PubMed Health⌕ Search

Biomedical subjects

F Cattabeni

Publications and source records attributed to F Cattabeni.

222 records · Page 13Linked to original sources

L-histidine-mediated enhancement of hydrogen peroxide-induced cytotoxicity: relationships between DNA single/double strand breakage and cell killing.

Results presented in this study demonstrate an association between the L-Histidine-mediated enhancement of H2O2-induced cytotoxicity and the formation of DNA double strand breakage (DSB), whereas no relationship exists between the increased cytotoxic response and DNA single strand breakage (SSB). Indeed, the higher lethality and the production of DNA DSB occurred in oxidatively-injured cells regardless of whether the exposure to L-Histidine was performed before or during challenge with the oxidant. In fact, the increased level of DNA SSB detected in cells simultaneously exposed to the oxidant and the amino acid was not observed in cells pre-treated with L-Histidine and then challenged with hydrogen peroxide. Further experiments have demonstrated an association between the kinetics of DNA DSB formation and the enhancement of the cytotoxic response. In conclusion, intracellular L-Histidine seems to mediate the formation of DNA DSB and the increased growth-inhibitory response elicited by the oxidant. In addition, these results suggest that the enhancement of DNA SSB is produced by the extracellular/plasma membrane fraction of the amino acid and not causally related to the L-Histidine-mediated increase of the growth-inhibitory response to H2O2-treated cells.

Animals↗

Apoptosis by 2-chloro-2'-deoxy-adenosine and 2-chloro-adenosine in human peripheral blood mononuclear cells.

Adenosine has profound effects on immune cells and has been implicated in the intrathymic apoptotic deletion of T-cells during development. In order to characterize adenosine effects on quiescent peripheral blood mononuclear cells (PBMC), we have evaluated the ability of the previously characterized adenosine receptor agonist 2-chloro-adenosine (2CA; Ceruti, Barbieri et al., 1997) and of the antineoplastic drug 2-chloro-2'-deoxy-adenosine (2CdA, cladribine) to trigger apoptosis of PBMC. Apoptosis was assessed by morphological changes, DNA fragmentation by agarose gel electrophoresis and appearance of hypodiploid DNA peak by flow cytometry. 2CA (10 microM) and 2CdA (1 microM) induced apoptosis in human PBMC, which are relatively insensitive to apoptosis. For both agents, the effect was concentration- and time-dependent, although 2CdA induced apoptosis more potently than 2CA. Evaluation of mitochondrial function in parallel samples using the mitochondrial membrane-potential-specific dye JC-1 showed that mitochondrial damage followed the same kinetics as apoptosis, hence an early damage of mitochondria is likely not responsible for adenosine-induced death of PBMC. The effect of 2CA was partially prevented by addition of dipyridamole (DP), a nucleoside transport inhibitor, hence some of the apoptotic effect of this nucleoside is, at least in part, due to intracellular action. Alternatively, DP did not affect 2CdA-induced apoptosis, suggesting that 2CdA may enter cells via a DP-insensitive transporter. 5-Iodotubercidin (5-Itu), a nucleoside kinase inhibitor, was also able to partially prevent the action of 2CA and was not able to affect 2CdA-induced apoptosis, suggesting a different role for phosphorylation in 2CA- vs 2CdA-induced apoptosis. To test the role of P1 receptors, agonists and antagonists selective at various P1 receptor subtypes were used. Data suggest that, for 2CA, apoptosis is partially sustained by activation of the A2A receptor subtype, whereas no role is exerted by P1 receptors in 2CdA-dependent apoptosis. Moreover, in these cells, apoptosis could also be triggered through intense activation of the A3 receptor via selective agonists such as 2-chloro-N6-(3-iodobenzyl)adenosine-5'-N-methyluronamide (Cl-IB-MECA), but this mechanism plays no role in either 2CA- or 2CdA-induced apoptosis. On the whole, our results suggest that 2CA and 2CdA follow different pathways in inducing apoptosis of immune cells. Moreover, our data also suggest that there are at least three different ways by which adenosine derivatives may induce apoptosis of human PBMC: (i) through an A2A-like extracellular membrane receptor; (ii) through entry of nucleosides into cells and direct activation of intracellular events involved in the apoptotic process; or (iii) through activation of the A3 receptor.

2-Chloroadenosine↗

In situ hybridization histochemistry as a tool to study gene expression and its regulation in the central nervous system.

The recent application of in situ hybridization histochemistry to neuroanatomy, neuroendocrinology, and neuropharmacology has permitted explorations into the regulation of gene expression in the central nervous system (CNS) at the level of single neurons. Although cDNAs were the first probes to be used in hybridization studies, cRNAs and synthetic oligonucleotides have been recently employed because of the many advantages these single-stranded probes offer compared to the cDNAs. Using synthetic oligonucleotides, we described the distribution of the calmodulin mRNA and the regulation of proenkephalin mRNA in the rat brain. The results reported show the specificity of the hybridization and that the levels of calmodulin mRNA are more abundant in the cerebral cortex than in the striatum. Furthermore, we demonstrated that the administration of 6-hydroxydopamine in early postnatal life induces an increase in the expression of striatal proenkephalin mRNA measured at postnatal day 32.

Amino Acid Sequence↗

Perinatal caffeine treatment: behavioral and biochemical effects in rats before weaning.

Administration of drinking water containing 0, 0.02%, 0.04% and 0.08% of caffeine to female rats throughout gestation and lactation affects several behavioral parameters in the offspring. Righting reflexes, swimming ability development, motor coordination and muscle tone were affected. The activity of these animals, as measured with an open-field test at weaning (i.e., at the end of the treatment), was reduced. The effects observed were dose-dependent. However, for righting reflexes the dose-dependency was direct (the highest dose producing maximal effects), whereas in all the other tests, the dose-dependency was inverse, the lowest dose producing maximal effects and the highest dose producing no effects. This might reflect the presence of subclasses of receptors having different affinities for adenosine, mediating opposite effects and antagonized by caffeine. On the other hand, perinatal caffeine effects are certainly not mediated by blockade of phosphodiesterases, since cAMP levels at the end of the treatment were dose-dependently reduced. This study shows therefore that administration of caffeine to rat dams is able to influence the neurobehavioral development of the offspring. Moreover, all the doses utilized and corresponding to 27, 58 and 108 mg/kg, were able to produce all or some of the mentioned effects, indicating that further testing with doses lower than 27 mg/kg is required to find a dose which does not affect the offspring.

Animals↗