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Biomedical subjects

Isabel Pastor

Publications and source records attributed to Isabel Pastor.

4 recordsLinked to original sources

[Immune system and alcoholic liver disease].

It is well established that alcoholism is associated with imbalanced immune responses. To date, most relevant finding reported is the existence of an immunodepressed state which leads to a higher risk of suffering from severe infections in alcoholic patients. However, recent studies have shown that ethanol intake is followed by changes involving the synthesis and serum levels of specific cytokines as well as the activation of several different subsets of cytotoxic lymphocytes, that could be involved in the development of alcoholic liver disease. Accordingly, tumor necrosis factor-alpha plays a key role in the development of alcoholic liver damage through the induction of both apoptosis and necrosis of hepatocytes. This cytokine, together with interleukin (IL) 1, IL6 and several chemokines, facilitate the development of inflammation of the liver. Additionally, both transforming growth factor-beta and platelet-derived growth factor, act over stellate cells favouring hepatic fibrogenesis. The advances in the knowledge of the immunological mechanisms involved in alcoholic liver disease may lead to the discovery of new potential therapeutic targets, which may modify disease outcome in the near future.

Cytokines↗

A ready-to-use fluorimetric biosensor for superoxide radical using superoxide dismutase and peroxidase immobilized in sol-gel glasses.

In this work, a highly sensitive fluorescent biosensor for quantitative superoxide radical detection, based on the coupled reaction superoxide dismutase-peroxidase enzymes and the use of the probe Amplex red, is described. Superoxide anion radical was produced via oxidation of xanthine by xanthine oxidase. Dismutation of superoxide was catalyzed by superoxide dismutase, generating hydrogen peroxide, which reacted stoichiometrically with the nonfluorescent Amplex red, in the presence of peroxidase, yielding the red-fluorescent oxidation product resorufin. The coupled superoxide dismutase-peroxidase system was immobilized in a single sol-gel matrix. The enzymatic activity of the encapsulated superoxide dismutase-peroxidase system was nearly identical to that of one of the soluble enzymes, indicating that sol-gel encapsulation preserved the hierarchy of the enzyme's activity. Specificity and reusability of the encapsulated system for up to four cycles were also demonstrated. The fluorescent biosensor was able to detect concentrations of superoxide as low as 20 nM in phospholipid model membranes composed of saturated or unsaturated phospholipids. These facts make this biosensor a simple, reliable, and highly sensitive method with a potential use in biological systems, food, and drinks.

Anions↗