Search results for " Nitrosative stress"

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Biomarkers of oxidative and nitrosative damage in Alzheimer's disease and mild cognitive impairment

2009

Alzheimer's disease (AD) is the most common type of dementia in the elderly. Products of oxidative and nitrosative stress (OS and NS, respectively) accumulate with aging, which is the main risk factor for AD. This provides the basis for the involvement of OS and NS in AD pathogenesis. OS and NS occur in biological systems due to the dysregulation of the redox balance, caused by a deficiency of antioxidants and/or the overproduction of free radicals. Free radical attack against lipids, proteins, sugars and nucleic acids leads to the formation of bioproducts whose detection in fluids and tissues represents the currently available method for assessing oxidative/nitrosative damage. Post-mortem …

AgingPathologymedicine.medical_specialtyFree RadicalsAlzheimer’s disease Mild cognitive impairment Free radicals Nitrosative stress Oxidative stressBioenergeticsDiseaseOxidative phosphorylationmedicine.disease_causeBiochemistryPathogenesisAlzheimer DiseaseHumansMedicineDementiaMolecular BiologyFree-radical theory of agingbusiness.industryMetabolismmedicine.diseaseOxidative StressNeurologyImmunologySettore MED/26 - NeurologiaCognition DisordersReactive Oxygen SpeciesbusinessBiomarkersOxidative stressBiotechnology
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Oxidative stress-driven expression of myeloperoxidase in endothelial cells results in accumulation of markers of oxidative and nitrosative stress in …

2009

Endothelial cells (ECs), are able to manage with higher concentrations of ROS as well as reactive nitrogen species, respect to the other cell types. The unbalance between oxidizing species and antioxidant cellular defences has been implicated in the pathogenesis of cardiovascular diseases. While the role of MPO in the oxidative burst is well established, the effects of this enzyme on endothelial biology have only recently come to light. MPO can interact with endothelial –derived NO causing its depletion and favouring its conversion to nitrogen dioxide radical, a compound responsible of protein nitration generating 3-nitrotyrosine. Moreover, MPO is the only enzyme capable to form hypoclorous…

Settore BIO/16 - Anatomia Umanamyeloperoxidase endothelial cells endocardium oxidative stress nitrosative stress hydrogen peroxide 3-chlorotyrosine 3-nitrotyrosine
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