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Biomedical subjects

L S Soderberg

Publications and source records attributed to L S Soderberg.

At least 37 records · Page 2Linked to original sources

In vivo prenatal chlordane exposure induces development of endogenous inflammatory macrophages.

Macrophages (m phi s), important cells in host resistance, undergo a series of biochemical changes during their progression from the resident to the fully activated stage. Both resident and inflammatory m phi s are characterized by some unique properties. In the present study, female BALB/c mice were prenatally treated with 8 mg/kg body weight of chlordane, a cyclodiene poly-chlorinated hydrocarbon that appears to reduce immunocompetence by selectively impairing m phi function. Therefore, we examined functions in m phi s from chlordane-treated mice that had been stimulated with thioglycollate. The 5'-nucleotidase activity, present in high levels in resident m phi s but low levels in inflammatory m phi s was elevated in resident m phi s from vehicle-exposed animals. Conversely, inflammatory m phi s from these animals showed significantly diminished levels of this function. Moreover, chlordane-exposed m phi s, regardless of whether they were resident or inflammatory, exhibited decreased 5'-nucleotidase responses. When a second function, transferrin receptor binding, was analyzed, vehicle-treated inflammatory m phi s displayed high levels of activity whereas the resident m phi s showed very little transferrin binding. However, both resident and inflammatory m phi s from the chlordane-exposed group demonstrated transferrin binding activity similar in magnitude to that of the vehicle-treated inflammatory m phi s. Finally, two-dimensional polyacrylamide gel electrophoresis analysis of m phi s from chlordane-exposed mice have characteristics of normal m phi s that have advanced to the inflammatory stage.

5'-Nucleotidase↗

Transforming growth factor-beta is the major mediator of natural suppressor cells derived from normal bone marrow.

We previously reported that murine bone marrow cells activated by interleukin-3 (IL-3) or granulocyte-macrophage colony-stimulating factor (GM-CSF) had potent nonspecific natural suppressor (NS) cell activity. In the present study, we demonstrated that these activated NS cells released a soluble factor (or factors) capable of nonspecifically inhibiting T cell mitogenic responses. Consistent with the properties of transforming growth factor-beta (TGF-beta), treatment of the NS supernates with heat failed to denature the factor, and in fact significantly increased its suppressive activity. The NS suppressor factor strongly inhibited proliferation of the TGF-beta-sensitive tumor cell line, A549. Cytokine activation of suppressive activity correlated with the production of a 10- to 13-kDa protein, consistent with the size of TGF-beta and rIL-3 induced a sevenfold increase in TGF-beta transcription. Finally, neutralizing anti-TGF-beta antibody inhibited the suppressive activity of the supernates, indicating that TGF-beta was responsible for most, if not all, of the suppression expressed by these bone marrow NS cells.

Animals↗

Macrophage tumoricidal mechanisms are selectively altered by prenatal chlordane exposure.

Macrophages (m phi) derived from mice treated in utero with chlordane show a significant delay of tumoricidal induction activity. In this study, m phi from chlordane-treated animals required a 48 h in vitro period of induction with interferon-gamma and lipopolysaccharide (IFN/LPS) before they could kill P815 targets. Similarly, m phi from chlordane-treated animals also failed to produce an immediate H2O2 burst upon perturbation. Conversely, their stimulated control m phi counterparts were tumoricidal by 2 h and exhibited a respiratory burst without any delay. Moreover, levels of the second messenger, inositol triphosphate (IP3), were significantly delayed in chlordane-treated animals following interaction with IFN/LPS. When nitrate/nitrite production was analyzed as an alternate mechanism for killing tumors, stimulated m phi from both normal and chlordane-treated animals responded equally. The data show that chlordane differentially introduces defects in m phi biochemical mechanisms associated with tumor killing.

Animals↗

Cytokine regulation of bone marrow natural suppressor cell activity in the suppression of lymphocyte function.

Natural suppressor (NS) cells, which nonspecifically suppress immune responses, are present in the spleen following exposure to radiation, chronic graft-versus-host disease, or cancer and in normal bone marrow. A model system is described which allows the study of cytokines activating and inhibiting NS cells, cytokines mediating NS activity, and NS effects on cytokine synthesis. Recombinant interleukin-3 (rIL-3) and granulocyte-macrophage colony-stimulating factor (rGM-CSF) efficiently activated NS cells present in normal bone marrow and were effective at concentrations as low as 5 U/ml. At high concentrations, GM-CSF, but not IL-3, did not activate NS cells. Recombinant interferon-gamma (rIFN-gamma) blocked the activation of bone marrow NS cells by rIL-3, but did not down-regulate NS cells once activated. The NS cells secreted one or more soluble suppressor factors, which blocked IL-2 synthesis and also inhibited IL-2-dependent T cell proliferation in the presence of excess IL-2.

Animals↗

Bone marrow natural suppressor cells inhibit the growth of myeloid progenitor cells and the synthesis of colony-stimulating factors.

Natural suppressor (NS) cells, which nonspecifically suppress immune responses, are generally found at sites of hemopoietic generation or regeneration. Murine bone marrow NS cells were activated by recombinant interleukin 3 (rIL-3) or recombinant granulocyte-macrophage colony-stimulating factor (rGM-CSF) and produced a soluble suppressor factor. In the present study, the soluble suppressor factor from bone marrow NS cells was found to be a potent inhibitor of myeloid colony formation at concentrations below those required for immunosuppression. NS cell supernatants inhibited the growth of granulocyte-macrophage colony-forming units (CFU-GM), granulocyte erythrocyte macrophage megakaryocyte colony-forming units (CFU-GEMM), and erythroid colony-forming units (CFU-E) to a similar extent. Neutralizing anti-transforming growth factor beta (TGF-beta) reversed the suppressive effects of the supernatants, suggesting that TGF-beta was involved in the suppression. The NS cell supernatants also inhibited the production of colony-stimulating activity by bone marrow stromal cells and the transcription of GM-CSF mRNA by activated T cells. These data suggest that NS cells are important regulators of hemopoiesis. NS cells, which are non-adherent, radioresistant non-T cells resident in the bone marrow, were shown to be sensitive to treatment with the lysosomotropic agent, L-leucine methyl ester, suggesting that the NS cells may be of large granular lymphocytic or monocytic lineage. Cytotoxicity studies revealed that cells in the NS population had natural cytotoxic (NC), but not natural killer (NK) activity.

Animals↗

Exposure to inhaled isobutyl nitrite reduces T cell blastogenesis and antibody responsiveness.

Isobutyl nitrite is a drug of abuse popular among male homosexuals and among adolescents. In order to approximate the nitrite exposures of inhalant abusers, mice were treated with 900 ppm isobutyl nitrite in an inhalation chamber for 45 min per day for 14 days. After 14 consecutive days of exposure to isobutyl nitrite, mice weighed an average of 4% less than mice exposed to air. The spleens of nitrite-exposed mice weighed 15% less and had 24% fewer cells per spleen than those of controls. Adjusted for equal cell numbers, T cell mitogenic and allogeneic proliferative responses were significantly reduced by 33 and 47%, respectively. The frequency of T-dependent plaque-forming cells (PFC) was inhibited by 63% and the total number of PFC per spleen was reduced by 72% in nitrite-exposed mice. In contrast, B cell proliferative responses to LPS were unaltered, suggesting that the toxicity of isobutyl nitrite did not affect all lymphoid cells equally. The data suggest that habitual inhalation of isobutyl nitrite could impair immune competence and that toxicity appeared to be directed toward T cell functions.

Administration, Inhalation↗

Alteration of fetal liver colony formation by prenatal chlordane exposure.

Female mice were treated with 0 or 8 mg/kg chlordane daily for 18 days during pregnancy. The fetuses of these mice were assayed for fetal liver hematopoietic activity at 18 days gestational age. Hematopoietic activity was evaluated for in vitro granulocyte-macrophage colony-forming units (GM-CFU) and in vivo spleen CFU (CFU-S). The consistent finding was a significant depression of the numbers of both fetal liver GM-CFU and CFU-S without a change in liver cellularity in fetuses exposed to 8 mg/kg chlordane. These data show that the damage to stem cells that persists into adult life as a result of chlordane exposure, as reported earlier by Barnett et al. (1990) Fundam. Appl. Toxicol. 14, 688-695, occurred during the fetal period.

Aging↗

Long-term alteration of adult bone marrow colony formation by prenatal chlordane exposure.

Female mice were treated with either 0, 4, or 8 mg of chlordane per kilogram body weight daily for 18 days during pregnancy. The offspring of these mice were assayed for bone marrow hematopoietic activity at 100 and 200 days of age. Hematopoietic activity was evaluated for in vitro granulocyte-macrophage colony-forming units (GM-CFU) and in vivo spleen CFU (CFU-S). The consistent finding was a significant depression both of the numbers of bone marrow GM-CFU and of the CFU-S in offspring exposed to either 4 or 8 mg/kg chlordane even at 100 and 200 days after cessation of treatment. Prenatal treatment with chlordane did not affect the number of recoverable viable bone marrow cells at either of these time points. Ontological development was selectively affected by chlordane exposure, since subchronic (18 day) treatment of adult mice did not significantly alter bone marrow GM-CFU or CFU-S levels. These data suggest that the decreased delayed-type hypersensitivity reactions noted previously in mice exposed to chlordane prenatally may be due to a change in the functional capacity of myeloid lineage cells rather than altered T cell function.

Animals↗

Cytotoxic T-lymphocyte and NK responses in mice treated prenatally with chlordane.

It has been reported previously that BALB/c mice, treated in utero with chlordane, showed increased survival to influenza A/PR/8/34 [H1N1] (influenza) virus as young adults. To determine the possible role of cell-mediated immunity (CMI) on this effect, cytotoxic T-lymphocyte (CTL) and natural killer (NK) cell activities were assessed on chlordane-exposed offspring at 100 and 200 days post partum. The CTL response of these offspring showed no significant change from that obtained from their sex- and age-matched control counterparts exposed prenatally to the vehicle. NK responses of chlordane-exposed female offspring were significantly higher at 100 days of age but not at 200 days of age. Although male offspring that were exposed to chlordane prenatally showed no difference in NK cell activity at 100 days of age, NK cell activity was significantly less in chlordane-treated animals than controls at 200 days of age. Thus, prenatal treatment of mice with chlordane had varying effects on the NK cell activity of adult offspring, depending on the sex and age of the animal. It is concluded that the previously reported increase in survival to influenza is due to a resolution of the infection by normal CTL and NK cell activities coupled with a decrease in delayed-type hypersensitivity (DTH)-mediated pathology.

Age Factors↗

Immunization against chlamydial genital infection in guinea pigs with UV-inactivated and viable chlamydiae administered by different routes.

Female guinea pigs were immunized with viable or UV light-inactivated chlamydiae (agent of guinea pig inclusion conjunctivitis), belonging to the species Chlamydia psittaci, by intravenous, subcutaneous, oral, or ocular routes. All animals were then inoculated vaginally with viable chlamydiae to determine the extent of protection against challenge infection induced by the various regimens. The course of genital infection was significantly reduced in intensity in all groups of animals except the unimmunized controls and those animals immunized orally with inactivated antigen. Guinea pigs immunized with viable antigen were more likely to develop resistance to challenge infection and, in general, had a significantly greater degree of protection than animals immunized with inactivated antigen. No one route seemed superior in producing a protective response. Animals in all groups demonstrating protection developed serum and secretion immunoglobulin G antibody responses to chlamydiae. Lymphocyte proliferative reactions to chlamydial antigen were variable among groups. Immunoblot analysis of serum and secretions indicated a wide range of antibody specificities, but most protected animals produced antibodies to the major outer membrane protein, lipopolysaccharide, and the 61-kilodalton protein. No definitive associations could be made between the increased ability of immunization with viable organisms to produce resistance to challenge infection and a particular immune parameter. These data indicate that viable chlamydiae given by various routes are able to induce a strong immune response which can provide resistance against reinfection in some cases or at least reduce the degree of infection to a greater degree than inactivated antigen. However, complete resistance to genital tract infection may be difficult to obtain and alternate immunizations strategies may have to be developed.

Animals↗

Postirradiation treatment with copper(II)2(3,5-diisopropylsalicylate)4 enhances radiation recovery and hemopoietic regeneration.

We have previously reported that copper(II)2(3,5-diisopropylsalicylate)4 (Cu-DIPS), administered 3 h before exposure to lethal irradiation, significantly increased the survival rate of mice. Agents that can improve recovery from irradiation are of particular importance for accidental radiation exposure if they are effective when given after exposure. In the present study, we showed that Cu-DIPS had radiation recovery activity when administered subsequent to radiation exposure. Mice were exposed to 800 cGy irradiation and 3 h later injected with vehicle or 20, 40, or 60 mumol/kg Cu-DIPS. The 30-day survival rate was significantly increased at all doses of Cu-DIPS tested. Survival increased from 47% for vehicle-treated mice to 78% (p less than 0.001) for mice treated with 40 mumol/kg. The recovery of hemopoietic activity was assessed in similarly treated mice 14 and 24 days after irradiation. The postirradiation Cu-DIPS treatment significantly increased spleen weights, bone marrow cellularity, and hemopoietic activity in the spleen and bone marrow compared to vehicle-treated controls. Enhanced recovery of hemopoietic activity included both committed progenitor granulocyte-macrophage colony-forming units (GM-CFU) and more primitive stem cells (endogenous spleen colony-forming units, CFU-Se). The number of CFU-Se at 14 days, the number of bone marrow GM-CFU at 24 days, and bone marrow cellularity at 24 days appear to be better predictors of survival rates than other parameters.

Animals↗

Copper complexes stimulate hemopoiesis and lymphopoiesis.

Copper(II)2(3,5-diisopropylsalicylate)4 [Cu(II)2(3,5-DIPS)4] is a synthetic copper complex with a variety of effects, including radiation recovery, anti-inflammatory, and accelerated wound healing activities. When C57BL/6 mice were injected subcutaneously with 80 mumol/kg Cu(II)2(3,5-DIPS)4 their spleens significantly enlarged. This splenomegally lasted for at least 3 weeks and was accompanied by increased myelopoiesis in the spleen. Bone marrow had no significant change in cellularity or myelopoiesis. The treatment with Cu(II)2(3,5-DIPS)4 had only minor effects on the ability of spleen cells to respond to mitogenic or antigenic stimulation. Cu(II)2(3,5-DIPS)4 did stimulate lymphopoiesis, since it accelerated the recovery of immune reactivity following exposure to 8 Gy whole body irradiation. Copper levels in the spleens and bone marrow of unirradiated mice treated with Cu(II)2(3,5-DIPS)4 were not significantly elevated 24 hr after treatment and copper levels were transiently reduced 7 days after treatment.

Animals↗

Bioavailable copper complexes offer a physiologic approach to treatment of chronic diseases.

Copper (II)2(3,5-Diisopropylsalicylate)4(H2O)2 has been found to have antiinflammatory, antiulcer, anticonvulsant, anticancer, anticarcinogenic, antimutagenic, and radiation recovery activities and it prevents reperfusion injury. To study pharmacokinetic parameters accounting for these pharmacological effects the double labeled 67Cu(II)2(carboxy-14C-3,5-diisopropylsalicylate)4 complex was synthesized and used to obtain these parameters. Treatment of mice with 1 mumol of this complex revealed that 67Cu was distributed to blood, liver, kidney, intestine, lung, thymus, femur, muscle, spleen, brain, urine, and feces within 0.5 hr and patterned changes in 67Cu content of these tissues and excreta were found throughout the 96 hr term of this study.

Animals↗

Role of cell-mediated immunity in the resolution of secondary chlamydial genital infection in guinea pigs infected with the agent of guinea pig inclusion conjunctivitis.

Guinea pigs which have recovered from a genital infection with the agent of guinea pig inclusion conjunctivitis demonstrate strong immunity to reinfection for a short period of time but then become susceptible to reinfection. The secondary infection is markedly shortened in duration and decreased in intensity. Previous studies have indicated an important role for humoral immunity in resistance to and in recovery from reinfection. However, the contribution of cell-mediated immunity to immunity toward or recovery from a secondary infection is not clear. Guinea pigs were infected in the genital tract with guinea pig inclusion conjunctivitis and were challenged at either 30 or 75 days after the primary infection. Prior to challenge, one group of animals were injected with rabbit anti-guinea pig thymocyte serum (ATS) while control groups received either normal rabbit serum or no treatment. Treatment was continued daily for the course of the experiment. On day 30, ATS-treated guinea pigs had a slightly higher rate of reinfection, and generally the infection persisted longer than in controls. On day 75, all animals became reinfected upon challenge, but control animals resolved their infections in 3 to 9 days. In contrast, most ATS-treated animals remained infected throughout the course of the experiment. Although the animals became reinfected, the levels of chlamydiae were much lower than those observed during the primary infection. ATS treatment abrogated T-cell responses, but serum and secretory antibody responses remained normal. Histopathological examination revealed some decrease in mononuclear infiltration of endocervical and uterine tissues in ATS-treated animals. These data indicate that previously infected guinea pigs require both cell-mediated immunity and humoral immunity for resolution of a challenge infection.

Animals↗

A soluble factor produced by bone marrow natural suppressor cells blocks interleukin 2 production and activity.

We previously reported that a population of Fc gamma-receptor+ (Fc gamma R+) suppressor cells present in normal unstimulated rabbit bone marrow inhibited the growth of autologous rapidly proliferating bone marrow cells devoid of Fc gamma R. It is now reported that the Fc gamma R+ bone marrow cells produced a soluble, nondialyzable suppressor factor(s) (SF) which blocked the proliferation of Fc gamma R- bone marrow cells. In addition, the Fc gamma R+ cells and SF significantly inhibited spleen cell proliferation in response to concanavalin A (Con A), phytohemagglutinin, and pokeweed mitogen. The bone marrow SF exhibited a dose-dependent suppression of the growth of IL-2-dependent T lymphocytes in the presence of IL-2. SF also completely blocked the production or release of IL-2 by Con A-stimulated T cells. Thus, these bone marrow natural suppressor cells produced a soluble factor, which regulated the growth of rapidly proliferating bone marrow cells and also regulated T cell reactivity by modulating IL-2 production and activity.

Animals↗

Resolution of chlamydial genital infection in B-cell-deficient mice and immunity to reinfection.

The purpose of this investigation was to determine the relative roles of the humoral and cell-mediated immune responses in the resolution of chlamydial genital infection of mice and resistance to reinfection. To this end, female BALB/c mice were rendered B cell deficient by treatment with heterologous anti-immunoglobulin M (IgM) serum from birth. Controls were similarly treated with either normal serum or phosphate-buffered saline. Before inclusion in each experiment, anti-IgM-treated mice were screened for the absence of IgM in serum and for the presence of cell-mediated immune responses. In addition, spleen cells from anti-IgM-treated mice responded to concanavalin A and phytohemagglutinin but not to lipopolysaccharide. By these criteria, mice were designated B cell deficient. B-cell-deficient mice and controls were inoculated intravaginally with a suspension of mouse pneumonitis agent (MoPn), a Chlamydia trachomatis biovar. All B-cell-deficient mice resolved the infection. Additionally, no significant difference was seen in the course of the infection in B-cell-deficient mice when compared with controls. In contrast to control mice, B-cell-deficient mice displayed no detectable antibody responses to MoPn in serum or in genital secretions. However, both B-cell-deficient mice and controls developed delayed-type hypersensitivity and T-cell proliferative responses to MoPn. When challenged 53 days after primary infection, no significant difference was seen in the resistance of B-cell-deficient mice to reinfection when compared with that of the controls. These data indicate that cell-mediated immune mechanisms play an important role in the resolution of and resistance to chlamydial genital infection in this model.

Animals↗