Search results for "Review article"

showing 10 items of 426 documents

Oxidative Stress in Neurodegenerative Diseases: From a Mitochondrial Point of View

2019

Age is the main risk factor for a number of human diseases, including neurodegenerative disorders such as Alzheimer’s disease, Parkinson’s disease, and amyotrophic lateral sclerosis, which increasing numbers of elderly individuals suffer. These pathological conditions are characterized by progressive loss of neuron cells, compromised motor or cognitive functions, and accumulation of abnormally aggregated proteins. Mitochondrial dysfunction is one of the main features of the aging process, particularly in organs requiring a high-energy source such as the heart, muscles, brain, or liver. Neurons rely almost exclusively on the mitochondria, which produce the energy required for most of the cel…

AgingAntioxidantMitochondrial Diseasesmedicine.medical_treatmentneurodegeneration oxidative stress mitochondiaDiseaseReview ArticleMitochondrionBiologymedicine.disease_causeBiochemistryAntioxidantsAlzheimer DiseasemedicineHumansAmyotrophic lateral sclerosislcsh:QH573-671lcsh:CytologyNeurodegenerationParkinson DiseaseCell BiologyGeneral Medicinemedicine.diseaseMitochondriaOxidative Stressmedicine.anatomical_structureSynaptic plasticityNeuronNeuroscienceOxidative stress
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Properties of Resveratrol:In VitroandIn VivoStudies about Metabolism, Bioavailability, and Biological Effects in Animal Models and Humans

2015

Plants containing resveratrol have been used effectively in traditional medicine for over 2000 years. It can be found in some plants, fruits, and derivatives, such as red wine. Therefore, it can be administered by either consuming these natural products or intaking nutraceutical pills. Resveratrol exhibits a wide range of beneficial properties, and this may be due to its molecular structure, which endow resveratrol with the ability to bind to many biomolecules. Among these properties its activity as an anticancer agent, a platelet antiaggregation agent, and an antioxidant, as well as its antiaging, antifrailty, anti-inflammatory, antiallergenic, and so forth activities, is worth highlightin…

AgingAntioxidantendocrine system diseasesmedicine.medical_treatmentAnti-Inflammatory AgentsBiological AvailabilityAntineoplastic AgentsApoptosisReview ArticleResveratrolPharmacologyBiologyBiochemistryAntioxidantschemistry.chemical_compoundNutraceuticalPharmacokineticsIn vivoStilbenesmedicineAnimalsHumansSirtuinslcsh:QH573-671lcsh:Cytologyorganic chemicalsfood and beveragesCell BiologyGeneral MedicineMetabolismIn vitroBioavailabilitychemistryBiochemistryResveratrolModels AnimalOxidoreductasesOxidative Medicine and Cellular Longevity
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Cocoa polyphenols and their potential benefits for human health.

2012

This paper compiles the beneficial effects of cocoa polyphenols on human health, especially with regard to cardiovascular and inflammatory diseases, metabolic disorders, and cancer prevention. Their antioxidant properties may be responsible for many of their pharmacological effects, including the inhibition of lipid peroxidation and the protection of LDL-cholesterol against oxidation, and increase resistance to oxidative stress. The phenolics from cocoa also modify the glycemic response and the lipid profile, decreasing platelet function and inflammation along with diastolic and systolic arterial pressures, which, taken together, may reduce the risk of cardiovascular mortality. Cocoa polyph…

AgingAntioxidantmedicine.medical_treatmentBiological AvailabilityInflammationReview ArticlePharmacologyBiologymedicine.disease_causeBiochemistryAntioxidantsProinflammatory cytokineLipid peroxidationchemistry.chemical_compoundmedicineAnimalsHumansDiseaselcsh:QH573-671CacaoCancer preventionmedicine.diagnostic_testlcsh:Cytologyfood and beveragesPolyphenolsCell BiologyGeneral MedicineBiochemistrychemistryHealthChemoprotectivemedicine.symptomLipid profileOxidative stressOxidative medicine and cellular longevity
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Red Orange: Experimental Models and Epidemiological Evidence of Its Benefits on Human Health

2013

In recent years, there has been increasing public interest in plant antioxidants, thanks to the potential anticarcinogenic and cardioprotective actions mediated by their biochemical properties. The red (or blood) orange (Citrus sinensis(L.) Osbeck) is a pigmented sweet orange variety typical of eastern Sicily (southern Italy), California, and Spain. In this paper, we discuss the main health-related properties of the red orange that include anticancer, anti-inflammatory, and cardiovascular protection activities. Moreover, the effects on health of its main constituents (namely, flavonoids, carotenoids, ascorbic acid, hydroxycinnamic acids, and anthocyanins) are described. The red orange juice…

AgingAntioxidantmedicine.medical_treatmentPhytochemicalsAnti-Inflammatory AgentsReview ArticleOrange (colour)BiologyModels BiologicalBiochemistryBeveragesHuman healthBENEFITSmedicineHumansFood sciencelcsh:QH573-671Settore MED/49 - Scienze Tecniche Dietetiche ApplicateCarotenoidOrange juicechemistry.chemical_classificationlcsh:Cytologyred orange anti-oxidants healthfood and beveragesCell BiologyGeneral MedicineORANGE; HEALTH; BENEFITSAscorbic acidHuman nutritionBiochemistrychemistryHealthCitrus × sinensisORANGECitrus sinensis
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Calorie Restriction in Mammals and Simple Model Organisms

2014

Calorie restriction (CR), which usually refers to a 20–40% reduction in calorie intake, can effectively prolong lifespan preventing most age-associated diseases in several species. However, recent data from both human and nonhumans point to the ratio of macronutrients rather than the caloric intake as a major regulator of both lifespan and health-span. In addition, specific components of the diet have recently been identified as regulators of some age-associated intracellular signaling pathways in simple model systems. The comprehension of the mechanisms underpinning these findings is crucial since it may increase the beneficial effects of calorie restriction making it accessible to a broad…

AgingCalorie restrictionPopulationved/biology.organism_classification_rank.speciesRegulatorlcsh:MedicineReview ArticleBiologylongevity ageing calorie restriction dietBioinformaticsGeneral Biochemistry Genetics and Molecular BiologyIntracellular signaling pathwaysSettore BIO/13 - Biologia ApplicataYeastsAnimalsHumansCaenorhabditis eleganseducationModel organismBeneficial effectsCaloric RestrictionMammalseducation.field_of_studyGeneral Immunology and Microbiologyved/biologylcsh:RGeneral MedicineCaloric intakeDietCalorie intakeDrosophila melanogasterBiochemistryEnergy IntakeSignal Transduction
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PGC-1α, Inflammation, and Oxidative Stress: An Integrative View in Metabolism

2020

Peroxisome proliferator-activated receptor-γ coactivator (PGC)-1α is a transcriptional coactivator described as a master regulator of mitochondrial biogenesis and function, including oxidative phosphorylation and reactive oxygen species detoxification. PGC-1α is highly expressed in tissues with high energy demands, and it is clearly associated with the pathogenesis of metabolic syndrome and its principal complications including obesity, type 2 diabetes mellitus, cardiovascular disease, and hepatic steatosis. We herein review the molecular pathways regulated by PGC-1α, which connect oxidative stress and mitochondrial metabolism with inflammatory response and metabolic syndrome. PGC-1α regula…

AgingThioredoxin reductaseReview ArticleOxidative phosphorylationmedicine.disease_causeBiochemistryAntioxidantsCoactivatormedicineAnimalsHumansInflammationMetabolic Syndromechemistry.chemical_classificationReactive oxygen speciesOrganelle BiogenesisQH573-671ChemistryCell BiologyGeneral MedicinePeroxisome Proliferator-Activated Receptor Gamma Coactivator 1-alphaMitochondriaCell biologyOxidative StressMitochondrial biogenesisOrgan SpecificityThioredoxinCytologyPeroxiredoxinOxidative stressOxidative Medicine and Cellular Longevity
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Principles and requirements for stroke recovery science

2020

The disappointing results in bench-to-bedside translation of neuroprotective strategies caused a certain shift in stroke research towards enhancing the endogenous recovery potential of the brain. One reason for this focus on recovery is the much wider time window for therapeutic interventions which is open for at least several months. Since recently two large clinical studies using d-amphetamine or fluoxetine, respectively, to enhance post-stroke neurological outcome failed again it is a good time for a critical reflection on principles and requirements for stroke recovery science. In principal, stroke recovery science deals with all events from the molecular up to the functional and behav…

Agingmedicine.medical_specialtyCombination therapymedicine.medical_treatmenttranslationNeuroprotectioncombination therapyrecovery03 medical and health sciences0302 clinical medicinePhysical medicine and rehabilitationchronic strokeHumansMedicineReview ArticlesChronic strokeStroke030304 developmental biologyNeurotransmitter Agents0303 health sciencesbusiness.industryRegeneration (biology)BrainRecovery of Functionmedicine.diseaseStrokeMatrix Metalloproteinase 9NeurologyTissue Plasminogen ActivatorregenerationIntercellular Signaling Peptides and ProteinsNeurology (clinical)Cardiology and Cardiovascular MedicinebusinessStroke recovery030217 neurology & neurosurgeryJournal of Cerebral Blood Flow & Metabolism
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Fingolimod as a Treatment in Neurologic Disorders Beyond Multiple Sclerosis

2020

Abstract Fingolimod is an approved treatment for relapsing–remitting multiple sclerosis (MS), and its properties in different pathways have raised interest in therapy research for other neurodegenerative diseases. Fingolimod is an agonist of sphingosine-1-phosphate (S1P) receptors. Its main pharmacologic effect is immunomodulation by lymphocyte homing, thereby reducing the numbers of T and B cells in circulation. Because of the ubiquitous expression of S1P receptors, other effects have also been described. Here, we review preclinical experiments evaluating the effects of treatment with fingolimod in neurodegenerative diseases other than MS, such as Alzheimer’s disease or epilepsy. Fingolimo…

AgonistSphingosine 1 Phosphate Receptor ModulatorsMultiple Sclerosismedicine.drug_classDrug Evaluation PreclinicalDiseaseReview ArticleRM1-950PharmacologyNeuroprotection03 medical and health sciencesEpilepsyMice0302 clinical medicineNeurotrophic factorsAlzheimer DiseasemedicineAnimalsHumansLymphocytes030304 developmental biologyPharmacology0303 health sciencesEpilepsyMicrogliabusiness.industryFingolimod HydrochlorideMultiple sclerosisAnti-Inflammatory Agents Non-Steroidalmedicine.diseaseFingolimod3. Good healthRatsDisease Models Animalmedicine.anatomical_structureNeuroprotective AgentsTherapeutics. PharmacologyNervous System Diseasesbusiness030217 neurology & neurosurgerymedicine.drugDrugs in R&D
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GnRH Analogues in the Prevention of Ovarian Hyperstimulation Syndrome

2012

The GnRH analogue (agonist and antagonist GnRH) changed ovarian stimulation. On the one hand, it improved chances of pregnancy to obtain more oocytes and better embryos. This leads to an ovarian hyper-response, which can be complicated by the ovarian hyperstimulation syndrome (OHSS). On the other hand, the GnRH analogue can prevent the incidence of OHSS: GnRH antagonist protocols, GnRH agonist for triggering final oocyte maturation, either together or separately, coasting, and the GnRH analogue may prove useful for avoiding OHSS in high-risk patients. We review these topics in this article.

Agonistendocrine systemmedicine.medical_specialtymedicine.drug_classEndocrinology Diabetes and MetabolismOvarian hyperstimulation syndromeStimulationReview ArticleAndrologyOvarian Hyperstimulation SyndromeInternal medicinemedicineGnRH AntagonistPregnancyGnRH Agonistbusiness.industryPreventionGnRH AntagonistOocytemedicine.diseaseOvarian Stimulationmedicine.anatomical_structureEndocrinologyDisease preventionbusinesshormones hormone substitutes and hormone antagonistsInternational Journal of Endocrinology and Metabolism
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Regulation of the effects of CYP2E1-induced oxidative stress by JNK signaling

2014

The generation of excessive amounts of reactive oxygen species (ROS) leads to cellular oxidative stress that underlies a variety of forms of hepatocyte injury and death including that from alcohol. Although ROS can induce cell damage through direct effects on cellular macromolecules, the injurious effects of ROS are mediated largely through changes in signal transduction pathways such as the mitogen-activated protein kinase c-Jun N-terminal kinase (JNK). In response to alcohol, hepatocytes have increased levels of the enzyme cytochrome P450 2E1 (CYP2E1) which generates an oxidant stress that promotes the development of alcoholic steatosis and liver injury. These effects are mediated in larg…

Alcoholic liver diseaseClinical BiochemistryReview ArticleMitogen-activated protein kinase kinasemedicine.disease_causeBiochemistryCytochrome P450 2E10302 clinical medicineMolecular Targeted TherapyMitogen-activated protein kinaseslcsh:QH301-705.5c-Jun N-terminal kinasechemistry.chemical_classificationTNF tumor necrosis factorlcsh:R5-9200303 health sciencesCell DeathCYP2E1 cytochrome P450 2E1Cytochrome P-450 CYP2E13. Good healthCell biologyPKD protein kinase DLiverJNK c-Jun N-terminal kinaseSab SH3 homology associated BTK binding protein030211 gastroenterology & hepatologySignal transductionlcsh:Medicine (General)MAP Kinase Signaling SystemAPAP acetaminophenMKK MAPK kinaseBiology03 medical and health sciencesROS reactive oxygen speciesPKC protein kinase CmedicineAnimalsHumansMAPKKK MAPK kinase kinaseProtein kinase ACell damage030304 developmental biologyReactive oxygen speciesMAP kinase kinase kinaseOrganic ChemistryJNK Mitogen-Activated Protein KinasesAlcoholic liver diseasemedicine.diseaseERK1/2 extracellular signal-regulated kinase 1/2Fatty Liverlcsh:Biology (General)chemistryOxidative stressNAFLD nonalcoholic fatty liver diseaseReactive Oxygen SpeciesMAPK mitogen-activated protein kinaseOxidative stressRedox Biology
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