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Keywords = hepatorenal damage

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25 pages, 7982 KB  
Article
Mechanistic Biological Insights into the Effects of Resveratrol and Nano-Resveratrol on EAT-Induced Hepatorenal Damage
by Nada Oršolić, Snježana Ramić, Ivana Turk and Daniela Ančić
Nutrients 2026, 18(15), 2444; https://doi.org/10.3390/nu18152444 - 27 Jul 2026
Viewed by 385
Abstract
Background/Objectives: Malignant ascites is characterized by extensive tumor dissemination within the peritoneal cavity, abnormal fluid accumulation, and progressive multiorgan dysfunction, including hepatic and renal impairment. Methods: The present study was conducted to evaluate the protective effects of resveratrol (RSV) and its nanocrystal formulation [...] Read more.
Background/Objectives: Malignant ascites is characterized by extensive tumor dissemination within the peritoneal cavity, abnormal fluid accumulation, and progressive multiorgan dysfunction, including hepatic and renal impairment. Methods: The present study was conducted to evaluate the protective effects of resveratrol (RSV) and its nanocrystal formulation (NANO-RSV) at doses of 25 and 50 mg/kg against Ehrlich ascites tumor (EAT)-induced hepatic and renal injury by assessing proliferating cell nuclear antigen (PCNA) expression and apoptosis/necrosis rates, which are key indicators of tissue injury, repair, and regeneration. In addition, microvessel density (MVD) was evaluated in peritoneal tumor tissue, liver, and kidneys to assess angiogenesis and tissue remodeling, while macrophage polarization in the spleen was examined to determine the immunomodulatory effects of RSV and NANO-RSV. Results: Resveratrol and its nano formulations acted as potent inhibitors of EAT cells growth through downregulation of PCNA expression, leading to increased tumor cell death via apoptosis and secondary necrosis. In EAT-bearing mice, the hypoxic microenvironment was associated with increased PCNA expression, enhanced angiogenesis, and reduced apoptosis in hepatic tissue. In contrast, treatment with resveratrol and nano-resveratrol reduced PCNA expression, increased apoptotic activity, suppressed angiogenesis, and induced hepatic steatosis. Progression of steatosis, particularly in resveratrol-treated animals, was associated with impaired hepatic regenerative capacity. In the kidneys, elevated PCNA expression and increased cell death indicated active tissue injury accompanied by compensatory proliferative responses. Furthermore, increased splenic arginase-1 activity correlated with enhanced tissue damage and activation of M2 macrophage-mediated repair mechanisms. Conclusions: In conclusion, resveratrol exhibits significant antitumor activity but may induce organ toxicity, whereas its nanocrystals formulation demonstrates improved safety while maintaining efficacy. Enhanced stability, bioavailability, and sustained-release properties of nano-resveratrol contribute to reduced hepatic and renal injury compared with native resveratrol. Full article
(This article belongs to the Special Issue Effect of Terpenoids and Phenolic Compounds in Human Health)
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21 pages, 2478 KB  
Article
Dietary Probiotics Modulate Oxidative Stress, Metabolic Status, and Immune-Related Gene Expression in Nile Tilapia (Oreochromis niloticus) Exposed to Malathion
by Abdullah A. A. Alghamdi
Vet. Sci. 2026, 13(5), 441; https://doi.org/10.3390/vetsci13050441 - 30 Apr 2026
Cited by 1 | Viewed by 1188
Abstract
Malathion, a widely used organophosphate pesticide, frequently contaminates aquatic ecosystems and poses considerable toxic risks to non-target organisms, including fish. The present study provides an integrated evaluation of the protective effects of dietary probiotics against malathion-associated oxidative, metabolic, and immune-related disturbances in Nile [...] Read more.
Malathion, a widely used organophosphate pesticide, frequently contaminates aquatic ecosystems and poses considerable toxic risks to non-target organisms, including fish. The present study provides an integrated evaluation of the protective effects of dietary probiotics against malathion-associated oxidative, metabolic, and immune-related disturbances in Nile tilapia at the biochemical and molecular levels. After determining the 96 h LC50 of malathion, fish were exposed to a sublethal concentration for 7 days followed by a 14-day recovery period while receiving either a basal or probiotic-supplemented diet. Malathion exposure increased cumulative mortality, induced behavioral stress, and caused metabolic and hepatorenal disturbances characterized by elevated serum glucose and cholesterol, altered serum protein fractions, increased alanine and aspartate aminotransferase activities, and elevated creatinine and uric acid levels. Oxidative stress was evidenced by increased serum malondialdehyde and transcriptional suppression of antioxidant-related genes (sod-2 and cat) in the liver, spleen, and intestine. Malathion also triggered immune dysregulation through the upregulation of pro-inflammatory cytokine genes (il-1β and tnf-α) and suppression of regulatory cytokines (tgf-β and il-10). Probiotic supplementation during recovery significantly reduced mortality, restored metabolic and hepatorenal biomarkers, attenuated oxidative damage, and enhanced antioxidant capacity at both the biochemical and transcriptional levels. Moreover, probiotic-supplemented fish exhibited controlled pro-inflammatory signaling accompanied by the pronounced activation of regulatory cytokines, indicating balanced immune modulation. Collectively, dietary probiotics effectively mitigate malathion-induced toxicity by improving antioxidant defense, immune regulation, and physiological resilience, highlighting their potential as functional dietary additives for sustainable aquaculture in Nile tilapia. Full article
(This article belongs to the Special Issue Advances in Zoo, Aquatic, and Wild Animal Medicine)
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15 pages, 274 KB  
Article
Mn2O3 Nanoparticles as a Potential Neuronal Threat Despite Hepatorenal Benefits—Implications for Dietary Supplementation
by Karolina Różaniecka-Zwolińska, Ewelina Cholewińska, Przemysław Sołek, Jerzy Juśkiewicz and Katarzyna Ognik
Antioxidants 2026, 15(5), 567; https://doi.org/10.3390/antiox15050567 - 29 Apr 2026
Viewed by 526
Abstract
Manganese (Mn) is an essential trace element crucial for antioxidant defense, metabolism, and neuronal function, yet both deficiency and excess may induce oxidative stress and organ-specific damage. This study investigated the effects of dietary manganese exclusion and replacement of standard MnCO3 with [...] Read more.
Manganese (Mn) is an essential trace element crucial for antioxidant defense, metabolism, and neuronal function, yet both deficiency and excess may induce oxidative stress and organ-specific damage. This study investigated the effects of dietary manganese exclusion and replacement of standard MnCO3 with Mn2O3 nanoparticles on redox status and oxidative damage in rats. Twenty-four male Wistar rats were divided into three groups: control (K) receiving 65 mg/kg Mn as MnCO3, manganese-deficient (B), and nanoparticle-supplemented (N) receiving 65 mg/kg Mn as Mn2O3 nanoparticles. After 12 weeks, tissues were analyzed for oxidative stress markers and antioxidant enzyme activities. Manganese deficiency resulted in decreased plasma SOD activity, increased lipid peroxidation, and severe oxidative–nitrosative damage in the brain and jejunum, despite hepatic compensatory mechanisms. Mn2O3 nanoparticle supplementation enhanced hepatic and renal antioxidant capacity, reducing oxidative damage in these organs. However, nanoparticles induced pronounced neurotoxicity, characterized by GSH depletion, elevated DNA damage (8-OHdG), protein nitration (3-NT), and caspase activation in brain tissue. These findings demonstrate that while Mn2O3 nanoparticles offer improved bioavailability and hepatorenal benefits, they pose significant neurotoxic risks, necessitating caution in dietary supplementation strategies. Full article
24 pages, 4493 KB  
Article
A Natural Monoterpene, Carvacrol, Mitigates Bisphenol A-Triggered Hepatorenal Oxidative Damage, Pro-Inflammatory Gene Expression, and Histopathological Alterations in Rats
by Nurtaç Küçükbüğrü and Ulas Acaroz
Life 2026, 16(4), 643; https://doi.org/10.3390/life16040643 - 10 Apr 2026
Viewed by 638
Abstract
Bisphenol A (BPA) is a widely used endocrine-disrupting chemical that has been linked to oxidative stress and inflammation. This study investigated whether carvacrol (CAR), a natural monoterpene with antioxidant potential, mitigates BPA-induced hepatorenal toxicity in rats. Forty-two male Wistar albino rats were allocated [...] Read more.
Bisphenol A (BPA) is a widely used endocrine-disrupting chemical that has been linked to oxidative stress and inflammation. This study investigated whether carvacrol (CAR), a natural monoterpene with antioxidant potential, mitigates BPA-induced hepatorenal toxicity in rats. Forty-two male Wistar albino rats were allocated into six groups (n = 7/group): control, vehicle (corn oil), BPA (25 mg/kg/day), and BPA co-administered with CAR (12.5, 25, or 50 mg/kg/day) by oral gavage for 30 days. Oxidative status was assessed in liver and kidney homogenates by measuring malondialdehyde (MDA), reduced glutathione (GSH), and the activities of superoxide dismutase (SOD) and catalase (CAT). In addition, histopathological evaluations were performed, and pro-inflammatory gene expression (NF-κB, TNF-α, and IFN-γ) was quantified by RT-qPCR. BPA induced a consistent pro-oxidant pattern, including increased hepatic MDA with depleted antioxidant defenses, and upregulated inflammatory transcripts. Carvacrol attenuated these alterations in a dose-dependent manner, and the CAR50 group was associated with statistically supported improvements across the oxidative stress panel, pro-inflammatory transcript expression, and histopathology scores. Overall, these findings identify carvacrol as a candidate for further preclinical evaluation against BPA-triggered oxidative and inflammatory disturbances in vivo; however, human-relevant extrapolation will require careful attention to dose scaling, bioavailability, and metabolism. Full article
(This article belongs to the Section Physiology and Pathology)
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22 pages, 5347 KB  
Article
Boron Triggers Hepatic Ferroptosis: Unveiling the Dual-Pathogenic Nexus of Oxidative Stress and SLC7A11/GPX4 Dysregulation
by Ting He, Yumeng Li, Jiangli Huang, Weiqian Su, Siying Liu, Jinwen Quan, Gaolong Zhong, Zhonghua Liu, Dayou Shi and Wenlan Yu
Animals 2026, 16(5), 832; https://doi.org/10.3390/ani16050832 - 6 Mar 2026
Cited by 1 | Viewed by 1123
Abstract
Boron compounds, classified as prohibited food additives due to their high toxicity, persist in pesticides and fertilisers, industrial processes, food supply chains, and consumer goods, perpetuating multisource exposure risks. Chronic ingestion may induce fatal hepatorenal injury; however, mechanistic insights and epidemiological surveillance remain [...] Read more.
Boron compounds, classified as prohibited food additives due to their high toxicity, persist in pesticides and fertilisers, industrial processes, food supply chains, and consumer goods, perpetuating multisource exposure risks. Chronic ingestion may induce fatal hepatorenal injury; however, mechanistic insights and epidemiological surveillance remain critically lacking amidst sector-wide regulatory gaps. This study employed integrated cellular and organismal models to elucidate the relationship between boron-induced hepatotoxicity and ferroptosis. We demonstrate that dietary boron accumulation in chicken livers is associated with histopathological damage, mitochondrial cristae dissolution and atrophy (a hallmark of ferroptosis), and elevated serum biomarkers AST and ALT. Boron exacerbates oxidative damage in hepatocytes by elevating malondialdehyde (MDA) production while modulating the Nrf2/ARE antioxidant signaling pathway—specifically downregulating key genes (Nrf2, HO-1, GCLM, CAT). Concurrently, it inhibits critical antioxidant enzymes (SOD, T-AOC), thereby depleting cellular antioxidant defenses. Crucially, boron disrupts iron homeostasis and induces ferroptosis by dysregulating the SLC7A11-GPX4 pathway: upregulating pro-ferroptotic genes (ACSL4, TF, TFR) and downregulating cytoprotective genes (SLC7A11, GPX4, FTH1). Co-treatment with the ferroptosis inhibitor ferrostatin-1 (Fer-1) attenuated boron-induced oxidative damage, whereas the ferroptosis inducer Erastin potentiated toxicity. Collectively, we pioneer the dual-pathogenic mechanism of boron hepatotoxicity—oxidative stress and ferroptotic cell death—establishing the SLC7A11/GPX4 axis as a novel therapeutic target against boron toxicity. Full article
(This article belongs to the Section Poultry)
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19 pages, 3440 KB  
Article
Synergistic Effect Evaluation and Mechanism Investigation of Vitamin B6 and B12 in Models of Neuroinflammation
by Xixi Dou, Shiru Cai, Yingbo Liu, Junyan Wang, Huiying Li and Duo Gao
Int. J. Mol. Sci. 2025, 26(22), 10956; https://doi.org/10.3390/ijms262210956 - 12 Nov 2025
Cited by 3 | Viewed by 1964
Abstract
Neurological damage, a debilitating condition closely associated with chronic neuroinflammation, currently lacks disease-modifying treatments, with management limited to symptomatic relief. Vitamins B6 (VB6), B12 (VB12), and proteolipid protein 1 (PLP-1) exhibit multimodal neuroprotective and anti-inflammatory effects; however, their therapeutic potential is limited by [...] Read more.
Neurological damage, a debilitating condition closely associated with chronic neuroinflammation, currently lacks disease-modifying treatments, with management limited to symptomatic relief. Vitamins B6 (VB6), B12 (VB12), and proteolipid protein 1 (PLP-1) exhibit multimodal neuroprotective and anti-inflammatory effects; however, their therapeutic potential is limited by low bioavailability and inadequate ability to cross the blood–brain barrier (BBB). To address these limitations, we developed an ursolic acid-based nanoparticle system for the intranasal co-delivery of VB6, VB12, and recombinant PLP-1. The PLP-1 model predicted by AlphaFold3 was used for molecular docking. The docking results confirmed high-affinity binding interactions with VB6 and VB12, elucidating the mechanistic basis of their synergy. In vitro studies using a glucose-deprived PC12 cell injury model identified an optimal synergistic molar ratio of 10:1:2 (VB6: VB12: PLP-1). This combination significantly upregulated neuroprotective markers (PLP-1 and PGC-1α) and downregulated the pro-inflammatory cytokine TNF-α. In a mouse model of neural damage, the nano-encapsulated combination therapy demonstrated improved pharmacokinetics and significantly attenuated neuroinflammation and oxidative stress in brain tissue. This was evidenced by lower TNF-α and IL-1β levels and elevated GSH and SOD concentrations compared to free drug controls. The treatment regimen showed no detectable hepatorenal toxicity. Our findings demonstrate that this nanoformulation represents a safe, effective, and promising disease-modifying strategy to treat vestibular dysfunction by synergistically targeting its underlying neuroimmunological mechanisms. Full article
(This article belongs to the Special Issue The Role of Natural Compounds in Cancer and Inflammation, 2nd Edition)
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15 pages, 3722 KB  
Article
Elucidating the Mechanism of Liver and Kidney Damage in Rats Caused by Exposure to 2,4-Dichlorophenoxyacetic Acid and the Protective Effect of Lycium barbarum Polysaccharides Based on Network Toxicology and Molecular Docking
by Xiaoqi Luo, Yixuan Wei, Jinyu Luo, Xiaoning Meng, Yating Yang, Na Liu, Huifang Yang and Jian Zhou
Int. J. Mol. Sci. 2025, 26(21), 10685; https://doi.org/10.3390/ijms262110685 - 3 Nov 2025
Cited by 1 | Viewed by 1897
Abstract
2,4-Dichlorophenoxyacetic acid (2,4-D) is a widely used herbicide, yet its potential to induce hepatorenal injury via oxidative stress and apoptosis raises significant health concerns. Lycium barbarum polysaccharides (LBP) possess recognized antioxidant and anti-apoptotic properties, but their protective mechanisms against 2,4-D toxicity, particularly through [...] Read more.
2,4-Dichlorophenoxyacetic acid (2,4-D) is a widely used herbicide, yet its potential to induce hepatorenal injury via oxidative stress and apoptosis raises significant health concerns. Lycium barbarum polysaccharides (LBP) possess recognized antioxidant and anti-apoptotic properties, but their protective mechanisms against 2,4-D toxicity, particularly through a multi-target network, remain inadequately explored. This study aimed to systematically investigate the mechanisms of 2,4-D-induced hepatorenal injury and the protective efficacy of LBP by integrating network toxicology, molecular docking, and experimental validation. An integrated approach was employed. Core targets and pathways were identified via network toxicology. Molecular docking predicted interactions between 2,4-D and these targets. In vivo validation was conducted on Sprague-Dawley rats treated with 2,4-D (75 mg/kg) and/or LBP (50 mg/kg) for 28 days, assessing histopathology, serum oxidative stress markers superoxide dismutase (SOD), glutathione peroxidase (GSH-Px), malondialdehyde (MDA) and cellular apoptosis (TUNEL staining). Network analysis identified PPARG, NFKB1, PPARA, NFE2L2, and SERPINE1 as core targets, with molecular docking confirming strong binding affinities (binding energies: −5.1 to −6.3 kcal·mol−1) and KEGG enrichment implicating cAMP, Ca2+, and PPAR signaling pathways. Experimentally, 2,4-D exposure induced significant histopathological damage, suppressed SOD/GSH-Px activities (p < 0.001), elevated MDA levels (p < 0.001), and markedly increased renal apoptosis (p < 0.01). Crucially, LBP intervention substantially mitigated these alterations, ameliorating tissue injury, restoring antioxidant defenses, increasing SOD/GSH-Px (p < 0.01), reducing MDA (p < 0.001) and significantly decreasing renal apoptosis (p < 0.05). This study elucidates a multi-target mechanism for 2,4-D-induced hepatorenal injury centered on oxidative stress–apoptosis dysregulation and demonstrates that LBP confers significant protection likely via modulation of this network. These findings underscore the potential of LBP as a natural protective agent against pesticide-induced organ damage and highlight the utility of integrated network approaches in toxicological research. Full article
(This article belongs to the Section Molecular Toxicology)
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17 pages, 605 KB  
Review
Acute Kidney Injury in Patients with Liver Cirrhosis: From Past to Present Definition and Diagnosis
by Andreea Lungu, Georgiana-Elena Sarbu, Alexandru Sebastian Cotlet, Ilie-Andreas Savin, Ioana-Roxana Damian, Simona Juncu, Cristina Muzica, Irina Girleanu, Ana-Maria Sîngeap, Carol Stanciu, Anca Trifan and Camelia Cojocariu
Life 2025, 15(8), 1249; https://doi.org/10.3390/life15081249 - 6 Aug 2025
Cited by 5 | Viewed by 7022
Abstract
Acute kidney injury (AKI) is a serious clinical condition that is linked to markedly higher rates of morbidity and mortality in cirrhosis patients. Its diagnosis is challenging due to overlapping clinical and laboratory features among causes such as hepatorenal syndrome (HRS), acute tubular [...] Read more.
Acute kidney injury (AKI) is a serious clinical condition that is linked to markedly higher rates of morbidity and mortality in cirrhosis patients. Its diagnosis is challenging due to overlapping clinical and laboratory features among causes such as hepatorenal syndrome (HRS), acute tubular injury (ATI), and prerenal hypovolemia. In order to address the distinct pathophysiology and clinical context of cirrhosis, the definitions and classification of AKI have changed over time, moving from RIFLE and AKIN to KDIGO and ICA-AKI. Because cirrhosis patients have altered muscle mass and fluid retention, traditional markers like serum creatinine (sCr) and urine output have significant limitations. Neutrophil gelatinase-associated lipocalin (NGAL), kidney injury molecule-1 (KIM-1), interleukin-18 (IL-18), and cystatin C (CysC) are some of the new biomarkers that have shown promise in early AKI detection and in differentiating structural from functional kidney injury. NGAL and KIM-1 are sensitive indicators of tubular damage with potential prognostic implications. IL-18 reflects inflammatory injury, and CysC offers a more reliable measure of glomerular filtration. Incorporating these markers may improve early diagnosis, risk stratification, and treatment decisions, representing a key direction for future research in managing AKI in cirrhosis. Full article
(This article belongs to the Special Issue Acute Kidney Events in Intensive Care)
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20 pages, 1008 KB  
Review
Hepato-Renal Crosstalk in Acute and Chronic Disease: From Shared Pathways to Therapeutic Targets
by Anna Clementi, Grazia Maria Virzì, Massimiliano Sorbello, Nenzi Marzano, Paola Monciino, Jose Said Cabrera-Aguilar, Giovanni Giorgio Battaglia, Claudio Ronco and Monica Zanella
Biomedicines 2025, 13(7), 1618; https://doi.org/10.3390/biomedicines13071618 - 1 Jul 2025
Cited by 7 | Viewed by 4608
Abstract
Hepato-renal crosstalk is a complex biological communication between liver and kidneys mediated by various factors, including cellular, endocrine, and paracrine molecules. This interaction highlights the functional consequences that damage in one organ can have on the other. In particular, the liver and kidney [...] Read more.
Hepato-renal crosstalk is a complex biological communication between liver and kidneys mediated by various factors, including cellular, endocrine, and paracrine molecules. This interaction highlights the functional consequences that damage in one organ can have on the other. In particular, the liver and kidney play a pivotal role in maintaining body homeostasis, as they are both involved in the excretion of toxic bioproducts and drugs. The overlap of liver and kidney disease has both therapeutic and prognostic implications. Therefore, a better understanding of the mechanisms involved in the pathogenesis of this bidirectional crosstalk is essential for improving the management of these clinical conditions and patient outcomes. Specifically, a multidisciplinary approach involving hepatologists and nephrologists is crucial to reduce the long-term burden of these clinical settings. This review focuses on the hepato-renal crosstalk in the context of liver and kidney disease, with particular attention to acute kidney injury associated with liver injury, hepatorenal syndrome and, chronic kidney disease in the context of liver fibrosis. Full article
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21 pages, 1065 KB  
Review
Biomarkers as Beacons: Illuminating Sepsis-Associated Hepato-Renal Injury
by Maria-Antoanela Pasare, Cristian Sorin Prepeliuc, Maria Gabriela Grigoriu, Ionela-Larisa Miftode and Egidia Gabriela Miftode
Int. J. Mol. Sci. 2025, 26(10), 4825; https://doi.org/10.3390/ijms26104825 - 18 May 2025
Cited by 3 | Viewed by 3250
Abstract
Sepsis, defined as a dysregulated host response to infection, is one of the leading causes of mortality worldwide. It unleashes in the organism a cascade of molecules, cytokines, and proteins which leads to an inflammatory storm. If this response to infection is uncontrolled, [...] Read more.
Sepsis, defined as a dysregulated host response to infection, is one of the leading causes of mortality worldwide. It unleashes in the organism a cascade of molecules, cytokines, and proteins which leads to an inflammatory storm. If this response to infection is uncontrolled, any organ is susceptible to damage. Acute kidney injury (AKI) is one of the most frequent organ dysfunctions in septic patients, and while it can be reversible, its presence leads to a higher burden of morbidity and mortality. While serum creatinine is essential in evaluating kidney function, the pathophysiology of AKI is not completely elucidated, and a plethora of novel biomarkers have been studied in the hope of an early diagnosis and fast treatment. While the liver is not as affected by sepsis, it plays an important role as a guardian by providing acute-phase proteins, activating neutrophils, and controlling iron balance. Acute liver failure (ALF) could impair the organism’s capacity to contain and eliminate pathogens. Some molecules have been associated with either AKI or ALF, although biomarkers specific for organ dysfunction are difficult to validate. The aim of this review is to understand the role of several molecules in the pathophysiology of sepsis and their clinical ability for diagnosing or predicting sepsis-induced hepato-renal dysfunction. Full article
(This article belongs to the Special Issue Molecular Mechanisms and Pathophysiology of Sepsis)
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20 pages, 6034 KB  
Article
Therapeutic Potential of Clove Oil in Mitigating Cadmium-Induced Hepatorenal Toxicity Through Antioxidant, Anti-Inflammatory, and Antiapoptotic Mechanisms
by Inas M. Elgharib, Fatma M. Abdelhamid, Gehad E. Elshopakey, Hatem Sembawa, Talat A. Albukhari, Waheed A. Filimban, Rehab M. Bagadood, Mohamed E. El-Boshy and Engy F. Risha
Pharmaceuticals 2025, 18(1), 94; https://doi.org/10.3390/ph18010094 - 14 Jan 2025
Cited by 12 | Viewed by 8497
Abstract
Hazardous heavy metals, particularly cadmium (Cd), are widely distributed in the environment and cause oxidative stress in various animal and human organs. Clove oil (CLO), a common aromatic spice, has been used as a traditional medication as it has potent anti-inflammatory, antioxidant, and [...] Read more.
Hazardous heavy metals, particularly cadmium (Cd), are widely distributed in the environment and cause oxidative stress in various animal and human organs. Clove oil (CLO), a common aromatic spice, has been used as a traditional medication as it has potent anti-inflammatory, antioxidant, and hepatoprotective properties. Background/Objectives: This study aimed to investigate the antioxidant, antiapoptotic, and anti-inflammatory effects of clove oil (CLO) against hepatorenal toxicity induced by cadmium (Cd). Methods: Twenty rats were equally divided into four groups: a control group, a Cd group treated with 15 mg/kg b.wt CdCl2, a CLO group administered 200 mg/kg b.wt CLO, and a Cd+CLO group. All groups were orally treated for 4 weeks. Results: Cadmium (Cd) exposure caused anemia and hepatorenal damage, as evidenced by increased serum levels of urea, creatinine, uric acid, total bilirubin (including its direct and indirect fractions), and elevated activities of liver enzymes such as alanine transaminase (ALT), aspartate transaminase (AST), and alkaline phosphatase (ALP). However, total protein and albumin levels decreased. Furthermore, there was a decrease in the levels of glutathione, glutathione transferase, and catalase in the liver antioxidant profiles. Meanwhile, malondialdehyde levels increased. Cadmium toxicity caused elevated expression of liver apoptosis markers, such as tumor necrosis factor-alpha (TNF-α) and caspase-3, and inflammation. CLO ameliorated the oxidative effects of Cd through decreasing urea (27.4%), creatinine (41.6%), liver enzymes, and hepatic apoptotic markers while increasing levels of total protein, albumin, and hepatic values of SOD (60.37%), CAT (64.49%), GSH (50.41%), and GST (9.16%). Conclusions: Hematological and biochemical parameters, as well as the antioxidant system, improved following clove oil treatment, leading to a reduction in hepatorenal damage. Therefore, it is possible to conclude that CLO protects rats from inflammation, apoptosis, and hepatorenal oxidative damage caused by Cd poisoning. Comprehensive translational research is required to validate CLO’s efficacy and safety of use in humans. Future studies should focus on elucidating the precise molecular mechanisms, optimal dosing strategies, and potential synergistic effects of CLO with other therapeutic agents. Full article
(This article belongs to the Section Natural Products)
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15 pages, 1117 KB  
Article
Survival of Patients with Alcohol-Related Liver Disease Cirrhosis—Usefulness of the New Liver Mortality Inpatients Prognostic Score
by Vera Matovic Zaric, Ivana Pantic, Sofija Lugonja, Tijana Glisic, Snezana Konjikusic, Iva Lolic, Nevena Baljosevic, Sanja Zgradic, Jasna El Mezeni, Marko Vojnovic, Marija Brankovic and Tamara Milovanovic
Diagnostics 2024, 14(22), 2508; https://doi.org/10.3390/diagnostics14222508 - 9 Nov 2024
Cited by 5 | Viewed by 6231
Abstract
Background/Objectives: Alcohol can directly damage the liver, causing steatosis, steatohepatitis, cirrhosis, and hepatocellular cancer. The aim of this study was to examine 28-day survival in hospitalized patients with alcohol-related liver disease (ALD) cirrhosis, as well as to develop and validate a new survival [...] Read more.
Background/Objectives: Alcohol can directly damage the liver, causing steatosis, steatohepatitis, cirrhosis, and hepatocellular cancer. The aim of this study was to examine 28-day survival in hospitalized patients with alcohol-related liver disease (ALD) cirrhosis, as well as to develop and validate a new survival prediction model. Methods: A total of 145 patients with ALD cirrhosis were included; 107 were diagnosed with acute decompensation (AD) and 38 with acute-on-chronic liver failure (ACLF). The new liver mortality inpatients (LIV-IN) score was calculated using the following variables: hepatic encephalopathy (HE), hepatorenal syndrome (HRS), ascites, systemic inflammatory response syndrome (SIRS), community-acquired infection (CAI), and fibrinogen. The diagnostic accuracy of the LIV-IN score was tested, along with the model for end-stage liver disease (MELD), model for end-stage liver disease-sodium (MELD-Na), albumin-bilirubin (ALBI), neutrophil-to-lymphocyte ratio (NLR), chronic liver failure consortium-C acute decompensation (CLIF-C AD), and chronic liver failure consortium-acute-on-chronic liver failure (CLIF-C ACLF). Results: Lethal outcome occurred in 46 (31.7%) patients. The mortality rate was higher in the ACLF group (n = 22, 57.9%) compared to the AD group (n = 24, 22.4%) (p < 0.01). The highest predictive power for short-term mortality was observed for the LIV-IN score (AUC 73.4%, p < 0.01). In patients with AD, the diagnostic accuracy of the CLIF-C AD score was better than for the LIV-IN score (AUC 0.699; p = 0.004, AUC 0.686; p = 0.007, respectively). In patients with ACLF, only the LIV-IN score had statistically significant discriminative power in predicting 28-day survival. Conclusions: The liver mortality inpatients prognostic score is a new, reliable prognostic model in predicting 28-day mortality. Full article
(This article belongs to the Special Issue Diagnosis, Treatment, and Prognosis of Liver Cirrhosis)
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19 pages, 4397 KB  
Article
Cocoa and Carob Supplementation, Alone or in Combination with Metformin, Protects against Hepatorenal Injury in Zucker Diabetic Fatty Rats
by Esther García-Díez, María Elvira López-Oliva, Jara Pérez-Jiménez, María Ángeles Martín and Sonia Ramos
Nutrients 2024, 16(18), 3087; https://doi.org/10.3390/nu16183087 - 13 Sep 2024
Viewed by 2248
Abstract
The liver and kidneys are crucial for glucose homeostasis and are seriously damaged in diabetes. Cocoa and carob possess antidiabetic activity, but their hepatorenal protective effects, especially when combined with antidiabetic drugs, are unknown. The aim of this study is to investigate the [...] Read more.
The liver and kidneys are crucial for glucose homeostasis and are seriously damaged in diabetes. Cocoa and carob possess antidiabetic activity, but their hepatorenal protective effects, especially when combined with antidiabetic drugs, are unknown. The aim of this study is to investigate the effects of a cocoa–carob-supplemented diet (CC), either alone or in combination with metformin, on liver and kidney damage in Zucker diabetic fatty (ZDF) rats, a type 2 diabetes model. Male ZDF animals received a control or CC-supplemented diet, with or without metformin, and Zucker lean rats were fed the control diet. The CC-supplemented diet improved glucose tolerance and insulin resistance and alleviated functional and structural alterations in the diabetic liver and renal cortex. The CC-supplemented diet also ameliorated oxidative stress, downregulated apoptosis, and improved insulin signalling and glucose homeostasis. The combination of CC and metformin boosted several benefits as certain parameters related to morphological and structural alterations, apoptosis, oxidative stress, glucose homeostasis, and insulin resistance, were improved in comparison to animals receiving the CC-supplemented diet or metformin alone; these include the following: apoptotic index, Bax, hepatic insulin receptor or glutathione content, among others. These results demonstrate that the CC-supplemented diet alleviates the hepatorenal damage in type 2 diabetic ZDF rats, highlighting its potential alone or as an adjuvant therapy. Full article
(This article belongs to the Special Issue Effects of Phytochemicals on Metabolic Disorders and Human Health)
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17 pages, 4634 KB  
Article
Coenzyme Q10-Loaded Albumin Nanoparticles Protect against Redox Imbalance and Inflammatory, Apoptotic, and Histopathological Alterations in Mercuric Chloride-Induced Hepatorenal Toxicity in Rats
by Shimaa S. Ramadan, Farah A. El Zaiat, Engy A. Habashy, Mostafa M. Montaser, Habeba E. Hassan, Shahinaz S. Tharwat, Manal El-khadragy, Ahmed E. Abdel Moneim, Gehad E. Elshopakey and Ahmed M. A. Akabawy
Biomedicines 2023, 11(11), 3054; https://doi.org/10.3390/biomedicines11113054 - 14 Nov 2023
Cited by 11 | Viewed by 3323
Abstract
Exposure to mercuric chloride (HgCl2), either accidental or occupational, induces substantial liver and kidney damage. Coenzyme Q10 (CoQ10) is a natural antioxidant that also has anti-inflammatory and anti-apoptotic activities. Herein, our study aimed to investigate the possible protective effects of CoQ10 [...] Read more.
Exposure to mercuric chloride (HgCl2), either accidental or occupational, induces substantial liver and kidney damage. Coenzyme Q10 (CoQ10) is a natural antioxidant that also has anti-inflammatory and anti-apoptotic activities. Herein, our study aimed to investigate the possible protective effects of CoQ10 alone or loaded with albumin nanoparticles (CoQ10NPs) against HgCl2-induced hepatorenal toxicity in rats. Experimental animals received CoQ10 (10 mg/kg/oral) or CoQ10NPs (10 mg/kg/oral) and were injected intraperitoneally with HgCl2 (5 mg/kg; three times/week) for two weeks. The results indicated that CoQ10NP pretreatment caused a significant decrease in serum liver and kidney function markers. Moreover, lowered MDA and NO levels were associated with an increase in antioxidant enzyme activities (SOD, GPx, GR, and CAT), along with higher GSH contents, in both the liver and kidneys of intoxicated rats treated with CoQ10NPs. Moreover, HgCl2-intoxicated rats that received CoQ10NPs revealed a significant reduction in the hepatorenal levels of TNF-α, IL-1β, NF-κB, and TGF-β, as well as an increase in the hepatic level of the fibrotic marker (α-SMA). Notably, CoQ10NPs counteracted hepatorenal apoptosis by diminishing the levels of Bax and caspase-3 and boosting the level of Bcl-2. The hepatic and renal histopathological findings supported the abovementioned changes. In conclusion, these data suggest that CoQ10, alone or loaded with albumin nanoparticles, has great power in reversing the hepatic and renal tissue impairment induced by HgCl2 via the modulation of hepatorenal oxidative damage, inflammation, and apoptosis. Therefore, this study provides a valuable therapeutic agent (CoQ10NPs) for preventing and treating several HgCl2-induced hepatorenal disorders. Full article
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Article
The Protective Potential of Petroselinum crispum (Mill.) Fuss. on Paracetamol-Induced Hepatio-Renal Toxicity and Antiproteinuric Effect: A Biochemical, Hematological, and Histopathological Study
by Ghizlane Nouioura, Tayeb Kettani, Meryem Tourabi, Layla Tahiri Elousrouti, Omkulthom Al kamaly, Samar Zuhair Alshawwa, Abdelaaty A. Shahat, Abdulsalam Alhalmi, Badiaa Lyoussi and Elhoussine Derwich
Medicina 2023, 59(10), 1814; https://doi.org/10.3390/medicina59101814 - 12 Oct 2023
Cited by 29 | Viewed by 5580
Abstract
Background and Objectives: Paracetamol overdose is a significant global issue due to its widespread use, which can lead to a lack of awareness regarding its potential side effects. Paracetamol can harm the liver, possibly resulting in liver failure. Conversely, this study employed extracts [...] Read more.
Background and Objectives: Paracetamol overdose is a significant global issue due to its widespread use, which can lead to a lack of awareness regarding its potential side effects. Paracetamol can harm the liver, possibly resulting in liver failure. Conversely, this study employed extracts from Petroselinum crispum (PC), known for its rich content of bioactive compounds, with demonstrated antioxidant properties shown in previous research as well as protective effects against various diseases. The primary objective of this study was to investigate the potential protective effects of Petroselinum crispum on altered hematological and biochemical parameters in the blood of rats exposed to paracetamol. Materials and Methods: The study involved twenty Wistar rats divided into four groups. Different groups of male rats were administered PC extract at 200 mg/kg body weight daily for 15 days, along with a standard reference dose of paracetamol at 200 mg/kg. The study assessed hepatoprotection capacity by analyzing liver enzymes such as aspartate aminotransferase (AST), alanine aminotransferase (ALT), bilirubin, albumin, and lipid profiles. Renal safety was evaluated through creatinine, urea, uric acid, lactate dehydrogenase (LDH), and total protein. Additionally, histopathological examinations of the liver and kidneys were conducted. Results: Following Paracetamol overdose, there were reductions in hemoglobin levels, serum total protein, albumin, and uric acid. Paracetamol overdose also elevated levels of several blood biomarkers, including creatinine, urea, nitrogen, ALT, AST, triglycerides, LDH activity, white blood cell count, and platelet count compared to the control group. However, using an ethanolic extract of Petroselinum crispum significantly mitigated the severity of these alterations and the extent of the effect correlated with the dose administered. Parsley extract helped prevent proteinuria and low hemoglobin, which are common side effects of Paracetamol. Conclusions: Therefore, parsley may hold promise in managing liver and kidney conditions—particularly in addressing proteinuria. Ultimately, these results may have implications for human health by potentially mitigating paracetamol-induced renal, hepatic, and hematological toxicity. Full article
(This article belongs to the Section Pharmacology)
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