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Biomedical subjects

G Poli

Publications and source records attributed to G Poli.

At least 235 records · Page 13Linked to original sources

Use of computerized digital thermometry for diagnosis of Raynaud's phenomenon.

The authors have used computerized digital thermometry for the instrumental diagnosis of Raynaud's phenomenon; such a technique enables them to evaluate the temperature of the ten fingers of the hands separately in baseline conditions, during and after the "cold test." In baseline conditions the mean digital skin temperature was 31.2 degrees C (SD 1.67) in control subjects and 26.8 degrees C (SD 2.84) in patients suffering from Raynaud's phenomenon (p less than 0.001). During the cold test the mean skin temperature decreased to 12.7 degrees C (SD 1.94) in control subjects and to 13.0 degrees C (SD 1.67) in patients (p = n.s.). The mean final skin temperature, at the end of the recovery period after the cold test, was 31.1 degrees C (SD 1.76) in controls and 21.9 degrees C (SD 2.78) in patients (p less than 0.001). The sensitivity of the computerized digital thermometry was high (63.6% and 92.7% for basal and final temperature, respectively), while the specificity was 100% for both values. In conclusion, computerized digital thermometry is a useful technique for the diagnosing and quantifying the extent of Raynaud's phenomenon.

Adult↗

Efficient macrophage isolation of human immunodeficiency virus from peripheral blood leukocytes from healthy seropositive individuals: implications for cell tropism.

We investigated the efficiency of HIV isolation from the PBL of 23 healthy, HIV-seropositive individuals with high (600-700/mm3) CD4+ T cell counts. Cocultivations of patients' PBL with allogeneic T lymphocyte blasts or monocytes were performed. T lymphocyte blasts allowed recovery of 4/23 (17%) HIV isolates, whereas monocytes allowed recovery of 12/23 (52%) isolates. Monocyte cultures sustained release of viral antigen for up to 70 days. Nine of the viral isolations could be accomplished only with this monocyte coculture technique. To determine the in vivo source of the macrophage-tropic HIV isolates we separated PBL from 5 of these 9 patients into T lymphocyte and monocyte fractions by cell sorting; then, we analyzed the fractions by PCR to amplify HIV proviral DNA. In 4 out of 5 patients studied HIV-1 proviral DNA was detected only in T lymphocytes but not in monocytes, although the virus was isolated exclusively by monocyte coculture technique. In the remaining patient, HIV DNA was found to be present in both T cells and monocytes. Thus, HIV can be more efficiently isolated in healthy seropositive individuals by coculture of their PBL with normal monocytes rather than T cell blasts. Of note, the most common in vivo source of viral isolates which preferentially infect monocytes in vitro ("macrophage-tropic strains") is the circulating CD4+ T lymphocyte.

Cells, Cultured↗

Carbon tetrachloride-induced inhibition of protein kinase C in isolated rat hepatocytes.

Isolated rat hepatocytes exposed to CCl4 showed a dramatic decrease in [32P] incorporation into proteins which was evident as early as 5 min after the haloalkane addition. DEAE cellulose separation of protein kinases present in both particulated and cytosolic fractions of hepatocytes revealed that only the calcium and phospholipids dependent protein kinase C was affected by the treatment with CCl4, while kinases not requiring these factors for their activity were unmodified. Several 4-hydroxyunsaturated aldehydes known to be produced during CCl4-stimulated lipid peroxidation were found to inhibit protein kinase C at micromolar concentrations, suggesting the possibility that peroxidative events might be responsible for the impairment of protein kinase C during CCl4 intoxication.

Aldehydes↗

Characterization of a promonocyte clone chronically infected with HIV and inducible by 13-phorbol-12-myristate acetate.

The present study has investigated the effect of PMA, an inducer of monocyte differentiation, on HIV expression in a chronically infected promonocyte clone. After acute HIV infection of U937 cells, clones that constitutively expressed varying levels of HIV were isolated by limiting dilution. One clone (U1) produced low levels of HIV but was found to increase its production 20-fold after PMA induction, as detected by reverse transcriptase or A capture. Further characterization of U1 indicated that PMA could induce cellular differentiation and maturation in the clone similar to that in uninfected U937 cells. In addition, functional studies revealed that superoxide anion production from the U1 clone was not different from that of uninfected U937 cells. Electron microscopic studies of U1 indicated that PMA induced endocytotic vesicles containing many HIV particles. These studies provide a model at the clonal level to 1) examine latency or chronicity of HIV infection in monocytes and 2) delineate the signals required for conversion to high level viral expression.

Cell Differentiation↗

Metabolism of 4-hydroxynonenal by the rat hepatoma cell line MH1C1.

The metabolism of the toxic lipid peroxidation product 4-hydroxynonenal was investigated in the well-differentiated rat heptoma cell line MH1C1. When exposed to 0.1 mM 4-hydroxynonenal (HNE), MH1C1 cells consumed it in a time-dependent manner. There was a linear relationship between the amount of aldehyde consumed and cell number in the range 0.5 - 4 X 10(6) cells ml-1. This process was unaffected by pyrazole, suggesting that alcohol dehydrogenase is not involved. The whole homogenate of MH1C1 cells consumed added HNE at a rate similar to that in intact cells. Fractionation of the homogenate showed that the highest HNE-metabolizing activity is in the cytosol. The dialysed cytosol had almost no capacity to metabolize HNE, but this was restored by supplementation with NAD, NADH, NADP and NADPH. The metabolism of HNE in MH1C1 cells is thus different from that in hepatocytes, which were shown to utilize cytosolic alcohol dehydrogenase for this process. Both reductive and oxidative pathways could be implicated in the metabolic activity of MH1C1 cells towards HNE as well as binding by glutathione.

Aldehydes↗

Short-term effects of carbon tetrachloride on the lipoprotein secretion in isolated rat hepatocytes.

Short-term exposure of isolated rat hepatocytes in suspension to a low dose of CCl4 (20 micrograms/ml) leads within minutes to characteristic structural alterations. The earliest reaction is a disappearance of the microvilli border 5 min after starting the incubation. After 10 min the number of Golgi VLDL is decreased by about 80% and reaches zero after 20 min. The reduction in Golgi VLDL is associated with a decrease in the volume density of the Golgi complexes by about 50% compared with controls and by a marked elevation of intracytoplasmic and intralysosomal lipid deposits after 20 min incubation. Concomitantly with these alterations the total number of VLDL particles within single and multiple particle secretory vesicles located along the cell periphery decreases by about 50% 10 min after CCl4 exposure. This is followed 10 min later by a significant increase of about 20% compared with the corresponding controls. The elevation in the total number of VLDL is combined with an increase in the number of the multiple particle secretory vesicles. The particle content per vesicle, however; is significantly lower compared with controls. No reaction is detectable in the mitochondria, whereas the amount of RER appears to be decreased and that of the SER increased. The incubation of 14C-sodium palmitate prelabeled hepatocytes in the presence of CCl4 leads to a significantly higher content of labeled lipids in the total Golgi fraction and in the cytosol 20 min after CCl4 administration, whereas considerably less labeled lipids are secreted into the incubation medium.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Defective chemotaxis of human alveolar macrophages.

Human pulmonary alveolar macrophages (PAM) from normal subjects, unlike peripheral blood monocytes (PBM), are unable to migrate in response to various chemoattractants, such as C5a,f-Met-Leu-Phe (fMLP) and phorbol myristate acetate (PMA). Inflammatory PAM obtained from sarcoid patients also failed to exhibit a chemotactic response. Binding studies using [3H]PDBU demonstrate high affinity receptors for phorbol esters on PAM surface, in a comparable amount (1.5-2.4 X 10(6) receptors/cell) to PBM (8-15 X 10(5) receptors/cell). Moreover, PAM were comparable to PBM in terms of superoxide anion (O2-) release in response to PMA. Therefore, the defective locomotory response of PAM cannot be accounted for by lack of chemoattractant receptors, at least for phorbol esters. Worthy of note, PMA receptors on PAM are able to transduce activating signals for O2- generation. These findings show that competence for chemotaxis is heterogeneously distributed among mononuclear phagocytes.

Antigens, Surface↗

Free radical metabolism of alcohols by rat liver microsomes.

By using e.s.r. spectroscopy coupled with the spin trapping technique we have detected the formation of free radical intermediates by rat liver microsomes incubated with either ethanol, 2-propanol or 2-butanol in the presence of a NADPH regenerating system and 4-pyridyl-l-oxide-t-butyl nitrone (4-POBN) as spin trap. The e.s.r. spectra have been identified as due to the hydroxyalkyl free radical adducts of 4-POBN. The free radical formation depends upon the activity of the microsomal monoxygenase system and is blocked by omitting NADP+ from the incubation mixture, by anaerobic incubation or by enzyme denaturation. The involvement of hydroxyl radicals (OH.) produced through a Fenton-type reaction from endogenously formed hydrogen peroxide is suggested by the opposite effects exerted on the e.s.r. signal intensity by azide and catalase. Consistently, iron chelation by desferrioxamine inhibits the free radical formation, while the supplementation of EDTA-iron increases it by several fold. Inhibitors of cytochrome P450-dependent monoxygenase system reduce to various extents the production of free radical intermediates suggesting that reactive oxygen species might be formed at the active site of cytochrome P450 where they react with alkyl alcohol molecules. The data presented support the hypothesis that free radical species are generated during the microsomal metabolism of alcohols and suggest the possibility that ethanol-derived radicals might play a role in the pathogenesis of the liver lesions consequent upon alcoholic abuse.

1-Propanol↗

Electron spin resonance studies on isolated hepatocytes treated with ferrous or ferric iron.

Isolated rat hepatocytes incubated with iron salts in the presence of the spin trapping agent alpha-4-pyridyl-l-oxide N-tert-butyl nitrone (4-POBN) generate a clear electron spin resonance signal; this signal is not detectable in the absence of exogenous iron. The hyperfine splitting constants are identical whether ferrous or ferric iron is used. The free radical trapped does not appear to be an active oxygen species but rather a carbon-centred radical, which we here ascribe to a lipodienyl radical on the basis of its hyperfine splitting features. Support to this interpretation is lent by the fact that no such radical could be generated in hepatocytes fully protected against lipid peroxidation by pretreating the donor rats with alpha-tocopherol.

Animals↗

Pro-hemolytic effect of aldehydic products of lipid peroxidation.

In order to evaluate the pro-hemolytic action exerted by different classes of biogenic aldehydes, normal red cells obtained from human beings of both sexes were incubated at 37 degrees C under iso or hypo-osmotic conditions in the presence of hydroxyalkenals or alkanals, in a concentration compatible with those actually recovered during red cell lipid peroxidation. None of the tested aldehydes showed a direct hemolytic effect, i.e. red cell lysis in iso-osmotic conditions. Conversely, almost all assayed alkanals and hydroxyalkenals exhibited a pre-lytic damage of human erythrocytes, as detected in the red cells suspended in hypo-osmotic medium. The highest pro-hemolytic effect was displayed by hexanal, nonanal, 2-nonenal and 4-hydroxynonenal.

Aldehydes↗

Inhibition of liver Golgi glycosylation activities by carbonyl products of lipid peroxidation.

The present report deals with the investigation of the effect of 4-hydroxy-trans 2,3-nonenal (HNE), hexanal (HEX) and malondialdehyde (MDA), the major products of lipid peroxidation, on the glycosylation pathway of rat liver Golgi apparatus. Defined concentrations of the aldehydes were added to isolated fractions of formative (F3) and secretory (F1 + F2) Golgi compartments, then incubated at 37 degrees C for 10 min. At the end of the incubation the activity of galactosyl-(GT) and sialyl-(ST)transferases, the main enzymes of the terminal protein and lipoprotein glycosylation, was evaluated. A significant impairment of both these activities was observed with HNE and HEX but not with MDA. These data suggest that aldehydes generated during peroxidation reactions are able to impair the protein and lipoprotein maturation mechanism which is normally achieved through a complete glycosylation.

Aldehydes↗

Possible role of aldehydic lipid peroxidation products as chemoattractants.

Previous studies showed that the lipid peroxidation product 4-hydroxy-trans-2-nonenal (HNE) stimulates the rat neutrophil oriented migration in vitro within a micromolar range. Its effect is weak with respect to other known chemoattractants, but highly significant on the basis of a two-way analysis of variance. Other hydroxyalkenals were found to be chemotactic within a pico-micromolar range, and their chemotactic power was not correlated to their lipophilicity. The structural requirements for the chemotactic activity of the hydroxyalkenals were studied by testing the influence of alkanals and 2-alkenals on oriented migration. Alkanals are lacking both the trans double-bond and the hydroxy group, while 2-alkenals are lacking only the hydroxy group. The 2-alkenals (2-octenal, 2-nonenal) were found to be chemotactic, whereas alkanals (hexanal, octanal, nonanal) were ineffective. Therefore the chemotactic activity of the aliphatic aldehydes is dependent on the -C = C-CHO part of their molecule. The possibility that unsaturated aliphatic aldehydes are present in an inflammatory site at a concentration at which they are chemotactic in vitro was also investigated. Carbonyls in pleural exudates were analysed at different times after a pleurisy induction and HNE was detected both in the cells and in the cell-free supernant of the exudate at increasing concentrations during the 4 hours of the experiment. The exact source of HNE is unknown, but since HNE has been identified among the degradation products of peroxidized lipids it is likely that this aldehyde is formed consequent on lipid peroxidation reactions which occur at the phlogistic site. The possibility that HNE is involved, at least in part, in the recruitment of neutrophils in the inflammatory area is suggested.

Aldehydes↗

Resistance to oxidative stress by hyperplastic and neoplastic rat liver tissue monitored in terms of production of unpolar and medium polar carbonyls.

The susceptibility of rat liver tissue to oxidative stress during its neoplastic transformation was analyzed by both qualitative and quantitative measurements of the carbonyl products of lipid peroxidation. Diethylnitrosamine was used as initiating agent of hepatocarcinogenesis and lipid peroxidation levels were monitored in the homogenates from normal liver, hyperplastic nodules and tumour, incubated in the presence or in the absence of ascorbate or adenosine diphosphate-iron complex. While the basal levels of lipid peroxidation in the three experimental conditions were found to be quite similar, in the presence of the pro-oxidant stimulus a remarkable reduction in aldehyde production was shown not only by the hepatoma tissue but also by the preneoplastic nodules.

Aldehydes↗

Rapid killing of actinomycin D-treated tumor cells by mononuclear phagocytes: characterization of effector cells in mice.

Pretreatment with Actinomycin D (Act D, 1 microgram/ml for 3 hr) rendered WEHI 164 tumor cells susceptible to killing by mouse resident or peptone-induced peritoneal exudate cells (PEC) in a 6-hr 51Cr release assay. Cytotoxicity was attributed to cells of the monocyte macrophage lineage on the basis of tissue distribution, separation by adherence on plastic and carbonyl iron, membrane antigens, and expression in mice with defective T cell- or NK cell-mediated immunity. Macrophages from four strains of mice (C3H/HeJ, A/J, P/J, C57B1/10 ScCR) previously shown to have defective "classical" nonspecific tumoricidal activity were examined for killing of Act-D-treated WEHI 164 cells. C3H/HeJ peritoneal macrophages had little or no DDCC, whereas cells from A/J, P/J, and C57B1/10 ScCR mice had normal levels of this reactivity. Tumor cells exposed to ActD were heterogenous in their susceptibility to killing by PEC, with five lines showing significant, though variable, lysis, whereas 12 tumor lines, normal fibroblasts, and lymphoblasts were not appreciably killed under the same conditions. Macrophage-mediated DDCC was also detectable in a colony assay. DDCC could explain how macrophages contribute to the antitumor activity of selected chemotherapeutic agents in murine tumor models.

Animals↗