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C Favalli

Publications and source records attributed to C Favalli.

12 recordsLinked to original sources

Glutathione inhibits replication and expression of viral proteins in cultured cells infected with Sendai virus.

Addition of reduced glutathione inhibited the production of Sendai virus in African green monkey kidney (AGMK) cells. This result could be accounted for by a direct action of GSH on viral replication. The inhibitory action was associated to an increase of the GSH intracellular level, while the host cell metabolism was unaffected. The antiviral effect was related to decrease and inactivation of the hemagglutinin-neuraminidase (HN) virus glycoprotein.

Animals

Combination therapy with thymosin alpha 1 potentiates the anti-tumor activity of interleukin-2 with cyclophosphamide in the treatment of the Lewis lung carcinoma in mice.

In this study we have investigated the effects of thymosin alpha 1 (T alpha 1) and interleukin-2 (IL-2), singly or in combination with cyclophosphamide (CY), on tumor growth, survival and cytotoxicity in C57Bl/6NCrlBR mice with Lewis lung carcinoma (3LL). Combined administration of T alpha 1 plus IL-2, after CY treatment, was much more effective than use of each biological response modifier (BRM) alone, and induced complete tumor regression in all of the mice studied. Combination immunotherapy alone without CY only slightly reduced the rate of tumor growth, and these results are in accordance with previous studied which showed that the 3LL carcinoma is resistant to cytokines. Combined chemo-immunotherapy also increased the cytotoxicity of spleen cells and markedly enhanced long-term survival in all treated animals. Depletion of immune cells, using either total-body sub-lethal irradiation (400 rads) or antibodies directed against T-cell (anti-CD4 and CD8) or NK-cell (anti-asialo GM1) populations, abolished the positive response to combination therapy. Histological analysis of the tumors obtained from mice treated with combination chemo-immunotherapy revealed a high number of infiltrating lymphoid cells surrounding a well-circumscribed area of necrosis consisting solely of dead cells. Our studies show that T alpha 1 potentiates IL-2-induced cytotoxic activities in vitro as well in vivo, and that these compounds have a powerful anti-tumor action when associated with chemotherapy.

Animals

Time-related interference of misoprostol with experimental gastric cancer formation induced by N-methyl-N'-nitro-N-nitrosoguanidine in the rat.

The purpose of this study was to investigate the effect of long-term misoprostol administration, at non-antisecretory doses, on N-methyl-N'-nitro-N-nitrosoguanidine(MNNG)-induced gastric carcinogenesis. The incidence of gastric carcinomas and precancerous lesions was evaluated in 50 male 250-g Sprague-Dawley rats after 52 weeks of continuous oral administration of MNNG (120 mg/l; n = 20), MNNG plus misoprostol (2 mg kg-1 day-1; n = 20) or tap water (n = 10) (experiment 1), and in 30 rats treated with MNNG for 30 weeks followed by tap water (n = 15) or by misoprostol (n = 15) for 22 weeks; a third group (n = 10) received tap water only for 52 weeks (experiment 2). After sacrifice, gastric mucosal lesions were macroscopically evaluated and their histology obtained. MNNG consumption was comparable in all groups (6.5 +/- 1.1 mg rat-1 day-1). Misoprostol consumption was 180 +/- 0.25 mg kg-1 day-1 rat-1. In experiment 1 the incidence of gastric carcinomas was 60% in the MNNG group and 25% in the group treated with MNNG plus misoprostol (P less than 0.05). Cytotoxic and hyperplastic gastric mucosal lesions were also significantly reduced by misoprostol. In experiment 2 the incidence of carcinomas was 31% and 38.6% respectively. Misoprostol significantly decreased the incidence of gastric cancer formation when given from the beginning of the experiment. By contrast, when administered after 30 weeks of MNNG treatment it did not interfere with experimental gastric cancer formation. Exogenous prostaglandins are able to prevent the early MNNG-induced gastric mucosal lesions, thus interfering with gastric carcinogenesis.

Adenocarcinoma

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

Thymosin alpha one restores murine T-cell-mediated responses inhibited by in vivo cocaine administration.

The effects of different in vivo thymosin alpha one (T alpha 1) treatments on T-cell responses inhibited by cocaine abuse were studied. Administration during cocaine treatment promoted a faster recovery of normal natural killer (NK) cell activity after the suspension of abuse. Suspension of cocaine plus repeated T alpha 1 administrations strongly restored NK activity and, interestingly, spleen cells from mice treated with T alpha 1 during and after cocaine administration achieved a very rapid recovery and the greatest stimulation of natural cytotoxicity. This last treatment also restored the cocaine-inhibited specific T-cell response (i.e. allogeneic cytotoxic T-lymphocyte (CTL) generation) and abrogated the cocaine-induced suppression of interferon gamma (IFN-gamma), interleukin 2 (IL-2) and IL-4 production. Finally restoration and induction of thymic cellularity were significant when T alpha 1 was given during and after cocaine administration. The present investigation provides evidence for the first time that thymic hormones could be of potential value in controlling cocaine-induced impairment of T-cell-mediated immunity in the mouse.

Animals

Induction of apoptosis in thymocytes by prostaglandin E2 in vivo.

In vivo administration in mice of a synthetic analog of prostaglandin E2 (PGE2) caused a selective and dramatic decrease of CD4+CD8+ double-positive, CD3/T-cell-receptor-alpha beta(lo) cells in the thymus. This loss was corticosteroid-independent and not affected by Cyclosporin A. The disappearance of CD4+CD8+ thymocytes was strictly correlated with the induction of apoptosis inside the thymus as shown by morphological studies and by the induction of intracellular transglutaminase expression. Considering that PGE2 has been found to be produced by different cell populations inside the thymus, these results indicate that PGE2 may act as endogenous signals for apoptosis during T-cell differentiation.

16,16-Dimethylprostaglandin E2

Thymosin alpha 1 potentiates interleukin 2-induced cytotoxic activity in mice.

We have investigated the effects of interleukin 2 (IL-2) on cytotoxic activity of spleen lymphocytes, from normal and cyclophosphamide (200 mg/kg) or B-16 melanoma suppressed mice, after in vitro or in vivo pretreatment with thymosin alpha 1 (TA1). The results of this study indicate that pretreatment in vitro (100 ng/ml for 1 hr) or in vivo (200 micrograms/kg/day for 4 days) with thymosin alpha 1 (TA1), significantly increased the IL-2 (from 100 to 500 U/ml) in vitro induced cytotoxic activity of spleen lymphocytes, collected from both normal and cyclophosphamide and tumor-suppressed animals, against both YAC-1 (NK sensitive) and MBL-2 (NK resistant) cell lines. The potential use in combination of these two different biological response modifiers, useful in enhancing the immunological responses to IL-2 of lymphocytes, may provide a novel model of immunotherapeutic intervention in cancer.

Animals

Susceptibility to influenza A virus infection in mice immunosuppressed with cyclophosphamide.

It is known that immunocompromised hosts show an enhanced susceptibility to microbial infections. Among these, viral infections represent a particular problem because of the lack of really efficient antiviral drugs. In the present report we have studied the effect of pharmacological immunosuppression with cyclophosphamide (CY) in virus infection in vivo, using Balb/c mice infected with influenza A virus (PR8). At the dose of 0.1 hemagglutinating units of viral inoculum, intranasal administration of PR8 virus caused the death of 50 to 60% of the animals within a period of 3-10 days. A single injection of CY (200 mg/kg) significantly increased mouse mortality to 90%, when PR8 virus challenge was performed 4 days after chemotherapy pretreatment. When the PR8 virus infection was performed at different times after CY-treatment, a similar appreciable effect was not observed. Severe alterations of some immunological parameters such as NK activity and analysis of lymphoid spleen cell subsets were related to the increased susceptibility to virus infection.

Animals

Interaction between thymic hormones and other immunomodulatory agents.

We have investigated the effects of a combination in vivo treatment with thymosin alpha 1 (TA1) and murine alpha/beta interferon (IFN) on natural killer (NK) activity and on tumor growth in B-16 melanoma tumor-bearing mice. The results indicated that treatment with a single injection of IFN (3 x 10(4] 24 h before testing, enhanced NK activity in tumor-bearing mice if the test was performed 10 days after tumor inoculation, when the animals have normal NK responsiveness. On the other hand, the same treatment led to lower or no improvement of NK responses when the assay was performed 14 or 18 days after tumor inoculation, at a time when tumor growth caused NK-suppression. However, combination treatment with TA1 (200 micrograms/kg) for 4 days, followed by IFN was found to restore normal NK cell activity. On the other hand primary tumor growth was unaffected by combination therapy, while the same treatment with TA1 and IFN was able to significantly prolong survival time of B-16 tumor-bearing mice, when administered starting on day 6 after tumor inoculation. The last evidence, together with results on NK activity stimulation, indicates that combination therapy with TA1 and IFN could be an interesting approach to cancer immunotherapy.

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