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Biomedical subjects

T Rossi

Publications and source records attributed to T Rossi.

110 records · Page 7Linked to original sources

Human sperm cryopreservation and reactive oxygen species (ROS) production.

The aim of this work was to establish whether cryopreservation procedure can trigger the production of Reactive Oxygen Species (ROS) in selected sperm populations. Semen samples were obtained from 45 subjects attending our Department of Medical Pathophysiology. Motile sperm suspensions were obtained by swim-up in Tyrode's salt solution. After dilution with TEST yolk buffer freezing medium, they were cryopreserved in liquid nitrogen. In addition to motility assessment, in basal and freeze/thaw conditions ROS detection and the Hypoosmotic Viability Test were also carried out. In 19 subjects (42.2%) there was already evidence of ROS production prior to cryopreservation, which increased after thawing. In 9 subjects (20.0%) there was no ROS production prior to cryopreservation, however, after freezing/thawing we detected evidence of the presence of ROS. It seems, therefore, that cryoprocedure can indeed provoke or increase ROS production in some semen samples. In ROS producing subjects, the post-show recovery of sperm motility and vitality was significantly lower compared to ROS-free subjects. This was probably due to damage by oxidative stress leading to lipid peroxidation of the sperm membrane. Moreover, in some ejaculates, ROS overproduction or scavenger system failure can be regarded as a cryopathogenetic factor affecting "sperm quality" recovery.

Adult↗

Role of chemotherapeutic antagonism in opportunistic infections.

The most widely-known anti-tumor drugs often induce marked immunosuppression which can give rise to one or more sepses. Anti-infection measures immediately applied can sometimes prove largely ineffective or even useless, the patient dying not as a result of the spread of the tumour but as a direct consequence of opportunistic infection. We postulate that antagonism between anti-tumour and antimicrobial drugs may also play an important part in this. By way of illustration of this hypothesis, we have studied the action of a number of known inhibitors of peptidoglycan synthesis and of DNA-gyrases on certain strains of Gram-positive and Gram-negative microorganisms cultured in medium containing various concentrations of some of the best-known anti-tumour antimetabolites. The experimental data show that antimicrobial and anti-tumour drugs can sometimes induce synergic or indifferent chemotherapeutic interactions with many bacteria, while in others the effect is antagonistic. In practice, the action of the drugs could lead to bacterial selectivity, which, in conjunction with immunosuppression and the presence of resistant strains, could favour the evolution of opportunistic infection.

Anti-Bacterial Agents↗