Publications by authors named "Abel Hernandez-Chavez"

Diabetic retinopathy is one of the leading causes of visual impairment and morbidity worldwide, being the number one cause of blindness in people between 27 and 75 years old. It is estimated that ~191 million people will be diagnosed with this microvascular complication by 2030. Its pathogenesis is due to alterations in the retinal microvasculature as a result of a high concentration of glucose in the blood for a long time which generates numerous molecular changes like oxidative stress.

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Several pathophysiological processes involve Hypoxia conditions, where the nervous system is affected as well. We postulate that the GABAergic system is especially sensitive. Furthermore, drugs improving the resistance to hypoxia have been investigated, such as the neurosteroid dehydroepiandrosterone sulfate (DHEAS) which has shown beneficial effects in hypoxic processes in mammals; however, at the cellular level, its exact mechanism of action has yet to be fully elucidated.

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The mechanisms underlying oxidative stress (OS) resistance are not completely clear. Caenorhabditis elegans (C. elegans) is a good organism model to study OS because it displays stress responses similar to those in mammals.

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This longitudinal prospective study was designed to assess the effects of the angiotensin converting enzyme inhibitor (ACEI) ramipril on ventricular mass, left ventricle (LV) diastolic function and blood pressure in patients with mild to moderate essential hypertension and hyperinsulinemia. LV diastolic dysfunction is the first target organ alteration occurring in hypertensive patients, while ventricular hypertrophy is the most relevant predictive factor for cardiovascular morbility and mortality in systemic hypertension. Because several studies have demonstrated that there is no direct correlation between blood pressure values and the severity of LV hypertrophy or diastolic dysfunction, it is assumed that other factors are involved in the genesis of these functional alterations.

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