neuropathy associated with docetaxel administration, enabling the evaluation of potential chemopreventive agents. Four distinct docetaxel administration schemes were assessed by performing behavioral nociceptive tests and complete blood cell counts. After establishing the damage model (5 mg/kg/week docetaxel for six weeks), we co-administered 100 mg/kg/week oral dimethyl fumarate to assess its protective effect. Dimethyl fumarate attenuated docetaxel-induced hyperalgesia, likely through preserving normal nerve fiber density in sciatic nerves, but neutropenia was not significantly mitigated. An alternative regimen with additional pre-administered doses of dimethyl fumarate showed a trend toward neutropenia attenuation and suggested an interesting inhibition of docetaxel-induced rat vibrissae loss. Chou-Talalay isobolographic analyses on prostate cancer cell lines revealed that dimethyl fumarate does not impair the therapeutic effect of docetaxel at most combination ratios evaluated; rather, synergistic effects were observed. This experimental model proved useful and will facilitate further research into the protective role of dimethyl fumarate and other potential chemoprotective agents. Full article
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12 pages, 671 KiB  
Article
Statins Are Not Associated with Improved Bladder Cancer Outcomes in Patients with Early-Stage Bladder Cancer Treated with BCG Immunotherapy
by Estelle Ndukwe, Paz Lotan, Michael Risk, Elizabeth L. Koehne, Daniel D. Shapiro, Robert P. Tyllo, Glenn O. Allen, E. Jason Abel, David F. Jarrard and Kyle A. Richards
Cancers 2025, 17(12), 2027; https://doi.org/10.3390/cancers17122027 - 17 Jun 2025
Viewed by 451
Abstract
Background: Statins are commonly used cholesterol-lowering drugs with evidence of additional chemoprotective and immunomodulatory effects resulting from the inhibition of DNA replication, cell proliferation, and TH1-cell inhibition. There are conflicting reports regarding the potential benefit of concurrent statin treatment on non-muscle invasive [...] Read more.
Background: Statins are commonly used cholesterol-lowering drugs with evidence of additional chemoprotective and immunomodulatory effects resulting from the inhibition of DNA replication, cell proliferation, and TH1-cell inhibition. There are conflicting reports regarding the potential benefit of concurrent statin treatment on non-muscle invasive bladder cancer (NMIBC) and specifically on intravesical Bacillus Calmette–Guerin (BCG) outcomes. We therefore aimed to analyze the effects of concurrent BCG and statin use in patients with NMIBC. Methods: National Veterans Affairs databases were used to retrospectively identify men with NMIBC between 2000 and 2010 who were treated with BCG. Pharmacy data was interrogated, and patients were divided according to statin therapy status. Statins had to be given at the beginning of BCG treatments and continued for at least 6 months. Cox proportional hazard ratios after inverse propensity score-weighted and competing risks adjustments were calculated for recurrence, secondary events (e.g., progression), cancer-specific survival, and overall survival. Results: Among 8814 patients, with a median follow-up of 11.3 years, statins were used by 38% of the patients. Patients taking statins were older (71 vs. 68, p < 0.0001), had more comorbidities (Charlson Comorbidity Index (CCI > 2; 38.6% vs. 31.4%, p < 0.0001), and had a higher-grade disease (40.2% vs. 34.3%, p < 0.0001) compared to those not on statins. After adjusting for stage, grade, age, race, CCI, agent orange exposure, and year of diagnosis, Cox proportional hazard analysis revealed no association with recurrence (HR 1.05, 95% CI 0.97–1.15, p = 0.23), secondary events (HR 0.91, 95% CI 0.80–1.05, p = 0.189), or bladder cancer specific survival (HR 0.88, 95% CI 0.76–1.02, p = 0.09) of statin use. However, statins were associated with improved overall survival (HR 0.89, 95% CI 0.83–0.96, p = 0.002). Conclusions: Concurrent statin and BCG use in patients with NMIBC was associated with improved overall survival, but not recurrence, secondary events, or bladder cancer-specific survival. These results confirm the real-world well-established cardiovascular benefit of statin treatment and primary preventive care. However, this large population study did not find any association between statins and the outcomes of patients with NMIBC treated with BCG immunotherapy. Full article
(This article belongs to the Special Issue Recent Advances in Non-muscle Invasive Bladder Cancer)
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17 pages, 1433 KiB  
Article
Insights into Chemopreventive Effects of Rosmarinic Acid Against Aflatoxin B1-Induced Genotoxic Effects
by Veronika Furlan, Matjaž Novak, Martina Štampar, Alja Štern, Bojana Žegura and Urban Bren
Foods 2025, 14(12), 2111; https://doi.org/10.3390/foods14122111 - 16 Jun 2025
Viewed by 407
Abstract
In this study, the chemopreventive effects of rosmarinic acid (RA), a major phenolic acid of the plant Rosmarinus officinalis L., against the carcinogenic naturally occurring mycotoxin aflatoxin B1 (AFB1) were investigated using both in silico and in vitro approaches. The in silico investigation [...] Read more.
In this study, the chemopreventive effects of rosmarinic acid (RA), a major phenolic acid of the plant Rosmarinus officinalis L., against the carcinogenic naturally occurring mycotoxin aflatoxin B1 (AFB1) were investigated using both in silico and in vitro approaches. The in silico investigation of the chemical reactions between rosmarinic acid and the carcinogenic metabolite of AFB1, aflatoxin B1 exo-8,9-epoxide (AFBO), was conducted by activation free energies calculations with DFT functionals M11-L and MN12-L, in conjunction with the 6-311++G(d,p) flexible basis set and implicit solvation model density (SMD), according to a newly developed quantum mechanics-based protocol for the evaluation of carcinogen scavenging activity (QM-CSA). Following the computational analyses, the chemoprotective effects of RA were further studied in vitro in human hepatocellular carcinoma HepG2 cells by analyzing its influence on AFB1-induced genotoxicity using a comet assay, γH2AX, and p-H3, while its impact on cell proliferation and cell cycle modulation was assessed using flow cytometry. Our computational results revealed that the activation free energy required for the reaction of RA with AFBO (14.86 kcal/mol) is significantly lower than the activation free energy for the competing reaction of AFBO with guanine (16.88 kcal/mol), which indicates that RA acts as an efficient natural scavenger of AFBO, potentially preventing AFB1-specific DNA adduct formation. The chemoprotective activity of RA was confirmed through in vitro experiments, which demonstrated a statistically significant (p < 0.05) reduction in AFB1-induced single- and double-strand breaks in HepG2 cells exposed to a mixture of AFB1 and RA at non-cytotoxic concentrations. In addition, RA reversed the AFB1-induced reduction in cell proliferation. Full article
(This article belongs to the Special Issue Potential Health Benefits of Plant Food-Derived Bioactive Compounds)
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18 pages, 4962 KiB  
Article
Durability Assessment of Eco-Friendly Intumescent Coatings Based on Cork and Waste Glass Fillers for Naval Fire Safety
by Elpida Piperopoulos, Giuseppe Scionti, Mario Atria, Luigi Calabrese, Antonino Valenza and Edoardo Proverbio
Polymers 2025, 17(12), 1659; https://doi.org/10.3390/polym17121659 - 15 Jun 2025
Viewed by 476
Abstract
This research assessed novel, eco-friendly intumescent coatings utilizing cork and recycled glass as sustainable alternatives to synthetic fire retardants, aiming to reduce environmental impact while maintaining robust fire performance. Coatings underwent up to 600 h of UV light exposure for durability assessment, followed [...] Read more.
This research assessed novel, eco-friendly intumescent coatings utilizing cork and recycled glass as sustainable alternatives to synthetic fire retardants, aiming to reduce environmental impact while maintaining robust fire performance. Coatings underwent up to 600 h of UV light exposure for durability assessment, followed by chemo-physical characterization. Fire exposure tests evaluated in-situ char formation and foaming. All functionalized coatings exhibited suitable intumescent behavior, forming protective char layers even after extensive UV aging. Microscopic analysis showed good additive integration, while FTIR spectroscopy revealed UV-induced chemical changes. Fire resistance tests confirmed the superior performance of functionalized coatings over the commercial reference. The AP-IC system demonstrated the best intumescence, achieving significantly lower maximum temperatures (e.g., 167.3 °C for AP-IC-600) and heating rates. Crucially, the sustainable RG-IC and CK-IC batches showed promising intumescent properties, even improving with UV exposure. Notably, the foamed cross-sectional area of the aged RG-IC samples doubled compared to their unaged counterparts, reaching a maximum temperature of 166.9 °C. These findings highlight the potential of eco-friendly hybrid coatings to enhance fire safety, particularly in critical sectors like naval engineering, aligning with circular economy principles and the growing demand for sustainable, high-performance materials. Full article
(This article belongs to the Special Issue Recent Advances in Flame-Retardant Polymeric Materials)
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15 pages, 1249 KiB  
Systematic Review
Oral Bisphosphonates for Colorectal Cancer Prevention: A Meta-Analytic Reappraisal Beyond Bone Health
by Enrico Altiero Giusto, Rossella Donghia, Carlotta Giorgi, Paolo Pinton and Francesco Fiorica
J. Clin. Med. 2025, 14(11), 3702; https://doi.org/10.3390/jcm14113702 - 25 May 2025
Viewed by 555
Abstract
Background: Oral bisphosphonates (BPs) are the standard therapy for osteoporosis and skeletal metastases, and exhibit anti-tumor properties in preclinical models. Observational studies assessing their impact on colorectal cancer (CRC) risk have yielded inconsistent results. We aimed to systematically review and meta-analyze the association [...] Read more.
Background: Oral bisphosphonates (BPs) are the standard therapy for osteoporosis and skeletal metastases, and exhibit anti-tumor properties in preclinical models. Observational studies assessing their impact on colorectal cancer (CRC) risk have yielded inconsistent results. We aimed to systematically review and meta-analyze the association between oral bisphosphonate use and CRC risk, applying a unified exposure definition. Methods: A systematic search was conducted in PubMed, Embase, and Scopus (January 1966–April 2025) to identify cohort, nested case–control, or population-based case–control studies reporting adjusted estimates of relative risk, odds ratios (ORs), or hazard ratios (HRs) for CRC among oral bisphosphonate users. Two reviewers independently screened studies, extracted data, and assessed quality using the Newcastle–Ottawa Scale. Random-effects meta-analyses pooled risk estimates for “any use” of bisphosphonates, with subgroup analyses by duration of use (<1, 1–3, >3 years). We assessed publication bias through Egger’s test and the trim-and-fill method. Results: A total of eight studies published between 2010 and 2020, including 29,169 CRC cases, fulfilled the inclusion criteria. Any bisphosphonate use was not significantly associated with CRC risk (pooled OR 0.97; 95% C.I., 0.90–1.03). However, 1–3 years of use conferred a protective effect (OR 0.86; 95% C.I., 0.73–0.99), as did >3 years (OR 0.91; 95% C.I., 0.85–0.97). Heterogeneity was moderate, and no significant publication bias was detected. Conclusions: While overall oral bisphosphonate exposure is not significantly linked to CRC risk, prolonged use (≥1 year) appears to reduce risk. Prospective studies and randomized trials are needed to confirm these chemo-preventive effects and guide clinical recommendations. Full article
(This article belongs to the Special Issue Comprehensive Treatment of Rectal Cancer)
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17 pages, 4211 KiB  
Article
Blood Chemo-Profiling in Workers Exposed to Occupational Pyrethroid Pesticides
by Ohoud O. Sufyani, Magbool E. Oraiby, Ibraheem M. Attafi, Elsiddig Noureldin, Ommer Dafallah, Yahya A. Hobani, Sultan Qumayi, Ahmad Sahly, Yasser Majrabi, Ali Maashi, Abdulaziz A. Almane, Zaki M. Eisa, Abdullah Alaamri, Waheed Mohammed, Ahmed M. Hakami, Mohammed A. Attafi, Ibrahim A. Khardali, Ala’udin Hakami, Ebraheem Alkhyat and Mari H. Alnashri
Int. J. Environ. Res. Public Health 2025, 22(5), 769; https://doi.org/10.3390/ijerph22050769 - 13 May 2025
Viewed by 545
Abstract
This study investigates the effect of occupational exposure to pyrethroid insecticides on the blood chemo-profiles of workers in the Jazan region. This study was conducted to examine this issue, and workers were divided into exposure groups based on how long they had been [...] Read more.
This study investigates the effect of occupational exposure to pyrethroid insecticides on the blood chemo-profiles of workers in the Jazan region. This study was conducted to examine this issue, and workers were divided into exposure groups based on how long they had been employed—from one to two years to more than eight years. Blood samples were analyzed to determine their hematological and biochemical parameters, and their chemo-profiles were assessed by GCMS analysis. Workers exposed for 8+ years had a 3.7 times higher risk of chronic diseases than those exposed for 1–2 years (p < 0.01). Prolonged exposure to pyrethroid pesticides at work is linked to significant changes in blood chemical profiles. While gamma-glutamyl transferase (GGT) levels (p < 0.05) were rather increased by extended exposure times, albumin levels (p < 0.05) showed a significant decrease. These findings suggest re-evaluating and improving workplace safety practices to protect workers from extended pyrethroid exposure. Full article
(This article belongs to the Section Environmental Health)
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17 pages, 1647 KiB  
Article
Dapagliflozin and Silymarin Ameliorate Cisplatin-Induced Nephrotoxicity via Nrf2/HO-1 Upregulation: A Preclinical Mechanistic Study
by Shakta Mani Satyam, Laxminarayana Kurady Bairy, Abdul Rehman, Anuradha Asokan Nair, Mohamed Farook, Nirmal Nachiketh Binu, Sofiya Khan, Mohamed Yehya and Mohammed Moin Khan
Sci 2025, 7(2), 59; https://doi.org/10.3390/sci7020059 - 8 May 2025
Cited by 1 | Viewed by 974
Abstract
This study evaluated the nephroprotective potential of dapagliflozin and silymarin, alone and in combination, against cisplatin-induced kidney damage in female Wistar rats. Cisplatin was administered at 3 mg/kg weekly to all groups except the normal controls, with treatments of silymarin (50 mg/kg/day), dapagliflozin [...] Read more.
This study evaluated the nephroprotective potential of dapagliflozin and silymarin, alone and in combination, against cisplatin-induced kidney damage in female Wistar rats. Cisplatin was administered at 3 mg/kg weekly to all groups except the normal controls, with treatments of silymarin (50 mg/kg/day), dapagliflozin (0.9 mg/kg/day), or both for 45 days. Dapagliflozin significantly reduced uric acid, the urea-to-creatinine ratio, and serum urea levels compared to nephrotoxic controls, while combination therapy showed further improvements. Both agents decreased inflammatory markers like TNF-alpha, IL-6, and IL-1 beta, with enhanced effects in combination. Oxidative stress markers, including nitrite and 4-HNE, were lowered, and antioxidant enzyme activities (catalase, SOD, and GSH-Px) were increased by dapagliflozin and silymarin, with the combined treatment yielding the most substantial improvements. Molecular analysis revealed elevated Nrf2 and HO-1 levels, which are critical for oxidative stress mitigation, particularly with combination therapy. Histologically, combination therapy preserved renal structure, closely resembling normal controls, while dapagliflozin and silymarin alone showed moderate inflammation and structural alterations. These findings highlight the effect of dapagliflozin and silymarin, especially in combination, to mitigate cisplatin-induced nephrotoxicity by reducing oxidative stress, inflammation, and apoptosis via modulation of the Nrf2/HO-1 pathway. Full article
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16 pages, 12926 KiB  
Article
B Cell Activating Factor Induces Drug Resistance in Hairy Cell Leukemia Variant
by Claire Fritz, Daniel Feinberg, Akshaya Radhakrishnan, Kayla Klatt, E. Ricky Chan, Philip Rock, Richard Burack and Reshmi Parameswaran
Biomedicines 2025, 13(4), 890; https://doi.org/10.3390/biomedicines13040890 - 7 Apr 2025
Viewed by 678
Abstract
Background: Chemoresistance is an existing challenge faced in the treatment of the hairy cell leukemia variant (HCL-v). Classical hairy cell leukemia (HCL-c) is very sensitive to the standard of care with purine nucleoside analogs (PNAs) cladribine (cDa) and pentostatin. However, almost half of [...] Read more.
Background: Chemoresistance is an existing challenge faced in the treatment of the hairy cell leukemia variant (HCL-v). Classical hairy cell leukemia (HCL-c) is very sensitive to the standard of care with purine nucleoside analogs (PNAs) cladribine (cDa) and pentostatin. However, almost half of these patients eventually become less sensitive to chemotherapy and relapse. HCL-variant (HCL-v) is a biologically distinct entity from HCL-c that is not sensitive to frontline PNA therapy, and this treatment is not recommended for these patients. To address these treatment challenges, we investigated the role of B-cell activating factor (BAFF) in promoting HCL-v cell chemoresistance. Methods: Flow cytometry and quantitative PCR were used to measure the levels of BAFF and its receptors. To determine BAFF activated pathways in HCL-c and HCL-v, the Bonna-12 HCL-c cell line or HCL-v patient-derived cancer cells were stimulated with recombinat BAFF and activation of common BAFF-activated pathways, including the nonclassical nuclear factor kappa B (NF-κB) pathway, the Extracellular Signal-Regulated Kinase (Erk) and phosphatidylinositol-3 (PI-3) kinase (PI3K)/AKT serine/threonine kinase (AKT) pathways were measured by western blotting. To test whether BAFF signaling promotes chemoresistance in HCL-v, we stimulated patient-derived HCL-v cells with BAFF and performed RNA sequencing. Lastly, to confirm the functional implications of BAFF signaling in HCL-v, we treated patient-derived HCL-v cells with exogenous BAFF before treatment with cladribine. Results: We found that HCL-v patient-derived cancer cells express receptors of BAFF at varying degrees and express relatively lower levels of membrane-bound BAFF ligand expression. BAFF stimulation of these cells resulted in substantial activation of the nonclassical NF-κB pathway, which is known to promote anti-apoptotic and pro-survival effects in B-cell cancers. Conversely, in the Bonna-12 cell line, we observed constitutive activation of the nonclassical NF-κB pathway. Through RNA sequencing, we found that BAFF upregulates a myriad of genes that are known to promote chemoresistance in various cancers, including IL1, CXCL1/2, CXCL5, CXCL8, TRAF3, and PTGS2. Lastly, we found that BAFF protects these cells from cladribine-induced cell death in vitro. Conclusions: We conclude that BAFF provides chemo-protection in HCL-v cells by activating nonclassical NF-κB signaling, which results in the upregulation of multiple pro-survival or anti-apoptotic genes. Our results highlight an important role of BAFF in HCL-v resistance to chemotherapy and suggest that the BAFF blockade may enhance the chemosensitivity to PNAs in drug-resistant HCL-v patients. Full article
(This article belongs to the Special Issue Drug Resistance and Novel Targets for Cancer Therapy—Second Edition)
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27 pages, 2977 KiB  
Article
Evaluation of the Antioxidant Properties and Bioactivity of Koroneiki and Athinolia Olive Varieties Using In Vitro Cell-Free and Cell-Based Assays
by Maria Gkasdrogka, Fotios Tekos, Zoi Skaperda, Periklis Vardakas and Demetrios Kouretas
Int. J. Mol. Sci. 2025, 26(2), 743; https://doi.org/10.3390/ijms26020743 - 16 Jan 2025
Viewed by 1290
Abstract
Olive oil and table olives are considered staples of the Mediterranean diet and have been associated with various health benefits. Literature reports that the final composition of the olive drupe is greatly affected by varietal and agronomic factors, each contributing to a different [...] Read more.
Olive oil and table olives are considered staples of the Mediterranean diet and have been associated with various health benefits. Literature reports that the final composition of the olive drupe is greatly affected by varietal and agronomic factors, each contributing to a different degree. To that end, the objective of the study was the evaluation of the contribution of different agronomic conditions applied to two Greek olive varieties (Koroneiki, Mastoidis) using a holistic approach of in vitro methods. The findings highlight the importance of the application of a combination of agronomic techniques for each variety, as marked by the differences found in the antioxidant radical-scavenging and reducing power assays. Furthermore, the results obtained from the measurement of redox biomarkers (GSH, ROS, TBARS) in cell lines (EA.hy926, HepG2, MKN45) treated with olive samples demonstrate the capacity of the samples to induce redox imbalance, either by protecting normal cells from damage, or by inducing oxidative damage in cancer cell lines, with the Athinolia samples exhibiting greater antioxidant potential at lower concentrations. This particular finding could have further applications in possible chemo-preventive approaches facilitated by antioxidant compounds of natural origins. Full article
(This article belongs to the Special Issue Insights into Redox Homeostasis and Oxidative Stress)
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11 pages, 1472 KiB  
Article
Exploring the Anticancer Potential of MonoHER (7-Mono-O-(β-Hydroxyethyl)-Rutoside): Mitochondrial-Dependent Apoptosis in HepG2 Cells
by Chujie Li, Yue Wang, Jian Liang, Guido R. M. M. Haenen, Yonger Chen, Zhengwen Li, Ming Zhang and Ludwig J. Dubois
Curr. Issues Mol. Biol. 2025, 47(1), 36; https://doi.org/10.3390/cimb47010036 - 9 Jan 2025
Viewed by 1145
Abstract
Background/Aim: Flavonoids are a group of polyphenols, abundantly present in our diet. Although, based on their chemoprotective effects, intake of flavonoids is associated with a high anticancer potential as evidenced in in vitro and in vivo models, the molecular mechanism is still elusive. [...] Read more.
Background/Aim: Flavonoids are a group of polyphenols, abundantly present in our diet. Although, based on their chemoprotective effects, intake of flavonoids is associated with a high anticancer potential as evidenced in in vitro and in vivo models, the molecular mechanism is still elusive. This study explores the antiproliferative and cytotoxic effects of the semi-synthetic flavonoid MonoHER (7-mono-O-(β-hydroxyethyl)-rutoside) in vitro on cancer cells. Materials and Methods: HepG2 liver, MCF7 breast, and H1299 lung cancer cells were grown under ambient conditions with or without MonoHER exposure. CCK8 assay was used to assess cell viability. Apoptosis, JC-1, and mitochondrial mass were determined using flow cytometry and confocal analysis. The effects of monoHER on apoptosis proteins were detected by confocal microscopy analysis and Western blot. Results: It was found that MonoHER can reduce HepG2 cells’ and MCF7 cells’ viability, but not H1299 cells’, and induced apoptosis only in HepG2 cells. MonoHER has the potential to enhance the expression of caspase-9 and caspase-3, to damage mitochondria, and to provoke the release of cytochrome C from the mitochondria. Conclusion: MonoHER can inhibit cell growth and induce apoptosis especially in HepG2 human liver cancer cells by triggering the mitochondrial signal transduction pathway, leading to the release of cytochrome C in the cytoplasm and the subsequent activation of caspase-9 and caspase-3. Future research should further explore MonoHER’s mechanism of action, efficacy, and potential for clinical translation. Full article
(This article belongs to the Special Issue The Role of Natural Compounds in Cancer Therapy)
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20 pages, 5057 KiB  
Article
Chemoprotective Mechanism of Sodium Thiosulfate Against Cisplatin-Induced Nephrotoxicity Is via Renal Hydrogen Sulfide, Arginine/cAMP and NO/cGMP Signaling Pathways
by George J. Dugbartey, Karl K. Alornyo, Ismaila Adams, Samuel Adjei, Daniel Amoah and Richard Obeng-Kyeremeh
Int. J. Mol. Sci. 2025, 26(1), 384; https://doi.org/10.3390/ijms26010384 - 4 Jan 2025
Cited by 1 | Viewed by 3618
Abstract
Cisplatin is a common and highly effective chemotherapeutic agent whose nephrotoxic side effect is well-characterized. Sodium thiosulfate (STS), an FDA-approved hydrogen sulfide (H2S) donor drug, is emerging as a chemoprotective agent against cisplatin-induced nephrotoxicity (CIN). In this study, we investigated the [...] Read more.
Cisplatin is a common and highly effective chemotherapeutic agent whose nephrotoxic side effect is well-characterized. Sodium thiosulfate (STS), an FDA-approved hydrogen sulfide (H2S) donor drug, is emerging as a chemoprotective agent against cisplatin-induced nephrotoxicity (CIN). In this study, we investigated the chemoprotective mechanism of STS in a rat model of CIN. Twenty-five male Sprague Dawley rats were randomly assigned to the following groups: HC: Healthy control (received 10 mL/kg/day of 0.9% saline intraperitoneally (ip), [n = 5]), CIN: Cisplatin (received single dose of 7 mg/kg cisplatin ip [n = 5]); CIN + PAG: Cisplatin and daily ip administration of 40 mg/kg of the H2S inhibitor, DL-propargylglycine (PAG) for 28 days (n = 5); CIN + PAG + STS: Cisplatin and daily PAG and STS (150 µM) ip injection for 28 days; CIN + STS: Cisplatin and daily STS ip administration for 28 days (n = 5). Rats in each group were kept in metabolic cages for 24 h on day 0, 14 and 29 after cisplatin administration for urine collection. Rats were then euthanized, and kidney and blood samples were collected for analysis. Histologically, CIN was characterized by glomerular and tubular injury and significant macrophage influx and tubular apoptosis, as well as markedly increased levels of plasma and renal IL-1β, IL-6 and TNF-α and impaired renal antioxidant status compared to HC rats (p < 0.001). These pathological changes were exacerbated in CIN + PAG rats and were strongly reduced in CIN + PAG + STS rats relative to CIN + PAG rats (p < 0.01), while superior renal protection was observed in CIN + STS rats. Functionally, CIN was evidenced by markedly increased levels of serum creatinine and BUN, and significantly decreased urine creatinine, renal creatinine clearance, as well as electrolyte imbalance and urinary concentrating defect in comparison with HC (p < 0.01). These functional changes worsened significantly in CIN + PAG rats (p < 0.05) but improved in CIN + PAG + STS rats, with further improvement in CIN + STS rats to levels comparable to HC rats. Mechanistically, STS increased renal and plasma levels of H2S, arginine, cAMP, nitric oxide (NO) and cGMP as well as SIRT3 and PGC-1α. We have shown for the first time that STS provides chemoprotection against CIN by activating renal arginine/cAMP and NO/cGMP signaling pathways and their downstream mechanisms through increased renal H2S production. Full article
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18 pages, 5480 KiB  
Article
A Novel In Vitro Model of the Bone Marrow Microenvironment in Acute Myeloid Leukemia Identifies CD44 and Focal Adhesion Kinase as Therapeutic Targets to Reverse Cell Adhesion-Mediated Drug Resistance
by Eleni E. Ladikou, Kim Sharp, Fabio A. Simoes, John R. Jones, Thomas Burley, Lauren Stott, Aimilia Vareli, Emma Kennedy, Sophie Vause, Timothy Chevassut, Amarpreet Devi, Iona Ashworth, David M. Ross, Tanja Nicole Hartmann, Simon A. Mitchell, Chris J. Pepper, Giles Best and Andrea G. S. Pepper
Cancers 2025, 17(1), 135; https://doi.org/10.3390/cancers17010135 - 3 Jan 2025
Viewed by 1870
Abstract
Background/Objectives: Acute myeloid leukemia (AML) is an aggressive neoplasm. Although most patients respond to induction therapy, they commonly relapse due to recurrent disease in the bone marrow microenvironment (BMME). So, the disruption of the BMME, releasing tumor cells into the peripheral circulation, has [...] Read more.
Background/Objectives: Acute myeloid leukemia (AML) is an aggressive neoplasm. Although most patients respond to induction therapy, they commonly relapse due to recurrent disease in the bone marrow microenvironment (BMME). So, the disruption of the BMME, releasing tumor cells into the peripheral circulation, has therapeutic potential. Methods: Using both primary donor AML cells and cell lines, we developed an in vitro co-culture model of the AML BMME. We used this model to identify the most effective agent(s) to block AML cell adherence and reverse adhesion-mediated treatment resistance. Results: We identified that anti-CD44 treatment significantly increased the efficacy of cytarabine. However, some AML cells remained adhered, and transcriptional analysis identified focal adhesion kinase (FAK) signaling as a contributing factor; the adhered cells showed elevated FAK phosphorylation that was reduced by the FAK inhibitor, defactinib. Importantly, we demonstrated that anti-CD44 and defactinib were highly synergistic at diminishing the adhesion of the most primitive CD34high AML cells in primary autologous co-cultures. Conclusions: Taken together, we identified anti-CD44 and defactinib as a promising therapeutic combination to release AML cells from the chemoprotective AML BMME. As anti-CD44 is already available as a recombinant humanized monoclonal antibody, the combination of this agent with defactinib could be rapidly tested in AML clinical trials. Full article
(This article belongs to the Special Issue Targeting the Tumor Microenvironment (Volume II))
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12 pages, 637 KiB  
Review
Evaluating the Role of Aspirin in Liver Disease: Efficacy, Safety, Potential Benefits and Risks
by Amani Elshaer and Blanca C. Lizaola-Mayo
Life 2024, 14(12), 1701; https://doi.org/10.3390/life14121701 - 23 Dec 2024
Viewed by 2332
Abstract
The rise in liver disease incidence and prevalence has led to increasing morbidity and mortality worldwide. Persistent hepatic inflammation drives disease progression by increasing fibrosis, advancing to cirrhosis, and potentially developing into hepatocellular carcinoma (HCC). Addressing these complications is essential to reduce liver-related [...] Read more.
The rise in liver disease incidence and prevalence has led to increasing morbidity and mortality worldwide. Persistent hepatic inflammation drives disease progression by increasing fibrosis, advancing to cirrhosis, and potentially developing into hepatocellular carcinoma (HCC). Addressing these complications is essential to reduce liver-related mortality. Recent studies suggest that non-steroidal anti-inflammatory drugs, particularly aspirin, may play a beneficial role in managing liver disease. Aspirin’s anti-inflammatory and chemoprotective effects contribute to slowing disease progression and reducing the risks associated with chronic liver disease (CLD). This review highlights the current literature on the effects of aspirin in CLD, with a focus on patients with metabolic-associated steatotic liver disease (MASLD) and hepatitis B and C. We will examine aspirin’s potential ability to mitigate fibrosis, reduce the incidence of HCC, and lower liver-related mortality. Additionally, we will discuss its potential side effects and safety considerations, particularly in the context of liver disease, where there is an increased risk of bleeding. Full article
(This article belongs to the Section Pharmaceutical Science)
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