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Biomedical subjects

B Bongiovanni

Publications and source records attributed to B Bongiovanni.

7 recordsLinked to original sources

Detection of 2,4-dichlorophenoxyacetic acid in rat milk of dams exposed during lactation and milk analysis of their major components.

2,4-Dichlorophenoxyacetic acid (2,4-D) and its derivatives are herbicides widely used to control the growth of broadleaf and woody plant. Human and animal exposure to 2,4-D through agriculture use, food products, or use in lawn and garden care has been well documented, but little information is available on the transfer from serum to milk in exposed dams. In this study, we measured the content of 2,4-D in rat milk from mother exposed to 15, 25, 50 or 7 0mg 2,4-D/kg bw through the diet (4 treated groups, 8 dam each; 1 control group with 8 dams) over a period of 16 days starting on the post-natal day 1 (PND 1). The effect of 2,4-D on milk components was also evaluated. All doses tested caused a decrease in the body weight gain of the pups (4 groups, 64 pups each). It also produce a 30% in the content of total lipids and a changed the content of minor proteins in milk of the treated groups. 2,4-D produces an important decrease in some fatty acids content, being the polyunsaturated fatty acids the most affected. Further analysis showed that 2,4-D concentrations chromatographically detected both serum of dams and pups and milk were dose-dependent.

2,4-Dichlorophenoxyacetic Acid↗

Quinoxalinylethylpyridylthioureas (QXPTs) as potent non-nucleoside HIV-1 reverse transcriptase (RT) inhibitors. Further SAR studies and identification of a novel orally bioavailable hydrazine-based antiviral agent.

Quinoxalinylethylpyridylthioureas (QXPTs) represent a new class of human immunodeficiency virus type 1 (HIV-1) non-nucleoside reverse transcriptase (RT) inhibitors (NNRTIs) whose prototype is 6-FQXPT (6). Docking studies based on the three-dimensional structure of RT prompted the synthesis of novel heteroarylethylpyridylthioureas which were tested as anti-HIV agents. Several compounds proved to be potent broad-spectrum enzyme inhibitors and significantly inhibited HIV-1 replication in vitro. Their potency depends on the substituents and the nature of the heterocyclic skeleton linked to the ethyl spacer, and structure-activity relationships are discussed in terms of the possible interaction with the RT binding site. Although the new QXPTs analogues show potent antiviral activity, none of the compounds tested overcome the pharmacokinetic disadvantages inherent to ethylpyridylthioureidic antiviral agents, which in general have very low oral bioavailability. Through an integrated effort involving synthesis, docking studies, and biological and pharmacokinetic evaluation, we investigated the structural dependence of the poor bioavailability and rapid clearance within the thioureidic series of antivirals. Replacing the ethylthioureidic moiety with a hydrazine linker led to a new antiviral lead, offering promising pharmacological and pharmacokinetic properties in terms of antiviral activity and oral bioavailability.

Animals↗

Lack of evidence for the Th2 predominance in patients with chronic hepatitis C.

A T helper (Th)1 to Th2 shift has been proposed to be a critical pathogenic determinant in chronic hepatitis C. Here, we evaluated mitogen-induced and hepatitis C virus (HCV) core antigen-induced cytokine production in 28 patients with biopsy-proven chronic hepatitis C. Flow cytometry demonstrated that after mitogenic stimulation the percentage of Th2 cells (IL-4 + or IL-13 +) and Th0 cells (IFN-gamma/IL-4 + or IL-2/IL-13 +) did not differ between patients and controls. In contrast, the percentage of Th1 cells (IFN-gamma + or IL-2 +) was significantly increased in CD4 +, CD8 +, 'naive'-CD45RA + and 'memory'-CD45RO + T-cell subsets from patients versus controls. Similar results were obtained by ELISA testing supernatants from mitogen-stimulated, unfractionated peripheral blood mononuclear cell (PBMC) cultures. Interferon-alpha treatment was associated with a reduction in the mitogen-induced Th1 cytokine response in those patients who cleared their plasma HCV-RNA. Analysis of cytokine expression by CD4 + T cells after HCV core antigen stimulation in a subgroup of 13 chronic hepatitis C patients demonstrated no cytokine response in 74% of these patients and an IFN-gamma-restricted response in 26%. Finally, no Th2 shift was found in lipopolysaccharide-stimulated monocytes. These data indicate that a Th1 to Th2 shift does not occur in chronic hepatitis C.

Adult↗

Treatment with ribavirin and interferon-alpha reduces interferon-gamma expression in patients with chronic hepatitis C.

Recent studies in vitro and in animals have suggested that ribavirin may potentiate the antihepatitis C virus (HCV) activity of interferon-alpha (IFN-alpha) by up-modulating the production of T cell-derived cytokines, such as interleukin (IL)-2 and IFN-gamma, which play a key role in the cellular immune response against HCV. To study the immune-modulatory mechanisms of ribavirin further, cytokine production by activated T cells and circulating cytokine levels were studied by FACS analysis and ELISA testing in 25 patients with chronic hepatitis C unresponsive to IFN-alpha, before and after treatment with either ribavirin plus IFN-alpha or IFN-alpha alone. After 16 weeks of treatment, both the expression of IFN-gamma by activated T cells and the blood levels of IFN-gamma, were significantly reduced with respect to pretreatment values in patients treated with ribavirin and IFN-alpha but not in those undergoing treatment with IFN-alpha alone. The expression of IFN-gamma was significantly lower in patients that gained normal ALT levels with respect to those that did not. No modification of the expression of IL-2, IL-4 and IL-10 was found before and after treatment in either group of patients. In conclusion, the results of this study do not support up-modulation of IFN-gamma and IL-2 production as the mechanism by which ribavirin potentiates IFN-alpha anti HCV activity. In addition, our findings suggest that ribavirin may exert an anti-inflammatory effect and may help reducing IFN-gamma-driven T cell activation and liver damage.

Adjuvants, Immunologic↗

Human immunodeficiency virus type 1 infection modulates the interleukin (IL)-1beta and IL-6 responses of human macrophages to CD40 ligand stimulation.

Better understanding of the mechanisms of proinflammatory cytokine production during human immunodeficiency virus (HIV) type 1 infection is of pivotal importance. The effect of HIV-1 infection on recombinant CD40 ligand (CD40L)-induced interleukin (IL)-1beta and IL-6 production by human macrophages was analyzed. ELISA and cytofluorometric analysis demonstrated that CD40L stimulation of HIV-1-infected macrophages resulted in substantial production of IL-1beta and IL-6. In contrast, no cytokine response was observed in uninfected cells. No modulation of the receptor for CD40 was found to account for the enhanced response to CD40L. The CD40L effect was not due to lipopolysaccharide contamination and was completely abrogated by preincubation with a monoclonal anti-CD40L antibody. mRNA studies indicated that the priming effect of HIV-1 on the macrophage response to CD40L was regulated at the transcriptional level. Finally, the effect of HIV-1 on the cytokine response could not be abolished by the HIV-1 protease inhibitor U75875 at concentrations that completely suppressed HIV-1 replication.

Anti-HIV Agents↗

Granulocyte-macrophage colony-stimulating factor regulates cytokine production in cultured macrophages through CD14-dependent and -independent mechanisms.

Granulocyte-macrophage colony-stimulating factor (GM-CSF) has multiple effects on the antigen phenotype and function of macrophages. In this study we investigated the effect of GM-CSF on cytokine production by macrophages. We found that GM-CSF may modify the tumour necrosis factor-alpha (TNF-alpha) and interleukin-6 (IL-6) response to lipopolysaccharide (LPS) through two different mechanisms. Relatively early in culture, GM-CSF increases the amount of cytokines synthesized by responding cells; this effect appears to be unrelated to modulation of CD14 expression and LPS-binding capacity. After prolonged incubation, GM-CSF up-regulates both CD14 expression and LPS-binding capacity, and the frequency of cytokine-producing cells. Release of CD14 in the culture supernatant was decreased in the presence of GM-CSF, suggesting that a reduced shedding was responsible for the effect of GM-CSF on CD14 expression. Enhancement of cytokine production was also observed in GM-CSF-treated macrophages after stimulation by phorbol 12-myristate 13-acetate (PMA), thus indicating that GM-CSF affects both CD14-dependent and -independent cytokine production. Finally, GM-CSF did not modulate the LPS- and PMA-induced production of IL-10 and IL-12. We conclude that GM-CSF may play a role in manipulating the activation-induced expression of pro-inflammatory cytokines by macrophages. Enhanced production of these cytokines could play an important role in the pathogenesis of Gram-negative septic shock syndrome and in defence against infectious agents.

Cell Culture Techniques↗

Suppressor cell function in atopic dermatitis associated with elevated immunoglobulin E.

Suppressor cell function was evaluated in 11 patients with atopic dermatitis (AD) and elevated IgE levels (mean, 4,554 IU/ml +/- 1,825 SEM) and compared to 11 matched nonatopic controls (135 IU/ml +/- 52 SEM). Two assays were employed to evaluate suppressor cell function. In the first assay, concanavalin A--activated suppressor cell activity of AD and control subjects were compared. In the second assay, peripheral blood mononuclear cells (PBM) from the same AD and control subjects were stimulated with varying doses of mitogen at day 0 and after 24 hr of preculture. In this system, increased proliferative response of precultured cells as compared to 0-hr cells has previously been shown in normals to represent loss of suppressor cell function in vitro. The lack of such an increase implies aberrant suppressor cell function. The data from both assays showed no significant difference in the degree of suppressor cell function of the patient population vs the control population. Thus, suppressor cell function as tested in these proliferative assays appears normal in AD patients with increased IgE.

Cells, Cultured↗