0000000000315630

AUTHOR

Ismail Laher

showing 5 related works from this author

Targeting vascular (endothelial) dysfunction

2016

Abstract Cardiovascular diseases are major contributors to global deaths and disability-adjusted life years, with hypertension a significant risk factor for all causes of death. The endothelium that lines the inner wall of the vasculature regulates essential haemostatic functions, such as vascular tone, circulation of blood cells, inflammation and platelet activity. Endothelial dysfunction is an early predictor of atherosclerosis and future cardiovascular events. We review the prognostic value of obtaining measurements of endothelial function, the clinical techniques for its determination, the mechanisms leading to endothelial dysfunction and the therapeutic treatment of endothelial dysfunc…

0301 basic medicinePharmacologyPathologymedicine.medical_specialtyEndotheliumbusiness.industryAdipose tissueInflammationDisease030204 cardiovascular system & hematologymedicine.diseasemedicine.disease_cause03 medical and health sciences030104 developmental biology0302 clinical medicinemedicine.anatomical_structureInternal medicineCirculatory systemmedicineCardiologyPlatelet activationEndothelial dysfunctionmedicine.symptombusinessOxidative stressBritish Journal of Pharmacology
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<p>Exercise Training and Fasting: Current Insights</p>

2020

Fasting is defined as the abstinence from consuming food and/or beverages for different periods of time. Both traditional and modern healthcare systems recommend fasting as a therapeutic intervention for the management of several chronic, non-infectious diseases. Exercising during a fasting state increases lipolysis in adipose tissue while also stimulating peripheral fat oxidation, resulting in increased fat utilization and weight loss. A key focus of this review is to assess whether endurance training performed while fasting induces specific training adaptations, where increased fat oxidation improves long-term endurance levels. Fasting decreases body weight, lean body and fat content in b…

biologybusiness.industryAthletesmedia_common.quotation_subjectCalorie restrictionAdipose tissuePhysiology030229 sport sciencesAbstinenceCarbohydrate metabolismbiology.organism_classification3. Good health03 medical and health sciences0302 clinical medicineWeight lossEndurance trainingMedicineLipolysis030212 general & internal medicinemedicine.symptombusinessmedia_commonOpen Access Journal of Sports Medicine
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Molecular mechanisms of the cardiovascular protective effects of polyphenols

2012

Epidemiological studies have reported a greater reduction in cardiovascular risk and metabolic disorders associated with diets rich in polyphenols. The antioxidant effects of polyphenols are attributed to the regulation of redox enzymes by reducing reactive oxygen species production from mitochondria, NADPH oxidases and uncoupled endothelial NO synthase in addition to also up-regulating multiple antioxidant enzymes. Although data supporting the effects of polyphenols in reducing oxidative stress are promising, several studies have suggested additional mechanisms in the health benefits of polyphenols. Polyphenols from red wine increase endothelial NO production leading to endothelium-depende…

AntioxidantEndotheliummedicine.medical_treatmentMedicine (miscellaneous)MitochondrionPharmacologymedicine.disease_causeAntioxidantsNitric oxidechemistry.chemical_compoundPhenolsmedicineAnimalsHumansFlavonoidschemistry.chemical_classificationReactive oxygen speciesNutrition and DieteticsPolyphenolsfood and beveragesOxidative StressEnzymemedicine.anatomical_structurechemistryCardiovascular DiseasesPolyphenolEndothelium VascularOxidative stressBritish Journal of Nutrition
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Oxidative Stress: A Unifying Mechanism for Cell Damage Induced by Noise, (Water-Pipe) Smoking, and Emotional Stress-Therapeutic Strategies Targeting …

2018

Modern technologies have eased our lives but these conveniences can impact our lifestyles in destructive ways. Noise pollution, mental stresses, and smoking (as a stress-relieving solution) are some environmental hazards that affect our well-being and healthcare budgets. Scrutinizing their pathophysiology could lead to solutions to reduce their harmful effects. Recent Advances: Oxidative stress plays an important role in initiating local and systemic inflammation after noise pollution, mental stress, and smoking. Lipid peroxidation and release of lysolipid by-products, disturbance in activation and function of nuclear factor erythroid 2-related factor 2 (Nrf2), induction of stress hormones …

0301 basic medicinePhysiologyNF-E2-Related Factor 2Clinical BiochemistrySystemic inflammationmedicine.disease_causeBiochemistryAntioxidantsLipid peroxidation03 medical and health scienceschemistry.chemical_compound0302 clinical medicineWater Pipe SmokingMedicineHumansMolecular BiologyCell damageGeneral Environmental ScienceInflammationbusiness.industryNoise pollutionMechanism (biology)SmokingCell Biologymedicine.diseaseOxidative Stress030104 developmental biologychemistryGeneral Earth and Planetary SciencesLipid Peroxidationmedicine.symptombusinessNoiseReactive Oxygen SpeciesNeuroscienceOxidation-Reduction030217 neurology & neurosurgeryIntracellularOxidative stressStress PsychologicalSignal TransductionAntioxidantsredox signaling
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Free radical biology of the cardiovascular system

2012

Most cardiovascular diseases (CVDs), as well as age-related cardiovascular alterations, are accompanied by increases in oxidative stress, usually due to increased generation and/or decreased metabolism of ROS (reactive oxygen species; for example superoxide radicals) and RNS (reactive nitrogen species; for example peroxynitrite). The superoxide anion is generated by several enzymatic reactions, including a variety of NADPH oxidases and uncoupled eNOS (endothelial NO synthase). To relieve the burden caused by this generation of free radicals, which also occurs as part of normal physiological processes, such as mitochondrial respiratory chain activity, mammalian systems have developed endogen…

AntioxidantFree Radicalsmedicine.medical_treatmentmedicine.disease_causeCardiovascular SystemAntioxidantsRenin-Angiotensin Systemchemistry.chemical_compoundmedicineAnimalsHumansReactive nitrogen speciesFree-radical theory of agingchemistry.chemical_classificationClinical Trials as TopicReactive oxygen speciesChemistrySuperoxideFree Radical ScavengersGeneral MedicinePPAR gammaOxidative StressMitochondrial respiratory chainBiochemistryCardiovascular DiseasesPeroxynitriteOxidative stressClinical Science
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