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.

  • Gene expression profiling in practitioners of Sudarshan Kriya.

    facebook Share on Facebook
    Abstract Title:

    Gene expression profiling in practitioners of Sudarshan Kriya.

    Abstract Source:

    J Psychosom Res. 2008 Feb ;64(2):213-8. PMID: 18222135

    Abstract Author(s):

    Himani Sharma, Palika Datta, Archna Singh, Sudip Sen, Narendra Kumar Bhardwaj, Vinod Kochupillai, Neeta Singh

    Article Affiliation:

    Himani Sharma

    Abstract:

    BACKGROUND:The rapid pace of life, eating habits, and environmental pollution have increased stress levels and its related disorders. The complex molecular response to stress is mediated by stress genes and a variety of regulatory pathways. Oxidative stress is internal damage caused by reactive oxygen species. Increasing evidence suggests that chronic psychosocial stress may increase oxidative stress, which in turn may contribute to aging, and etiology of coronary diseases, cancer, arthritis, etc. Psychophysiological concomitants of meditation have been extensively researched, but there are very little data available on biochemical activity leading to relieving stress by causing a relaxation response by Sudarshan Kriya (SK). SK is a breathing technique that involves breathing in three different rhythms. It is preceded by Ujjayi Pranayam (long and deep breaths with constriction at the base of throat) and Bhastrika (fast and forceful breaths through nose along with arm movements).

    METHODS:Forty-two SK practitioners and 42 normal healthy controls were recruited for our study. The practitioners had practiced SK for at least 1 year. Selected normal healthy controls did not perform any conventional physical exercise or any formal stress management technique. Whole blood was used for glutathione peroxidase estimation and red blood cell lysate was used for superoxide dismutase activity assay and for glutathione estimation. White blood cells were isolated from fresh blood and assayed for gene expression using reverse transcriptase-polymerase chain reaction. The parameters studied are antioxidant enzymes, genes involved in oxidative stress, DNA damage, cell cycle control, aging, and apoptosis.

    RESULTS:A better antioxidant status both at the enzyme activity and RNA level was seen in SK practitioners. This was accompanied by better stress regulation and better immune status due to prolonged life span of lymphocytes by up-regulation of antiapoptotic genes and prosurvival genes in these subjects.

    CONCLUSIONS:Our pilot study provides the first evidence suggesting that SK practice may exert effects on immunity, aging, cell death, and stress regulation through transcriptional regulation.

  • Gentamicin in combination with ascorbic acid regulates the severity of Staphylococcus aureus infection-induced septic arthritis in mice. 📎

    Abstract Title:

    Gentamicin in combination with ascorbic acid regulates the severity of Staphylococcus aureus infection-induced septic arthritis in mice.

    Abstract Source:

    Scand J Immunol. 2012 Dec ;76(6):528-40. PMID: 22924656

    Abstract Author(s):

    P Mal, S Dutta, D Bandyopadhyay, K Dutta, A Basu, B Bishayi

    Article Affiliation:

    P Mal

    Abstract:

    To study the effects of gentamicin in combination with ascorbic acid on septic arthritis, mice were infected with Staphylococcus aureus (S. aureus) and treated with gentamicin, which was given at 5 mg/kg after 24 h of infection, followed by ascorbic acid, given at 20 mg/kg body weight after 2 h of gentamicin treatment. Mice were sacrificed at 3, 9, 15 days post-infection (dpi). Combined treatment of infected mice with gentamicin and ascorbic acid eradicated the bacteria from the blood, spleen and synovial tissue and showed a significant gross reduction in arthritis, reduced serum levels of tumour necrosis factor alpha (TNF-α) and interferon gamma (IFN-γ). S. aureus-infected mice have demonstrated the disturbed antioxidant status measured in terms of cellular antioxidants like reduced glutathione and antioxidant enzymes such as superoxide dismutase (SOD) and catalase. The same were ameliorated when the animals were co-treated with gentamicin along with ascorbic acid.

  • Grape Seed Extract Supplementation and the Effects on the Biomarkers of Oxidative Stress and Metabolic Profiles in Female Volleyball Players: A Randomized, Double-Blind, Placebo-Controlled Clinical Trial📎

    facebook Share on Facebook
    Abstract Title:

    Grape Seed Extract Supplementation and the Effects on the Biomarkers of Oxidative Stress and Metabolic Profiles in Female Volleyball Players: A Randomized, Double-Blind, Placebo-Controlled Clinical Trial.

    Abstract Source:

    Iran Red Crescent Med J. 2016 Sep ;18(9):e31314. Epub 2016 Jul 17. PMID: 28144458

    Abstract Author(s):

    Mohsen Taghizadeh, Elaheh Malekian, Mohammad Reza Memarzadeh, Ali Akbar Mohammadi, Zatollah Asemi

    Article Affiliation:

    Mohsen Taghizadeh

    Abstract:

    BACKGROUND:Only limited data are available for evaluating the effects of the administration of grape seed extract (GSE) on the metabolic status of female volleyball players.

    OBJECTIVES:This study was conducted to determine the effects of GSE administration on the metabolic status of female volleyball players.

    METHODS:This randomized, double-blind, placebo-controlled clinical trial was performed among 40 female volleyball players. The subjects were randomly divided into two groups, with members of the test group (n = 20) taking 300 mg of GSE twice a day for eight weeks and members of the control group (n = 20) taking a placebo pearl for the same period. Fasting blood samples were taken before and after the eight-week intervention period in order to determine the related variables.

    RESULTS:Supplementation with GSE resulted in a significant rise in the plasma glutathione (GSH) level (+265.5± 344.2 vs. +2.2 ± 378.2 µmol/L, P = 0.02), as well as a significant decrease in the malondialdehyde (MDA) level (-1.4 ± 2.0 vs. -0.2 ± 1.2 µmol/L, P = 0.01) when compared to the placebo group. In addition, when compared to the group that received the placebo, the subjects who received GSE hadsignificantly decreased serum insulin concentrations (-23.4 ± 23.4 vs. +1.8 ± 25.2 pmol/L, P = 0.002), a decreased homeostasis model of assessment for insulin resistance (HOMA-IR) (-0.7 ± 0.7 vs. +0.2 ± 0.9, P = 0.002), and an increased quantitative insulin sensitivity check index (QUICKI) (+0.01 ± 0.01 vs. -0.01 ± 0.02, P = 0.03). The administration of GSE had no significant effects on creatine phosphokinase (CPK), total antioxidant capacity (TAC), nitric oxide (NO), fasting plasma glucose (FPG), and lipid concentrations when compared with the administration of the placebo. However, after controlling for baseline NO levels, age, and baseline BMI, the changes in the plasma NO concentrations were significantly different between the two groups.

    CONCLUSIONS:In conclusion, taking GSE for eight weeks had beneficial effects on the plasma GSH, MDA levels, and markers of insulin metabolism of female volleyball players.

  • Hemotoxicity induced by chronic chlorpyrifos exposure in wistar rats: mitigating effect of vitamin C. 📎

    Abstract Title:

    Hemotoxicity induced by chronic chlorpyrifos exposure in wistar rats: mitigating effect of vitamin C.

    Abstract Source:

    Vet Med Int. 2011 ;2011:945439. Epub 2011 Apr 27. PMID: 21647348

    Abstract Author(s):

    Suleiman F Ambali, Joseph O Ayo, King A N Esievo, Samuel A Ojo

    Article Affiliation:

    Suleiman F Ambali

    Abstract:

    The study evaluated the ameliorative effect of vitamin C on chronic chlorpyrifos-induced hematological alterations in Wistar rats. Twenty adult male rats divided into 4 groups of 5 animals each were exposed to the following regimens: group I (S/oil) was administered soya oil (2 mL/kg b.w.), while group II (VC) was given vitamin C (100 mg/kg b.w.); group III was dosed with CPF (10.6 mg/kg b.w.); group IV was pretreated with vitamin C (100 mg/kg) and then exposed to CPF (10.6 mg/kg b.w.), 30 minutes later. The regimens were administered by oral gavage oncedaily for a period of 17 weeks. Blood samples collected at the end of the study revealed reduction in the levels of pack cell volume, hemoglobin, red blood cells, leukocytes (attributed to neutropenia, lymphopenia, and monocytopenia), and platelets in the CPF group, which were ameliorated in the vitamin C- pretreated group. The elevated values of malonaldehyde, mean corpuscular volume, mean corpuscular hemoglobin, mean corpuscular hemoglobin concentration, and neutrophil/lymphocyte ratio in the CPF group were restored in those pretreated with vitamin C. The study has shown that chronic CPF-induced adversity on hematological parameters of Wistar rats was mitigated by pretreatment with vitamin C.

  • Hemp seed polysaccharides protect intestinal epithelial cells from hydrogen peroxide-induced oxidative stress.

    Abstract Title:

    Hemp seed polysaccharides protect intestinal epithelial cells from hydrogen peroxide-induced oxidative stress.

    Abstract Source:

    Int J Biol Macromol. 2019 Aug 15 ;135:203-211. Epub 2019 May 17. PMID: 31108145

    Abstract Author(s):

    Zheng-Shun Wen, Ran Xue, Ming Du, Zhen Tang, Xing-Wei Xiang, Bin Zheng, You-Le Qu

    Article Affiliation:

    Zheng-Shun Wen

    Abstract:

    The purpose of this study was to investigate structure of Hemp seed polysaccharide (HSP) and the protective effect of HSP from HO-induced oxidative damage in IPEC-1 cells and the possible mechanism of this protection. Analysis of monosaccharide composition and structure of two fractions HSPand HSPfrom polysaccharide of Hemp seed (HSPc) were analyzed by high performance liquid chromatography (HPLC) and Fourier transform infrared spectroscopy (FT-IR). The results showed that both HSPand HSPcontain sulfate groups, which are sulfated polysaccharides. In IPEC-1 cells model, the release of LDH and MDA was significantly decreased, and the activities of SOD, GSH-Px and CAT were significantly increased in HSPand HSP-treated group. HSPdramatically increased the gene expression of antioxidant enzymes and phase II detoxification enzymes measured by real-time fluorescent quantitative reverse transcription-polymerase chain reaction (qRT-PCR). In addition, HSPup-regulated the expression level of intracellular transcription factor Nuclear factor erythroid-2-related factor 2 (Nrf2) and inhibited the level of Kelch-like ECH-associated protein 1 (Keap1) with Western blot analysis. Collectively, the present study suggested that HSPhas the protective effect of IPEC-1 cells against HO-induecd oxidative stress. This protection mechanism may be related to activation of the Keap1/Nrf2 signaling pathway.

  • Hempseed protein hydrolysates' effects on the proliferation and induced oxidative stress in normal and cancer cell lines.

    Abstract Title:

    Hempseed protein hydrolysates' effects on the proliferation and induced oxidative stress in normal and cancer cell lines.

    Abstract Source:

    Mol Biol Rep. 2019 Dec ;46(6):6079-6085. Epub 2019 Sep 6. PMID: 31493283

    Abstract Author(s):

    Marijan Logarušić, Igor Slivac, Kristina Radošević, Martina Bagović, Ivana Radojčić Redovniković, Višnja Gaurina Srček

    Article Affiliation:

    Marijan Logarušić

    Abstract:

    Food proteins from different sources can provide beneficial effects on human health by releasing the bioactive peptides that are integral part of their native structure. In this study, we tested the biological potential of hempseed protein hydrolysates (HPHs) obtained from hempseed cake protein isolate. The HPHs were prepared by enzyme hydrolysis using three different proteases of microbial origin: Alcalase®, Neutrase® and Protamex®. The antioxidant activity of the obtained hydrolysates was determined by oxygen radical absorbance capacity (ORAC) assay, while the proliferative effects on normal (HaCaT) and cancer (HeLa) cells were determined by the CellTiter 96AQOne Solution Reagent (MTS) assay. HPHs showed dose-dependent antiproliferative effects on HeLa cells and stimulatory effects on the proliferation of HaCaT cells. HPH obtained by Neutrase(HPH-N) showed the highest antioxidant activity expressed as an ORAC value. The protective effect of HPH-N on HO-induced oxidative stress in normal and cancer cells was evaluated and 1 mg/mL of HPH-N significantly reduced the formation of intracellular reactive oxygen species (ROS) in both cell lines. The obtained results indicate the benefits of HPHs as potential natural antioxidants for the food industry and contribute to the growing trend of utilizing hempseed by-products.

  • HYPERBARIC OXYGEN THERAPY IN THE TREATMENT OF MALE INFERTILITY ASSOCIATED WITH INCREASED SPERM DNA FRAGMENTATION AND REACTIVE OXYGEN SPECIES IN SEMEN

    facebook Share on Facebook
    Abstract Title:

    [HYPERBARIC OXYGEN THERAPY IN THE TREATMENT OF MALE INFERTILITY ASSOCIATED WITH INCREASED SPERM DNA FRAGMENTATION AND REACTIVE OXYGEN SPECIES IN SEMEN].

    Abstract Source:

    Urologiia. 2015 Sep-Oct(5):74-6. PMID: 26859943

    Abstract Author(s):

    A Yu Metelev, A B Bogdanov, E V Ivkinl, A A Mitrokhin, M M Vodneva, E I Veliev

    Article Affiliation:

    A Yu Metelev

    Abstract:

    The aim of this study was to explore the potential of hyperbaric oxygenation (HBO) for reduction of sperm DNA fragmentation level and reactive oxygen species (ROS) in semen. The study included 90 men with idiopathic infertility. Patients of the treatment group (n = 60) underwent HBO before the vitro fertilization (IVF) procedure. In the control group (n = 30) IVF was carried out without prior cours of HBO. Sperm DNA fragmentation analysis was carried out using the TUNEL assay, the level of ROS in the ejaculate was measured by chemiluminescence. HBO treatment resulted in a significant decrease in the mean level of sperm DNA fragmentation from 33.2± 7.5 to 11.9 ± 5.9%, and the median ROS in sperm from 0.89 to 0.39 mV/s (p<0.05). In the control group these changes were not statistically significant. Pregnancy after IVF occurred in 63.3% (38/60) of sexual partners of the treatment group men and in 36.7% (11/30) of the control group (p<0.05). The high efficiency of HBO in overcoming the adverse effects of oxidative stress on sperm parameters allows us to consider it as a promising method for the treatment of men with idiopathic infertility.

  • Impact of anthocyanin-rich whole fruit consumption on exercise-induced oxidative stress and inflammation: a systematic review and meta-analysis.

    facebook Share on Facebook
    Abstract Title:

    Impact of anthocyanin-rich whole fruit consumption on exercise-induced oxidative stress and inflammation: a systematic review and meta-analysis.

    Abstract Source:

    Nutr Rev. 2019 Jun 22. Epub 2019 Jun 22. PMID: 31228241

    Abstract Author(s):

    Taylor K Bloedon, Rock E Braithwaite, Imogene A Carson, Dorothy Klimis-Zacas, Robert A Lehnhard

    Article Affiliation:

    Taylor K Bloedon

    Abstract:

    CONTEXT:Supplementing with fruits high in anthocyanins to reduce exercise-induced oxidative stress and inflammation has produced mixed results.

    OBJECTIVE:This systematic review and meta-analysis aims to discuss the impact of whole fruits high in anthocyanins, including processing methods and the type and amount of fruit, on inflammation and oxidative stress.

    DATA SOURCES:PICOS reporting guidelines and a customized coding scheme were used to search 5 databases (SPORTDiscus, Science Direct, Web of Science [BIOSIS], Medline [Pubmed], and the Cochrane Collaboration) with additional cross-referencing selection.

    DATA EXTRACTION:A random-effects meta-analysis was used to measure effects of the fruit supplements with 3 statistics; the QTotal value based on aχ2 distribution, τ2 value, and I2 value were used to determine homogeneity of variances on 22 studies (out of 807). Outliers were identified using a relative residual value.

    RESULTS:A small significant negative summary effect across the sum of all inflammatory marker outcomes (P<0.001) and a moderate negative effect for the sum of all oxidative stress marker outcomes (P = 0.036) were found. Moderator analyses did not reveal significant (P>0.05) differences between subgrouping variables.

    CONCLUSIONS:Results indicate that consumption of whole fruit high in anthocyanins can be beneficial for reducing inflammation and oxidative stress.

  • Impact of vitamin C on the cardiometabolic and inflammatory profiles of mice lacking a functional Werner syndrome protein helicase.

    Abstract Title:

    Impact of vitamin C on the cardiometabolic and inflammatory profiles of mice lacking a functional Werner syndrome protein helicase.

    Abstract Source:

    Exp Gerontol. 2015 Dec ;72:192-203. Epub 2015 Oct 29. PMID: 26521679

    Abstract Author(s):

    Lucie Aumailley, Marie Julie Dubois, Chantal Garand, André Marette, Michel Lebel

    Article Affiliation:

    Lucie Aumailley

    Abstract:

    Werner syndrome (WS) is a premature aging disorder caused by mutations in a DNA helicase/exonuclease. Mice lacking the helicase domain of this protein exhibit metabolic abnormalities that are reversed by vitamin C. In this study, we used a targeted metabolomic approach to identify serum metabolites significantly altered in young mutant mice treated with or without vitamin C. We also measured several serum inflammatory and cardiometabolic factors. We show that young mutant mice exhibit an increase in serum hydroxyproline and plasminogen activator inhibitor-1 (PAI-1), markers of cardiovascular diseases and inflammation, before they exhibit morphological anomalies in different tissues. We also observed an increase in three very long chain lysophosphatidylcholines underlying peroxisome perturbation. Vitamin C reversed the concentrations of these metabolites and PAI-1 to wild type values. Transcriptomic analyses on the liver of mutant mice revealed a decrease in the expression of genes involved in fatty acid degradation compared to wild type animals. Vitamin C treatment increased the expression of genes involved in glutathione metabolism and the synthesis of unsaturated fatty acids in these mice. These results show that changes at the transcriptomic level concord with the alterations of several serum metabolites in these mice. Finally, we found that a mislocalization of the Wrn mutant protein in the liver endoplasmic reticulum fraction increased oxidative stress in that cellular compartment. Vitamin C reversed this oxidative stress. To conclude, this study provides novel potential predictive cardiometabolic biomarkers in WS that will allow the assessment of the impact of vitamin C on patients with WS.

  • Improved antioxidative protection in winter swimmers.

    facebook Share on Facebook
    Abstract Title:

    Improved antioxidative protection in winter swimmers.

    Abstract Source:

    QJM. 1999 Apr ;92(4):193-8. PMID: 10396606

    Abstract Author(s):

    W G Siems, R Brenke, O Sommerburg, T Grune

    Article Affiliation:

    W G Siems

    Abstract:

    Adaptation to oxidative stress is an improved ability to resist the damaging effects of reactive oxygen species, resulting from pre-exposure to a lower dose. Changes in uric acid and glutathione levels during ice-bathing suggest that the intensive voluntary short-term cold exposure of winter swimming produces oxidative stress. We investigated whether the repeated oxidative stress in winter swimmers results in improved antioxidative adaptation. We obtained venous blood samples from winter swimmers and determined important components of the antioxidative defense system in the erythrocytes or blood plasma: reduced and oxidized glutathione (GSH and GSSG), and the activities of superoxide dismutase (SOD), glutathione peroxidase (GPx) and catalase (Cat). The control group consisted of healthy people who had never participated in winter swimming. The baseline concentration of GSH and the activities of erythrocytic SOD and Cat, were higher in winter swimmers. We interpret this as an adaptative response to repeated oxidative stress, and postulate it as a new basic molecular mechanism of increased tolerance to environmental stress.

  • Improvement in oxidative status with yogic breathing in young healthy males.

    facebook Share on Facebook
    Abstract Title:

    Improvement in oxidative status with yogic breathing in young healthy males.

    Abstract Source:

    Indian J Physiol Pharmacol. 2002 Jul;46(3):349-54. PMID: 12613400

    Abstract Author(s):

    Sandeep Bhattacharya, U S Pandey, N S Verma

    Article Affiliation:

    Department of Physiology, King George's Medical College, Lucknow, 226 003.

    Abstract:

    The modern living lifestyle is known to produce various physical and psychological stresses and subject the individual to produce oxidative stresses as well. The aim of this study has been to assess the effect of yogic breathing exercises (pranayama) on the oxidatives stress. The study group consisted of 30 young male volunteers, trained for the purpose of this study and an equal number of controls were used. The free radicals and Super oxide dismutase levels were measured before the study and at the end of the study. The free radicals were decreased significantly in the study group but the SOD was increased insignificantly as compared to the control group. Yogic breathing exercises not only help in relieving the stresses of life but also improve the antioxidant status of the individual. An improvement in the antioxidant status is helpful in preventing many pathological processes that are known with impaired antioxidant system of body.

  • Improvement in oxidative status with yogic breathing in young healthy males.

    facebook Share on Facebook
    Abstract Title:

    Improvement in oxidative status with yogic breathing in young healthy males.

    Abstract Source:

    Indian J Physiol Pharmacol. 2002 Jul;46(3):349-54. PMID: 12613400

    Abstract Author(s):

    Sandeep Bhattacharya, U S Pandey, N S Verma

    Article Affiliation:

    Department of Physiology, King George's Medical College, Lucknow, 226 003.

    Abstract:

    The modern living lifestyle is known to produce various physical and psychological stresses and subject the individual to produce oxidative stresses as well. The aim of this study has been to assess the effect of yogic breathing exercises (pranayama) on the oxidatives stress. The study group consisted of 30 young male volunteers, trained for the purpose of this study and an equal number of controls were used. The free radicals and Super oxide dismutase levels were measured before the study and at the end of the study. The free radicals were decreased significantly in the study group but the SOD was increased insignificantly as compared to the control group. Yogic breathing exercises not only help in relieving the stresses of life but also improve the antioxidant status of the individual. An improvement in the antioxidant status is helpful in preventing many pathological processes that are known with impaired antioxidant system of body.

  • In vitro evaluation of the synergistic antioxidant and anti-inflammatory activities of the combined extracts from Malaysian Ganoderma lucidum and Egyptian Chlorella vulgaris. 📎

    facebook Share on Facebook
    Abstract Title:

    In vitro evaluation of the synergistic antioxidant and anti-inflammatory activities of the combined extracts from Malaysian Ganoderma lucidum and Egyptian Chlorella vulgaris.

    Abstract Source:

    BMC Complement Altern Med. 2018 May 10 ;18(1):154. Epub 2018 May 10. PMID: 29747629

    Abstract Author(s):

    Marwa M Abu-Serie, Noha H Habashy, Wafaa E Attia

    Article Affiliation:

    Marwa M Abu-Serie

    Abstract:

    BACKGROUND:Since oxidative stress and inflammation are two linked factors in the pathogenesis of several human diseases. Thus identification of effective treatment is of great importance. Edible mushroom and microalgae are rich in the effective antioxidant phytochemicals. Hence, their beneficial effects on oxidative stress-associated inflammation are extremely required to be investigated.

    METHODS:This study evaluated the functional constituents, antioxidant and anti-inflammatory activities of Malaysian Ganoderma lucidum aqueous extract (GLE) and Egyptian Chlorella vulgaris ethanolic extract (CVE). Also, the synergistic, addictive or antagonistic activities of the combination between the two extracts (GLE-CVE) were studied. Expression of inducible nitric oxide synthase, cyclooxygenase-2, and nuclear factor-kappa B, as well as levels of nitric oxide, tumor necrosis factor (TNF)-α, lipid peroxidation, reduced glutathione and antioxidant enzymes were determined using in vitro model of lipopolysaccharide-stimulated white blood cells.

  • In vivo changes in antioxidant systems and protective role of melatonin and a combination of vitamin C and vitamin E on oxidative damage in erythrocytes induced by chlorpyrifos-ethyl in rats.

    Abstract Title:

    In vivo changes in antioxidant systems and protective role of melatonin and a combination of vitamin C and vitamin E on oxidative damage in erythrocytes induced by chlorpyrifos-ethyl in rats.

    Abstract Source:

    Arch Toxicol. 2001 Apr;75(2):88-96. PMID: 11354911

    Abstract Author(s):

    F Gultekin, N Delibas, S Yasar, I Kilinc

    Article Affiliation:

    Department of Biochemistry and Clinical Biochemistry, Suleyman Demirel University, School of Medicine, 32040 Isparta, Turkey. This email address is being protected from spambots. You need JavaScript enabled to view it.

    Abstract:

    Reactive oxygen species (ROS) may be involved in the toxicity of chlorpyrifos-ethyl (CE) [O,O-diethyl-O-(3,5,6-trichloro-2-pyridyl)phosphorothioate]. We have, therefore, examined the in vivo effects of CE on the rat erythrocyte antioxidant system and evaluated the ameliorating effects of melatonin and a combination of vitamin E and vitamin C on the oxidative damage induced by CE. The experimental groups were: (1) control group, (2) CE-treated group (CE), (3) vitamin E plus vitamin C treatment group (Vit), (4) melatonin-treated group (Mel), (5) vitamin E plus vitamin C plus CE treatment group (Vit + CE), and (6) melatonin plus CE treatment group (Mel + CE). Vitamin E and vitamin C were administered intramuscularly once a day for 6 consecutive days at 150 and 200 mg/kg, respectively, in the Vit and Vit + CE groups. Melatonin was administered intramuscularly at 10 mg/kg per day for 6 consecutive days in the Mel and Mel + CE groups. At the end of the fifth day, the rats of CE, Vit + CE and Mel + CE groups were treated orally with the first of two equal doses of 41 mg/kg CE, the second oral dose being given 21 h later. Blood samples were taken 24 h after the first CE administration. Levels of thiobarbituric acid reactive substance (TBARS), antioxidant defence potential (AOP), and the activities of superoxide dismutase (SOD), glutathione peroxidase (GSH-Px), and catalase (CAT) were determined in erythrocytes. In comparison with the control group, oral administration of CE significantly (P<0.05) stimulated TBARS activity while significantly (P<0.05) inhibiting AOP and the activities of SOD and CAT. However, GSH-Px activity remained unchanged by CE treatment. Treatment with melatonin and vitamins E plus C significantly (P<0.05) reduced the CE-induced increase of TBARS, and overcame the inhibitory effect of CE on SOD and CAT, but not on AOP. Melatonin treatment significantly (P<0.05) increased only GSH-Px activity, irrespective of the effect of CE. These results suggest that CE treatment increases in vivo lipid peroxidation and decreases antioxidant defence by increasing oxidative stress in erythrocytes of rats, and melatonin and a combination of vitamin E and vitamin C can reduce this lipoperoxidative effect.

  • Influence of vitamin C supplementation on oxidative stress and neutrophil inflammatory response in acute and regular exercise. 📎

    facebook Share on Facebook
    Abstract Title:

    Influence of vitamin C supplementation on oxidative stress and neutrophil inflammatory response in acute and regular exercise.

    Abstract Source:

    Oxid Med Cell Longev. 2015 ;2015:295497. Epub 2015 Feb 23. PMID: 25802681

    Abstract Author(s):

    Ljiljana M Popovic, Nebojsa R Mitic, Dijana Miric, Boban Bisevac, Mirjana Miric, Brankica Popovic

    Article Affiliation:

    Ljiljana M Popovic

    Abstract:

    Exercise induces a multitude of physiological and biochemical changes in blood affecting its redox status. Tissue damage resulting from exercise induces activation of inflammatory cells followed by the increased activity of myeloperoxidase (MPO) in circulation. Vitamin C readily scavenges free radicals and may thereby prevent oxidative damage of important biological macromolecules. The aim of this study was to examine the effect of vitamin C supplementation on oxidative stress and neutrophil inflammatory response induced by acute and regular exercise. Experiment was conducted on acute exercise group (performing Bruce Treadmill Protocol (BTP)) and regular training group. Markers of lipid peroxidation, malondialdehyde (MDA), MPO activity, and vitamin C status were estimated at rest and after BTP (acute exercise group) and before and after vitamin C supplementation in both groups. Our results showed increased postexercise Asc in serum independently of vitamin supplementation. They also showed that vitamin C can significantly decrease postexercise MDA level in both experimental groups. Increased postexercise MPO activity has been found in both groups and was not affected by vitamin C supplementation. We concluded that vitamin C supplementation can suppress lipid peroxidation process during exercise but cannot affect neutrophil inflammatory response in either exercise group.

  • Ink4a/Arf-dependent Loss of Parietal Cells Induced by Oxidative Stress Promotes CD44-dependent Gastric Tumorigenesis. 📎

    Abstract Title:

    Ink4a/Arf-dependent Loss of Parietal Cells Induced by Oxidative Stress Promotes CD44-dependent Gastric Tumorigenesis.

    Abstract Source:

    Cancer Prev Res (Phila). 2015 Mar 26. Epub 2015 Mar 26. PMID: 25813526

    Abstract Author(s):

    Ryo Seishima, Takeyuki Wada, Kenji Tsuchihashi, Shogo Okazaki, Momoko Yoshikawa, Hiroko Oshima, Masanobu Oshima, Toshiro Sato, Hirotoshi Hasegawa, Yuko Kitagawa, James R Goldenring, Hideyuki Saya, Osamu Nagano

    Article Affiliation:

    Ryo Seishima

    Abstract:

    Loss of parietal cells initiates the development of spasmolytic polypeptide-expressing metaplasia (SPEM), a precancerous lesion in stomach. CD44 variant (CD44v) which enhances the ability to defend against reactive oxygen species (ROS) in epithelial cells is expressed de novo in SPEM of K19-Wnt1/C2mE mice, a transgenic model of gastric tumorigenesis, and is required for the efficient development of SPEM and gastric tumor in these animals. The role of ROS and its downstream signaling in CD44-dependent gastric tumorigenesis has remained unknown, however. With the use of the K19-Wnt1/C2mE mouse we now show that parietal cells in the inflamed stomach are highly sensitive to oxidative stress and manifest activation of p38MAPK signaling by ROS. Oral treatment with the antioxidant ascorbic acid or genetic ablation of the Ink4a/Arf locus, a major downstream target of ROS-p38MAPK signaling, inhibited parietal cell loss and the subsequent gastric tumorigenesis. Our results indicate that signaling activated by oxidative stress in parietal cells plays a key role in CD44-dependent gastric tumorigenesis.

  • Interaction of gold nanoparticles with free radicals and their role in enhancing the scavenging activity of ascorbic acid.

    Abstract Title:

    Interaction of gold nanoparticles with free radicals and their role in enhancing the scavenging activity of ascorbic acid.

    Abstract Source:

    J Photochem Photobiol B. 2016 Apr 9 ;161:266-272. Epub 2016 Apr 9. PMID: 27288656

    Abstract Author(s):

    Humaira Razzaq, Farhat Saira, Azra Yaqub, Rumana Qureshi, Misbah Mumtaz, Samia Saleemi

    Article Affiliation:

    Humaira Razzaq

    Abstract:

    The present study investigates the interaction of citrate stabilized gold nanoparticles (12±1.5nm) (GNPs) with free radicals; 1,1-diphenyl-2-picrylhydrazyl (DPPH) stable and electrochemically generated superoxide, O2(-). Different experiments were designed to understand the interaction between GNPs and DPPH by employing cyclic voltammetry, UV-vis spectroscopy and computational chemistryusing 6-311G basis set. The increase in heterogeneous rate constant, ksh, of DPPH upon addition of GNPs pointed towards possible complex formation, DPPH-GNPs which were further explained by a model assuming surface adsorption of DPPH on GNPs. Further, the model was validated by studying interactionof GNPs with a biologically important free radical, O2(-). Exciting result in terms of disappearance of anodic peak after GNPs addition confirmed that gold nanoparticles interacted with stable as well as unstable free radicals. Also, the stoichiometry of the most stable complex GNP-DPPH was determined from UV-vis spectroscopy by applying Job's method. The GNP-DPPH complex was found to be active with 46.0% reduction of the IC50 value of standard antioxidant, ascorbic acid (AA), indicating its role in enhancing antioxidant activity. Hence, this study presents a simple and potential approach to enhance the efficiency of natural antioxidants without modifying their structure, or involving the complex functionalization of GNPs with antioxidants.

  • Involvement of oxidative stress in the impairment in biliary secretory function induced by intraperitoneal administration of aluminum to rats.

    Abstract Title:

    Involvement of oxidative stress in the impairment in biliary secretory function induced by intraperitoneal administration of aluminum to rats.

    Abstract Source:

    Biol Trace Elem Res. 2007 Jun ;116(3):329-48. PMID: 17709913

    Abstract Author(s):

    Marcela A Gonzalez, Maria Del Lujan Alvarez, Gerardo B Pisani, Claudio A Bernal, Marcelo G Roma, María C Carrillo

    Article Affiliation:

    Marcela A Gonzalez

    Abstract:

    We have shown that aluminum (Al) induces cholestasis associated with multiple alterations in hepatocellular transporters involved in bile secretory function, like Mrp2. This work aims to investigate whether these harmful effects are mediated by the oxidative stress caused by the metal. For this purpose, the capability of the antioxidant agent, vitamin E, to counteract these alterations was studied in male Wistar rats. Aluminum hydroxide (or saline in controls) was administered ip (27 mg/kg body weight, three times a week, for 90 d). Vitamin E (600 mg/kg body weight) was coadministered, sc. Al increased lipid peroxidation (+50%) and decreased hepatic glutation levels (-43%) and the activity of glutation peroxidase (-50%) and catalase (-88%). Vitamin E counteracted these effects total or partially. Both plasma and hepatic Al levels reached at the end of the treatment were significantly reduced by vitamin E (-40% and -44%, respectively; p<0.05). Al increased 4 times the hepatic apoptotic index, and this effect was fully counteracted by vitamin E. Bile flow was decreased in Altreated rats (-37%) and restored to normality by vitamin E. The antioxidant normalized the hepatic handling of the Mrp2 substrates, rose bengal, and dinitrophenyl-S-glutathione, which was causally associated with restoration of Mrp2 expression. Our data indicate that oxidative stress has a crucial role in cholestasis, apoptotic/necrotic hepatocellular damage, and the impairment in liver transport function induced by Al and that vitamin E counteracts these harmful effects not only by preventing free-radical formation but also by favoring Al disposal.

  • Lifelong Voluntary Exercise Modulates Age-Related Changes in Oxidative Stress.

    facebook Share on Facebook
    Abstract Title:

    Lifelong Voluntary Exercise Modulates Age-Related Changes in Oxidative Stress.

    Abstract Source:

    Int J Sports Med. 2017 Nov 23. Epub 2017 Nov 23. PMID: 29169189

    Abstract Author(s):

    Mohamed Amine Bouzid, Edith Filaire, Régis Matran, Sophie Robin, Claudine Fabre

    Article Affiliation:

    Mohamed Amine Bouzid

    Abstract:

    The hypothesis that aging and regular physical activity could influence oxidative stress has been studied by comparing antioxidant activities (superoxide dismutase (SOD), glutathione peroxidase (GPX), glutathione reductase (GR), ascorbic acid andα-Tocopherol) and malondialdehyde level (MDA) in four groups: young sedentary (n=15; age: 20.3±2.8 years; YS), young active (n=16; age: 21.4±1.9 years; YA), old sedentary (n=15; age: 65.1±3.5 years; OS) and old active (n=17; age: 67.2±4.8 years; OA). Antioxidant activities and MDA level were assessed at rest and after an incremental exercise. There was no difference in resting antioxidant activities and lipid peroxidation between YS and OS. However, resting SOD and GR activities were higher in YA compared to OA (p<0.01 and p<0.05, respectively) and resting MDA level was higher in OA compared to YA (p<0.01). After exercise, a significant increase in SOD and GPX activities was observed in YS, YA and OA (p<0.01). Likewise, after exercise a significant increase of MDA level in YA, OS and OA (p<0.01) was observed. In addition, the comparison of YA to OA and YS to OA revealed similar antioxidant activities and lipid peroxidation between YS and OA, whereas antioxidant activities were higher in YA compared to OA. These data suggest that beneficial effects of regular physical activity in antioxidant defense and lipid peroxidation damage could be impaired by the aging process and that regular physical activity in older adults could maintain age-related decreases in antioxidant defense.

  • Liposomal-encapsulated Ascorbic Acid: Influence on Vitamin C Bioavailability and Capacity to Protect Against Ischemia-Reperfusion Injury. 📎

    Abstract Title:

    Liposomal-encapsulated Ascorbic Acid: Influence on Vitamin C Bioavailability and Capacity to Protect Against Ischemia-Reperfusion Injury.

    Abstract Source:

    Nutr Metab Insights. 2016 ;9:25-30. Epub 2016 Jun 20. PMID: 27375360

    Abstract Author(s):

    Janelle L Davis, Hunter L Paris, Joseph W Beals, Scott E Binns, Gregory R Giordano, Rebecca L Scalzo, Melani M Schweder, Emek Blair, Christopher Bell

    Article Affiliation:

    Janelle L Davis

    Abstract:

    Intravenous administration of vitamin C has been shown to decrease oxidative stress and, in some instances, improve physiological function in adult humans. Oral vitamin C administration is typically less effective than intravenous, due in part to inferior vitamin C bioavailability. The purpose of this study was to determine the efficacy of oral delivery of vitamin C encapsulated in liposomes. On 4 separate randomly ordered occasions, 11 men and women were administered an oral placebo, or 4 g of vitamin C via oral, oral liposomal, or intravenous delivery. The data indicate that oral delivery of 4 g of vitamin C encapsulated in liposomes (1) produces circulating concentrations of vitamin C that are greater than unencapsulated oral but less than intravenous administration and (2) provides protection from ischemia-reperfusion-mediated oxidative stress that is similar to the protection provided by unencapsulated oral and intravenous administrations.