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Biomedical subjects

M A Amoruso

Publications and source records attributed to M A Amoruso.

At least 19 recordsLinked to original sources

Evaluation of the genetic toxicity of middle distillate fuels.

Petroleum middle distillate (PMD) fuels are mixtures of hydrocarbons that distill between approximately 170-370 degrees C. Commercial products that fall into this category include kerosine, diesel fuel, jet fuel, and home heating oil. These products contain both saturated (paraffins and cycloparaffins) and aromatic species, but because of the boiling range normally contain very small amounts of the 3-6 ring polycyclic aromatic hydrocarbon (PAH) constituents, which are considered to be carcinogenic. Nevertheless, there is evidence of weak tumorigenic activity when these materials are repeatedly applied to mouse skin. In the current studies representative products were tested in two commonly used, short-term assays for genetic toxicity, the Salmonella/mammalian microsome mutagenicity assay and the mouse bone marrow micronucleus test. All samples were inactive in the micronucleus assay, and three were clearly inactive in the Salmonella test. Of the remaining two, one was marginally active in the Salmonella assay, and one was equivocal. The marginally active sample contained detectable levels of PAH due to the use of catalytically cracked materials as blending stocks. The results indicated that PMDs that do not contain cracked material were not mutagenic. Thus they may produce tumors via nongenotoxic processes. Those products that do contain cracked stocks may have sufficient PAH to be mutagenic in the Salmonella assay, and in those cases the PAH might also contribute to tumor formation.

Analysis of Variance

Screening petrochemicals for contact hypersensitivity potential: a comparison of the murine local lymph node assay with guinea pig and human test data.

Over the last few years, the Murine Local Lymph Node Assay (MLLNA) has received considerable attention as a more quantitative, less expensive alternative to the guinea pig assays currently employed to identify potential human contact allergens. At this time, several companies are involved in both independent and joint efforts to validate the MLLNA with their products. This report describes the preliminary results of an Exxon-sponsored research effort to validate the assay with selected materials that are representative of our company's diverse chemical and petroleum product groups. Nine test materials were chosen for which there already existed guinea pig and/or human patch sensitization data. When the MLLNA results were compared to those data obtained from currently used predictive tests (guinea pig, human patch test), the MLLNA showed good agreement for moderate and strong sensitizers. However, the assay may be prone to the potential confounding effects of irritation (false positives), may be insensitive to weak sensitizers, and may be influenced by vehicle selection.

Animals

Pulmonary bioavailability and fine particle enrichment of 2,3,7,8-tetrachlorodibenzo-p-dioxin in respirable soil particles.

The pulmonary bioavailability of 2,3,7,8-tetrachlorodibenzo-p-dioxin (TCDD) and the enrichment of polychlorinated dioxins (PCDDs) and furans (PCDFs) in fine particles were evaluated to assess the implications that these factors have on risk and exposure assessments. Respirable subfractions of PCDD-contaminated soil from a former 2,4,5-trichlorophenoxyacetic acid manufacturing site were isolated by chemical dispersion and gravity sedimentation. Analysis of the subfractions revealed that there was a size-dependent enrichment of PCDDs and PCDFs, with smaller particles more highly contaminated. TCDD was enriched up to 33-fold as compared to unfractionated soil. Soil and laboratory-recontaminated gallium oxide, which served as the positive control, were administered by intratracheal instillation to female Sprague-Dawley rats. Animals were terminated up to 28 days following treatment and pulmonary bioavailability of TCDD was assessed by hepatic enzyme induction and TCDD concentration. Enzyme induction was dependent on the duration of exposure with up to 56 and 918% increases in cytochrome P450 and aryl hydrocarbon hydroxylase (AHH) activity, respectively, following exposure to PCDD-contaminated soil. There was no significant difference in AHH induction between animals which received contaminated soil and those treated with the positive control. Hepatic concentration of TCDD in soil-exposed rats was 115, 101, and 179% of positive controls at 1, 7, and 28 days post-treatment, suggesting that the soil or cocontaminants influenced retention of TCDD in the liver. These data indicate that the relative pulmonary bioavailability of TCDD on respirable soil particles is 100% as compared to laboratory-recontaminated gallium oxide and that PCDDs and PCDFs are highly enriched on respirable particles.(ABSTRACT TRUNCATED AT 250 WORDS)

Administration, Inhalation

Hepatic aryl hydrocarbon hydroxylase and cytochrome P450 induction following the transpulmonary absorption of TCDD from intratracheally instilled particles.

Inhalation of particles contaminated with 2,3,7,8-tetrachlorodibenzo-p-dioxin (TCDD) will be an increasingly important route of human exposure in light of the increased utilization of municipal waste incineration and the resultant emission of contaminated materials into the environment. The potential for pulmonary absorption of the compound from respirable particles was assessed in the present study following the intratracheal instillation of TCDD (1) as a contaminant of gallium oxide particles and (2) in a corn oil vehicle. Groups of five female Sprague-Dawley rats received 0, 0.005, 0.055, 0.55, or 5.5 micrograms/kg TCDD in a single instillation and were euthanized 4 days later. Absorption was characterized by enzyme induction [aryl hydrocarbon hydroxylase (AHH) activity and total cytochrome P450] and histopathological examination of the liver. Induction of hepatic enzymes was dose-dependent with both treatment regimes. Up to an 18-fold increase in AHH and an 80% increase in cytochrome P450 were observed in treated animals. Induction was slightly higher when animals received TCDD in corn oil than when animals received TCDD-contaminated particles and was relatively comparable to induction following oral exposure. Similar results were obtained when animals were treated with particles contaminated up to 4 weeks prior to instillation. Characteristics of TCDD-induced hepatotoxicity, including enlarged hepatocytes and fatty infiltration, were apparent in treated rats, but were not present in vehicle-instilled animals. These results indicate that systemic effects occur following pulmonary exposure to TCDD and that inhalation may be an important route of exposure for TCDD.

Absorption

Activation of neutrophil collagenase by cathepsin G.

Collagenase is secreted from neutrophils as a latent or proenzyme. In an effort to understand the mechanism of collagenase activation in inflammation, human peripheral neutrophils (PMNs) were isolated and incubated with the tumor promotor, phorbol myristate acetate (PMA), which induces the neutrophils to degranulate and secrete proteinases. Neutrophil media were then treated with various activators or inhibitors of collagenase and other proteinases, and the collagenase activity was measured. A serine proteinase secreted from neutrophils, cathepsin G, was found to activate latent collagenase, but it was also found to require activation itself. Both hypochlorous acid (HOCl) and oxidized glutathione (GSSG) were tested for their collagenase-activating ability and were found to be successful only in the presence of active cathepsin G. A specific cathepsin G inhibitor (0.5 mM Z-Gly-Leu-Phe-CH2Cl) prevented the activation of latent collagenase by HOCl. To confirm these results, purified neutrophil cathepsin G was incubated with a neutrophil proteinase mixture which contained latent collagenase. The collagenase was shown to be activated upon incubation with purified cathepsin G. These results indicate that cathepsin G is a key mediator in neutrophil collagenase activation.

Animals

Inhalation of ozone produces a decrease in superoxide anion radical production in mouse alveolar macrophages.

The potentiation of fatal bacterial pneumonia in mice by prior inhalation of ozone occurs at levels of this oxidant pollutant that are frequently present in ambient air. A likely mechanism for this effect is an ozone-induced inhibition in the ability of pulmonary alveolar macrophages (PAM) to produce superoxide anion radical (O2-) demonstrated in the present study. A 25% decrease in PAM O2- production, as measured by nitroblue tetrazolium reduction, occurred after exposure of Swiss-Webster mice to 0.11 ppm ozone for 3 h (p less than 0.05). After 1 ppm there was almost complete inhibition of O2- release. In contrast, the rat, which is highly resistant to the potentiation of bacterial infections by ozone, was less sensitive to inhibition of PAM O2- production, as measured by cytochrome c reduction (mouse IC50, 0.41 ppm; rat IC50, 3.0 ppm ozone for 3 h). The observed decrement in mouse PAM O2- production was not associated with any change in phagocytic ability, as measured by both latex bead ingestion and 51Cr-labeled sheep red blood cell ingestion. This decrease in O2- production in the presence of normal phagocytic activity is analogous to certain of the findings in the neutrophils of children with chronic granulomatous disease. A decrease in rat PAM membrane cytochrome b558 levels was observed after ozone exposure of 3 ppm for 3 h, preliminarily suggesting that the mechanism by which ozone interferes with PAM O2- production may be through interaction with this heme-containing electron carrier.

Administration, Inhalation

Inhibition by reactive aldehydes of superoxide anion radical production from stimulated polymorphonuclear leukocytes and pulmonary alveolar macrophages. Effects on cellular sulfhydryl groups and NADPH oxidase activity.

Alpha,beta-unsaturated aldehydes such as acrolein (ACR) and crotonaldehyde (CRO) have been shown previously in our laboratory to inhibit the production of superoxide anion radical (O2-) by stimulated phagocytic cells in vitro in a dose-related manner. Based on the known reactivity of these compounds towards cellular sulfhydryls (SH), the present studies were aimed at investigating cellular SH status in relation to O2- production. Plasma membrane surface SH groups were measured using carboxypyridinedisulfide and monitoring the resultant formation of mixed disulfides through assay of thione released into the supernatant fraction. Intracellular non-protein sulfhydryls were measured using 5,5'-dithiobis-2-nitrobenzoic acid. In both human polymorphonuclear leukocytes (PMN) and rat pulmonary alveolar macrophages (PAM) there was a dose-related decrease in surface SH and soluble SH after ACR and CRO treatment. Propionaldehyde, a three-carbon saturated aldehyde, was without effect. The decrease in surface SH was greater than the decrease in soluble SH. In addition, in PMN and PAM preincubated with 5-40 microM ACR, there was a dose-related inhibition in the rate of O2- production with no effect on the lag time as measured by cytochrome c reduction. In stimulated PMN, there was a dose-related decrease in the rate after addition of 5-40 microM ACR. These data suggest that changes in SH status by reactive aldehydes can modulate the activity of the plasma membrane NADPH oxidase responsible for O2- production.

Aldehydes

Alteration of erythrocyte membrane fluidity by heavy metal cations.

Fluorescence polarization measurements were carried out on erythrocyte ghosts treated with heavy metal cations. Membranes labelled with the fluorescent lipid probe all-trans 1,6-diphenyl-1,3, 5-hexatriene (DPH) had increased DPH polarization (P) values, consistent with increased membrane lipid viscosity, when treated with 10(-3)-10(-2) M of the chloride salts of cadmium, zinc or lead for 1 hour at 37 degrees C, but not with calcium. Using cadmium as a prototype heavy metal, additional studies showed that exposure of ghosts to cadmium also increased the native protein fluorescence polarization. These increases in P values were observed at temperatures ranging from 15-40 degrees C. These data suggest that interaction of cadmium and other heavy metals with cellular membranes may alter membrane lipid and possibly membrane protein fluidity, which may contribute to abnormal cellular function.

Cadmium

Estimation of risk of glucose 6-phosphate dehydrogenase-deficient red cells to ozone and nitrogen dioxide.

It has been suggested that the more than 1 million black Americans with the A- variant of glucose-6-phosphate dehydrogenase deficiency (G6PD) are at risk for adverse hematologic effects due to inhalation of ambient levels of oxidant gases. To evaluate this hypothesis studies were performed that included direct exposure of human G6PD-deficient red cells, and of mouse strains with different G6PD levels, to the oxidant gases ozone and nitrogen dioxide. Using the oxidant drug phenylhydrazine in part as a point of comparison, conservative extrapolation of the data indicates that exposure to levels of ozone or nitrogen dioxide at least one and probably two orders of magnitude above the LD50 would be required for any hematologic effect to be observed of pertinence to G6PD deficiency. It is concluded that there is no reason to remove or preclude from the workplace black employees with the common A- variant of red cell G6PD deficiency who potentially are exposed to oxidant gases.

Animals

Degradation of soluble collagen by ozone or hydroxyl radicals.

Collagen exposed to ozone or hydroxyl radicals was degraded in a time- and dose-dependent manner. This degradation was inhibited by free radical scavengers. Furthermore, lower levels of these oxidants did not degrade the molecule, but caused it to become susceptible to proteolytic degradation. We suggest an alternative mechanism by which oxygen-derived free radicals participate in the destruction of extracellular matrix observed during acute lung injury by oxidant gas, in addition to the commonly accepted proteinase-antiproteinase theory of lung injury.

Animals

Enhancement of rat and human phagocyte superoxide anion radical production by cadmium in vitro.

The mechanism by which cadmium produced oxidizing effects in vivo is unknown. We show that cadmium enhances the production of superoxide anion radical (O-(2) .), a reactive oxygen species, in digitonin-stimulated phagocytes from man and rat. Cadmium concentrations ranging from 3.6 X 10(-2)M to 3.6 X 10(-4)M inhibited O-(2) . production in rat alveolar macrophages or human granulocytes. However, when activated in the presence of 3.6 X 10(-5)M cadmium, the production of O-(2) . was increased by a factor of 2.11 +/- 0.25 above control levels in human granulocytes and 3.6 +/- 0.62 above control levels in rat alveolar macrophages. This effect by levels of cadmium within the range of those occurring during in vivo toxicity might provide an explanation for the oxidizing effects of this metal ion.

Animals

Relation of fluorescence in lipid-containing red cell membrane extracts to in vivo lipid peroxidation.

Previous studies have demonstrated that the abnormal fluorescent peak consistent with the crosslinking of red cell membrane constituents by the lipid-peroxide decomposition product MDA is demonstrable in lipid-containing extracts of red cells obtained from patients treated with the oxidizing hemolytic agent diaminodiphenylsulfone. The present studies were primarily aimed at ascertaining the specificity of this fluorescence as an indicator of in vivo red cell lipid peroxidation. Repetitive injection of phenylhydrazine or acetylphenylhydrazine in rats resulted in gradually increasing levels of fluorescence despite the return in hematocrit toward normal. Chromatography on Sephadex LH-20 of lipid-containing extracts obtained from the red cells of rats and rabbits treated with phenylhydrazine revealed fluorescent peaks similar to those observed in red cell lipid incubated with MDA. In addition, increased levels of fluorescence were observed in the extracts of red cells obtained from three vitamin E--deficient premature infants. These findings suggest that the fluorescence assay is a sensitive indicator of in vivo red cell lipid peroxidation.

Animals