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Biomedical subjects

E Tubaro

Publications and source records attributed to E Tubaro.

At least 19 recordsLinked to original sources

In vivo cocaine administration influences lymphokine production and humoral immune response.

The effect of in vivo cocaine administration on in vitro mitogen-induced lymphokine production was examined. Splenocyte cultures from BALB/c mice treated with an acute (1 mg/kg) or daily cocaine administration (1 mg/kg/day for 7 consecutive days) were less responsive to induction of IFN-gamma, IL-2 and IL-4 production by mitogen stimuli. We also evaluated the humoral immune response to both a T-dependent (HEL) and a T-independent antigen (rHBcAg). It was found that cocaine inhibits T-dependent antibody production only. This inhibition was greatest when cocaine was given during immunization. The results suggest that T-cell-mediated responses may be more affected by cocaine use/abuse.

Animals

Demonstration of the formation of hydroxyl radicals in acute myocardial infarction in man using salicylate as probe.

Dihydroxybenzoic acid (DHBA) derivatives of acetylsalicylic acid (ASA) are formed in vivo by the action of the hydroxyl radical (OH.). In order to evaluate the possible formation of OH(.) in acute myocardial infarction (AMI) in man, 9 consecutive patients with a first episode of AMI (8 males, 1 female, mean age 50.3 years), treated with rt-PA, and 8 healthy volunteers (7 males, 1 female, mean age 29.8 years) were studied. All subjects received 100 mg ASA p.o. daily; venous blood samples were taken 30 min after the first dose (time 0) and then at 3-, 6-, 12-, 24- and 48 h and 5 days. Serum was analyzed by HPLC and electrochemical detection for 2,3- and 2,5-DHBA contents. 2,3-DHBA was present in all subjects with AMI and undetectable in healthy volunteers at all time points studied. Serum levels of 2,5-DHBA did not show statistically significant differences between AMI patients and healthy volunteers. These data support the hypothesis that hydroxyl radicals are formed during AMI in man.

Aspirin

Inhibition of rat fibroblast cell proliferation at specific cell cycle stages by cocaine.

We have analyzed the role of cocaine in the control of the rat fibroblast (EL2) cell proliferation. Our data show a dose-related effect on the inhibition of DNA synthesis and cell growth when cocaine is added with serum or with a pure growth factor [Epidermal Growth Factor (EGF)]. Pretreatment by drug did not appreciably enhance the inhibition of S-phase entry above that obtained when cocaine and mitogen were added simultaneously. On the contrary, exposure of quiescent EL2 cells to cocaine has little or no effect on DNA synthesis, when drug is removed before the mitogenic stimulus. Moreover, even when cocaine is added after EGF, an exposure only within 1-8 hours is required in order to inhibit stimulation of DNA synthesis. Cocaine also suppressed the general increase in protein synthesis that occurs during the first hour after EGF addition. The combined data suggest that cocaine inhibits the traverse of mitogen-stimulated quiescent EL2 cells from Go to S phase by acting on processes that take place during the initial phase of the cell cycle.

Animals

Augmentation of mouse natural killer (NK) activity by GM-1/P, a processed form of monosialoganglioside GM-1.

We describe the immunomodulatory activity of GM-1/P a processed form of GM-1 (monosialoganglioside) extracted from ox brain, purified and physically modified. We examined the effect of in vivo and in vitro treatment of GM-1/P on natural (NK) activity and its ability to induce the production of interleukin-2 (IL-2) in the mouse. In vivo treatment with GM-1/P (1 mg/Kg, i.v., day-1) resulted in a marked increase and in a change of distribution of NK activity, which was associated with lower density Percoll fractions. Marked increase was already observed at 18 hrs and then declined by day 4. In vitro treatment with GM-1/P (2 micrograms/ml) enhanced NK activity of B6 spleen cells, already after 6 hours of incubation, remaining at plateau levels within 18 hours. A role of IL-2 in this enhancement was suggested by the ability of an anti-IL-2 rabbit antiserum to abolish in vitro increased cytotoxicity. The presence of IL-2 in the supernatants of splenocytes from GM-1/P (1mg/Kg, i.v., ,day-1) treated mice stimulated with Con A or Con A plus TPA for 48 hrs was evaluated by proliferation of an IL-2 dependent CTLL cell line. GM-1/P by itself was unable to stimulate IL-2 production; however it markedly increased IL-2 production induced by Con A or Con A plus TPA.

Adjuvants, Immunologic

Enhancement of lymphocyte proliferation and IL-2 receptor expression by a processed form (GM-1/P) of monosialoganglioside GM-1.

In this study we investigated the ability of GM-1/P, a calcium mediated processed form of monosialoganglioside GM-1, of in vivo augmenting mouse T and B-lymphocyte blastogenesis induced by mitogens. We have also determined its effect on IL-2 responsiveness by analyzing the induction of the expression of IL-2 receptor (IL-2r) on mouse spleen cells. Lymphocyte blastogenesis was evaluated by 3H-TdR incorporation of spleen cells from untreated or GM-1/P (1mg/Kg, i.v., day-1) treated mice cultured in the presence of T (PHA, ConA) B (LPS) cell specific mitogens. The stimulatory effects appeared to be due to a direct action on T and B lymphocytes, since proliferative response was not abolished by removal of macrophages. Splenocytes from GM-1/P treated mice showed increased proliferation in response to various concentrations of HrIL-2; moreover under these conditions an increased generation of LAK activity was found. A direct evidence for enhanced expression of IL-2r was obtained by immunofluorescence and FACS analysis using a monoclonal antibody (PC.61) directed against the p55 subunit of murine IL-2r. 29% PC.61+ cells were found in IL-2 cultures from treated spleen cells.

Animals

Effect of acute or daily cocaine administration on cellular immune response and virus infection in mice.

The effects of in vivo cocaine administrations on cellular cytotoxicity were studied. Cocaine induced a dose-related immunosuppression of natural killer cell activity, with maximal depression at 1-5 mg/kg. In addition, the degree of inhibition following a single intraperitoneal (i.p.) or intravenous cocaine dose (acute treatment, 1 mg/kg) was similar to that after repeated administration (subchronic treatment: 1 mg/kg/day i.p. for 7 consecutive days or subcutaneous administration by Alzet 2001 osmotic minipumps). T cells from cocaine-treated mice failed to generate cytotoxic T lymphocytes (CTL) in mixed lymphocyte cultures and acute or subchronic cocaine treatment also inhibited CTL generation in vivo. On the other hand, acute administration induced a very rapid (24-hour) inhibition of natural cytotoxicity, with a return to normal within 72 h after treatment. By contrast, repeated doses led to more protracted immunologic consequences and a delayed recovery (144 h). The effect of cocaine on susceptibility to influenza virus (PR8) infection was also investigated. Both acute and subchronic treatment significantly decreased resistance to PR8 infection. The results clearly indicate that cocaine has a potent suppressive effect on cellular immunity and that abuse can adversely affect the outcome of infectious diseases.

Animals

Methadone vs morphine: comparison of their effect on phagocytic functions.

A comparison of the effects of methadone and morphine on phagocytic physiology was carried out in mice, using a number of tests, to estimate the risk of using methadone in maintenance protocols for opiates addicts. Results indicate that methadone, like morphine, reduces (a) R.E.S. activity and (b) PMN superoxide anion production, while unlike morphine it (a) does not produce haematologic changes, (b) does not exacerbate C. albicans infections, (c) does not inhibit phagocytosis and killing by murine polymorphonuclear leukocytes and macrophages, or by rabbit alveolar macrophages, and (d) does not reduce spleen and liver weight. These results are in strict agreement with those previously found in human subjects receiving controlled administration of morphine or methadone. Compared to morphine methadone therefore appears to have a lower toxic potentiality.

Animals

Morphine and methadone impact on human phagocytic physiology.

Human subjects submitted to treatment with morphine show a severe depression of phagocytosis, killing properties and superoxide production both of their polymorphonuclear leukocytes and monocytes. Polymorphonuclear leukocyte adherence, chemotaxis, random migration, myeloperoxidase content, lysozyme content and lymphocyte Rosette E formation were poorly influenced. Methadone-treated subjects show a similar effect at phagocytic level but far less evident. These results confirm those previously found in animals and reinforce the evidence of a depressive role of morphine on phagocytic physiology.

Cytotoxicity, Immunologic

Effect of morphine on resistance to infection.

Morphine was demonstrated to exacerbate infections. Experiments were performed to evaluate variations of phagocytic physiology during morphine treatment. In mice, morphine drastically reduced reticuloendothelial system activity, phagocyte count, phagocytic index, killing properties, and superoxide anion production in polymorphonuclear leukocytes and macrophages. Similar effects on alveolar macrophage count, phagocytosis, and killing were found in rabbits, a result which suggested a lack of species specificity. Additional experiments demonstrated that morphine (1) induces a reduction of lymphoid organ weight, (2) impairs the ability to eradicate infections and (3) is counteracted in its depressing activity on phagocytic physiology by small amounts of Corynebacterium parvum. The results suggest that there is a close relationship between the fact that morphine exacerbates infections and the fact that morphine depresses phagocytic functions; therefore, the negative effect of morphine on phagocytosis is at least one of the reasons for its negative effect on the development of infections.

Animals

Influence of cortisone and cyclophosphamide on xanthine oxidase bacterial activation.

The xanthine oxidase increase in mice liver as response to infection was studied as a possible parameter useful for a better understanding of theimmunosuppression due to cyclophosphamide and cortisone. An impact of cortisone but not of cyclophosphamide on this mechanism was found; this may be useful in order to discriminate between the two different types of immunosuppressive drugs.

Animals