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Biomedical subjects

F Restivo

Publications and source records attributed to F Restivo.

4 recordsLinked to original sources

Oxidative and nitrosative stress in brain mitochondria of diabetic rats.

Diabetic encephalopathy, characterized by impaired cognitive functions and neurochemical and structural abnormalities, may involve direct neuronal damage caused by intracellular glucose. The study assesses the direct effect of chronic hyperglycemia on the function of brain mitochondria, the major site of reactive species production, in diabetic streptozotocin (STZ) rats. Oxidative stress plays a central role in diabetic tissue damage. Alongside enhanced reactive oxygen species (ROS) levels, both nitric oxide (NO) levels and mitochondrial nitric oxide synthase expression were found to be increased in mitochondria, whereas glutathione (GSH) peroxidase activity and manganese superoxide dismutase protein content were reduced. GSH was reduced and GSH disulfide (GSSG) was increased in STZ rats. Oxidative and nitrosative stress, by reducing the activity of complexes III, IV and V of the respiratory chain and decreasing ATP levels, might contribute to mitochondrial dysfunction. In summary, this study offers fresh evidence that, besides the vascular-dependent mechanisms of brain dysfunction, oxidative and nitrosative stress, by damaging brain mitochondria, may cause direct injury of neuronal cells.

Animals↗

[Spontaneous hemoperitoneum].

The authors report their experience of 11 cases of hemoperitoneum due to hemorrhagic endoabdominal neoformation, diagnosed through laparoscopy, and the diagnosis of which was confirmed by the biopsy under the sight. They describe the casuistry observed: 4 hepatic neoplasms (11,9%); 4 ovary neoplasmus (12,1%); 1 neuroblastoma (10%); 2 ovary endometriosic cysts (16,6%). They, at last, emphasize the usefulness of laparoscopy as an investigating mean offering a sure diagnostical reliability.

Adolescent↗

Heterozygous effects on cell yield and generation time in Saccharomyces cerevisiae.

The data obtained analyzing generation time, cell yield and their variability in different culture media in diploid strains of Saccharomyces cerevisiae demonstrate the existence of a biochemically determined heterotic effect, that could be of some relevance for the study of yeast population genetics, as well as for the improvement of microbial fermentation processes.

Culture Media↗