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Biomedical subjects

G Poli

Publications and source records attributed to G Poli.

At least 127 records · Page 7Linked to original sources

Oxidative damage and fibrogenesis.

Various chronic disease processes are characterized by progressive accumulation of connective tissue under-going fibrotic degeneration. Evidence of oxidative reactions is often associated with fibrogenesis occurring in liver, lung, arteries, and nervous system. Moreover, an increasing bulk of experimental and clinical data supports a contributory role of oxidative stress in the pathogenesis of this kind of disease. Indeed, many etiological agents of fibrogenesis stimulate free radical reactions either directly or through inflammatory stimuli. Free radicals, as well as products of their reaction with biomolecules, appear to modulate the activity of the two cellular types mainly involved in the process, namely phagocytes and extracellular matrix-producing cells. Lipid peroxidation and certain lipid peroxidation products induce genetic overexpression of fibrogenic cytokines, the key molecules in the pathomechanisms of fibrosis, as well as increased transcription and synthesis of collagen. Both these events can be downregulated, at least in experimental models, by the use of antioxidants. The effect of oxidative stress on cytokine gene expression appears to be an important mechanism by which it promotes connective tissue deposition.

Animals↗

Oxidative damage and transforming growth factor beta 1 expression in pretumoral and tumoral lesions of human intestine.

The aim of this study was to evaluate a possible relationship between oxidative stress and transforming growth factor beta 1 (TGF beta 1) expression in human colon adenocarcinoma. Crohn's disease, an inflammatory pathology of the intestine often regarded to as precancerous, was also examined. Indices of impaired redox balance were monitored in blood and in bioptic samples from 10 adult patients with adenocarcinoma of the colon and from five patients with Crohn's disease. On tissue samples TGF beta 1 mRNA expression was also determined. Ten healthy adults provided normal reference values for plasma indices of oxidative stress, and normal tissue distant from the lesions was used for comparative analysis. Fluorescent adducts with plasma proteins of malonaldehyde (MDA) and 4-hydroxynonenal (HNE) were significantly lower than controls in the plasma from cancer patients and significantly higher in the plasma from Crohn's patients. In adenocarcinoma biopsies, susceptibility to lipid peroxidation processes and TGF beta 1 expression were below the relative control; in Crohn's disease, lipid peroxidation and cytokine expression were both above the relative control. The findings obtained suggest the existence of an association between oxidative damage and fibrogenic cytokine expression in the human intestine. Further studies are needed to conclusively prove the correlation between the two events.

Adenocarcinoma↗

The lipid peroxidation end product 4-hydroxy-2,3-nonenal up-regulates transforming growth factor beta1 expression in the macrophage lineage: a link between oxidative injury and fibrosclerosis.

An increasing number of reports underscore the frequent association of fibrosclerotic diseases of lung, liver, arterial wall, brain, etc., with the accumulation of oxidatively modified lipids and proteins. A cause-and-effect relationship has been proposed between cellular oxidative damage and increased fibrogenesis based on the fact that experimental treatment with antioxidants either prevents or quenches the fibrotic process. With some peculiarities in the different organs, fibrosclerosis is essentially the result of the interaction of macrophages and extracellular matrix-producing cells. The cross-talk is mediated by fibrogenic cytokines, among which the most important appears to be transforming growth factor beta1 (TGF-beta1). This report describes treatment of different types of macrophage, of both human and murine origin, with 4-hydroxy-2,3-nonenal (HNE) a major aldehyde end product of membrane lipid oxidation found consistently to induce both mRNA expression and synthesis of TGF-beta1. Since increased HNE levels have been demostrated in the cirrhotic liver and in the oxidatively modified low-density human lipoproteins associated with atherosclerosis, the up-regulation of macrophage TGF-beta1 by HNE appears to be involved in the pathogenesis of these and similar diseases characterized by fibrosclerosis.

Aldehydes↗

Expression of a long pentraxin, PTX3, by monocytes exposed to the mycobacterial cell wall component lipoarabinomannan.

PTX3 is a prototypic long pentraxin composed of a C-terminal domain similar to those of classical pentraxins (e.g., C reactive protein) and an unrelated N-terminal portion. PTX3 is expressed in a variety of cell types, notably mononuclear phagocytes and endothelial cells, after exposure to the inflammatory cytokines interleukin-1beta (IL-1beta) and tumor necrosis factor alpha (TNF-alpha). The present study was designed to assess whether mycobacterial components were able to induce expression and production of PTX3. Mycobacterial lipoarabinomannan (LAM) induced expression of PTX3 mRNA in human peripheral blood mononuclear cells. The non-mannose-capped version of lipoarabinomannan (AraLAM) was considerably more potent than the mannose-capped version ManLAM or the simpler version phosphatidylinositol mannoside. Among mononuclear cells, monocytes were responsible for LAM-induced PTX3 mRNA expression. Whole mycobacteria (Mycobacterium bovis BCG) strongly induced PTX3 expression. Pretreatment with actinomycin D abolished LAM-induced PTX3 expression, whereas cycloheximide only partially reduced the expression. LAM-induced PTX3 expression was associated with the production of immunoreactive PTX3. IL-10 and IL-13 did not inhibit the induction of PTX3 by LAM. Under the same conditions, these anti-inflammatory cytokines inhibited MCP-1 expression. In contrast, gamma interferon inhibited LAM-induced PTX3 expression. Thus, in addition to IL-1, TNF, and lipopolysaccharide, mycobacterial cell wall components also induce expression and production of the long pentraxin PTX3. The significance of PTX3 in the immunobiology of mycobacterial infection and its relevance in relation to clinical involvement remain to be determined.

Antigens, Bacterial↗

Effects of acute glutathione depletion induced by L-buthionine-(S,R)-sulfoximine on rat liver glucose-6-phosphatase activity.

The effect of acute glutathione (GSH) depletion induced by GSH-depleting agent L-buthionine-(S,R)-sulfoximine (BSO) on hepatic microsomal glucose-6-phosphatase (G6Pase) activity in male Wistar rats was investigated. Liver GSH evaluated in high-performance liquid chromatography after administration of 4 mmol.Kg-1 BSO i.p. was decreased by 19% and 50% at the time-points of 1.5 h and 3 h, respectively. In these conditions, a significant decrease in Vmax and an increasing trend in K(m) of hepatic G6Pase activity were observed, especially in 3 h BSO-rats. Alterations in kinetic parameters of G6Pase were calculated in both intact and detergent-treated microsomes, using glucose-6-phosphate and pyrophosphate as substrate. A little increase in thiobarbituric acid-reactive substances and a limited decrease in 5,5'-dithiobis(2-nitrobenzoate)-reactive protein thiols were also noted. The results of this study show that acute GSH depletion induced by BSO is able to affect hepatic microsomal G6Pase activity. A possible explanation to account for the effect of BSO-induced GSH depletion on hepatic G6Pase system is discussed.

Animals↗

Nuclear factor kB is activated by arachidonic acid but not by eicosapentaenoic acid.

The omega-6 arachidonic acid supplementation of the human promonocytic cell line U937 strongly stimulates the nuclear translocation of the transcription factor NF-kB. Inhibitors of arachidonate oxidative metabolism prevent NF-kB activation, indirectly indicating a role for prostaglandin and leukotriene metabolites in the genesis of this phenomenon. Of note, omega-3 eicosapentaenoic acid does not exert any effect on NF-kB DNA binding. In subsequent experiments, prostaglandin E2 consistently showed the ability to activate NF-kB in U937 promonocytic cells, as well as in J774 macrophages. NF-kB activation by arachidonate, together with the lack of effect by eicosapentaenoic acid, suggests a way to modulate the expression of certain genes by means of a suitable dietary n-6/n-3 fatty acid ratio.

Arachidonic Acid↗

A novel series of [2-[methyl(2-phenethyl)amino]-2-oxoethyl] benzene-containing leukotriene B4 antagonists: initial structure-activity relationships.

This report describes the synthesis of a new class of LTB4 receptor antagonists containing [2-[methyl(2-phenethyl)amino]-2-oxoethyl]benzene as a key binding domain for interaction with high-affinity LTB4 receptors. In addition to this binding domain, two other structural features, an acid function and a lipophilic group, are also required by these compounds for high binding affinity. Our studies indicate that maximal binding affinity in this series is controlled by the spatial relationship of these groups relative to one another. The structure-activity relationships are discussed. The most potent compound in this chemical series, (E)-5-[2-[methyl(2-phenethyl)-amino]-2-oxoethyl]-2-(benzyloxy)cinn amic acid (32), has an IC50 of 2 nM in a guinea pig spleen cell membrane assay. In the whole-cell human neutrophils binding assay, (Z)-5-[2-[methyl-(2-phenethyl)amino]-2-oxoethyl]-2-(benzyloxy)cinn amic acid (30) was the most potent compound with an IC50 of 50 nM.

Animals↗

Structure-activity relationships study of two series of leukotriene B4 antagonists: novel indolyl and naphthyl compounds substituted with a 2-[methyl(2-phenethyl)amino]-2-oxoethyl side chain.

N-Methyl-N-phenethylphenylacetamide has been reported to be a key binding domain to LTB4 receptors. Here we describe the synthesis and structure-activity relationship (SAR) studies of two new series of LTB4 receptor antagonists in which the phenyl ring of this receptor binding domain is replaced with indole and naphthalene, respectively. Results of these studies indicate that, in addition to the 2-[methyl(2-phenethyl)amino]-2-oxoethyl moiety, the presence of an acid group and a lipophilic side chain, as well as the spatial relationship of these three functions, is crucial for high binding affinity with LTB4 receptors. Our SAR studies also reveal that an arenecarboxylic acid, or an enoic acid in which the carboxyl group is conjugated with the central ring, is the preferred polar group. The lipophilic side chain of the naphthyl series was found to tolerate minor variations, ranging from a phenylmethoxy group to phenyl and alkyloxy groups. The most active compounds are 2-ethyl-3-[1-[2-[methyl(2-phenethyl) amino]-2-oxoethyl]-5-(phenylmethoxy)indol-3-yl]propenoic+ ++ acid (4g) of the indolyl series and 4-[2-[methyl(2-phenethyl)amino]-2-oxoethyl]-8-(phenylmethoxy )-2-naphthalenecarboxylic acid (2a) or the naphthyl series, with IC50 of 8 and 4.7 nM respectively, in the receptor binding assay using intact human neutrophils.

Acrylates↗

Simple and rapid procedure for the purification of lipoprotein(a).

Lipoprotein(a) [Lp(a)] is a low-density lipoprotein-like particle displaying strong athero-thrombotic properties. Highly purified Lp(a) is increasingly requested for standardization of Lp(a) measurements and for biological studies. Several procedures have been described for Lp(a) separation and purification but none of them appear completely suitable. We present here a procedure for Lp(a) purification based on sequential elutions after lysine-Sepharose affinity chromatography. We were able to identify four distinct subspecies of Lp(a) showing different affinity to epsilon-amino groups of lysine-Sepharose, simply by modifying molarity and pH of the eluents; the fraction obtained in highly purified state represented the major form and could be eluted with 0.5 M sodium phosphate buffer (pH 4.4). Advantages of this procedure are represented by simplicity, rapidity and final yield.

Chromatography, Affinity↗

Induction of procollagen type I gene expression and synthesis in human hepatic stellate cells by 4-hydroxy-2,3-nonenal and other 4-hydroxy-2,3-alkenals is related to their molecular structure.

4-Hydroxy-2,3-nonenal (HNE) has been shown to induce procollagen type I gene expression and synthesis in hepatic stellate cells (HSC), i.e. the cells responsible for deposition of collagen and other extracellular matrix proteins in fibrotic liver. Here we report that the stimulatory effect of HNE mostly depends on the contemporary presence of the hydroxyl group in position C4 and of the double bond between position C2 and C3 since equimolar concentrations of 2,3-nonenal as well as of nonenal did not procollagen type I synthesis either at mRNA or at protein levels. Accordingly to this concept, all the other 4-hydroxy-2,3-alkenals of different chain length tested on cultured human HSC (4-hydroxy-2,3-hexenal, 4-hydroxy-2,3-octenal and 4-hydroxy-2,3-undecenal) strongly induced procollagen type I gene expression and synthesis. The stimulatory effect of 4-hydroxy-2,3-alkenals may depend on the well known ability of these aldehydes to react with either SH-groups or NH2-groups of functional proteins.

Aldehydes↗

Modulation of endogenous IL-1 beta and IL-1 receptor antagonist results in opposing effects on HIV expression in chronically infected monocytic cells.

A proportion of HIV-infected individuals experience episodes of localized or systemic bacterial infections caused by Gram-negative bacteria. Many of the clinical side effects of these infections are associated with the production of proinflammatory cytokines, which are induced primarily by LPS, a constituent of the bacterial cell wall of Gram-negative bacteria. The present study examines the mechanisms involved in LPS-mediated induction of HIV expression in U1 cells, a promonocytic cell line chronically infected with HIV. Stimulation of U1 cells by LPS alone induced minimal levels of HIV expression, which was significantly enhanced by granulocyte-macrophage colony-stimulating factor (GM-CSF). Costimulation of U1 cells with LPS plus GM-CSF resulted in the accumulation of steady-state levels of HIV RNA; however, only a weak induction of HIV long terminal repeat-driven transcription, which was not associated with the activation of the cellular transcription factor nuclear factor-kappa B, was noted. Costimulation of cells with LPS plus GM-CSF induced the production of proinflammatory cytokines, IL-8, IL-1 beta and IL-6, but not TNF-alpha. IL-1 receptor antagonist (ra) inhibited LPS enhancement of HIV expression in GM-CSF-stimulated cells, suggesting that endogenous IL-1 was involved in LPS-mediated viral production. In this regard, anti-inflammatory cytokines inhibited LPS plus GM-CSF-stimulated HIV expression, and this effect closely correlated with inhibition of IL-1 beta release and, in particular, with up-regulation of endogenous IL-1ra production. Thus, the balance between an endogenously produced viral inducer (IL-1 beta ) and an inhibitor (IL-1ra) may represent an important pathway leading to modulation of HIV expression from monocytic cells.

Antiviral Agents↗

Effects of ethanol metabolism on PKC activity in isolated rat hepatocytes.

Isolated rat hepatocytes were exposed to increasing concentrations of ethanol. During exposure of cells to ethanol a moderate but significant modification in the level of hepatic PKC c-isoforms has been observed. The ethanol-induced effect on liver protein kinase C was reversed by 4-methylpyrazole, an inhibitor of alcohol dehydrogenase, indicating that the conversion of ethanol to acetaldehyde may be involved in the enzyme inactivation. The involvement of the alcohol metabolite in PKC modifications was confirmed by the exposure of hepatocytes or partially purified liver enzyme to acetaldehyde concentrations of pathological interest.

Acetaldehyde↗

Cytokines and soluble receptor changes in the transition from primary to early chronic HIV type 1 infection.

We studied determinants of chronic inflammation and/or immune activation in plasma from patients in the transition from primary to early chronic HIV-1 infection. The following parameters were estimated in seven patients over time: plasma concentrations of soluble CD8 (sCD8), tumor necrosis factor alpha (TNF-alpha), soluble TNF receptor type II (sTNFRII), interleukin 6 (IL-6), soluble IL-6 receptor (sIL6R), IL-10, transforming growth factor beta1 (TGF-beta1), along with CD4- and CD8-positive T cell counts, p24 antigenemia, and clinical evaluation. Results showed that concentrations of sCD8, TNF-alpha, and sTNFRII, and peripheral CD8-positive lymphocyte counts, were significantly increased in patients, compared to HIV-negative controls, and showed a trend toward normal values over time. Levels of IL6, sIL6R, IL-10, and TGF-beta1 did not differ from those of controls and did not change over time. Heterogeneity was observed among the patients in terms of CD4-positive T cell depletion, levels of sCD8, concentrations of TNF-alpha/sTNFRII, and clinical outcome. These data indicate that in the transition phase from primary acute to chronic and asymptomatic infection the host immune activation in response to the virus is highly heterogeneous and that the sustained rise in TNF-alpha and its receptor may represent an important therapeutic target in early disease. The persistence of a state of chronic inflammation and/or immune activation could influence the progression of disease independently from CD4-positive T cell counts.

Adult↗

In vivo potentiation of 1,2-dibromoethane hepatotoxicity by ethanol through inactivation of glutathione-s-transferase.

In the rat, a single ethanol (EtOH) pretreatment (2.5 g/kg b.w., per os) was able to strongly enhance the cytotoxicity of 1,2-dibromoethane (DBE)(87 mg/kg b.w., per os). The principal metabolic routes of DBE involve both oxidative and conjugative transformations. Microsomal cytochrome P450 content and dimethyl nitrosamine demethylase activity were not changed, while a significant loss of cytosolic total GSH-transferase was observed in rats killed 6 h after EtOH pretreatment. Pretreatment with methylpyrazole, an inhibitor of alcohol-dehydrogenase prevented the effects provoked by ethanol. The major EtOH metabolite, acetaldehyde. seemed thus to play a fundamental role in the mechanism responsible for the potentiation of DBE toxicity mediated by EtOH. To further support this hypothesis, disulfiram (75 mg/kg b.w.), an inhibitor of aldehyde dehydrogenase, was given i.p. to rats. When DBE was administered to disulfiram- and EtOH-pretreated rats, a marked increase of liver cytolysis was shown and cytosolic GSH-transferase activity was further inhibited if compared to that induced by EtOH treatment alone. The results are consistent with the hypothesis that EtOH given to rats increases DBE liver toxicity because its major metabolite, acetaldehyde, reduces the DBE conjugates to GSH transferase, with consequent shift of DBE metabolism to the oxidative route and accumulation of reactive oxidative intermediates no longer effectively conjugated with GSH.

Alcohol Dehydrogenase↗

Reperfusion damage to the bile canaliculi in transplanted human liver.

In 19 patients who have undergone orthotopic liver transplantation (OLT), the trend and degree of cholestasis was statistically monitored in terms of plasma levels of L-gamma-glutamyl transferase (GGT) and total bilirubin. In addition, the ultrastructure of the bile canaliculus was examined during the entire OLT procedure, i.e., during explantation, cold ischemia, and after 60 to 90 minutes of organ reperfusion. Cholestasis was evident from the second day after surgery, with a peak after approximately 10 to 16 days. Defined, small changes in the functional state of actin filaments were noted in the bile canalicular area after prolonged ischemia. But the morphological status of the bile canaliculi changed dramatically after reperfusion. In fact, the mean area and perimeter of the canaliculi had increased significantly, and there was a marked loss in the number of bile microvilli per unit of canalicular area. The bile canaliculus appears to be one of the liver structures most susceptible to ischemia-reperfusion damage. A series of biochemical changes occurring during ischemia and after reoxygenation of the transplanted liver, especially, would provide a reason for the observed early morphological damage of the bile canaliculus, which, in turn, would explain the cholestasis of these patients in the first posttransplantation period.

Adenosine Triphosphate↗

Reactivity of monoclonal antibodies of the B cell panel on PBM from BLV-infected and lymphocytotic cows.

The monoclonal antibodies included in the B cell panel of the Third Workshop on Ruminant Leukocyte Antigens were tested by flow cytometry for their reactivity with peripheral blood mononuclear cells (PBM) from normal, BLV (bovine leukemia virus)-infected but non-lymphocytotic and lymphocytotic cows. Three MoAbs probably detected pan-B cell antigens. They detected an increase in the B/T cell ratio in peripheral blood from lymphocytotic cattle. However, no changes were observed in the surface phenotypes of B cells from infected animals with MoAbs of the workshop panel.

Animals↗

On the role of lipid peroxidation in the pathogenesis of liver damage induced by long-standing cholestasis.

Previous studies have suggested a possible involvement of free radical reactions in the pathogenesis of cholestatic liver injury as well as in the modulation of hepatic fibrogenesis. In this study we investigated whether lipid peroxidation is involved in the development of chronic liver damage induced by long-standing cholestasis. For this purpose we have used the rat model of bile duct ligation (BDL), which leads to liver fibrosis and cirrhosis. Using this model we observed that the development of chronic liver damage was associated with the onset of lipid peroxidation, as pointed out by detection of carbonyl compounds, 4-hydroxynonenal (HNE) and malondialdehyde (MDA), in BDL livers and of fluorescent adducts between MDA and serum proteins. Lipid peroxidation was a relatively late event (starting after 1-2 weeks of BDL) and was unrelated to the early development of liver necrosis and cholestasis (already evident after 72 h after BDL). A positive significant linear correlation between the kinetic of infiltration of neutrophils and of a monocyte/macrophage population in BDL livers and MDA and HNE generation in the same organs is presented, indicating a close link between lipid peroxidation and the activation of inflammatory cells. We also observed that a positive linear correlation exists between collagen deposition in these livers and hepatic production of MDA and HNE. This event, which is accompanied by an increase in the number of fat storing cells (FSC, the cells that produce collagen in fibrotic liver), suggests that lipid peroxidation in this model may contribute to stimulate collagen synthesis by proliferating FSC.

Alanine Transaminase↗

Selective elevation of monocyte chemotactic protein-1 in the cerebrospinal fluid of AIDS patients with cytomegalovirus encephalitis.

The CC chemokine monocyte chemotactic protein-1 (MCP-1) was markedly elevated in the cerebrospinal fluid (CSF) of human immunodeficiency virus (HIV)-infected patients with cytomegalovirus (CMV) encephalitis. The MCP-1 CSF levels in CMV encephalitis were markedly higher than those in the CSF of HIV-infected patients with or without unrelated neurologic diseases, including progressive multifocal leukoencephalopathy, cryptococcal meningitis, toxoplasmic encephalitis, and primary lymphoma. Interleukin-8, RANTES, macrophage inflammatory protein (MIP)-1 alpha, and MIP-1 beta were not substantially increased in the CSF of CMV encephalitis patients. High levels of MCP-1 may underlie monocyte recruitment and tissue damage in CMV encephalitis and may represent a rapid and useful tool in the diagnostic armamentarium for neurologic disorders associated with HIV infection.

AIDS-Related Opportunistic Infections↗