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J H Exon

Publications and source records attributed to J H Exon.

At least 37 records · Page 2Linked to original sources

In vivo effects of interferon-gamma and indomethacin on murine alveolar macrophage activity.

This study determined the effects of treatment with recombinant interferon-gamma (rIFN-gamma) and the cyclooxygenase inhibitor, indomethacin (INDO), on alveolar macrophage (AM) immune function in AKR/J mice. Bactericidal activity, interleukin 1 (IL1) synthesis and antigen presentation by AM were enhanced at 24 hr after a single intravenous injection with 5 X 10(4) U of rIFN-gamma. Concomitant treatment with 2 mg INDO/kg given subcutaneously did not further enhance the effects of a single injection of rIFN-gamma, even though the prostaglandin E2 (PGE2) concentrations in lung airways were reduced by 50%. These results suggest that the stimulatory effects of rIFN-gamma on AM are not altered by blocking potentially immunosuppressive cyclooxygenase metabolites such as PGE2 with INDO. Mice given three consecutive daily intravenous injections of 5 X 10(4) U of rIFN-gamma had suppressed AM bactericidal activity and IL1 synthesis, while PGE2 concentrations in the lungs were increased. Concomitant treatment with INDO prevented suppression of these AM functions and elevation of PGE2 concentrations in the lungs. Therefore, it appears that INDO can prevent suppression of AM activity induced by multiple injections of rIFN-gamma and this effect may be by blockage of PGE2 synthesis or other cyclooxygenase-derived products.

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Immunotoxicity assessment of gentamycin and liquamycin.

Rats were injected with gentamycin (GEN) or the oxytetracycline, liquamycin 200 (LA200), and multiple immune responses were measured to assess the immunotoxicity of these antibiotics. Animals were treated by sc or im injection for 12 days with either GEN or LA200 given at a therapeutic dose or at 10-, 50-, or 100-fold greater concentrations. The following immune parameters were assessed in each animal: delayed-type hypersensitivity (DTH), natural killer (NK) cell cytotoxicity, antibody production, and synthesis of interleukin 2 (IL2) and gamma interferon (IFN). The DTH response and IFN production in GEN- and LA200-injected animals were suppressed in a dose-dependent manner. Production of IFN was significantly suppressed in all groups treated with LA200. Suppression of DTH was evident when GEN or LA200 were given at the recommended therapeutic dose. Both LA200- and GEN-treated rats had suppressed NK cell cytotoxicity, but only at the highest dosages. Antibody production was suppressed in a dose-dependent manner in LA200-treated rats. Synthesis of IL2 was suppressed in rats treated with the high dose of GEN. Body weight loss occurred, and hepatic and renal toxicity were apparent at the 2 highest dosages of GEN or LA200. It was apparent that relatively high doses of GEN and LA200 can suppress specific and non-specific cell-mediated immune responses. Also, the data suggest the certain immune responses (eg, DTH reaction and possibly IFN production) may be suppressed at the recommended therapeutic doses in the absence of other signs of toxicity. These results indicate that these antibiotics should not be administered at doses or exposure periods in excess of those recommended.(ABSTRACT TRUNCATED AT 250 WORDS)

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Immunotoxicologic evaluation of chlorine-based drinking water disinfectants, sodium hypochlorite and monochloramine.

Male Sprague-Dawley rats were exposed to chlorine-based disinfectants in the drinking water from weaning to 12 weeks of age, at which time they were terminated and assessed for immune competence. Chlorine-based drinking water disinfectants used were sodium hypochlorite (5, 15 and 30 ppm) and monochloramine (9, 19 and 38 ppm). Parameters of immunity measured were spleen and thymus weights, antibody production, delayed-type hypersensitivity (DTH) reactions, natural killer cell (NKC) cytotoxicity, oxidative metabolism response (i.e chemiluminescence-CL) and phagocytosis by macrophages, and production of 2 immunoregulatory cytokines, interleukin 2 (IL2) and prostaglandin E2 (PGE2). Significant (P less than or equal to 0.05) reductions of spleen weight, DTH reactions, and oxidative metabolism by macrophages were observed only in groups of rats exposed to high levels (30 ppm) of sodium hypochlorite, while PGE2 production was elevated. Rats exposed to the higher doses of monochloramine had reduced spleen weights (38 ppm), decreased antibody synthesis (9 and 19 ppm) and augmented PGE2 production (19 and 38 ppm). These results extend the earlier observations of others that macrophage function of laboratory rodents may be impaired by exposure to high concentrations of chlorinated drinking water. Furthermore, the function of other major populations of immunocytes and types of immune responses may also be altered following subchronic exposure to high concentrations of chlorinated drinking water. These types of effects on the immune system are a previously unrecognized potential side-effect of the ubiquitous practice of disinfection of water with chlorine compounds. Alteration of immune function of chlorine-based disinfectant-exposed rats in this study was only evident at relatively high doses, and only selected immune responses were altered. It appears, therefore, that these chlorine-based disinfectants are not particularly strong immunodepressants. However, further studies in different species may be warranted in order to better extrapolate to implications to human health following chronic low-level exposure.

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Cyclophosphamide-conditioned suppression of the natural killer cell response in rats.

Injection of rats with cyclophosphamide (CY) after their consumption of a novel saccharin-flavored drinking solution resulted in a conditioned aversion to saccharin and a conditioned suppression of natural killer cell (NKC) cytotoxicity. In this study, male Sprague-Dawley rats were conditioned by pairing saccharin with 50 mg/kg CY, an immunosuppressive drug with noxious gastrointestinal side-effects. Twenty-two and 26 days later, re-exposure of conditioned animals to saccharin alone re-enlisted the immunosuppressive effects of CY when NKC cytotoxicity was measured on day 29. Although CY also suppressed spleen cell number, IgG antibody titers and interleukin 2 (IL2) production, these immune responses did not appear to be affected by the behavioral conditioning paradigm in this experiment. Unique aspects of this study include the ability to measure multiple immune responses in a single rat and the finding that previous reports of behaviorally conditioned immunosuppression can be extended to another parameter, NKC cytotoxicity. These findings could have significant implications to human medicine, especially in the area of autoimmunity and immunodeficiency, and intervention and treatment of cancer.

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The selectivity of isoprinosine, NPT 15392, avridine and cyclophosphamide on multiple immune responses in rats.

Multiple concomitant immune responses were assessed in individual rats following treatment with the immunoenhancing drugs, isoprinosine (5 or 50 mg/kg), NPT 15392 (0.1 or 1.0 mg/kg) and avridine (1 or 25 mg/kg), or the immunosuppressant, cyclophosphamide (75 mg/kg). Immune responses assessed in each rat were specific antibody synthesis, delayed-type hypersensitivity (DTH), natural killer cell (NKC) cytotoxicity and production of three immunoregulatory cytokines, interleukin 1 (IL1), interleukin 2 (IL2) and prostaglandin E2 (PGE2). Spleen and thymus weights and numbers of splenocytes and resident peritoneal cells were also recorded. Rats treated with isoprinosine had dose-related, significant increases in spleen weights and DTH reactions. Rats treated with NPT 15392 had significantly enhanced DTH reactions at the 0.1 mg/kg dose. Rats treated with the 25 mg/kg dose of avridine had significantly increased spleen weights, DTH reactions and NKC cytotoxicity. The effect of avridine treatment on DTH reactions and IL1 and IL2 production was inverse to the dose administered, while the NKC response was directly related to the dose. Thymus weights, antibody production and PGE2 synthesis were not significantly altered in rats treated with isoprinosine, NPT 15392 or avridine. Cyclophosphamide-treated rats had significantly reduced spleen and thymus weights, antibody synthesis, DTH reactions, NKC cytotoxicity and IL2 production, but IL1 and PGE2 synthesis were significantly elevated. It can be concluded that isoprinosine, NPT 15392 and avridine act as general immunostimulants in the rat, with avridine having the greatest effect under these experimental conditions. It also appears that these drugs are differentially immunoselective in the rat and this effect is at least partially related to the dose administered. These results could be of significance in the selective therapeutic manipulation of different arms of the immune system. Also, enhanced production of PGE2 following cyclophosphamide treatment may contribute to the immunosuppressive effects of this drug.

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Immunotoxicity testing: an economical multiple-assay approach.

A model for assessing immunotoxicologic effects of chemicals and drugs was developed in the Sprague-Dawley rat whereby multiple concomitant immunoassays were performed in a single animal. The multiple parameters of immunity assessed in each rat included T cell-dependent IgG antibody production, delayed hypersensitivity, natural killer cell cytotoxicity, and production of three potent immune regulating immunocytokines: macrophage-derived interleukin 1 and prostaglandin E2, and lymphocyte-derived interleukin 2. Splenocyte and resident peritoneal macrophage numbers were also quantitated and spleen and thymus weights recorded. The sensitivity of this animal model was tested by treating rats with the immune-potentiating drugs, NPT 15392 (erythro-9-[2-hydroxy,3-nonyl]hypoxanthine) and avridine (N,N-dioctadecyl-N',N'-bis-[2-hydroxyethyl]propanediamine, or the immune-suppressive drugs, cyclophosphamide (N,N-bis[2-chloroethyl]tetrahydro-2H-1,3,2-oxazaphosphorin-2-amine -2-oxide) and dexamethasone. Rats treated with NPT 15392 or avridine generally had enhanced immune responses, while those treated with cyclophosphamide or dexamethasone had decreased immune responses. Differential responsiveness of various immunocyte populations within individual rats to different drugs, or to doses of the same drug, indicates the efficacy of measuring multiple responses within the same animal. The multiassay-single animal approach represents an economical, versatile, sensitive, and relatively comprehensive paradigm for assessing immunotoxicologic/pharmacologic properties of chemicals and drugs. The approach is extremely economical since multiple immune responses are evaluated in each animal. The approach is versatile because it is amenable to incorporation of a variety of in vitro and in vivo assays and could be applied to almost any species. The model is relatively comprehensive because major types of immune responses/immunocyte populations and immunoregulatory pathways are tested. Finally, the model is sensitive for detecting immunosuppression as well as immunoenhancement, as validated by the use of known immune response modifiers in this study.

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Trichloroacetic acid effects on rat liver peroxisomes and enzyme-altered foci.

The initiating and promoting effects of trichloroacetic acid (TCA) were investigated using a rat hepatic enzyme-altered foci bioassay. The experimental protocol used has been shown to induce gamma-glutamyltranspeptidase (GGT)-positive foci in hepatic tissue following an initiating dose with a genotoxic carcinogen. Twenty-four hours following 2/3 partial hepatectomy, rats received either a single oral dose (1500 mg/kg) or 5000 ppm TCA in drinking water for 10, 20, or 30 days. Two weeks after the end of TCA exposure, the rats were promoted for 3 or 6 months with 500 ppm phenobarbital in drinking water. TCA failed to induce GGT-positive foci using this initiation protocol. In addition, groups of 2/3 partially hepatectomized rats were initiated with a single oral dose of diethylnitrosamine (10 mg/kg) and then administered 50, 500, or 5000 ppm TCA drinking water. In this promotion protocol, TCA exposure resulted in a significant increase in the number of GGT-positive foci. The ability of TCA to stimulate peroxisomal-dependent palmitoyl-coenzyme A oxidation was also investigated. Only the 5000 ppm TCA treatment within the promotion protocol resulted in a significant, although minor, stimulation of peroxisomal enzyme activity. The findings support the hypothesis that TCA may possess weak promoting activity in the rat liver.

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Immune responses in rats supplemented with selenium.

It is generally accepted that Selenium (Se) is necessary for optimum performance of the immune system. Selenium deficiency results in immune suppression but little is known concerning the effect of excess Se on immune function. Recent evidence suggests that oral Se supplementation may impede oncogenesis, but the mechanism of this action is currently unknown. Conversely, under certain conditions, Se is suspected of promoting neoplasia. The studies described herein delineate the effects of excess Se (0.5, 2.0 or 5.0 p.p.m.) on specific immune functions of Se-adequate rats, namely, antibody synthesis, delayed-type hypersensitivity (DTH), natural killer (NK) cell activity, prostaglandin E2 (PGE2) synthesis, and interleukin 1 (IL-1) activity. Selenium administered to female Sprague-Dawley rats for 10 weeks at 0.5 and 2.0 p.p.m. resulted in significant (P less than or equal to 0.01) enhancement of splenic NK activity while the NK response in the 5.0 p.p.m. Se-treated rats was equivalent to the non-Se-treated controls. Conversely, the DTH response was significantly (P less than or equal to 0.01) suppressed at all three dosages while antibody synthesis and prostaglandin E2 activity were significantly (P less than or equal to 0.05) reduced compared to the controls at the highest dosage of Se. IL-1 activity was unaffected by Se exposure. These data could partially explain the contradictory oncogenic characteristics of Se. For instance, tumours that are NK sensitive could be prevented and/or responsive to Se therapy, while NK insensitive neoplasms could be enhanced by Se supplementation due to the impaired function of both humoral and cell-mediated immunity.

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The two faces of selenium-deficiency and toxicity--are similar in animals and man.

The purpose of this review article is to demonstrate the close parallelism of daily requirements, biological activity and minimum and maximum tolerable levels of selenium for animals and man. In addition, the carcinogenic/anticarcinogenic properties of selenium are discussed and a postulate of how these dichotomous effects may occur in accordance with selenium-induced immunomodulation is presented. A review of pertinent literature pertaining to the biological action of selenium in animals and man, including deficiency, toxicity, carcinogenicity and effects on immunity, is included to support these concepts. The predominant biochemical action of selenium in both animals and man is to serve as an antioxidant via the selenium-dependent enzyme, glutathione peroxidase, and thus protect cellular membranes and organelles from peroxidative damage. The signs and symptoms of selenium deficiency closely simulate each other for animals and man. Severe deficiency is characterized by cardiomyopathy while moderate deficiency results in less severe, myodegenerative syndromes such as muscular weakness and pain as well as a variety of other selenium-associated diseases. Clinical manifestations of many of these disorders require contributory factors, such as stress, to precipitate symptoms which are documented for animals and implicated for humans. Current evidence suggests that a daily selenium consumption for man of approximately 30 micrograms is necessary to prevent the selenium-deficient syndrome, Keshan disease, while approximately 90 micrograms/day/adult should be the minimum daily requirement for optimum biological performance. Recognizing that humans in several countries do not meet the proposed minimum daily requirement of 90 micrograms, several compelling reasons are presented in deriving this minimal daily nutritional intake. Selenosis can occur in laboratory animals, livestock, and humans following long-term exposure to selenium concentrations as low as 5 mg selenium/kg of diet (5 ppm). The selenium-induced lesions for all species are similar, which once again illustrates a positive corollary for selenium effects in both animals and man. From compilation of available data, the maximum tolerable level for selenium in man could be considered in the range of 1000 to 1500 micrograms/day. This is in contrast to the currently recommended maximum human tolerable level of 500 micrograms/day. The amount of selenium that can be tolerated, however, is dependent upon individual biological variation, nutritional status and general state of health.(ABSTRACT TRUNCATED AT 400 WORDS)

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The effect of lead and polychlorinated biphenyl exposure on rat natural killer cell cytotoxicity.

Splenic natural killer (NK) cell cytotoxicity was assessed in rats chronically exposed to lead (Pb) as lead acetate in the drinking water or polychlorinated biphenyl (PCB) as Aroclor 1254 in the feed. Rats treated with cyclophosphamide were included as positive immunosuppressed controls. Weanling, male Sprague-Dawley rats exposed to 50 and 500 ppm PCB in the feed for ten weeks exhibited significantly suppressed (P less than 0.01) splenic NK activity. Cyclophosphamide injected i.p. six days prior to termination at a dose of 75 mg/kg also significantly inhibited splenic NK activity. NK cell activity was reduced, though not significantly, in spleen cells isolated from animals exposed to 10 and 1000 ppm Pb as Pb acetate in the drinking water for ten weeks. In vitro exposure of rat spleen cells to PCB at concentrations of 0.4 and 20.0 micrograms/ml similarly resulted in a significant depression of splenic NK cell activity. In addition, in vitro exposure to lead at the same concentrations resulted in suppressed NK cell cytotoxicity of rat splenocytes. These results indicate that two environmental contaminants have the ability to adversely affect NK cell cytotoxicity. The effects seen here with Pb and PCB on NK cells may in part explain the tumor inducing effect these chemicals are suspected of possessing via compromising the immune surveillance system.

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Effect of lead, polychlorinated biphenyls, and cyclophosphamide on rat natural killer cells, interleukin 2, and antibody synthesis.

Interleukin 2 (IL2) activity, natural killer cell (NKC) cytotoxicity, and serum antibody (Ab) levels were assessed in rats exposed to 10 or 1000 ppm lead (Pb) as lead acetate in the drinking water or 50 or 500 ppm polychlorinated biphenyls (PCB) as Aroclor 1254 in the feed for 10 weeks or injected one time with 75 mg/kg cyclophosphamide (CY). Assays for IL2 activity and NKC cytotoxicity were also performed following in vitro exposure of rat splenocytes to Pb (0.4 or 40 micrograms/ml) or PCB (0.4 or 20.0 micrograms/ml) for 24 hr in vitro. NKC cytotoxicity and IL2 activity were significantly suppressed following in vitro exposure to either Pb or PCB. Chronic exposure to PCB, but not Pb, significantly reduced NKC cytolytic activity and significantly elevated Con A-stimulated IL2 activity. Ab synthesis was significantly suppressed in groups of rats chronically exposed to Pb or PCB. CY-injected rats had significantly reduced IL2 activity, NKC cytotoxicity, and Ab levels. High background levels of IL2, presumably induced by KLH injections shortly before termination, were significantly suppressed in PCB-, Pb-, and CY-treated rats. This suppression of IL2 activity was completely reversed by in vitro stimulation with Con A in Pb- or PCB-, but not CY-, treated groups. These results indicate that PCB, Pb, and CY alter IL2 synthesis and adversely affect NKC cytotoxicity and Ab synthesis following in vivo or in vitro exposure. The effects of PCB on NKC cytotoxicity may partially explain the tumor-promoting effect of this chemical via compromising immunosurveillance.

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Neoplasia induced in male rats fed lead acetate, ethyl urea, and sodium nitrite.

Sprague-Dawley rats were exposed to 0, 26, or 2600 ppm lead as lead acetate in drinking water for 76 weeks. At 28 weeks of lead exposure, a portion of each group was exposed simultaneously to 6.36 g/kg ethyl urea (EU) and 2.0 g/kg sodium nitrite (NaNO2) for a duration of 20 weeks, and then continued an additional 28 weeks on standard diet free of EU and NaNO2. The animals were observed for incidence, latency, and distribution of tumors. Rats exposed to 2600 ppm lead alone had 81% renal tumors, while rats given 2600 ppm lead in combination with EU/NaNO2 had a 50% incidence. Renal tumors did not occur in the EU/NaNO2 only or EU/NaNO2-26 ppm lead groups. The major tumor type found in EU/NaNO2-exposed rats was lymphosarcoma. Lead did not appear to be syncarcinogenic to the activity of ethylnitrosourea, the carcinogen formed by oral exposure to EU and NaNO2. The lead-induced renal neoplasms were histologically similar to those which occur spontaneously in man and, therefore, may serve as an animal model to study human disease.

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A sensitive delayed-type hypersensitivity model in the rat for assessing in vivo cell-mediated immunity.

Many drugs and other chemicals can alter cell-mediated immunity (CMI), a response that often correlates with delayed-type hypersensitivity (DTH). Several DTH assays were evaluated to determine a method best suited for assessing chemically induced modulation of CMI in rats. The effects of various antigens, adjuvants, doses, routes, and immunosuppressants were investigated. The DTH method which produced optimum results in rats uses a footpad swelling reaction elicited by specific preparations of bovine serum albumin (BSA) and Freund's complete adjuvant (FCA). The rats were sensitized with 100 micrograms BSA in FCA injected subcutaneously at the base of the tail, and were challenged 7 days later with 75 microliter of 2% heat-aggregated BSA suspension injected into the left rear footpad. Footpad swelling was measured with pressure calipers 24 h later and compared to the contralateral footpad which was sham-injected with 75 microliters of physiological saline. Antigen-injected footpads were nearly double the thickness (7-8 mm) of the control footpads (3-4 mm), and variation between animals was small (CV = 5%). Dexamethasone and cyclophosphamide significantly suppressed the DTH reaction. Histopathological examination of the DTH reaction sites revealed a mononuclear cell infiltrate which is characteristic of type IV hypersensitivity. In addition to being highly quantitative and sensitive, this method provides a simple and reproducible assessment of CMI responses in the rat.

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Multiple immunoassay in a single animal: a practical approach to immunotoxicologic testing.

A battery of immunoassays were developed for the rat which measured the major arms of the immune system, namely, humoral immunity, cell-mediated immunity (CMI), and macrophage function. Humoral immunity was assessed by the enzyme-linked immunosorbent assay (using keyhole limpet hemocyanin as antigen). CMI was measured by delayed-type hypersensitivity to heat-aggregated bovine serum albumin using a footpad swelling technique. Macrophage function was assessed by measuring the ability of macrophages to phagocytize sheep red blood cells in vitro. The feasibility of performing all three immunoassays in the same animal was investigated by treating groups of rats with all combinations of antigenic exposure used to induce each type of response. Multiple antigenic treatment regimens did not significantly alter responses to individual antigens used in this study. Animals exposed to the concurrent antigen treatment regimens remained sensitive to immunosuppressants. These data suggest that multiple immunoassays can be successfully performed utilizing a single animal which has been concurrently treated with different antigens. The inclusion of additional assays into this protocol and the efficacy to immunotoxicologic testing is discussed.

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Alteration of natural killer cell-mediated cytotoxicity in rats treated with selenium, diethylnitrosamine and ethylnitrosourea.

Weanling, female Sprague--Dawley rats were divided into 14 separate groups. Three of these groups were administered 0.5, 2.0 or 5.0 ppm selenium (Se) in the drinking water for 10 weeks. Three groups received intraperitoneal injections of 1, 5 or 10 mg/kg diethylnitrosamine (DEN) twice weekly for 10 weeks. The remaining animals received 0.150% or 0.316% ethylurea (EU) in the feed and 1 or 10 ppm nitrite as sodium nitrite in the drinking water either alone or in combination. Separate groups of rats treated with cyclophosphamide (CY) were included as positive immuno-suppressed controls. Following the 10-week chemical exposure period, splenic natural killer (NK) cell-mediated cytotoxicity was assessed by a 4-h chromium release assay using YAC-1 tumor cells as targets. The NK cell cytotoxic response was enhanced in both the low and medium dose selenium-exposed groups. In contrast, rats exposed to 0.316% EU + 10 ppm NO2 had significantly depressed NK cell activity. CY treatment also resulted in a significant reduction of splenic NK cell cytotoxicity.

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Toxicologic, pathologic, and immunotoxic effects of 2,4-dichlorophenol in rats.

2,4-Dichlorophenol (DCP) is a drinking and waste-water contaminant formed by the spontaneous reaction of chlorine with phenols following chlorination of water for disinfection and deodorization. Rats were exposed to 0, 3, 30, or 300 ppm DCP in drinking water either in utero or for 12 wk postnatally following in utero exposure. Toxicity to DCP was assessed by organ and body weight changes, histopathology, and effects on reproduction and immunocompetence. Reproductive parameters measured included conception, litter size, pup birth weight, number stillborn, survival to weaning, and weaning weight. Immune parameters assessed were humoral immunity (antibody production) by an indirect enzyme-linked immunosorbent assay (ELISA), cell-mediated immunity by a delayed-type hypersensitivity response, and macrophage function by phagocytosis of radiolabeled blood cells. Rats that received the combined in utero and postnatal treatment with 300 ppm DCP had significantly increased liver and spleen weights, enhanced humoral immune responsiveness, and depressed cell-mediated immunity. Histopathologic changes were unremarkable in DCP-exposed rats, even in the presence of increased liver and spleen weights. The 6-wk-old progeny of DCP-treated dams had normal immune functions and showed no signs of DCP toxicity, other than increased spleen weights in the 300-ppm exposure group. The results indicate that (1) the immune system may be a sensitive target for chlorinated phenolic compounds, (2) DCP may exert different effects on separate major immune responses, and (3) unlike some other chlorinated phenols, DCP does not appear to alter reproductive performance in rats.

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A review of chlorinated phenols.

The chlorinated phenols are a group of 19 isomers composed of phenol with substituted chlorines. These chemicals are readily soluble in organic solvents but only slightly soluble in water, except for the chlorophenate salts. Chlorophenols with less than 3 chlorines are not used extensively except in the production of higher chlorophenols and chlorophenyloxyacetic acid herbicides. Pentachlorophenol and some tetrachlorophenols are used worldwide, primarily as wood preservatives or fungicides. Residues of chlorophenols have been found worldwide in soil, water and air samples, in food products, and in human and animal tissues and body fluids. Environmental contamination with these chemicals occurs from industrial effluents, agricultural runoff, breakdown of chlorophenyloxyacetic acid herbicides and hexachlorobenzene, and from spontaneous formation following chlorination of water for disinfection and deodorization. The acute toxicity of these chemicals is relatively low and little is known concerning their chronic effects. Chlorophenols have not been shown conclusively to be mutagens, teratogens or carcinogens. However, these compounds may act as promotors or cocarcinogens and the immune system is particularly sensitive to their toxic effects. Transplacental exposure to chlorophenols may result in embryotoxicity and abortion. The major mode of toxic action is as uncouplers of oxidative phosphorylation. The toxicity of chlorophenols decreases with decreasing chlorination. These chemicals are mild hepatotoxins and are stored mainly in hepatic and renal tissues. Chlorophenols are readily absorbed from the gastrointestinal tract and excreted fairly rapidly via the urine. The acute oral LD50 in various species of animals ranges from 10-4000 mg/kg. Strict standards for acceptable residues of these chemicals in the environment have not been established.

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