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M I Luster

Publications and source records attributed to M I Luster.

At least 73 records · Page 4Linked to original sources

Chemical induction of interleukin-8, a proinflammatory chemokine, in human epidermal keratinocyte cultures and its relation to cytogenetic toxicity.

Tumor promoters, proinflammatory cytokines, endotoxins, and protein synthesis inhibitors can modulate cell cycle kinetics of various cell types, stimulate production of reactive oxygen species, and induce keratinocytes to produce interleukin-8 (IL-8), a potent chemotactant for polymorphonuclear neutrophils and T lymphocytes. The aim of this study was to determine whether perturbations of cytogenetic responses correlated with the induction of IL-8 expression. Cultures of primary human keratinocytes were grown in serum-free medium with 5 mumol/L bromodeoxyuridine to label DNA and exposed either to phorbol-13-myristate-12-acetate (PMA) (0.0001-100 ng/ml), cycloheximide (CHX) (0.01-50 micrograms), lipopolysaccharide (0.1-100 micrograms/ml), tumor necrosis factor-alpha (TNF alpha) (3.13-50 ng/ml), or interleukin-1 alpha (IL-1 alpha) (1-182 pg/ml). Metaphase chromosome preparations were stained by a fluorescence-plus-Giemsa technique to differentiate sister chromatids. For IL-8 production, keratinocytes were grown to 70% confluency and then exposed to chemicals for 24 h. Immunoreactive IL-8 was quantitated from the supernatants by ELISA. With the exception of benzo(a)pyrene used as a positive control, none of the agents induced sister chromatid exchanges. However, PMA and TNF alpha induced IL-8 production that coincided with significant cell cycle inhibition. IL-1 alpha had no effect on cytogenetic endpoints, yet stimulated a 6.3-fold increase in IL-8. CHX inhibited cell cycle progression and mitotic activity at concentrations that were 200 times lower than required for IL-8 induction; however, puromycin (0.31-10 micrograms/ml), another protein synthesis inhibitor, did not induce IL-8. At all concentrations tested, TNF alpha reduced the mitotic index by approximately 45%, slowed cell cycle progression by approximately 3.5 h, and induced a flat, albeit large, IL-8 response at concentrations > or = 12.5 ng/ml. These agent-specific response patterns suggest that induction of IL-8 production is not always the inevitable result of cell cycle perturbations or genetic damage.

Bromodeoxyuridine↗

Tumor necrosis factor-alpha and nitric oxide production in endotoxin-primed rats administered carbon tetrachloride.

Tumor necrosis factor-alpha (TNF alpha) is elevated in the sera of rats administered non-lethal doses of carbon tetrachloride (CCl4) followed by endotoxin. Elevated TNF alpha levels are correlated with the increased release of hepatic enzymes indicating hepatic damage. Under these conditions, nitric oxide (NO) was also produced in the liver as evidenced by the formation of nitrosyl complexes which were measured by electron paramagnetic resonance (EPR) spectroscopy. Decreased nitrosyl complex formation occurred in livers following treatment with either an inhibitor or macrophage activation (gadolinium trichloride; GdCl3), an inhibitor of cytokine responses (dexamethasone) or a NO synthase inhibitor (NG-monomethyl-L-arginine; 1-NMA), GdCl3 or dexamethasone treatment decreased, while 1-NMA treatment increased, TNF alpha serum level. Taken together, these data suggest that TNF alpha and NO are induced following CCl4 and LPS exposure and may be important regulators in the hepatotoxicity of this liver injury model.

Alanine Transaminase↗

Trimethyltin increases interleukin (IL)-1 alpha, IL-6 and tumor necrosis factor alpha mRNA levels in rat hippocampus.

Within the central nervous system (CNS), cytokines are though to have active roles in pathophysiological changes seen in various neurological diseases and trauma. The present study was undertaken to examine the early response of pro-inflammatory cytokines following exposure to a specific neurotoxicant (trimethyltin; TMT). mRNA levels for interleukin (IL)-1 alpha, IL-1 beta, IL-6 and tumor necrosis factor (TNF) alpha were measured in the hippocampus of adult male Long-Evans hooded rats following an acute injection of trimethyltin hydroxide (8 mg TMT/kg body weight). At various times following exposure (6 h to 8 days), hippocampal tissues were excised and relative changes in cytokine mRNA levels were assessed by reverse transcription and polymerase chain reaction. IL-1 alpha, IL-6 and TNF alpha mRNA levels in the hippocampus increased within 6 h and remained elevated for 8 days. Quantitative analysis of mRNA transcripts revealed a two-fold increase in both IL-6 and TNF alpha within 6 h and a continued elevation of TNF alpha to 9-fold by 12 h. Within 96 h, glial fibrillary acidic protein (GFAP) mRNA levels were elevated in the hippocampus. Histological examination showed sparse individual neuronal necrosis at this time in both the pyramidal and granule cell regions with no increase in astrocyte GFAP immunoreactivity. However, an early, 24 h, response of microglial cells was indicated by increased lectin binding. This morphological profile progressed over time to a profound neuronal loss in the CA3-4 granule cell layer and marked astrocyte hypertrophy. The onset of pro-inflammatory cytokine mRNA expression appears to be temporally associated with histological evidence of elevated microglia in the hippocampus. It is proposed that microglia and pro-inflammatory cytokines play a modulatory role in the early stages of TMT-induced neurotoxicity.

Animals↗

Role of keratinocyte-derived cytokines in chemical toxicity.

Following appropriate stimulation, such as with tumor promoters, ultraviolet light or various chemical agents, keratinocytes synthesize and secrete cytokines which can mediate or participate in dermatotoxic responses such as inflammation, hyperkeratosis, hypersensitivity and skin cancer. We have determined the qualitative and quantitative cytokine response in primary human keratinocyte cultures following exposure to several non-sensitizing contact irritants, sensitizers and ulcerative agents as well as a skin carcinogen. The chemicals were also administered to mice to assess whether the dermatotoxic response correlated with the in vitro production of keratinocyte-derived cytokines. Due to the complex cellular interactions that occur in the skin, it was not possible to identify specific cytokine profiles for most of the classes of dermatotoxic agents studied. However, the non-sensitizing contact irritants produced relative increases in the synthesis and secretion of the proinflammatory cytokines, interleukin-1 and tumor necrosis factor-alpha, as well as the neutrophil chemotactic cytokine, interleukin-8 compared to the other chemical agents. While ulcerative compounds as well as irritants elicited neutrophils to the site of chemical application when applied to the mouse skin, time-dependent and chemical-specific patterns of inflammation were detected. Treatment of human keratinocyte cultures with arsenic, a human skin carcinogen, resulted in a unique cytokine profile characterized by induction of growth factors, including transforming growth factor-alpha and granulocyte-macrophage colony stimulating factor. Treatment of v-Ha-ras transgenic mice, an animal model for skin cancer, with arsenic caused an increase in the number of papillomas as well as overexpression of these growth factors suggesting that they participate in arsenic-induced skin papilloma development. These studies indicate a diverse role exists for keratinocyte-derived cytokines in dermatotoxic actions.

Animals↗

Iron and reactive oxygen species in the asbestos-induced tumor necrosis factor-alpha response from alveolar macrophages.

Free radicals and other reactive oxygen species (ROS) are important mediators in asbestos-induced lung toxicity. Asbestos fibers are thought to stimulate cells to generate ROS via iron that is present on fibrous silicates. The pathophysiologic responses in the lung after asbestos exposure are characterized by the accumulation of macrophages at the site of fiber deposition and the release of growth factors and proinflammatory cytokines, such as tumor necrosis factor-alpha (TNF-alpha). We have examined the role of iron-catalyzed ROS in asbestos induction of TNF-alpha from rat alveolar macrophages. Treatment of alveolar macrophage cultures with asbestos stimulated dose-dependently TNF-alpha secretion, which was inhibited by the addition of deferoxamine, an iron chelator. Asbestos fibers, pretreated with deferoxamine to remove iron from the fibers before addition to alveolar macrophages, also significantly reduced the TNF-alpha response. Consistent with the role of iron on asbestos fibers in catalyzing hydroxyl radical generation, membrane-permeable hydroxyl radical scavengers (tetramethylthiourea, dimethyl sulfoxide) inhibited the asbestos-induced TNF-alpha response. The asbestos-induced increase in TNF-alpha, as well as in interleukin-1 alpha, and their inhibition by tetramethylthiourea occurred at the transcriptional level. The role of ROS in signaling TNF-alpha stimulation was confirmed by use of free radical-generating systems (hypoxanthine-xanthine oxidase, hydrogen peroxide, glucose-glucose oxidase, or ferrous plus hydrogen peroxide). These results suggest that intracellularly generated ROS can stimulate TNF-alpha in alveolar macrophages and that asbestos-induced TNF-alpha gene expression and secretion are mediated by iron-catalyzed product of ROS.

Animals↗

Asbestos stimulates IL-8 production from human lung epithelial cells.

Studies have indicated that soluble products, including chemotactic factors, released by activated lung macrophages and fibroblasts are critical mediators in the pathogenesis of asbestos-induced pulmonary fibrosis. We provide evidence that mediators produced by lung epithelial cells in response to asbestos may also contribute to lung disease. In the present study, the carcinogenic and fibrogenic fibers, chrysotile and crocidolite asbestos, were shown to directly stimulate the human pulmonary type-II epithelial cell line, A549, and to a lesser degree primary human bronchial epithelial cells, to elicit the chemotactic cytokine IL-8 in the absence of endogenous stimuli such as IL-1 and TNF. That the membrane signaling events responsible for asbestos-induced IL-8 production are distinct from those responsible for IL-8 induction by cytokines was confirmed by using membrane-stabilizing agents and protein synthesis inhibitors. Stimulation was not observed with nonfibrogenic fibers, wollastonite and titanium dioxide, and was the direct result of asbestos-induced initiation of transcription. Asbestos failed to stimulate the release of TNF, IL-1 beta, or monocyte chemoattractant protein-1 in A549 or primary bronchial epithelial cells, indicating that cytokine secretion by asbestos is highly selective. However, a slight release of IL-1 alpha, probably preformed, was released in human bronchial epithelial cells. These data suggest that epithelial cells may, in addition to macrophages and fibroblasts, be an important effector cell in the immunopathogenesis of asbestos-associated diseases and in particular, in the neutrophilic infiltration that is commonly observed after asbestos exposure.

Asbestos, Serpentine↗

Use of animal studies in risk assessment for immunotoxicology.

We have previously reported on the design and content of a screening battery involving a 'tier' approach for detecting potential immunosuppressive compounds in mice. This battery has been used to examine a variety of compounds, and the database generated from these studies, which consists of over 50 compounds, has been collected and analyzed in an attempt to improve the accuracy and efficiency of screening chemicals for immunosuppression and to identify better those tests that predict experimentally-induced, immune-mediated diseases. Specifically, these analyses attempted to develop an improved testing configuration for the accurate prediction of immunotoxic agents and to provide insight into the qualitative and quantitative relationships between a number of immune and host resistance assays commonly employed to examine potential immunotoxic chemicals in experimental animals. While a number of limitations existed in the analyses, several conclusions were drawn from the results which will be discussed.

Animals↗

Pulmonary response of Fischer 344 rats to acute nose-only inhalation of indium trichloride.

We have previously shown that rats dosed intratracheally with indium trichloride (InCl3) develop severe lung damage and fibrosis. However, it is not clear what pulmonary effects would result following accidental occupational exposure to low concentrations of indium by inhalation. The present study uses a model of acute lung injury based on single 1-hr nose-only exposures to 0.2, 2.0, or 20 mg InCl3/m3. Exposure to 0.2 mg InCl3/m3 was capable of initiating an inflammatory response. Seven days following inhalation of 20 mg InCl3/m3 the total cell number, fibronectin, and TNF alpha levels in the bronchial alveolar lavage fluid were 8, 40, and 5 times higher than the control, respectively. Commensurate with the level of lung injury 7 days after exposure, an acute restrictive lung lesion and increased airway responsiveness to acetylcholine were observed. Forty-two days after exposure a compensatory increase in lung volume and carbon monoxide diffusing capacity in the 20 mg InCl3/m3 group suggested recovery from the lung injury. Lung collagen levels were increased in a concentration-dependent manner 42 days postexposure. These data indicate that inhalation of InCl3/m3 causes acute inflammatory changes in the lung.

Administration, Inhalation↗

Development of human lymphocyte-engrafted SCID mice as a model for immunotoxicity assessment.

Mice with the severe combined immunodeficient (SCID) and triple-deficient (bg/nu/xid) mutations lack select populations of functional immune cells. Studies by several laboratories have demonstrated the ability to restore certain missing immune components in these mice by reconstituting with various lymphoid tissues including peripheral blood lymphocytes (PBL) from mice and humans. Such a model could provide an opportunity to examine human lymphoid cells in an in vivo environment for immunotoxicity assessment. In the present studies, bg/nu/xid and SCID mice were reconstituted by intraperitoneal or intravenous injection with either tetanus-immunized syngeneic mouse splenocytes (mo-SPL) or tetanus-immunized human PBLs (hu-PBL) under various test conditions. Hu-PBL-SCID mice from the C.B-17 strain produced more successful human engraftments than mice from the bg/nu/xid or C3H-SCID strains. Using optimal conditions, mo-SPL-SCID and hu-PBL-SCID mice were engrafted and administered either 2,3,7,8-tetrachlorodibenzo-p-dioxin or cyclosporin A (Cys A) and periodically bled to measure tetanus-specific antibody and class-specific immunoglobulin concentrations. Comparison of the chemical-related changes in immunoglobulin and tetanus antibody concentrations revealed some similarities between control mice and mo-SPL-SCID or hu-PBL-SCID mice, particularly with Cys A groups. However, under the various conditions examined, hu-PBL-SCID mice demonstrated considerable variability in their ability to provide consistent reconstitution, thus, limiting the ability to determine whether human cells are more or less susceptible than mouse cells to the test agents. Provided that this system can be refined to provide consistent reconstitution, hu-PBL-SCID mice may be a promising in vivo model for assessment of potential immunotoxic agents.

Animals↗

Effect of lead acetate on nitrite production by murine brain endothelial cell cultures.

One of the mechanisms by which lead may cause a perturbation in the nervous system is the alteration of endothelial cell function. This study investigated the effect of lead acetate on constitutive and cytokine-induced production of nitrite, a marker of nitric oxide, in brain microvascular endothelial cells. Nitric oxide synthase may be a target for lead and changes in its function can result in a cascade of physiological effects seen in vivo. Concentrations of 10, 100, and 1000 nM lead acetate, in the presence or absence of 100 ng lipopolysaccharide/ml, 400 U interferon-gamma/ml and 100 U tumor necrosis factor-alpha/ml, were added to confluent cultures of brain microvascular endothelial cells. Concentrations of lead acetate as low as 10 nM decreased constitutive levels of nitrite by 50% without inhibiting the inducible levels. Addition of 1 microM lead acetate had no effect on [3H]L-leucine incorporation, lactate dehydrogenase release, or cellular morphology, indicating that the effect was selective. Increasing the concentration of extracellular calcium to 2 mM abolished the inhibitory effect of lead acetate on the constitutive production of nitrite. These studies suggest that low concentrations of lead are capable of inhibiting nitrite produced by the calcium-dependent constitutive form of nitric oxide synthase while the calcium-independent, inducible form of nitric oxide synthase is not affected. These data provide another testable hypothesis for the as yet undetermined mechanisms of lead neurotoxicity.

Amino Acid Oxidoreductases↗

Fetal hematopoietic alterations after maternal exposure to ethylene glycol monomethyl ether: prolymphoid cell targeting.

Ethylene glycol monomethyl ether (EGME), which is extensively used in the chemical industries, has been associated with hematologic disorders in both humans and experimental animals. EGME is metabolized to the active compound methoxy-acetic acid (MAA), which readily crosses the placenta and impairs fetal development. However, little is known about the effect of maternal EGME exposure on the development of fetal immunity. In the present report, in utero treatment with EGME was found to alter expression of murine thymocyte and liver fetal cell-surface markers. Pregnant mice were exposed to 100, 150, or 200 mg/kg EGME from gestational days (gd) 10 to 17 and offspring examined on gd 18. Significant thymic atrophy and cellular depletion were found in EGME-exposed fetal mice. Flow cytometric analysis indicated that EGME treatment resulted in decreased percentages of CD4+8+ thymocytes and increased percentages of CD4-8- thymocytes. In vitro exposure to MAA did not result in decreased thymocyte viability or proliferation. These data suggest that EGME, in addition to producing thymic hypocellularity, may inhibit thymocyte maturation. EGME also reduced the percentage of CD45+ leukocytic cells present in fetal liver, an alteration that appeared to be largely manifested by decreased numbers of CD45R+ and CD44dim prolymphoid cells. In vitro MAA exposure of fetal liver cells enriched for lymphoid precursors resulted in significant inhibition of proliferation. Reconstitution of irradiated hosts with gd 18 fetal liver cells from vehicle and EGME-exposed syngeneic donors demonstrated impaired ability of the EGME-treated fetal liver to repopulate the host spleen with B or T lymphocytes. These data suggest that EGME-induced immunosuppression may result from targeting of multiple hematopoietic compartments. Further, the present data indicate that fetal liver prolymphocytes may represent sensitive targets of EGME exposure.

Acetates↗

Cytokine induction in human epidermal keratinocytes exposed to contact irritants and its relation to chemical-induced inflammation in mouse skin.

In response to exogenous stimuli such as phorbol-12-myristate 13-acetate, ultraviolet B radiation, and lipopolysaccharide, human keratinocytes produce soluble mediators that are important in primary contact irritancy including cytokines that are associated with proinflammatory properties (interleukin-1 alpha [IL-1 alpha], tumor necrosis factor alpha), chemotaxis (IL-8), and growth activation (granulocyte/macrophage colony stimulating factor, IL-6, transforming growth factor alpha). We examined qualitative and quantitative changes in selected intracellular and secreted cytokines in human keratinocyte cultures in response to non-sensitizing contact irritants (croton oil, sodium lauryl sulfate, methyl salicylate, ethyl phenylpropiolate), sensitizing irritants (oxazolone, dinitrofluorobenzene), and ulcerative agents (phenol, benzalkonium chloride, chromium trioxide). The chemicals were also applied to mouse skin to assess whether the chemical-specific pattern of inflammation correlated with the in vitro production of keratinocyte-derived cytokines. Although all agents elicited neutrophils to the site of chemical application, time dependent and chemical-specific patterns of inflammation could be detected. Sodium lauryl sulfate, phenol, and croton oil induced increases in IL-8 production at non-cytotoxic concentrations in semi-confluent human keratinocyte cultures. Phenol and croton oil stimulated tumor necrosis factor alpha production, whereas croton oil was the only agent found to induce granulocyte/macrophage colony-stimulating factor production. Croton oil, phenol, benzalkonium chloride, and dinitrofluorobenzene induced the intracellular production of IL-1 alpha without a concomitant release into the medium. The release of cytokines occurred in parallel with a relative increase in cytokine-specific mRNA transcripts. Studies using neutralizing antibodies to tumor necrosis factor alpha and IL-1 alpha demonstrated that IL-8 induction by croton oil and phenol occurred directly rather than through autocrine circuits. These data suggest that a given pattern of cytokine production is chemical-specific and may predict the contribution of keratinocytes to skin inflammation.

Animals↗

Inhibition of lung immunity after intratracheal instillation of benzo(a)pyrene.

Benzo(a)pyrene (B(a)P) has been shown to suppress systemic immunity in experimental animals, which may contribute to the growth of the chemical-induced tumors. However, its effects on lung immunity after inhalation, a common route for human exposure in urban areas, has not been determined. These studies examine intratracheal B(a)P instillation on lung natural killer (NK) cell activity, alveolar macrophage (AM) functions, and susceptibility to tumor cell challenge in Fischer 344 (F-344) rats. Adult female F-344 rats were given a single intratracheal instillation of 0, 10, 20, or 40 mg B(a)P/kg body weight as a suspension, and lung NK cell activity and AM functions were examined 7, 21, or 100 d later. Although exposure to B(a)P did not alter cell recovery after lavage, histologic changes were observed as evidenced by granulomatous inflammation and squamous metaplasia. There was a slight but significant suppression of H2O2 and nitric oxide (NO) release from alveolar macrophages of treated animals as well as NK cell activity from the lung digest. A marked suppression of tumor necrosis factor-alpha (TNF alpha) and interleukin (IL-1) secretion in LPS- and/or cytokine-activated alveolar macrophages occurred. The suppressive effects were generally more severe on Day 7 after exposure than on Days 21 or 100, although IL-1 remained depressed through Day 100 after exposure. B(a)P exposure allowed for the increased growth of MADB106 metastatic tumor cells in the lung. These tumor cells were shown to be highly sensitive to lysis by immune-mediators, including TNF alpha.(ABSTRACT TRUNCATED AT 250 WORDS)

Adenocarcinoma↗

A protective role for T lymphocytes in asbestos-induced pulmonary inflammation and collagen deposition.

Several lines of evidence have suggested that specific (i.e., lymphocyte) immunity plays a role in chemical-induced pulmonary diseases, including asbestosis. To evaluate the influence of cell-mediated immunity in pulmonary inflammation and fibrosis evoked by asbestos fibers, we compared the effects of asbestos in immunodeficient mice (Balb/c nu/nu and severe combined immunodeficient [C3H-SCID]), immunologically normal mice of the same genetic background, and immunodeficient mice reconstituted with syngeneic T lymphocytes. Increases in lavaged cell numbers occurred in asbestos-treated immunodeficient mice compared with asbestos-treated immunocompetent or immunodeficient mice that received T lymphocytes. Differential analysis of the collected cells in treated mice demonstrated a predominantly neutrophilic infiltrate that correlated with increased levels of leukotriene B4 and prostaglandin E2. There were no significant differences between immunocompetent and athymic asbestos-treated mice in bronchoalveolar lavaged total protein. However, asbestos-treated SCID mice revealed a significant increase in protein content and lactate dehydrogenase activity compared with asbestos-treated normal mice, which did not occur in T lymphocyte-reconstituted SCID mice. Fibronectin levels were elevated in asbestos-exposed athymic mice when compared with air-exposed athymic mice or asbestos-exposed immunocompetent mice. Both asbestos-treated athymic and SCID mice showed a significant increase in total lung hydroxyproline when compared with asbestos-treated immunocompetent mice. Lung hydroxyproline was also reduced in asbestos-exposed SCID mice after T lymphocyte reconstitution and, conversely, increased in T cell-depleted Balb/c mice.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Subchronic 10 day immunotoxicity of polydimethylsiloxane (silicone) fluid, gel and elastomer and polyurethane disks in female B6C3F1 mice.

Millions of people have been exposed to silicones because of the widespread use in consumer products such as cosmetics and toiletries, food products, household products and paints. Silicones have wide use in medical practice, including lubricants in tubing and syringes, and as implantable devices. The most prevalent silicone in medical use is polydimethylsiloxane. This study was undertaken to determine the subchronic immunotoxicologic potential of the principal constituents of breast implants: silicone fluid, silicone gel and silicone elastomer. An alternative covering for devices containing silicone gels, polyurethane, was also included in the study. Silicone fluid and gel were injected subcutaneously into female B6C3F1 mice (1 ml/mouse) and 6 mm disks of silicone elastomer or polyurethane were implanted subcutaneously. There were no treatment-related deaths or overt signs of toxicity. None of the tested materials had notable effects on body or organ weights, erythrocytes or leukocytes in the blood, blood chemistries such as alanine aminotransferase, urea nitrogen, glucose, albumin or total protein. The cellularity of the bone marrow and responses to CSF-GM and CSF-M were normal. The tested silicones did not alter the distribution of B cells and T cells in the spleen, but polyurethane perturbed the distribution of CD4+CD8+ and CD4-CD8- T cells. The antibody response to sheep erythrocytes was not markedly altered, nor were proliferative responses to concanavalin A, phytohemagglutinin, lipopolysaccharide or allogeneic cells. Reticuloendothelial function was normal, but polyurethane evoked an enhanced phagocytosis of Covaspheres by adherent peritoneal cells. Natural killer cell activity and serum complement were not altered. All silicone materials afforded modest protection to a challenge with Listeria monocytogenes that killed 40 to 58% of control mice. Host resistance to Streptococcus pneumoniae or the B16F10 tumor was not affected by any of the treatments. There is a pattern indicative of some perturbation of T cell differentiation in mice implanted with a polyurethane disk.

Animals↗

Immunotoxicity of 180 day exposure to polydimethylsiloxane (silicone) fluid, gel and elastomer and polyurethane disks in female B6C3F1 mice.

Millions of people have been exposed to silicones which are present in consumer goods such as cosmetics and toiletries, processed foods and household products. In addition, silicones have been used extensively in medical practice as a lubricant in tubing and syringes, and as implantable devices. A silicone widely used in medical practice is polydimethylsiloxane. This study was undertaken to determine the immunotoxicologic potential of long term exposure to the principal constituents of breast implants: silicone fluid, silicone gel and silicone elastomer. An alternative covering for devices containing silicone gels, polyurethane, was also included in the study. Silicone fluid and gel were injected subcutaneously into female B6C3F1 mice (1 ml/mouse) and 6 mm disks of silicone elastomer or polyurethane were implanted subcutaneously. There were no treatment-related deaths or overt signs of toxicity during the 180 day exposure. None of the tested materials had notable effects on body or organ weights, erythrocytes or leukocytes in the blood, blood chemistries such as alanine aminotransferase, urea nitrogen, glucose, albumin or total protein, or serum CH 50 or C3 levels. The cellularity of the bone marrow and responses to CSF-GM and CSF-M were normal. The tested silicones and polyurethane marginally reduced the level of Ig+ cells in the spleen but did not consistently alter the distribution of T cell surface markers. The antibody response to sheep erythrocytes was not markedly altered, nor were proliferative responses to concanavalin A, phytohemagglutinin, lipopolysaccharide or allogeneic cells. Reticuloendothelial function was normal, as was phagocytosis of chicken erythrocytes and Covaspheres by adherent peritoneal cells. Natural killer cell activity was depressed in all silicone treatment groups and in mice implanted with polyurethane. No silicone or polyurethane treatment group displayed altered susceptibility to a challenge with Listeria monocytogenes, Streptococcus pneumoniae or the B16F10 tumor. The only consistent effect of 180 day exposure to silicone materials or polyurethane was a modest depression of natural killer cell activity.

Animals↗

Immunotoxicity of nitrobenzene in female B6C3F1 mice.

Nitrobenzene (NBZ) is primarily employed as an oxidizing agent in the synthesis of analine and benzene compounds. It produces myelotoxic effects and effects on erythrocytes in both animal models and man. Reported hepatosplenomegaly and effects on the bone marrow are indicators that NBZ may be immunotoxic. In these studies, female B6C3F1 mice were exposed to 30, 100 and 300 mg/kg of NBZ in corn oil by gavage for 14 consecutive days. To assess the immunotoxic potential of NBZ, body and organ weights were determined and selected immunologic and host resistance responses were studied. In these studies, the liver and spleen appeared to be the primary target organs. Both liver and spleen weights were dose dependently increased. Gross histopathologic examinations revealed significant changes in the spleen, consisting of severe congestion of the red pulp areas with erythrocytes and reticulocytes. Serum chemistry profiles showed increases in alanine aminotransferase and aspartate aminotransferase activities, indicating liver toxicity. Hematologic studies showed a decrease in erythrocyte number and a concomitant increase in mean corpuscular hemoglobin and mean corpuscular volume. A dose-dependent increase in peripheral reticulocytes was also seen. DNA synthesis was enhanced, as was the number of formed elements and the number of monocyte/granulocyte stem cells in the bone marrow of treated mice. IgM responses were decreased and the phagocytic activity of macrophages in the liver was dose dependently increased with a concomitant decrease in the activities in the spleen and lung. Other immunological parameters examined were unchanged. Host resistance to microbial or viral infection was not markedly altered by NBZ; however, there were trends towards increased susceptibility where T-cell function contributes to host defense. These data indicate that NBZ-induced hemolysis and liver injury are linked to the observed alterations in bone marrow activity.

Administration, Oral↗

Immunotoxicity of mono-nitrotoluenes in female B6C3F1 mice: I. Para-nitrotoluene.

para-Nitrotoluene (p-nitrotoluene) is used primarily as an intermediate in the production of various dyes, explosives, pharmaceuticals, and in the production of rubber and agricultural products. Previous investigations indicated that p-nitrotoluene was mutagenic in the Ames Test and that other mono-substituted nitrotoluenes bound covalently to hepatic macromolecules. The objective of these studies was to evaluate the potential immunotoxicity of p-nitrotoluene in mice exposed by the oral route. Mice exposed to p-nitrotoluene (200-600 mg/kg) daily for 14 days showed modest dose-dependent increases in liver and spleen weights. The livers of mice exposed subchronically to 400 and 600 mg/kg showed a mild to moderate swelling of the hepatocytes adjacent to the central veins; this swelling appeared to be reversible and there was no evidence of necrosis. The proportion of monocytes in blood was decreased in mice treated with p-nitrotoluene or toluene. Serum chemistries, bone marrow cellularity and the number of CFU-M and CFU-GM were unaffected. Immunologic investigations showed p-nitrotoluene suppressed the IgM response to sRBC and the DHR response to KLH. There was a 24% decrease in the percentage of CD4+ T lymphocytes in the spleen. There was no dose-dependent alteration of peritoneal macrophage numbers or differential count, unstimulated natural killer cell activity, response to B cell mitogen LPS, C3 activity or interferon levels. Exposure of mice to p-nitrotoluene decreased resistance to Listeria monocytogenes but not to Streptococcus pneumoniae, Plasmodium yoelii or the B16F10 melanoma, and increased resistance to the PYB6 tumor. These studies indicated that the immune system is an important target for toxicity of p-nitrotoluene. The decreased host resistance to L. monocytogenes can be attributed to the decrease in T lymphocytes and to a decreased delayed hypersensitivity response to KLH.

Administration, Oral↗