CYBERMED LIFE - ORGANIC  & NATURAL LIVING

Antioxidants

  • L-ascorbic acid protects the antioxidant defense system in nickel-exposed albino rat lung tissue.

    Abstract Title:

    L-ascorbic acid protects the antioxidant defense system in nickel-exposed albino rat lung tissue.

    Abstract Source:

    J Basic Clin Physiol Pharmacol. 2006;17(2):87-100. PMID: 16910314

    Abstract Author(s):

    Amrita Das Gupta, Ashok M Patil, Jeevan G Ambekar, Swastika N Das, Salim A Dhundasi, Kusal K Das

    Article Affiliation:

    Department of Physiology, Al-Ameen Medical College, Bijapur 586108 Karnataka, India.

    Abstract:

    We studied the effect of oral supplementation with L-ascorbic acid (50 mg /100 g body weight (BW) on nickel sulfate (2.0 mg/ 100 g BW, i.p)-induced lipid peroxidation and histopathology in the lung of Wister strain male albino rats. Lipid peroxide and glutathione levels and the activities of the antioxidant enzymes, superoxide dismutase (SOD), catalase (CAT), and glutathione peroxidase (GSH-Px), were estimated. Nickel sulfate administration significantly increased the level of lipid peroxides and decreased all antioxidant enzyme activities. Nickel sulfate treatment also induced (a) loss of normal characteristics and architectural organization, (b) inflammation in bronchioles, (c) alveolar congestion, (d) alveolar cell hyperplasia, and (e) congestion in the lumen. The simultaneous administration of L-ascorbic acid and nickel sulfate improved both lipid peroxidation and the histopathology of lung when compared with rats receiving nickel sulfate alone. The results indicate that L-ascorbic acid prevents nickel-induced alteration of antioxidant defense mechanisms and histopathology of lung tissue.

  • Light-emitting diode therapy reduces persistent inflammatory pain: Role of interleukin 10 and antioxidant enzymes.

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    Abstract Title:

    Light-emitting diode therapy reduces persistent inflammatory pain: Role of interleukin 10 and antioxidant enzymes.

    Abstract Source:

    Neuroscience. 2016 Mar 18 ;324:485-495. Epub 2016 Mar 18. PMID: 27001179

    Abstract Author(s):

    D F Martins, B L Turnes, F J Cidral-Filho, F Bobinski, R F Rosas, L G Danielski, F Petronilho, A R S Santos

    Article Affiliation:

    D F Martins

    Abstract:

    BACKGROUND:During the last decades, the use of light-emitting diode therapy (LEDT) has increased significantly for the treatment of wound healing, analgesia and inflammatory processes. Nevertheless, scientific data on the mechanisms responsible for the therapeutic effect of LEDT are still insufficient. Thus, this study investigated the analgesic, anti-inflammatory and anti-oxidative effect of LEDT in the model of chronic inflammatory hyperalgesia.

    EXPERIMENTAL PROCEDURES:Mice injected with Complete Freund's Adjuvant (CFA) underwent behavioral, i.e. mechanical and hot hyperalgesia; determination of cytokine levels (tumor necrosis factor-alpha (TNF-α), interleukin-1 beta (IL-1β), IL-10), oxidative stress markers (protein carbonyls and thiobarbituric acid reactive species (TBARS)) and antioxidant enzymes (catalase (CAT) and superoxide dismutase (SOD)). Additionally, mice were pretreated with either naloxone or fucoidin and mechanical hyperalgesia was assessed.

    RESULTS:LEDT inhibited mechanical and thermal hyperalgesia induced by CFA injection. LEDT did not reduce paw edema, neither influenced the levels of TNF-α and IL1-β; although it increased the levels of IL-10. LEDT significantly prevented TBARS increase in both acute and chronic phases post-CFA injection; whereas protein carbonyl levels were reduced only in the acute phase. LEDT induced an increase in both SOD and CAT activity, with effects observable in the acute but not in the chronic. And finally, pre-administration of naloxone or fucoidin prevented LEDT analgesic effect.

    CONCLUSIONS:These data contribute to the understanding of the neurobiological mechanisms involved in the therapeutic effect of LEDT as well as provides additional support for its use in the treatment of painful conditions of inflammatory etiology.

  • 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.

  • Long-term ascorbic acid administration reverses endothelial vasomotor dysfunction in patients with coronary artery disease. 📎

    Abstract Title:

    Long-term ascorbic acid administration reverses endothelial vasomotor dysfunction in patients with coronary artery disease.

    Abstract Source:

    Circulation. 1999 Jun 29;99(25):3234-40. PMID: 10385496

    Abstract Author(s):

    N Gokce, J F Keaney, B Frei, M Holbrook, M Olesiak, B J Zachariah, C Leeuwenburgh, J W Heinecke, J A Vita

    Article Affiliation:

    Evans Memorial Department of Medicine, Cardiology Section, and Whitaker Cardiovascular Institute, Boston University School of Medicine, Boston, MA, USA.

    Abstract:

    BACKGROUND:Loss of endothelium-derived nitric oxide (EDNO) contributes to the clinical expression of coronary artery disease (CAD). Increased oxidative stress has been linked to impaired endothelial vasomotor function in atherosclerosis, and recent studies demonstrated that short-term ascorbic acid treatment improves endothelial function.

    METHODS AND RESULTS:In a randomized, double-blind, placebo-controlled study, we examined the effects of single-dose (2 g PO) and long-term (500 mg/d) ascorbic acid treatment on EDNO-dependent flow-mediated dilation of the brachial artery in patients with angiographically established CAD. Flow-mediated dilation was examined by high-resolution vascular ultrasound at baseline, 2 hours after the single dose, and 30 days after long-term treatment in 46 patients with CAD. Flow-mediated dilation improved from 6.6+/-3.5% to 10.1+/-5.2% after single-dose treatment, and the effect was sustained after long-term treatment (9. 0+/-3.7%), whereas flow-mediated dilation was 8.6+/-4.7% at baseline and remained unchanged after single-dose (7.8+/-4.4%) and long-term (7.9+/-4.5%) treatment with placebo (P=0.005 by repeated-measures ANOVA). Plasma ascorbic acid concentrations increased from 41.4+/-12. 9 to 115.9+/-34.2 micromol/L after single-dose treatment and to 95. 0+/-36.1 micromol/L after long-term treatment (P<0.001).

    CONCLUSIONS:In patients with CAD, long-term ascorbic acid treatment has a sustained beneficial effect on EDNO action. Because endothelial dysfunction may contribute to the pathogenesis of cardiovascular events, this study indicates that ascorbic acid treatment may benefit patients with CAD.

  • Low Red Blood Cell Vitamin C Concentrations Induce Red Blood Cell Fragility: A Link to Diabetes Via Glucose, Glucose Transporters, and Dehydroascorbic Acid. 📎

    Abstract Title:

    Low Red Blood Cell Vitamin C Concentrations Induce Red Blood Cell Fragility: A Link to Diabetes Via Glucose, Glucose Transporters, and Dehydroascorbic Acid.

    Abstract Source:

    EBioMedicine. 2015 Nov ;2(11):1735-50. Epub 2015 Oct 3. PMID: 26870799

    Abstract Author(s):

    Hongbin Tu, Hongyan Li, Yu Wang, Mahtab Niyyati, Yaohui Wang, Jonathan Leshin, Mark Levine

    Article Affiliation:

    Hongbin Tu

    Abstract:

    Strategies to prevent diabetic microvascular angiopathy focus on the vascular endothelium. Because red blood cells (RBCs) are less deformable in diabetes, we explored an original concept linking decreased RBC deformability to RBC ascorbate and hyperglycemia. We characterized ascorbate concentrations from human and mouse RBCs and plasma, and showed an inverse relationship between RBC ascorbate concentrations and deformability, measured by osmotic fragility. RBCs from ascorbate deficient mice were osmotically sensitive, appeared as spherocytes, and had decreasedβ-spectrin. These aberrancies reversed with ascorbate repletion in vivo. Under physiologic conditions, only ascorbate's oxidation product dehydroascorbic acid (DHA), a substrate for facilitated glucose transporters, was transported into mouse and human RBCs, with immediate intracellular reduction to ascorbate. In vitro, glucose inhibited entry of physiologic concentrations of dehydroascorbic acid into mouse and human RBCs. In vivo, plasma glucose concentrations in normal and diabetic mice and humans were inversely related to respective RBC ascorbate concentrations, as was osmotic fragility. Human RBC β-spectrin declined as diabetes worsened. Taken together, hyperglycemia in diabetes produced lower RBC ascorbate with increased RBC rigidity, a candidate to drive microvascular angiopathy. Because glucose transporter expression, DHA transport, and its inhibition by glucose differed for mouse versus human RBCs, human experimentation is indicated.

  • Low-level laser therapy for beta amyloid toxicity in rat hippocampus. 📎

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    Abstract Title:

    Low-level laser therapy for beta amyloid toxicity in rat hippocampus.

    Abstract Source:

    Neurobiol Aging. 2017 Jan ;49:165-182. Epub 2016 Oct 11. PMID: 27815990

    Abstract Author(s):

    Yujiao Lu, Ruimin Wang, Yan Dong, Donovan Tucker, Ningjun Zhao, Md Ejaz Ahmed, Ling Zhu, Timon Cheng-Yi Liu, Robert M Cohen, Quanguang Zhang

    Article Affiliation:

    Yujiao Lu

    Abstract:

    Beta amyloid (Aβ) is well accepted to play a central role in the pathogenesis of Alzheimer's disease (AD). The present work evaluated the therapeutic effects of low-level laser irradiation (LLI) on Aβ-induced neurotoxicity in rat hippocampus. Aβ 1-42 was injected bilaterally to the hippocampus CA1 region of adult male rats, and 2-minute daily LLI treatment was applied transcranially after Aβ injection for 5 consecutive days. LLI treatment suppressed Aβ-induced hippocampal neurodegeneration and long-term spatial and recognition memory impairments. Molecular studies revealed that LLI treatment: (1) restored mitochondrial dynamics, by altering fission and fusion protein levels thereby suppressing Aβ-induced extensive fragmentation; (2) suppressed Aβ-induced collapse of mitochondrial membrane potential; (3) reduced oxidized mitochondrial DNA and excessive mitophagy; (4) facilitated mitochondrial homeostasis via modulation of the Bcl-2-associated X protein/B-cell lymphoma 2 ratio and of mitochondrial antioxidant expression; (5) promoted cytochrome c oxidase activity and adenosine triphosphate synthesis; (6) suppressed Aβ-induced glucose-6-phosphate dehydrogenase and nicotinamide adenine dinucleotide phosphate oxidase activity; (7) enhanced the total antioxidant capacity of hippocampal CA1 neurons, whereas reduced the oxidative damage; and (8) suppressed Aβ-induced reactive gliosis, inflammation, and tau hyperphosphorylation. Although development of AD treatments has focused on reducingcerebral Aβ levels, by the time the clinical diagnosis of AD or mild cognitive impairment is made, the brain is likely to have already been exposed to years of elevated Aβ levels with dire consequences for multiple cellular pathways. By alleviating a broad spectrum of Aβ-induced pathology that includes mitochondrial dysfunction, oxidative stress, neuroinflammation, neuronal apoptosis, and tau pathology, LLI could represent a new promising therapeutic strategy for AD.

  • Low-level laser therapy prevents muscle oxidative stress in rats subjected to high-intensity resistance exercise in a dose-dependent manner.

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    Abstract Title:

    Low-level laser therapy prevents muscle oxidative stress in rats subjected to high-intensity resistance exercise in a dose-dependent manner.

    Abstract Source:

    Lasers Med Sci. 2020 Jan 10. Epub 2020 Jan 10. PMID: 31925594

    Abstract Author(s):

    Simone Silva Dos Santos, Helenita Antonia de Oliveira, Ednei Luiz Antonio, Ighor Luiz Azevedo Teixeira, Barbara Sampaio Dias Martins Mansano, Flávio André Silva, Paulo Tarso Camillo de Carvalho, Paulo José Ferreira Tucci, Andrey Jorge Serra

    Article Affiliation:

    Simone Silva Dos Santos

    Abstract:

    High-intensity resistance exercise (RE) increases oxidative stress leading to deleterious effects on muscle performance and recovery. The aim of this study was to assess the effect of applying low-level laser therapy (LLLT) prior to a RE session on muscle oxidative stress and to determine the possible influence of the dosimetric parameters. Female Wistar rats were assigned to non-LLLT (Ctr: non-exercised control; RNI: RE) or LLLT groups subjected to RE (radiant energy: 4 J, 8 J, and 12 J, respectively). RE consisted of four maximum load climbs. An 830-nm DMC Lase Photon III was used to irradiate three points in gastrocnemius muscles (two limbs) before exercise. Animals were euthanized after 60 min after the end of the exercise, and muscle tissue was removed foranalysis of oxidative stress markers. All doses resulted in the prevention of increased lipoperoxidation; however, LLLT prevented protein oxidation only in rats that were pretreated with 8 J and 12 J of energy by LLLT. RE and LLLT did not change catalase activity. However, RE resulted in lower superoxide dismutase activity, and the opposite was observed in the LLLT group. These data indicate that LLLT prior to RE can prevent muscle oxidative stress. This study is the first to evaluate the impact of dosimetric LLLT parameters on the oxidative stress induced by RE, wherein both 8 J and 12 Jof energy afforded significant protection.

  • Lymphocyte DNA damage in rats exposed to pyrethroids: effect of supplementation with Vitamins E and C.

    Abstract Title:

    Lymphocyte DNA damage in rats exposed to pyrethroids: effect of supplementation with Vitamins E and C.

    Abstract Source:

    Taehan Kanho Hakhoe Chi. 2004 Apr;34(2):324-32. PMID: 15363578

    Abstract Author(s):

    Rosita Gabbianelli, Cinzia Nasuti, Giancarlo Falcioni, Franco Cantalamessa

    Article Affiliation:

    Dipartimento di Biologia MCA Biology, Università di Camerino, Via Camerini 2, MC 62032, Italy. This email address is being protected from spambots. You need JavaScript enabled to view it.

    Abstract:

    Pesticides have been considered potential chemical mutagens. In fact, some studies show that various agrochemical ingredients possess mutagenic properties inducing mutations, chromosomal alterations or DNA damage. Experimental evidence shows a marked correlation between mutagenicity and carcinogenicity and indicates that short-term mutagenicity tests are useful for predicting carcinogenicity. The present study on rat exposed to two pyrethroids, cypermethrin and permethrin, showed different lymphocyte DNA damage depending on the type of pyrethroid, the dose, and the period of treatment. Data obtained from comet assay showed that oral treatment with 150 mg/kg body weight/day of permethrin (corresponding to 1/10 of LD50) for 60 days, induced a significant increase in all comet parameters. No lymphocyte DNA damage was measured after treatment with 25 mg/kg body weight/day of cypermethrin (corresponding to 1/10 of LD50) for the same period. A higher dose of permethrin (300 mg/kg body weight/day), for a shorter period (22 days), did not induce lymphocyte DNA damage, while supplementation with 200 mg/kg of Vitamins E and C protected erythrocytes against plasma membrane lipids peroxidation. Moreover, treatment with Vitamins E and C maintained the activity of glutathione peroxidase, which was reduced in the presence of permethrin, and reduced the osmotic fragility, which had increased following permethrin treatment.

  • Mechanisms and applications of the anti-inflammatory effects of photobiomodulation. 📎

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    Abstract Title:

    Mechanisms and applications of the anti-inflammatory effects of photobiomodulation.

    Abstract Source:

    AIMS Biophys. 2017 ;4(3):337-361. Epub 2017 May 19. PMID: 28748217

    Abstract Author(s):

    Michael R Hamblin

    Article Affiliation:

    Michael R Hamblin

    Abstract:

    Photobiomodulation (PBM) also known as low-level level laser therapy is the use of red and near-infrared light to stimulate healing, relieve pain, and reduce inflammation. The primary chromophores have been identified as cytochrome c oxidase in mitochondria, and calcium ion channels (possibly mediated by light absorption by opsins). Secondary effects of photon absorption include increases in ATP, a brief burst of reactive oxygen species, an increase in nitric oxide, and modulation of calcium levels. Tertiary effects include activation of a wide range of transcription factors leading to improved cell survival, increased proliferation and migration, and new protein synthesis. There is a pronounced biphasic dose response whereby low levels of light have stimulating effects, while high levels of light have inhibitory effects. It has been found that PBM can produce ROS in normal cells, but when used in oxidatively stressed cells or in animal models of disease, ROS levels are lowered. PBM is able to up-regulate anti-oxidant defenses and reduce oxidative stress. It was shown that PBM can activate NF-kB in normal quiescent cells, however in activated inflammatory cells, inflammatory markers were decreased. One of the most reproducible effects of PBM is an overall reduction in inflammation, which is particularly important for disorders of the joints, traumatic injuries, lung disorders, and in the brain. PBM has been shown to reduce markers of M1 phenotype in activated macrophages. Many reports have shown reductions in reactive nitrogen species and prostaglandins in various animal models. PBM can reduce inflammation in the brain, abdominal fat, wounds, lungs, spinal cord.

  • Medical ozone promotes Nrf2 phosphorylation reducing oxidative stress and pro-inflammatory cytokines in multiple sclerosis patients.

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    Abstract Title:

    Medical ozone promotes Nrf2 phosphorylation reducing oxidative stress and pro-inflammatory cytokines in multiple sclerosis patients.

    Abstract Source:

    Eur J Pharmacol. 2017 Sep 15 ;811:148-154. Epub 2017 Jun 13. PMID: 28623000

    Abstract Author(s):

    Livan Delgado-Roche, Mario Riera-Romo, Fernando Mesta, Yanet Hernández-Matos, Juan M Barrios, Gregorio Martínez-Sánchez, Said M Al-Dalaien

    Article Affiliation:

    Livan Delgado-Roche

    Abstract:

    Oxidative stress and inflammation play key roles in the pathogenesis of Multiple sclerosis (MS). Different drugs have been used in the clinical practice, however, there is not a completely effective treatment. Due to its potential therapeutic action, medical ozone represents a promising approach for neurodegenerative disorders. The aim of the present study was to address the role of ozone therapy on the cellular redox state in MS patients. Ozone (20μg/ml) was administered three times per week during a month by rectal insufflation. The effect of ozone therapy on biomarkers of oxidative stress and inflammation was addressed by spectrophotometric and immunoenzymatic assays. Furthermore, we investigated the action of ozone on CK2 expression and Nrf2 phosphorylation by western blotting analysis. Medical ozone significantly improved (P<0.05) the activity of antioxidant enzymes and increased the levels of cellular reduced glutathione. In accordance, a significant reduction (P<0.05) of oxidative damage on lipids and proteins was observed in ozone-treated patients. As well, the levels of pro-inflammatory cytokines TNFα and IL-1β were lower after ozone treatment. Ozone therapy incremented the CK2 expression together with Nrf2 phosphorylation in mononuclear cells of MS patients. These findings suggest that ozone´s antioxidant and anti-inflammatory effects might be partially associated with an induction of Nrf2phosphorylation and activation. These results provide new insights on the molecular events modulated by ozone, and pointed out ozone therapy as a potential therapeutic alternative for MS patients.

  • Mediterranean diet and life expectancy; beyond olive oil, fruits, and vegetables.

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    Abstract Title:

    Mediterranean diet and life expectancy; beyond olive oil, fruits, and vegetables.

    Abstract Source:

    Curr Opin Clin Nutr Metab Care. 2016 Aug 23. Epub 2016 Aug 23. PMID: 27552476

    Abstract Author(s):

    Miguel A Martinez-Gonzalez, Nerea Martin-Calvo

    Article Affiliation:

    Miguel A Martinez-Gonzalez

    Abstract:

    PURPOSE TO REVIEW:The recent relevant evidence of the effects of the Mediterranean diet (MedDiet) and lifestyle on health (2015 and first months of 2016).

    RECENT FINDINGS:Large observational prospective epidemiological studies with adequate control of confounding and two large randomized trials support the benefits of the Mediterranean dietary pattern to increase life expectancy, reduce the risk of major chronic disease, and improve quality of life and well-being. Recently, 19 new studies from large prospective studies showed - with nearly perfect consistency - strong benefits of the MedDiet to reduce the risk of myocardial infarction, stroke, total mortality, heart failure, and disability. Interestingly, two large and well conducted cohorts reported significant cardiovascular benefits after using repeated measurements of diet during a long follow-up period. In addition, Prevención con Dieta Mediterránea, the largest randomized trial with MedDiet, recently reported benefits of this dietary pattern to prevent cognitive decline and breast cancer.

    SUMMARY:In the era of evidence-based medicine, the MedDiet represents the gold standard in preventive medicine, probably because of the harmonic combination of many elements with antioxidant and anti-inflammatory properties, which overwhelm any single nutrient or food item. The whole seems more important than the sum of its parts.

  • Mediterranean diets supplemented with virgin olive oil and nuts enhance plasmatic antioxidant capabilities and decrease xanthine oxidase activity in people with metabolic syndrome: The PREDIMED study.

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    Abstract Title:

    Mediterranean diets supplemented with virgin olive oil and nuts enhance plasmatic antioxidant capabilities and decrease xanthine oxidase activity in people with metabolic syndrome: The PREDIMED study.

    Abstract Source:

    Mol Nutr Food Res. 2016 Sep 7. Epub 2016 Sep 7. PMID: 27600061

    Abstract Author(s):

    Antoni Sureda, Maria Del Mar Bibiloni, Miquel Martorell, Pilar Buil-Cosiales, Amelia Marti, Antoni Pons, Josep A Tur, MiguelÁngel Martinez-Gonzalez

    Article Affiliation:

    Antoni Sureda

    Abstract:

    SCOPE:This study assessed plasmatic antioxidant capabilities and xanthine oxidase activity in metabolic syndrome (MetS) patients after 5 years intervention with Mediterranean Diet (MeDiet) supplemented with extra-virgin olive oil (MeDiet+EVOO) or with nuts or with low-fat diet (the PREDIMED study).

    METHODS AND RESULTS:75 participants were randomly selected. Daily energy and nutrient intake were assessed with a validated 137-item food frequency questionnaire, and adherence to the MeDiet was assessed using a 14-item questionnaire. Catalase, superoxide dismutase, myeloperoxidase, xanthine oxidase activities and protein levels, and protein carbonyl derivatives, nitrotyrosine, nitrite and nitrate levels were determined in overnight fasting venous blood samples. The plasma activity and protein levels of superoxide dismutase and catalase were significantly higher and xanthine oxidase activity lower in MeDiet+EVOO and MeDiet+nuts than in the control group. Participants in both MeDiet groups showed higher plasma nitrate levels than in the control group. Adherence to the MeDiet showed a positive correlation with superoxide dismutase and catalase plasma antioxidant activities.

    CONCLUSION:A MeDiet enriched with either virgin olive oil or nuts enhances the plasma antioxidant capabilities and decreases xanthine oxidase activity in patients with the metabolic syndrome but we did not observe changes in myeloperoxidase or markers of oxidative damage. This article is protected by copyright. All rights reserved.

  • Melatonin is an Ergogenic Aid for Exhaustive Aerobic Exercise only during the Wakefulness Period.

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    Abstract Title:

    Melatonin is an Ergogenic Aid for Exhaustive Aerobic Exercise only during the Wakefulness Period.

    Abstract Source:

    Int J Sports Med. 2015 Oct 28. Epub 2015 Oct 28. PMID: 26509365

    Abstract Author(s):

    W R Beck, P P M Scariot, C A Gobatto

    Article Affiliation:

    W R Beck

    Abstract:

    This study tested the ergogenic effects of acute administration of melatonin on exhaustive exercise (tlim) at the anaerobic threshold intensity (iAnT) during periods of lower (L) and higher (H) spontaneous physical activity in swimming rats. Additionally, we evaluated the time of day effect on aerobic exercise tolerance. The periods of L and H were determined gravimetrically. All animals were subjected to an incremental test to determine the iAnT. Melatonin was administered (10 mg.kg(-1), intraperitoneal) and after 30 min, the rats were subjected to tlim during the L (LM) or H (HM) period. Control groups were called LC and HC. The criterion of significance was 5%. Melatonin enhanced tlim by 169% during H (HC=72 min; HM=194 min; P<0.01; ES=1.23) and by 90% during L (LC=31 min vs. LM=59 min; P=0.39; ES=1.18), demonstrating a significant effect on tlim (F=10.35; P<0.01) and a strong effect size (ES). Additionally, tlim was higher during H (F=14.24; P<0.01). Melatonin is a reasonable ergogenic aid, particularly during the wakefulness period, and the exercise tolerance is dependent on the time of day for swimming rats.

  • Melatonin:- A potential antioxidant therapeutic agent for mitochondrial dysfunctions and related disorders.

    Abstract Title:

    Melatonin:- A potential antioxidant therapeutic agent for mitochondrial dysfunctions and related disorders.

    Abstract Source:

    Rejuvenation Res. 2015 Jun 18. Epub 2015 Jun 18. PMID: 26087000

    Abstract Author(s):

    Showkat Ahmad Ganie, Tanveer Dar, Aashiq Bhat, Khalid Dar, Suhail Anees, Akbar Masood, Mohammad Afzal Zargar

    Article Affiliation:

    Showkat Ahmad Ganie

    Abstract:

    Mitochondria play a central role in the cell physiology. Besides their classic function of energy metabolism, mitochondria are involved in multiple cell functions including energy distribution through the cell, energy/heat modulation, regulation of reactive oxygen species (ROS), calcium homeostasis and apoptosis control. Simultaneously mitochondria are the main producer and target of ROS and with the result, multiple mitochondrial diseases are related to ROS induced mitochondrial injuries. Increased free radical generation, enhanced mitochondrial inducible nitric oxide (NO) synthase activity, enhanced NO production, decreased respiratory complex activity, impaired electron transport system, and opening of mitochondrial permeability transition pore all have been suggested as factors responsible for impaired mitochondrial function. Among these, neurodegenerative diseases such as Alzheimer´s disease (AD), Parkinson´s disease (PD), amyotrophic lateral sclerosis (ALS), Huntington´s disease (HD) and aging are caused by ROS-induced mitochondrial dysfunctions. Melatonin, the major hormone of the pineal gland, also acts as an antioxidant and as a regulator of mitochondrial bioenergeticfunction. Melatonin is selectively taken up by mitochondrial membranes, a function not shared by other antioxidants, and thus has emerged as a major potential therapeutic tool for treating neurodegenerative disorders. Multiple in vitro and in vivo experiments have shown the protective role of melatonin for preventing oxidative stress induced mitochondrial dysfunction seen in experimental models of PD, AD, and HD. Keeping these functions into consideration, this article was framed to review the protective role of melatonin with mechanistic insights against mitochondrial diseases, and may suggest the new avenues for safe and effective treatment modalities against these devastating neurodegenerative diseases. Future insights have also been discussed.

  • Metabolic and Vascular Effect of the Mediterranean Diet. 📎

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    Abstract Title:

    Metabolic and Vascular Effect of the Mediterranean Diet.

    Abstract Source:

    Int J Mol Sci. 2019 Sep 23 ;20(19). Epub 2019 Sep 23. PMID: 31547615

    Abstract Author(s):

    Antonino Tuttolomondo, Irene Simonetta, Mario Daidone, Alba Mogavero, Antonella Ortello, Antonio Pinto

    Article Affiliation:

    Antonino Tuttolomondo

    Abstract:

    Several studies indicated how dietary patterns that were obtained from nutritional cluster analysis can predict disease risk or mortality. Low-grade chronic inflammation represents a background pathogenetic mechanism linking metabolic risk factors to increased risk of chronic degenerative diseases. A Mediterranean diet (MeDi) style has been reported as associated with a lower degree of inflammation biomarkers and with a protective role on cardiovascular and cerebrovascular events. There is heterogeneity in defining the MedDiet, and it can, owing to its complexity, be considered as an exposome with thousands of nutrients and phytochemicals. Recently, it has been reported a novel positive association between baseline plasma ceramide concentrations and cardiovascular events and how adherence to a Mediterranean Diet-style may influence the potential negative relationship between elevated plasma ceramide concentrations and cardiovascular diseases (CVD). Several randomized controlled trials (RCTs) showed the positive effects of the MeDi diet style on several cardiovascular risk factors, such as body mass index, waist circumference, blood lipids, blood pressure, inflammatory markers and adhesion molecules, and diabetes and how these advantages of the MeDi are maintained in comparison of a low-fat diet. Some studies reported a positive effect of adherence to a Mediterranean Diet and heart failure incidence, whereas some recent studies, such as the PREDIMED study, showed that the incidence of major cardiovascular events was lower among those assigned to MeDi supplemented with extra-virgin olive oil or nuts than among those assigned to a reduced-fat diet. New studies are needed to better understand the molecular mechanisms, whereby the MedDiet may exercise its effects. Here, we present recent advances in understanding the molecular basis of MedDiet effects, mainly focusing on cardiovascular diseases, but also discussing other related diseases. We review MedDiet composition and assessment as well as the latest advances in the genomic, epigenomic (DNA methylation, histone modifications, microRNAs, and other emerging regulators), transcriptomic (selected genes and whole transcriptome), and metabolomic and metagenomic aspects of the MedDiet effects (as a whole and for its most typical food components). We also present a review of the clinical effects of this dietary style underlying the biochemical and molecular effects of the Mediterranean diet. Our purpose is to review the main features of the Mediterranean diet in particular its benefits on human health, underling the anti-inflammatory, anti-oxidant and anti-atherosclerotic effects to which new knowledge about epigenetic and gut-microbiota relationship is recently added.

  • Metformin and ascorbic acid combination therapy ameliorates type 2 diabetes mellitus and comorbid depression in rats.

    Abstract Title:

    Metformin and ascorbic acid combination therapy ameliorates type 2 diabetes mellitus and comorbid depression in rats.

    Abstract Source:

    Brain Res. 2017 Aug 18. Epub 2017 Aug 18. PMID: 28827076

    Abstract Author(s):

    Naveen Shivavedi, Mukesh Kumar, Gullanki Naga Venkata Charan Tej, Prasanta Kumar Nayak

    Article Affiliation:

    Naveen Shivavedi

    Abstract:

    Diabetes mellitus and depression are the common comorbid disorders affecting humans worldwide. There is an unmet need to develop therapeutic strategies to treat both diabetes mellitus and comorbid depression. The present study evaluated the effectiveness of metformin and ascorbic acid against type 2 diabetes mellitus and comorbid depression in rats. Four groups of diabetic rats were orally administered with vehicle (1 mL/kg), metformin (25 mg/kg), ascorbic acid (25 mg/kg), or combination of metformin (25 mg/kg) and ascorbic acid (25 mg/kg) for 11 consecutive days. Diabetes was induced by single-dose administration of streptozotocin (65 mg/kg, i.p.) with nicotinamide (120 mg/kg, i.p.). Comorbid depression was induced by five inescapable foot-shocks (2 mA, 2 ms duration) at 10 s intervals on days 1, 5, 7, and 10. One group of healthy rats received only vehicles to serve as nondiabetic control group. On day 11, animals were sacrificed, and blood and brain samples were collected from each rat following forced swim test. Plasma glucose, insulin, and corticosterone levels were estimated in plasma. The levels of monoamines, proinflammatory cytokines, and oxidative stress were measured in prefrontal cortex. The combination therapy significantly reduced immobility period, glucose, and corticosterone levels relative to diabetes with comorbid depression group. Furthermore, the combination therapy increased the levels of insulin and monoamines, and caused a significant reductions in oxidative stress and proinflammatory cytokines. In conclusion, the present study revealed that metformin and ascorbic acid combination therapy could be a potential strategy to treat type 2 diabetes mellitus and comorbid depression.

  • Mindfulness and meditation: treating cognitive impairment and reducing stress in dementia.

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    Abstract Title:

    Mindfulness and meditation: treating cognitive impairment and reducing stress in dementia.

    Abstract Source:

    Rev Neurosci. 2018 Feb 21. Epub 2018 Feb 21. PMID: 29466242

    Abstract Author(s):

    Jesse Russell-Williams, Wafa Jaroudi, Tania Perich, Siobhan Hoscheidt, Mohamad El Haj, Ahmed A Moustafa

    Article Affiliation:

    Jesse Russell-Williams

    Abstract:

    This study investigates the relationship between mindfulness, meditation, cognition and stress in people with Alzheimer's disease (AD), dementia, mild cognitive impairment and subjective cognitive decline. Accordingly, we explore how the use of meditation as a behavioural intervention can reduce stress and enhance cognition, which in turn ameliorates some dementia symptoms. A narrative review of the literature was conducted with any studies using meditation as an intervention for dementia or dementia-related memory conditions meeting inclusion criteria. Studies where moving meditation was the main intervention were excluded due to the possible confounding of exercise. Ten papers were identified and reviewed. There was a broad use of measures across all studies, with cognitive assessment, quality of life and perceived stress being the most common. Three studies used functional magnetic resonance imaging to measure functional changes to brain regions during meditation. The interventions fell into the following three categories: mindfulness, most commonly mindfulness-based stress reduction (six studies); Kirtan Kriya meditation (three studies); and mindfulness-based Alzheimer's stimulation (one study). Three of these studies were randomised controlled trials. All studies reported significant findings or trends towards significance in a broad range of measures, including a reduction of cognitive decline, reduction in perceived stress, increase in quality of life, as well as increases in functional connectivity, percent volume brain change and cerebral blood flow in areas of the cortex. Limitations and directions for future studies on meditation-based treatment for AD and stress management are suggested.

  • Mitigation of 5-fluorouracil-induced liver damage in rats by vitamin C via targeting redox-sensitive transcription factors.

    Abstract Title:

    Mitigation of 5-fluorouracil-induced liver damage in rats by vitamin C via targeting redox-sensitive transcription factors.

    Abstract Source:

    Hum Exp Toxicol. 2016 Feb 25. Epub 2016 Feb 25. PMID: 26921358

    Abstract Author(s):

    A K Al-Asmari, A Q Khan, N Al-Masri

    Article Affiliation:

    A K Al-Asmari

    Abstract:

    Adverse complications associated with antineoplastic drug-based cancer therapy are the major clinical drawbacks. Oxidative stress and inflammation play a major role in the damage due to cancer therapy. In the current study, we investigated the modulatory effect of vitamin C (Vit. C) on liver toxicity induced by 5-fluorouracil (5-FU) in rats. Animals were divided into four groups. Animals in group I received vehicle. Oral gavage of Vit. C (500 mg kg(-1) body weight (b.wt.)) was given to the animals in group III and group IV. 5-FU (150 mg kg(-1) b.wt.) was injected intraperitoneally to the animals in group II and group III. Findings of the present study revealed that oral administration of Vit. C significantly ameliorated the level of lipid peroxidation and the activity of myeloperoxidase. Vit. C administration markedly reduced the activation of nuclear factorκB and expression of cyclooxygenase 2, whereas nuclear translocation of nuclear factor erythroid 2-related factor 2 was increased. Hepatic histopathological analyses further supported the protective effect of Vit. C. Findings of the current study demonstrate that the toxic free radicals and inflammatory mediators generated due to chemotherapy play a critical role in 5-FU-induced hepatic damage. Attenuating action of Vit. C may be due to the modulation of redox-sensitive transcription factors and associated target molecules.

  • Mixed Flavonoid Supplementation Attenuates Postexercise Plasma Levels of 4-Hydroxynonenal and Protein Carbonyls in Endurance Athletes.

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    Abstract Title:

    Mixed Flavonoid Supplementation Attenuates Postexercise Plasma Levels of 4-Hydroxynonenal and Protein Carbonyls in Endurance Athletes.

    Abstract Source:

    Int J Sport Nutr Exerc Metab. 2019 Nov 21:1-8. Epub 2019 Nov 21. PMID: 31754080

    Abstract Author(s):

    David C Nieman, Giuseppe Valacchi, Laurel M Wentz, Francesca Ferrara, Alessandra Pecorelli, Brittany Woodby, Camila A Sakaguchi, Andrew Simonson

    Article Affiliation:

    David C Nieman

    Abstract:

    This double-blinded, placebo controlled, randomized crossover trial investigated the influence of 2-week mixed flavonoid versus placebo supplementation on oxinflammation markers after a 75-km cycling time trial in 22 cyclists (42.3± 1.7 years). Blood samples were collected before and after the 2-week supplementation, and then 0 hr, 1.5 hr, and 21 hr post 75-km cycling (176 ± 5.4 min, 73.4 ±2.0% maximal oxygen consumption). The supplement provided 678-mg flavonoids with quercetin (200 mg), green tea catechins (368 mg, 180-mg epigallocatechin gallate), and anthocyanins (128 mg) from bilberry extract, with caffeine, vitamin C, and omega-3 fatty acids added as adjuvants. Blood samples were analyzed for blood leukocyte counts, oxinflammation biomarkers, including 4-hydroxynonenal, protein carbonyls, and peripheralblood mononuclear mRNA expression for cyclooxygenease-2 and glutathione peroxidase. Each of the blood biomarkers was elevated postexercise (time effects, all ps<.01), with lower plasma levels for 4-hydroxynonenal (at 21-hr postexercise) in flavonoid versus placebo (interaction effect, p = .008). Although elevated postexercise, no trial differences for the neutrophil/lymphocyte ratio (p = .539) or peripheral blood mononuclear mRNA expression for cyclooxygenease-2 (p = .322) or glutathione peroxidase (p = .839) were shown. Flavonoid supplementation prior to intensive exercise decreased plasma peroxidation and oxidative damage, as determined by 4-hydroxynonenal. Postexercise increases were similar between the flavonoid and placebo trials for peripheral blood mononuclear mRNA expression for cyclooxygenease-2 and the nuclear factor erythroid 2-related factor 2 related gene glutathione peroxidase (NFE2L2). The data support the strategy of flavonoid supplementation to mitigate postexercise oxidative stress in endurance athletes.

  • Moderate Exercise Prevents Functional Remodeling of the Anterior Pituitary Gland in Diet-Induced Insulin Resistance in Rats: Role of Oxidative Stress and Autophagy📎

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    Abstract Title:

    Moderate Exercise Prevents Functional Remodeling of the Anterior Pituitary Gland in Diet-Induced Insulin Resistance in Rats: Role of Oxidative Stress and Autophagy.

    Abstract Source:

    Endocrinology. 2016 Mar ;157(3):1135-45. Epub 2015 Dec 16. PMID: 26672805

    Abstract Author(s):

    María E Mercau, Esteban M Repetto, Matías N Perez, Camila Martinez Calejman, Silvia Sanchez Puch, Carla V Finkielstein, Cora B Cymeryng

    Article Affiliation:

    María E Mercau

    Abstract:

    A sustained elevation of glucocorticoid production, associated with the establishment of insulin resistance (IR) could add to the deleterious effects of the IR state. The aim of this study is to analyze the consequences of long-term feeding with a sucrose-rich diet (SRD) on Pomc/ACTH production, define the underlying cellular processes, and determine the effects of moderate exercise (ME) on these parameters. Animals fed a standard chow with or without 30% sucrose in the drinking water were subjected to ME. Circulating hormone levels were determined, and pituitary tissues were processed and analyzed by immunobloting and quantitative real-time PCR. Parameters of oxidative stress (OxS), endoplasmic reticulum stress, and autophagy were also determined. Rats fed SRD developed a decrease in pituitary Pomc/ACTH expression levels, increased expression of antioxidant enzymes, and induction of endoplasmic reticulum stress and autophagy. ME prevented pituitary dysfunction as well as induction of antioxidant enzymes and autophagy. Reporter assays were performed in AtT-20 corticotroph cells incubated in the presence of palmitic acid. Pomc transcription was inhibited by palmitic acid-dependent induction of OxS and autophagy, as judged by the effect of activators and inhibitors of both processes. Long-term feeding with SRD triggers the generation of OxS and autophagy in the pituitary gland, which could lead to a decline in Pomc/ACTH/glucocorticoid production. These effects could be attributed to an increase in fatty acids availability to the pituitary gland. ME was able to prevent these alterations, suggesting additional beneficial effects of ME as a therapeutic strategy in the management of IR.