35 results match your criteria: ""Ana Aslan" National Institute of Gerontology and Geriatrics[Affiliation]"

Erythropoietin (EPO), a key hormone involved in red blood cell formation has been recently acknowledged for its pleiotropic actions and protective role in ageing and various pathological conditions concurrent with oxidative stress, vascular diseases and metabolic abnormalities such as diabetes mellitus. The aim of the study was to evaluate the relationship between circulating erythropoietin levels and oxidative stress biomarkers, in elderly with type 2 diabetes (T2DM). The study was carried out in 67 subjects with T2DM (69 ± 5 years; n = 37) without anemia, and aged-matched controls (70 ± 6 years; n = 30).

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MARK-AGE biomarkers of ageing.

Mech Ageing Dev

November 2015

Regenerative Medicine Group, Cranfield Health, Cranfield, UK.

Many candidate biomarkers of human ageing have been proposed in the scientific literature but in all cases their variability in cross-sectional studies is considerable, and therefore no single measurement has proven to serve a useful marker to determine, on its own, biological age. A plausible reason for this is the intrinsic multi-causal and multi-system nature of the ageing process. The recently completed MARK-AGE study was a large-scale integrated project supported by the European Commission.

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Oxidized LDL and NO synthesis--Biomarkers of endothelial dysfunction and ageing.

Mech Ageing Dev

November 2015

Ana Aslan National Institute of Gerontology and Geriatrics, 9 Caldarusani Street, Sector 1, P.O. Box 2-4, 011241 Bucharest, Romania; Carol Davila University of Medicine and Pharmacy, Faculty of Medicine, Department of Geriatrics and Gerontology, 37 Dionisie Lupu Street, Sector 2, 020021 Bucharest, Romania.

Oxidized LDL (oxLDL) and nitric oxide (NO) exert contradictory actions within the vascular endothelium microenvironment influencing key events in atherogenesis. OxLDL and NO are so far regarded as representative parameters of oxidative stress and endothelial dysfunction, new targets in prevention, diagnosis and therapy of cardiovascular diseases, and also as candidate biomarkers in evaluating the human biological age. The aim of this review is to explore recent literature on molecular mechanisms and pathophysiological relationships between LDL oxidation, NO synthesis and vascular endothelium function/dysfunction in ageing, focusing on the following aspects: (1) the impact of metabolic status on both LDL oxidation and NO synthesis in relation with oxidative stress, (2) the use of oxidized LDL and NO activity as biomarkers in human studies reporting on cardiovascular outcomes, and (3) evidences supporting the importance of oxidized LDL and NO activity as relevant biomarkers in vascular ageing and age-related diseases.

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A new hypothesis of aging.

Med Hypotheses

March 2015

Faculty of Applied Chemistry and Materials Science, University Politehnica Bucharest, Bucharest, Romania; Laboratory of Electrochemistry and PATLAB, National Institute of Research for Electrochemistry and Condensed Matter, 202 Splaiul Independentei Str., 060021 Bucharest-6, Romania.

Introduction And Aims: There are over 300 hypotheses of aging, but none of them has enough predictive power to explain most experiments and observations on this process. On the basis of a critical analysis of the most relevant data on aging, especially on the factors that influences its rhythm, we present a new hypothesis, as well as the way the hypothesis' predictions explain some of the phylogenetic implications of the aging process.

Methods: The hypothesis starts from a new, biochemical view on evolution and the behavior of living matter.

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Protein carbonyls are widely analysed as a measure of protein oxidation. Several different methods exist for their determination. A previous study had described orders of magnitude variance that existed when protein carbonyls were analysed in a single laboratory by ELISA using different commercial kits.

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Advanced oxidative and glycoxidative protein damage markers in the elderly with type 2 diabetes.

J Proteomics

October 2013

Ana Aslan - National Institute of Gerontology and Geriatrics, Bucharest, Romania; Carol Davila - University of Medicine and Pharmacy, Faculty of Pharmacy, Department of Biochemistry, Bucharest, Romania. Electronic address:

Unlabelled: We aimed to explore the association of advanced oxidation and advanced glycation of proteins, and their interrelations with endothelial nitric oxide synthesis, oxidative stress, metabolic profile as well as other atherosclerotic risk markers in prediabetic and diabetic elderly subjects. Advanced glycation end products (AGEs), advanced oxidation protein products (AOPPs), low-density lipoprotein susceptibility to oxidation (oxLDL) and nitric oxide metabolic pathway products (NOx) were assessed in subjects with impaired fasting glucose (prediabetes, IFG; n=90), and type 2 diabetes mellitus (T2DM, n=95) versus control subjects (n=88). Higher levels of AOPPs, AGEs, oxLDL, NOx, atherosclerosis risk markers, and insulin resistance were pointed out in IFG and T2DM groups compared with control.

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Background And Aims: Vitamin D deficiency has been identified in the elderly as a potential risk factor for cardiovascular disease development, possibly through its association with other risk factors, such as type 2 diabetes mellitus (T2DM), hypercholesterolemia and hypertension. The aim of this cross-sectional study was to evaluate the vitamin D status in elderly subjects with impaired fasting glucose (IFG) or T2DM, and to examine its relationships to systemic oxidative stress and biochemical markers of endothelial dysfunction.

Methods: Serum 25-hydroxyvitamin D [25(OH)D], fasting glucose, insulin, lipid profile, advanced glycation end products (AGEs), advanced oxidation protein products (AOPPs), low-density lipoprotein susceptibility to oxidation (oxLDL) and nitric oxide metabolic pathway products (NOx) were analyzed in elderly subjects with IFG (n=30) and T2DM (n=35) compared with aged-matched controls (n=25).

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The cells are cultivated using an original licensed procedure named "homogeneous sets". This consists of cell growth in monolayer using as holder several plates specially designed to enable the study both by use of the optometric method we elaborated and by classical techniques (microscopy). Using the suggested method, a stress can be induced under control.

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Xenobiotic glucuronidation represents a major metabolic protection of the brain against chemical aggressions at blood-brain interfaces. We previously observed that glucuronidation of 1-naphthol was very effective in olfactory bulb, which is a pathway for the entry of foreign molecules into the brain. In this work, we showed that 1-naphthol glucuronidation varied according to age.

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