CYBERMED LIFE - ORGANIC  & NATURAL LIVING

Oxidative Stress

Oxidative stress reflects an imbalance between the systemic manifestation of reactive oxygen species and a biological system's ability to readily detoxify the reactive intermediates or to repair the resulting damage. Disturbances in the normal redox state of cells can cause toxic effects through the production of peroxides and free radicals that damage all components of the cell, including proteins, lipids, and DNA. Oxidative stress from oxidative metabolism causes base damage, as well as strand breaks in DNA. Base damage is mostly indirect and caused by reactive oxygen species (ROS) generated, e.g. O2 (superoxide radical), OH (hydroxyl radical) and H2O2 (hydrogen peroxide). Further, some reactive oxidative species act as cellular messengers in redox signaling. Thus, oxidative stress can cause disruptions in normal mechanisms of cellular signaling.

In humans, oxidative stress is thought to be involved in the development of ADHD, cancer, Parkinson's disease, Lafora disease, Alzheimer's disease, atherosclerosis, heart failure, myocardial infarction, fragile X syndrome, sickle-cell disease, lichen planus, vitiligo, autism, infection, chronic fatigue syndrome, and depression and seems to be characteristic of individuals with Asperger syndrome. However, reactive oxygen species can be beneficial, as they are used by the immune system as a way to attack and kill pathogens. Short-term oxidative stress may also be important in prevention of aging by induction of a process named mitohormesis.

  • Poria cocos water extract (PCW) protects PC12 neuronal cells from beta-amyloid-induced cell death through antioxidant and antiapoptotic functions.

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    Abstract Title:

    Poria cocos water extract (PCW) protects PC12 neuronal cells from beta-amyloid-induced cell death through antioxidant and antiapoptotic functions.

    Abstract Source:

    Pharmazie. 2009 Nov;64(11):760-4. PMID: 20099523

    Abstract Author(s):

    Yong-Hoon Park, Il Hong Son, Bokyung Kim, Yeoung-Su Lyu, Hyung-In Moon, Hyung-Won Kang

    Article Affiliation:

    INAM Neuroscience Research Center, Sanbon Medical Center, Wonkwang University, South Korea.

    Abstract:

    Beta-amyloid (Abeta)-induced neurotoxicity is considered to be mediated through the formation of reactive oxygen species (ROS). In this study, the protective effects of Poria cocos water extract (PCW) against Abeta1-42-induced cell death were investigated using rat pheochromocytoma (PC12) cells. Exposure of PC12 cells to the Abeta1-42 (20 microM) for 48h resulted in neuronal cell death, whereas pretreatment with PCW at the concentration range of 5-125 microg/ml reduced Abeta1-42-induced cell death. In addition, PC12 cells treated with Abeta1-42 exhibited increased accumulation of intracellular oxidative damages and underwent apoptotic death as determined by characteristic morphological alterations and positive in situ terminal end-labeling (TUNEL staining). However, PCW attenuated Abeta1-42-induced cytotoxicity, apoptotic features, and accumulation of intracellular oxidative damage. Moreover, PCW (5 to 125 microg/ml) decreased expression of apoptotic protein Bax and activity of caspase-3, but enhanced expression of anti-apoptotic protein Bcl-2. These results suggest that PCW may protect cells through suppressing the oxidative stress and the apoptosis induced by Abeta1-42, implying that PCW may be potential natural agents for Alzheimer's diseases.

  • Positive effect of combined exercise training in a model of metabolic syndrome and menopause: autonomic, inflammatory, and oxidative stress evaluations📎

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    Abstract Title:

    Positive effect of combined exercise training in a model of metabolic syndrome and menopause: autonomic, inflammatory, and oxidative stress evaluations.

    Abstract Source:

    Am J Physiol Regul Integr Comp Physiol. 2015 Dec 15 ;309(12):R1532-9. Epub 2015 Sep 30. PMID: 26423710

    Abstract Author(s):

    Filipe Fernandes Conti, Janaina de Oliveira Brito, Nathalia Bernardes, Danielle da Silva Dias, Christiane Malfitano, Mariana Morris, Susana Francisca Llesuy, Maria-Cláudia Irigoyen, Kátia De Angelis

    Article Affiliation:

    Filipe Fernandes Conti

    Abstract:

    It is now well established that after menopause cardiometabolic disorders become more common. Recently, resistance exercise has been recommended as a complement to aerobic (combined training, CT) for the treatment of cardiometabolic diseases. The aim of this study was to evaluate the effects of CT in hypertensive ovariectomized rats undergoing fructose overload in blood pressure variability (BPV), inflammation, and oxidative stress parameters. Female rats were divided into the following groups (n = 8/group): sedentary normotensive Wistar rats (C), and sedentary (FHO) or trained (FHOT) ovariectomized spontaneously hypertensive rats undergoing and fructose overload. CT was performed on a treadmill and ladder adapted to rats in alternate days (8 wk; 40-60% maximal capacity). Arterial pressure (AP) was directly measured. Oxidative stress and inflammation were measured on cardiac and renal tissues. The association of risk factors (hypertension + ovariectomy + fructose) promoted increase in insulin resistance, mean AP (FHO: 174± 4 vs. C: 108 ± 1 mmHg), heart rate (FHO: 403 ± 12 vs. C: 352 ± 11 beats/min), BPV, cardiac inflammation (tumor necrosis factor-α-FHO: 65.8 ± 9.9 vs. C: 23.3 ± 4.3 pg/mg protein), and oxidative stress cardiac and renal tissues. However, CT was able to reduce mean AP (FHOT: 158 ± 4 mmHg), heart rate (FHOT: 303 ± 5 beats/min), insulin resistance, and sympathetic modulation. Moreover, the trained rats presented increased nitric oxide bioavailability, reduced tumor necrosis factor-α (FHOT: 33.1 ± 4.9 pg/mg protein), increased IL-10 in cardiac tissue and reduced lipoperoxidation, and increased antioxidant defenses in cardiac and renal tissues. In conclusion, the association of risk factors promoted an additional impairment in metabolic, cardiovascular, autonomic, inflammatory, and oxidative stress parameters and combined exercise training was able to attenuate these dysfunctions.

  • Possible action mechanism for curcumin in pre-cancerous lesions based on serum and salivary markers of oxidative stress. 📎

    Abstract Title:

    Possible action mechanism for curcumin in pre-cancerous lesions based on serum and salivary markers of oxidative stress.

    Abstract Source:

    J Oral Sci. 2010;52(2):251-6. PMID: 20587949

    Abstract Author(s):

    Balwant Rai, Jasdeep Kaur, Reinhilde Jacobs, Jaipaul Singh

    Article Affiliation:

    School of Dentistry, Oral Pathology and Maxillofacial Surgery, Catholic University Leuven, Leuven, Belgium. This email address is being protected from spambots. You need JavaScript enabled to view it.

    Abstract:

    Extensive research within the past half-century has indicated that curcumin (diferuloylmethane), a yellow pigment in curry powder, exhibits anti-oxidant, anti-inflammatory, and pro-apoptotic activities. We investigated whether the anti-pre-cancer activities assigned to curcumin are mediated through an anti-oxidant and DNA-protecting mechanism. Patients with oral leukoplakia, oral submucous fibrosis or lichen planus, and healthy individuals (n = 25 for each group) aged 17-50 years were selected. Salivary and serum oxidative markers such as malonaldehyde (MDA), 8-hydroxydeoxyguanosine (8-OHdG), vitamins C and E were measured just prior to the intake of curcumin, after one week of curcumin intake and following clinical cure of precancerous lesions. Serum and salivary vitamins C and E showed increases, while MDA and 8-OHdG levels showed decreases in patients with oral leukoplakia, submucous fibrosis and lichen planus after intake of curcumin for all categories of precancerous lesions. The changes in these values were observed to be statistically significant after clinical cure of the disease (P<0.05). The five-point rating scale for pain, as well as lesion size in oral leukoplakia, submucous fibrosis and lichen planus, improved significantly (P<0.05). In addition, in submucous fibrosis, mouth opening (P<0.05) recovered significantly. In oral leukoplakia, submucous fibrosis and lichen planus, the levels of serum and salivary vitamins C and E increased significantly, while MDA and 8-OHdG levels decreased after 131(15), 211(17), and 191(18) days, respectively. Values for serum and salivary vitamins C and E showed a significant decrease in oral leukoplakia, submucous fibrosis and lichen planus, in contrast to healthy individuals, but increased significantly in all groups subsequent to curcumin administration after clinical cure of lesions. Based on these results, we can conclude that curcumin mediates its anti-pre-cancer activities by increasing levels of vitamins C and E, and preventing lipid peroxidation and DNA damage.

  • Possible amelioration of atherogenic diet induced dyslipidemia, hypothyroidism and hyperglycemia by the peel extracts of Mangifera indica, Cucumis melo and Citrullus vulgaris fruits in rats.

    Abstract Title:

    Possible amelioration of atherogenic diet induced dyslipidemia, hypothyroidism and hyperglycemia by the peel extracts of Mangifera indica, Cucumis melo and Citrullus vulgaris fruits in rats.

    Abstract Source:

    Biofactors. 2008;33(1):13-24. PMID: 19276533

    Abstract Author(s):

    Hamendra Singh Parmar, Anand Kar

    Article Affiliation:

    Endocrine Research Unit, Devi Ahilya University, Indore, MP, India. This email address is being protected from spambots. You need JavaScript enabled to view it.

    Abstract:

    Hitherto unknown efficacy of the peel extracts of Mangifera indica (MI), Cucumis melo (CM) and Citrullus vulgaris (CV) fruits in ameliorating the diet-induced alterations in dyslipidemia, thyroid dysfunction and diabetes mellitus have been investigated in rats. In one study, out of 4 different doses (50-300 mg/kg), 200 mg/kg of MI and 100 mg/kg for other two peel extracts could inhibit lipidperoxidation (LPO) maximally in liver. In the second experiment rats were maintained on pre-standardized atherogenic diet CCT (supplemented with 4% cholesterol, 1% cholic acid and 0.5% 2-thiouracil) to induce dyslipidemia, hypothyroidism and diabetes mellitus and the effects of the test peel extracts (200 mg/kg of MI and 100 mg/kg for CM and CV for 10 consecutive days) were studied by examining the changes in tissue LPO (in heart, liver and kidney), concentrations of serum lipids, thyroid hormones, insulin and glucose. Rats, treated simultaneously with either of the peel extracts reversed the CCT-diet induced increase in the levels of tissue LPO, serum lipids, glucose, creatinine kinase-MB and decrease in the levels of thyroid hormones and insulin indicating their potential to ameliorate the diet induced alterations in serum lipids, thyroid dysfunctions and hyperglycemia/diabetes mellitus. A phytochemical analysis indicated the presence of a high amount of polyphenols and ascorbic acid in the test peel extracts suggesting that the beneficial effects could be the result of the rich content of polyphenols and ascorbic acid in the studied peels.

  • Prevention of selenite-induced cataractogenesis by acetyl-L-carnitine: an experimental study.

    Abstract Title:

    Prevention of selenite-induced cataractogenesis by acetyl-L-carnitine: an experimental study.

    Abstract Source:

    Exp Eye Res. 2006 Dec;83(6):1340-9. Epub 2006 Sep 8. PMID: 16962580

    Abstract Author(s):

    P Geraldine, B Brijit Sneha, R Elanchezhian, E Ramesh, C M Kalavathy, J Kaliamurthy, P A Thomas

    Article Affiliation:

    Department of Animal Science, Bharathidasan University, Tiruchirapalli, India. This email address is being protected from spambots. You need JavaScript enabled to view it.

    Abstract:

    Several studies have suggested that antioxidants retard the process of cataractogenesis by scavenging free oxygen radicals. The present study sought to assess the efficacy of the antioxidant acetyl-L-carnitine (ALCAR) in preventing selenite-induced cataractogenesis in an experimental setting. The first, in vitro phase of the study was performed on lenses from Wistar rats incubated for 24 h at 37 degrees C in Dulbecco's Modified Eagle Medium (DMEM) alone (control, Group I), or in DMEM containing 100 microM of selenite (Group II) or in DMEM containing 100 microM of selenite and 200 microM/ml ALCAR added at the same time as selenite (Group IIIa) or 30 min, 1 h or 2 h later (Groups IIIb, IIIc and IIId, respectively). Gross morphological examination of these lenses revealed dense opacification (cataract formation) in Group II, minimal opacification in some Group IIIa lenses and no opacification in Group I. The mean activities of the antioxidant enzymes catalase and glutathione peroxidase were significantly lower in Group II than in Group I or Group IIIa lenses, while malondialdehyde concentration (an indicator of lipid peroxidation) was significantly higher in Group II lenses than that in Group I or Group IIIa lenses. The second, in vivo phase of the study revealed dense opacification (cataract formation) in 100% of Wistar rat pups receiving subcutaneous sodium selenite alone (19 microM/kg body weight) but in only 37.5% of those receiving subcutaneous selenite and intraperitoneal ALCAR. These data suggest that ALCAR is able to significantly retard experimental selenite-induced cataractogenesis.

  • Protection by extra virgin olive oil against oxidative stress in vitro and in vivo. Chemical and biological studies on the health benefits due to a major component of the Mediterranean diet📎

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    Abstract Title:

    Protection by extra virgin olive oil against oxidative stress in vitro and in vivo. Chemical and biological studies on the health benefits due to a major component of the Mediterranean diet.

    Abstract Source:

    PLoS One. 2017 ;12(12):e0189341. Epub 2017 Dec 28. PMID: 29283995

    Abstract Author(s):

    Miriam Rossi, Francesco Caruso, Lorraine Kwok, Grace Lee, Alessio Caruso, Fabio Gionfra, Elena Candelotti, Stuart L Belli, Nora Molasky, Kathleen M Raley-Susman, Stefano Leone, Tomáš Filipský, Daniela Tofani, Jens Pedersen, Sandra Incerpi

    Article Affiliation:

    Miriam Rossi

    Abstract:

    We report the results of in vivo studies in Caenorhabditis elegans nematodes in which addition of extra virgin olive oil (EVOO) to their diet significantly increased their life span with respect to the control group. Furthermore, when nematodes were exposed to the pesticide paraquat, they started to die after two days, but after the addition of EVOO to their diet, both survival percentage and lifespans of paraquat-exposed nematodes increased. Since paraquat is associated with superoxide radical production, a test for scavenging this radical was performed using cyclovoltammetry and the EVOO efficiently scavenged the superoxide. Thus, a linear correlation (y = -0.0838x +19.73, regression factor = 0.99348) was observed for superoxide presence (y) in the voltaic cell as a function of aliquot (x) additions of EVOO, 10μL each. The originally generated supoeroxide was approximately halved after 10 aliquots (100 μL total). The superoxide scavenging ability was analyzed, theoretically, using Density Functional Theory for tyrosol and hydroxytyrosol, two components of EVOO and was also confirmed experimentally for the galvinoxyl radical, using Electron Paramagnetic Resonance (EPR) spectroscopy. The galvinoxyl signal disappeared after adding 1 μL of EVOO to the EPR cell in 10 minutes. In addition, EVOO significantly decreased the proliferation of human leukemic THP-1 cells, while it kept the proliferation at about normal levels in rat L6 myoblasts, a non-tumoral skeletal muscle cell line. The protection due to EVOO was also assessed in L6 cells and THP-1 exposed to the radical generator cumene hydroperoxide, in which cell viability was reduced. Also in this case the oxidative stress was ameliorated by EVOO, in line with results obtained with tetrazolium dye reduction assays, cell cycle analysis and reactive oxygen species measurements. We ascribe these beneficial effects to EVOO antioxidant properties and our results are in agreement with a clear health benefit of EVOO use in the Mediterranean diet.

  • Protective effect of berberine, an isoquinoline alkaloid ameliorates ethanol-induced oxidative stress and memory dysfunction in rats.

    Abstract Title:

    Protective effect of berberine, an isoquinoline alkaloid ameliorates ethanol-induced oxidative stress and memory dysfunction in rats.

    Abstract Source:

    Pharmacol Biochem Behav. 2015 Jul 6 ;136:13-20. Epub 2015 Jul 6. PMID: 26159088

    Abstract Author(s):

    Shaktipal Patil, Santosh Tawari, Dharmendra Mundhada, Sayyed Nadeem

    Article Affiliation:

    Shaktipal Patil

    Abstract:

    Memory impairment induced by ethanol in rats is a consequence of changes in the CNS that are secondary to impaired oxidative stress and cholinergic dysfunction. Treatment with antioxidants and cholinergic agonists are reported to produce beneficial effects in this model. Berberine, an isoquinoline alkaloid is reported to exhibit antioxidant effect and cholinesterase (ChE) inhibitor activity. However, no report is available on the influence of berberine on ethanol-induced memory impairment. Therefore, we tested its influence against cognitive dysfunction in ethanol-induced rats using Morris water maze paradigm. Lipid peroxidation and glutathione levels as parameter of oxidative stress and cholinesterase (ChE) activity as a marker of cholinergic function were assessed in the cerebral cortex and hippocampus. Forty five days after ethanol treated rats showed a severe deficit in learning and memory associated with increased lipid peroxidation, decreased glutathione, and elevated ChE activity. In contrast, chronic treatment with berberine (25-100mg/kg, p.o., once a day for 45days) improved cognitive performance, and lowered oxidative stress and ChE activity in ethanol treated rats. In another set of experiments, berberine (100mg/kg) treatment during training trials also improved learning and memory, and lowered oxidative stress and ChE activity. Chronic treatment (45days) with vitamin C, and donepezil during training trials also improved ethanol-induced memory impairment and reduced oxidative stress and/or cholinesterase activity. In conclusion, the present study demonstrates that treatment with berberine prevents the changes in oxidative stress and ChE activity, and consequently memory impairment in ethanol treated rats.

  • Protective Effect of Carvacrol on Oxidative Stress and Cellular DNA Damage Induced by UVB Irradiation in Human Peripheral Lymphocytes.

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    Abstract Title:

    Protective Effect of Carvacrol on Oxidative Stress and Cellular DNA Damage Induced by UVB Irradiation in Human Peripheral Lymphocytes.

    Abstract Source:

    J Biochem Mol Toxicol. 2015 Nov ;29(11):497-507. Epub 2010 May 21. PMID: 26768646

    Abstract Author(s):

    Balakrishnan Aristatile, Khalid S Al-Numair, Abdullah H Al-Assaf, Chinnadurai Veeramani, Kodukkur Viswanathan Pugalendi

    Article Affiliation:

    Balakrishnan Aristatile

    Abstract:

    Exposure to ultraviolet B (UVB; 280-320 nm) radiation induces the formation of reactive oxygen species (ROS) in the biological system. In this study, we examined the protective effect of carvacrol on UVB-induced lipid peroxidation and oxidative DNA damage with reference to alterations in cellular an-tioxidant status in human lymphocytes. A series of in vitro assays (hydroxyl radical, superoxide, nitric oxide, DPPH (2,2-Diphenyl-1-picryl hydrazyl), and ABTS (2,2-azino-bis-3-ethylbenzothiazoline-6-sulfonic acid) radical scavenging assays) demonstrate antioxidant property of carvacrol in our study. UVB exposure significantly increased thiobarbituric acid reactive substances (TBARS), lipid hydroperoxides (LHPs), % tail DNA and tail moment; decreased % cell viability and antioxidant status in UVB-irradiated lymphocytes. Treatment with carvacrol 30 min prior to UVB-exposure resulted in a significant decline of TBARS, LHP, % tail DNA, and tail moment and increased % cell viability as carvacrol concentration increased. UVB irradiated lymphocytes with carvacrol alone (at 10μg/mL) gave no significant change in cell viability, TBARS, LHP, % tail DNA, and tail moment when compared with normal lymphocytes. On the basis of our results, we conclude that carvacrol, a dietary antioxidant, mediates its protective effect through modulation of UVB-induced ROS.

  • Protective effect of sesamol against 3-nitropropionic acid-induced cognitive dysfunction and altered glutathione redox balance in rats.

    Abstract Title:

    Protective effect of sesamol against 3-nitropropionic acid-induced cognitive dysfunction and altered glutathione redox balance in rats.

    Abstract Source:

    Basic Clin Pharmacol Toxicol. 2010 Jul ;107(1):577-82. Epub 2010 Jan 25. PMID: 20102363

    Abstract Author(s):

    Puneet Kumar, Harikesh Kalonia, Anil Kumar

    Article Affiliation:

    Pharmacology Division, University Institute of Pharmaceutical Sciences, UGC Centre of Advanced Study, Panjab University, Chandigarh, India.

    Abstract:

    Sesamol (SML) (Sesamum indicum, Linn, Pedaliaceae) has been used traditionally as a health supplement in India and other countries for a long time. It is a well-known antioxidant, currently being tried against several neurological disorders. The present study was designed to evaluate the potential of sesamol treatment against 3-nitropropionic acid (3-NP)-induced cognitive impairment and oxidative damage in striatal, cortex and hippocampal regions of the rat. The memory performance was assessed by Morris water maze and elevated plus maze paradigms. The oxidative damage was assessed by estimating the total glutathione, reduced glutathione, oxidized glutathione levels and glutathione redox ratio. Glutathione-S-transferase and lactate dehydrogenase enzymes were also measured in different brain areas. 3-NP significantly impaired memory performance as assessed in Morris water maze and elevated plus maze, which was significantly attenuated by sesamol (5, 10 and 20 mg/kg) pre-treatment. On the other hand, 3-NP significantly induced oxidative stress and depleted total glutathione, reduced glutathione, glutathione-S-transferase, lactate dehydrogenase enzyme levels and redox ratio in the striatum, cortex and hippocampal regions as compared to the vehicle-treated group. Sesamol pre-treatment restored oxidative defence possibly by its free radical scavenging activity as compared to the 3NP-treated group. The present study suggests that sesamol could be used as an effective agent in the management of Huntington's disease.

  • Protective Effect of Super-Critical Carbon Dioxide Fluid Extract from Flowers and Buds of Chrysanthemum indicum Linnén Against Ultraviolet-Induced Photo-Aging in Mice. 📎

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    Abstract Title:

    Protective Effect of Super-Critical Carbon Dioxide Fluid Extract from Flowers and Buds of Chrysanthemum indicum Linnén Against Ultraviolet-Induced Photo-Aging in Mice.

    Abstract Source:

    Rejuvenation Res. 2015 Oct ;18(5):437-48. Epub 2015 Aug 20. PMID: 25849065

    Abstract Author(s):

    Xie Zhang, You-Liang Xie, Xiu-Ting Yu, Zu-Qing Su, Jie Yuan, Yu-Cui Li, Zi-Ren Su, Janis Ya-Xian Zhan, Xiao-Ping Lai

    Article Affiliation:

    Xie Zhang

    Abstract:

    It is known that solar ultraviolet (UV) radiation to human skin causes photo-aging, including increases in skin thickness and wrinkle formation and reduction in skin elasticity. UV radiation induces damage to skin mainly by superfluous reactive oxygen species and chronic low-grade inflammation, which eventually up-regulate the expression of matrix metalloproteinases (MMPs). In this study, the super-critical carbon dioxide extract from flowers and buds of Chrysanthemum indicum Linnén (CISCFE), which has been reported to possess free radical scavenging and anti-inflammatory properties, was investigated for its photo-protective effect by topical application on the skin of mice. Moreover, CISCFE effectively suppressed the UV-induced increase in skin thickness and wrinkle grading in a dose-dependent manner, which was correlated with the inhibition of loss of collagen fiber content and epidermal thickening. Furthermore, we observed that CISCFE could obviously decrease UV-induced skin inflammation by inhibiting the production of inflammatory cytokines (interleukin-1β [IL-1β, IL-6, IL-10, tumor necrosis factor-α), alleviate the abnormal changes of anti-oxidative indicators (superoxide dismutase, catalase, and glutathione peroxidase), and down-regulate the levels of MMP-1 and MMP-3. The results indicated that CISCFE was a novel photo-protective agent from natural resources against UV irradiation.

  • Protective effects of ascorbic acid against the genetic and epigenetic alterations induced by 3,5-dimethylaminophenol in AA8 cells. 📎

    Abstract Title:

    Protective effects of ascorbic acid against the genetic and epigenetic alterations induced by 3,5-dimethylaminophenol in AA8 cells.

    Abstract Source:

    J Appl Toxicol. 2015 May ;35(5):466-77. Epub 2014 Sep 1. PMID: 25178734

    Abstract Author(s):

    Ming-Wei Chao, Pınar Erkekoglu, Chia-Yi Tseng, Wenjie Ye, Laura J Trudel, Paul L Skipper, Steven R Tannenbaum, Gerald N Wogan

    Article Affiliation:

    Ming-Wei Chao

    Abstract:

    Exposure to monocyclic aromatic alkylanilines (MAAs), namely 2,6-dimethylaniline (2,6-DMA), 3,5-dimethylaniline (3,5-DMA) and 3-ethylaniline (3-EA), was significantly and independently associated with bladder cancer incidence. 3,5-DMAP (3,5-dimethylaminophenol), a metabolite of 3,5-DMA, was shown to induce an imbalance in cytotoxicity cellular antioxidant/oxidant status, and DNA damage in mammalian cell lines. This study was designed to evaluate the protective effect of ascorbic acid (Asc) against the cytotoxicity, reactive oxygen species (ROS) production, genotoxicity and epigenetic changes induced by 3,5-DMAP in AA8 Chinese Hamster Ovary (CHO) cells. In different cellular fractions, 3,5-DMAP caused alterations in the enzyme activities orchestrating a cellular antioxidant balance, decreases in reduced glutathione levels and a cellular redox ratio as well as increases in lipid peroxidation and protein oxidation. We also suggest that the cellular stress caused by this particular alkylaniline leads to both genetic (Aprt mutagenesis) and epigenetic changes in histones 3 and 4 (H3 and H4). This may further cause molecular events triggering different pathological conditions and eventually cancer. In both cytoplasm and nucleus, Asc provided increases in 3,5-DMAP-reduced glutathione levels and cellular redox ratio and decreases in the lipid peroxidation and protein oxidation. Asc was also found to be protective against the genotoxic and epigenetic effects initiated by 3,5-DMAP. In addition, Asc supplied protection against the cell cycle (G1 phase) arrest induced by this particular alkylaniline metabolite.

  • Protective effects of ellagic acid and ozone on rat ovaries with an ischemia/reperfusion injury.

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    Abstract Title:

    Protective effects of ellagic acid and ozone on rat ovaries with an ischemia/reperfusion injury.

    Abstract Source:

    J Obstet Gynaecol Res. 2016 Jan ;42(1):52-8. Epub 2015 Nov 10. PMID: 26555146

    Abstract Author(s):

    Ilyas Sayar, Senol Bicer, Cebrail Gursul, Mehmet Gürbüzel, Kemal Peker, Arda Işik

    Article Affiliation:

    Ilyas Sayar

    Abstract:

    AIM:This study investigated the effects of the antioxidant agents, ozone (O) and ellagic acid (EA), on ischemia/reperfusion (I/R) injuries developed from an ovarian torsion-detorsion model.

    MATERIALS AND METHODS:Arteries in the left ovaries of rats were clamped for two hours to achieve torsion, and then the clamps were removed for a two-hour detorsion period. Thirty-five female Sprague-Dawley rats were randomly divided into five groups: control: administered only with anesthesia, rats were not subjected to torsion-detorsion; I/R: subjected to torsion and subsequent detorsion, without administering any treatment agent; and I/R + EA, I/R + O and I/R + O + EA: subjected to torsion and detorsion processes and administered with EA, O or EA + O at the 75th minute of torsion. The rats were then sacrificed under general anesthesia and the ovarian tissues were excised. The tissues were homogenized and levels of glutathione reductase, catalase, superoxide dismutase and malondialdehyde (MDA) were analyzed. Tissue damage was evaluated in terms of histopathological parameters, such as hemorrhage, congestion, edema and inflammation.

    RESULTS:Antioxidant enzyme activity and MDA levels in the ovary tissue increased in the I/R group and decreased in the O, EA and O + EA groups (P<0.05). Histopathological examination revealed that tissue damage in the O, EA and O + EA groups decreased in comparison with the I/R group (P<0.05).

    CONCLUSIONS:These biochemical and histopathological findings suggest that EA and O are effective against ovarian I/R injury.

  • Protective role of chickpea seed coat fibre on N-nitrosodiethylamine-induced toxicity in hypercholesterolemic rats.

    Abstract Title:

    Protective role of chickpea seed coat fibre on N-nitrosodiethylamine-induced toxicity in hypercholesterolemic rats.

    Abstract Source:

    Exp Toxicol Pathol. 2008 Nov 24. PMID: 19036568

    Abstract Author(s):

    Gaurav Mittal, Shyma Vadhera, Apminder Pal Singh Brar, Giridhar Soni

    Abstract:

    N-nitrosodiethylamine (NDEA) is one of the important carcinogenic nitrosamines frequently present in human environment and food chain that poses a significant human health hazard. This study was planned to investigate the protective role of dietary fibre on NDEA-induced toxicity in hypercholesterolemic rats. Oral administration of NDEA at a dose of 100mg/kg diet to experimental rats under hypercholesterolemic conditions evoked severe biochemical and pathological changes. Supplementation of chickpea (Cicer arietinum L.) seed coat fibre in the diet along with NDEA reduced its biochemical and pathological effects. There was a reduction in the hepatotoxic effects of NDEA as evidenced by decreased hepatic degeneration and improved liver weight index. Administration of NDEA resulted in a significant increase in the osmotic fragility of erythrocytes. The antioxidant activity of experimental animals decreased in the NDEA-fed group, which was evident by increased in vitro lipid peroxidation (LPO) of erythrocytes. However, chickpea seed coat fibre considerably reduced the peroxidative damage done by NDEA. Administration of NDEA also resulted in a significant increase in LPO in all the tissues to a varying degree, although the effect on antioxidant potential was variable in different tissues. However, chickpea seed coat fibre reduced the effect of NDEA on LPO and antioxidant potential of various tissues, providing reasonable protection against NDEA-induced oxidative stress and hence its toxicity. Histopathological analysis of different tissues (heart, liver and lungs) showed decrease in the severity of pathological changes among the experimental animals when they were given NDEA along with chickpea seed coat fibre in the diet as compared with giving NDEA alone. Our study therefore, emphasizes the importance of including dietary fibre in the diet, in combating the ill-effects of nitrosamines such as NDEA, particularly on the antioxidant status of the body.

  • Quantitative combination of natural anti-oxidants prevents metabolic syndrome by reducing oxidative stress. 📎

    Abstract Title:

    Quantitative combination of natural anti-oxidants prevents metabolic syndrome by reducing oxidative stress.

    Abstract Source:

    Redox Biol. 2015 Jun 26 ;6:206-217. Epub 2015 Jun 26. PMID: 26262997

    Abstract Author(s):

    Mingjing Gao, Zhen Zhao, Pengyu Lv, YuFang Li, Juntao Gao, Michael Zhang, Baolu Zhao

    Article Affiliation:

    Mingjing Gao

    Abstract:

    Insulin resistance and abdominal obesity are present in the majority of people with the metabolic syndrome. Antioxidant therapy might be a useful strategy for type 2 diabetes and other insulin-resistant states. The combination of vitamin C (Vc) and vitamin E has synthetic scavenging effect on free radicals and inhibition effect on lipid peroxidation. However, there are few studies about how to define the best combination of more than three anti-oxidants as it is difficult or impossible to test the anti-oxidant effect of the combination of every concentration of each ingredient experimentally. Here we present a math model, which is based on the classical Hill equation to determine the best combination, called Fixed Dose Combination (FDC), of several natural anti-oxidants, including Vc, green tea polyphenols (GTP) and grape seed extract proanthocyanidin (GSEP). Then we investigated the effects of FDC on oxidative stress, blood glucose and serum lipid levels in cultured 3T3-L1 adipocytes, high fat diet (HFD)-fed rats which serve as obesity model, and KK-ay mice as diabetic model. The level of serum malondialdehyde (MDA) in the treated rats was studied and Hematoxylin-Eosin (HE) staining or Oil red slices of liver and adipose tissue in the rats were examined as well. FDC shows excellent antioxidant and anti-glycation activity by attenuating lipid peroxidation. FDC determined in this investigation can become a potential solution to reduce obesity, to improve insulin sensitivity and be beneficial for the treatment of fat and diabetic patients. It is the first time to use the math model to determine the best ratio of three anti-oxidants, which can save much more time and chemical materials than traditional experimental method. This quantitative method represents a potentially new and useful strategy to screen all possible combinations of many natural anti-oxidants, therefore may help develop novel therapeutics with the potential to ameliorate the worldwide metabolic abnormalities.

  • Quercetin and Vitamin C Mitigate Cobalt Chloride-Induced Hypertension through Reduction in Oxidative Stress and Nuclear Factor Kappa Beta (NF-Kb) Expression in Experimental Rat Model.

    Abstract Title:

    Quercetin and Vitamin C Mitigate Cobalt Chloride-Induced Hypertension through Reduction in Oxidative Stress and Nuclear Factor Kappa Beta (NF-Kb) Expression in Experimental Rat Model.

    Abstract Source:

    Biol Trace Elem Res. 2016 Jun 10. Epub 2016 Jun 10. PMID: 27283837

    Abstract Author(s):

    Temitayo Olabisi Ajibade, Ademola Adetokunbo Oyagbemi, Temidayo Olutayo Omobowale, Ebunoluwa Racheal Asenuga, Kabirat Oluwaseun Adigun

    Article Affiliation:

    Temitayo Olabisi Ajibade

    Abstract:

    The objective of the present work was to evaluate the toxic effects of cobalt chloride, a potent oxidative stress-inducing chemical, at 650 ppm in rats and the protective effect of quercetin and/or vitamin C against the cobalt chloride-induced toxicity. Thirty rats were randomly selected, and assigned to one of five groups: control, cobalt chloride, cobalt chloride + quercetin, cobalt chloride + vitamin C and cobalt chloride + quercetin + vitamin C. The exposure of rats to cobalt chloride led to a significant increase (p < 0.05) in malondialdehyde (MDA) and hydrogen peroxide (H2O2) generated, but decreased nitric oxide (NO) bioavailability. Also, significant (p < 0.05) reductions were observed in the activity of glutathione peroxidase (GPx) and reduced glutathione (GSH) content in the cardiac and renal tissues. Treatment with quercetin and vitamin C reversed the effect of cobalt chloride on MDA, H2O2 and NO, more potently than with either of the two antioxidants, and increased the antioxidant defence system. Further, treatment of rats with quercetin and vitamin C in combination resulted in significant (p < 0.05) decreases in the systolic, diastolic, and mean arterial blood pressure of rats, relative to those exposed to cobalt chloride alone. Immunohistochemical studies revealed a greater expression of nuclear factor kappa beta (NF-kB) in the cobalt chloride group compared with the control- and antioxidants-treated rats. The results of this study suggest a protective role for quercetin and vitamin C in the amelioration of the toxic mechanisms leading to cobalt chloride-induced hypertension and its associated cardiac and renal complications in rats.

  • Reactive oxygen and nitrogen species in patients with rheumatoid arthritis as potential biomarkers for disease activity and the role of antioxidants.

    Abstract Title:

    Reactive oxygen and nitrogen species in patients with rheumatoid arthritis as potential biomarkers for disease activity and the role of antioxidants.

    Abstract Source:

    Free Radic Biol Med. 2016 Jun 21 ;97:285-291. Epub 2016 Jun 21. PMID: 27344969

    Abstract Author(s):

    Hani M Khojah, Sameh Ahmed, Mahran S Abdel-Rahman, Al-Badr Hamza

    Article Affiliation:

    Hani M Khojah

    Abstract:

    Reactive oxygen species (ROS) and reactive nitrogen species (RNS) have distinct contribution to the destructive, proliferative synovitis of rheumatoid arthritis (RA) and play a prominent role in cell-signaling events. However, few studies had clarified the role of individual ROS and RNS in the etiopathogenesis of RA. To date, most of the studies were concerned with the measurement of the total oxidative and nitrative stress levels in RA. The aim of this study was to monitor the levels of individual ROS and RNS to emphasize the role that each plays in the pathogenesis of RA and their usefulness as possible biomarkers for the disease activity. In addition, the effect of an antioxidant (ascorbic acid), added to the treatment regimen, on the levels of ROS, RNS and disease activity has been evaluated. Forty-two Saudi RA patients and 40 healthy controls of both genders were included in this study. Serum levels of six different ROS and three different RNS were measured using specific fluorescent probes. The ROS included the hydroxyl radical ((•)OH), the superoxide anion (O2(•-)), hydrogen peroxide (H2O2), the singlet oxygen ((1)O2), the hypochlorite radical (OHCl(•)), and the peroxyl radical (ROO(•)). The RNS included nitric oxide (NO(•)), nitrogen dioxide (ONO-) and peroxynitrite (ONOO-). The main clinical and biochemical markers for disease activity were assessed and correlated with ROS and RNS levels. The clinical markers included the 28 swollen joint count (SJC-28), the 28-tender joint count (TJC-28), morning stiffness and symmetric arthritis, in addition to the disease activity score assessing 28 joints with erythrocyte sedimentation rate (DAS28-ESR). The biochemical markers included undercarboxylated osteocalcin (ucOC), matrix metalloproteinase (MMP-3), ESR, C-reactive protein (CRP), rheumatoid factor (RF) and anticyclic citrullinated polypeptide (Anti-CCP). Ascorbic acid (1mg/day) was added as an antioxidantto the regular treatment regimen of RA patients for two months, and the levels of ROS and RNS, as well as disease activity were re-evaluated. The results have shown significant higher serum levels of individual ROS and RNS in RA patients compared with healthy subjects. Moreover, this study might bethe first to report strong positive correlations between most of the reactive species and the clinical and biochemical markers of RA. Interestingly, the addition of ascorbic acid had significantly reduced the levels of all ROS and RNS in RA patients. In conclusion, the role of oxidative and nitrative stress in the pathogenesis of RA has been confirmed by this study. Serum levels of ROS and RNS may effectively serve as biomarkers for monitoring disease progression. Finally, the addition of an antioxidant, such as ascorbic acid, in the management of RA may be of a great value.

  • Regular Exercise Training with Lutein/zeaxanthin Isomers Regulates Brain Transcription Factors and Neurotrophic and Synaptic Proteins in Rats (P06-020-19)📎

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    Abstract Title:

    Regular Exercise Training with Lutein/zeaxanthin Isomers Regulates Brain Transcription Factors and Neurotrophic and Synaptic Proteins in Rats (P06-020-19).

    Abstract Source:

    Curr Dev Nutr. 2019 Jun ;3(Suppl 1). Epub 2019 Jun 13. PMID: 31223768

    Abstract Author(s):

    Kazim Sahin, Cemal Orhan, Mehmet Tuzcu, Nurhan Sahin, Vijaya Juturu

    Article Affiliation:

    Kazim Sahin

    Abstract:

    Objectives:Lutein/zeaxanthin isomers (L/Zi), the major carotenoids, have demonstrated potent antioxidant and antiinflammation. This study was conducted to clarify the effects of L/Zi on brain transcription and brain-derived neurotrophic factors and synaptic proteins combined with exercise training in rats.

    Methods:Wistar rats (age: 8 wks) were allocated into four groups: (i) Control: no treatments (ii) L/Zi: Rats treated with L/Zi (100 mg L/Zi/kg BW); (iii) Exercise: Rats with regular exercise only, (iv) Exercise + L/Zi: Rats with combined treatment of L/Zi (100 mg L/Zi/kg BW) and regular exercise. The exercise practice was carried out on a motor-driven rodent treadmill at 25 m/min, 45 min/day, 5 d/week for 8 wks.

    Results:Rats with combined treatment of L/Zi (100 mg L/Zi/kg BW) and regular exercise. The exercise practice was carried out on a motor-driven rodent treadmill at 25 m/min, 45 min/day, 5 d/week for 8 wks. Brain nuclear factor (erythroid-derived 2)-like 2 (Nrf2), and heme oxygenase-1(HO-1) levels increased and nuclear factor (NF-κB) reduced in the combined group. In addition, L/Zi supplementation increased cerebral cortex brain-derived neurotrophic factor (BDNF), synapsin I, synaptophysin (SYP) and growth-associated protein-43 (GAP-43) levels both control and exercised rats (<0.001 for all). The highest cerebral cortex BDNF, synapsin I, SYP and GAP-43 levels were detected in the combined group.

    Conclusions:These results suggest that regular exercise training with L/Zi may improve brain function by regulating transcription and brain-derived neurotrophic factors and synaptic proteins in rats.

    Funding Sources:This study was supported by the Omniactive Health Technologies (NJ, USA) and partially supported by the Turkish Academy of Sciences (Ankara, Turkey).

  • Regular Yoga Practice Improves Antioxidant Status, Immune Function, and Stress Hormone Releases in Young Healthy People: A Randomized, Double-Blind, Controlled Pilot Study. 📎

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    Abstract Title:

    Regular Yoga Practice Improves Antioxidant Status, Immune Function, and Stress Hormone Releases in Young Healthy People: A Randomized, Double-Blind, Controlled Pilot Study.

    Abstract Source:

    J Altern Complement Med. 2015 Sep ;21(9):530-8. Epub 2015 Jul 16. PMID: 26181573

    Abstract Author(s):

    Sung-Ah Lim, Kwang-Jo Cheong

    Article Affiliation:

    Sung-Ah Lim

    Abstract:

    OBJECTIVE:The aim of the present study is to highlight the beneficial effects of yoga practice on bio-parameters, such as oxidative stress, antioxidant components, immune functions, and secretion of stress hormones, in healthy young people.

    STUDY DESIGN:This study was conducted on healthy volunteers recruited from among university students, who were divided into two groups: a control (no yoga intervention, n=13) group and a yoga (n=12) group. Yoga practice was with an instructor for 90 minutes once a week spread over 12 weeks, with recommendations to practice daily at home for 40 minutes with the help of a DVD. The yoga program consisted of yoga body poses (asanas), exercises involving awareness, voluntary regulation of breath (pranayama), and meditational practices. Whole blood samples were collected when the volunteers had fasted for 8 hours at 0 and 12 weeks. The oxidative stress/antioxidant components, immune-related cytokines, and stress hormones were evaluated in serum or plasma.

    RESULTS:Serum levels of nitric oxide, F2-isoprostane, and lipid peroxide were significantly decreased by yoga practice (p<0.05 or p=0.01), whereas serum total glutathione (GSH) contents, activities of GSH-peroxidase, and GSH-s-transferase were remarkably increased after yoga practice compared with the control group (p<0.05 or p=0.01). Yoga practice also significantly increased immune-related cytokines, such as interleukin-12, and interferon-γ, in serum (p<0.05 or p=0.01). Yoga practice significantly reduced the plasma levels of adrenalin (p<0.05) and increased plasma levels of serotonin compared with the control group (p<0.05).

    CONCLUSIONS:Regular yoga practice remarkably attenuated oxidative stress and improved antioxidant levels of the body. Moreover, yoga beneficially affected stress hormone releases as well as partially improved immune function.

  • Roles of meditation on alleviation of oxidative stress and improvement of antioxidant system.

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    Abstract Title:

    Roles of meditation on alleviation of oxidative stress and improvement of antioxidant system.

    Abstract Source:

    J Med Assoc Thai. 2010 Nov ;93 Suppl 6:S242-54. PMID: 21280542

    Abstract Author(s):

    Chitrawina Mahagita

    Article Affiliation:

    Chitrawina Mahagita

    Abstract:

    According to MEDLINE/Pubmed search to December 2009, the modulation effects of meditation on oxidative stress have been increasingly investigated for acute, short and long-term effects. Both invasive and noninvasive measurements have been utilized. Long-term transcendental and Zen meditators have been showed to diminish oxidative stress seen by a reduction of lipid peroxidation and biophoton emission. Glutathione level and activity of antioxidant enzymes (catalase, superoxide dismutase, glutathione peroxidase and glutathione reductase) have been facilitated in Yoga and Sudarshan Kriya practitioners. One year of Tai Chi training has been reported to promote superoxide dismutase activity and lessen lipid peroxidation. Performing diaphragmatic breathing after exhaustive exercise has attenuated oxidative stress faster than control. These data suggest possible roles of meditation and meditation-based techniques on the decrease of oxidative stress which may assist to prevent and/or alleviate deterioration of related diseases. However, further research needs to elucidate the cellular and molecular mechanisms which remain challenge to accomplish.

  • Roles of meditation on alleviation of oxidative stress and improvement of antioxidant system.

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    Abstract Title:

    Roles of meditation on alleviation of oxidative stress and improvement of antioxidant system.

    Abstract Source:

    J Med Assoc Thai. 2010 Nov ;93 Suppl 6:S242-54. PMID: 21280542

    Abstract Author(s):

    Chitrawina Mahagita

    Article Affiliation:

    Chitrawina Mahagita

    Abstract:

    According to MEDLINE/Pubmed search to December 2009, the modulation effects of meditation on oxidative stress have been increasingly investigated for acute, short and long-term effects. Both invasive and noninvasive measurements have been utilized. Long-term transcendental and Zen meditators have been showed to diminish oxidative stress seen by a reduction of lipid peroxidation and biophoton emission. Glutathione level and activity of antioxidant enzymes (catalase, superoxide dismutase, glutathione peroxidase and glutathione reductase) have been facilitated in Yoga and Sudarshan Kriya practitioners. One year of Tai Chi training has been reported to promote superoxide dismutase activity and lessen lipid peroxidation. Performing diaphragmatic breathing after exhaustive exercise has attenuated oxidative stress faster than control. These data suggest possible roles of meditation and meditation-based techniques on the decrease of oxidative stress which may assist to prevent and/or alleviate deterioration of related diseases. However, further research needs to elucidate the cellular and molecular mechanisms which remain challenge to accomplish.