Search PubMed⌕ Search

Biomedical subjects

S C Morris

Publications and source records attributed to S C Morris.

At least 55 records · Page 3Linked to original sources

Effects of interleukin 12 on immune responses and host protection in mice infected with intestinal nematode parasites.

The cytokine interleukin (IL) 12 stimulates T cell and natural killer cell production of interferon (IFN) gamma and inhibits T cell production of IL-4. We investigated the effects of IL-12 on cytokine gene expression, immunoglobulin (Ig)E, mucosal mast cell, and eosinophil responses, and the course of infection in mice inoculated with the nematode parasite Nippostrongylus brasiliensis, as well as the IFN-gamma dependence of these effects. IL-12 stimulated IFN-gamma and IL-10 gene expression during primary and secondary N. brasiliensis infections and inhibited IL-3, IL-4, IL-5, and IL-9 gene expression during primary infections but had little inhibitory effect during secondary infections. IL-12 inhibited IgE, mucosal mast cell, and blood and tissue eosinophil responses during primary infections, but only eosinophil responses during secondary infections. IL-12 enhanced adult worm survival and egg production during primary, but not secondary infections. IL-12 needed to be administered by day 4 of a primary infection to inhibit IgE and mucosal mast cell responses, and by day 6 to strongly inhibit eosinophil responses and to enhance worm survival and fecundity. Anti-IFN-gamma mAb inhibited the effects of IL-12 on IgE secretion, intestinal mucosal mastocytosis, and parasite survival and fecundity, but did not affect IL-12 inhibition of eosinophilia. These observations indicate that IL-12, if administered during the initiation of eosinophilia. These observations indicate that IL-12, if administered during the initiation of an immune response, can change the response from one that is characterized by the production of T helper (Th)2-associated cytokines to one characterized by the production of Th-1 associated cytokines. However, IL-12 treatment has less of an effect once the production of Th2-associated cytokines has become established. In addition, our results provide evidence that Th2-associated responses protect against, and/or Th1-associated responses exacerbate, nematode infections.

Animals↗

Induction of B cell and T cell tolerance in vivo by anti-CD23 mAb.

T cell tolerance can be induced by B cell presentation of Ags to naive T cells. To further characterize this mechanism of T cell tolerance induction, we have investigated the effects of injecting mice with an intact rat IgG2a Ab, which binds to the B cell low-affinity Fc epsilon receptor (CD23), on the responsiveness of B cells and T cells to rat IgG2a. Our observations indicate that 1) intravenous, subcutaneous, or intraperitoneal injection of this Ab induces antigen-specific B cell and T cell tolerance; 2) both forms of tolerance are induced more completely by injection of rat IgG2a anti-CD23 mAb than by injection of an equal dose of a control rat IgG2a Ig; and 3) reduced responsiveness to Ag is seen as early as 1 to 3 days after anti-CD23 mAb injection and reaches maximum levels by 7 days after injection. Although tolerance induced by the injection of soluble proteins has been reported to be characterized by reduced production of IL-2 and IFN-gamma, but normal production of IL-4, injection of mice with rat IgG2a anti-mouse CD23 mAb greatly decreases the IL-4 response to a rat IgG2a immunogen that normally induces a large IL-4 response.

Animals↗

In vivo activation of naive T cells by antigen-presenting B cells.

In vivo experiments were performed to determine if the cross-linking of mlg on antigen-presenting B cells could induce them to present Ag to naive T cells in a stimulatory rather than a tolerogenic fashion. Mice were injected with a foreign mAb to a B cell Ag (Fc epsilon RII or CR1), and/or a self-anti-IgD mAb. Injection of either mAb alone failed to induce an Ab response; however, simultaneous injection of the foreign anti-B cell mAb plus the self-anti-IgD mAb stimulated a large response. Inasmuch as injection of the anti-IgD mAb should not have facilitated transfer of the foreign mAb to dendritic cells, this observation suggests that cross-linking of B cell mlg can induce B cells to acquire the ability to present Ag to naive T cells in an activating manner. Furthermore, when injected with anti-IgD mAb, both foreign anti-B cell mAbs were more potent in inducing Ab responses in this system than were isotype-matched control mAbs, consistent with the hypothesis that T cells were activated by Ag-presenting B cells. Results of dose-response and cell transfer studies, however, suggested that stringent cross-linking of B cell mlg on large numbers of B cells is required for B cell Ag presentation to induce T cell activation rather than tolerance. Therefore, these observations suggest that professional APCs usually are required to activate naive T cells, and that B cell Ag presentation can only activate naive T cells under unusual circumstances.

Animals↗

Effects of IL-12 on in vivo cytokine gene expression and Ig isotype selection.

The effects of murine rIL-12 on cytokine gene expression and Ig secretion were studied in vivo. In untreated mice IL-12 enhanced IFN-gamma and IL-10 gene expression and protein secretion, reduced base line IL-3 and IL-4 gene expression, and increased serum IgG2a concentration. In mice that had been injected with goat anti-mouse IgD antibody (G alpha M delta) to induce increases in IL-3, IL-4, and IL-10 gene expression and serum IgE, IgG1, IgG2a, and IgG3 concentrations, the simultaneous injection of IL-12 enhanced IFN-gamma and IL-10 gene expression and suppressed IL-3 and IL-4 gene expression and serum IgG and IgE responses. Anti-IFN-gamma mAb neutralized most, but not all, IFN-gamma produced by mice treated with G alpha M delta and IL-12. Anti-IFN-gamma mAb enhanced IL-3 and IL-4 gene expression, did not affect IL-10 or IFN-gamma gene expression, and increased serum IgG1, IgG2a, and IgG3 levels, but had relatively little effect on serum IgE in these mice. In contrast to its effects in G alpha M delta-treated mice, IL-12 failed to inhibit the IgE response to G alpha M epsilon antibody, which stimulates mIgE+ B cells to secrete IgE. These observations demonstrate that: 1) IL-12 may limit its own effects by inducing the production of a cytokine (IL-10) that down-regulates both IL-12 production and IL-12-induced IFN-gamma production; 2) IL-12 inhibits the production of at least one cytokine, IL-3, that is not generally regarded to be strictly Th1- or Th2-associated; 3) IL-12 inhibits switching to IgE secretion to a greater extent than it inhibits switching to other Ig isotypes; and 4) the in vivo effects of IL-12 are, to a large extent, IFN-gamma-dependent.

Animals↗

A palaeontological perspective.

Palaeontology and molecular biology researchers need to develop a better dialogue. The recovery of biological information from Precambrian ecosystems that are thousands of millions of years old, the search for radical genomic reorganizations that might explain the irruption of groups with novel body plans, and the recovery of diagnostic molecules from fossils are all areas of active research, but communication between disciplines does not always occur.

Animals↗

Anti-cytokine antibodies as carrier proteins. Prolongation of in vivo effects of exogenous cytokines by injection of cytokine-anti-cytokine antibody complexes.

Anti-cytokine antibodies that block interactions between cytokines and cytokine receptors have been used to inhibit endogenous cytokine function. However, injection of mice with mixtures of IL-4 and either of two neutralizing anti-IL-4 mAb, at a cytokine/anti-cytokine mAb molar ratio of approximately 2:1, enhances and prolongs in vivo IL-4 activity, as measured by induction of increased spleen cell Ia expression. Although splenocyte Ia expression returns to baseline two days after mice are injected with free IL-4, soluble IL-4-anti-IL-4 mAb complexes still induce several-fold increases in Ia expression 3 days after injection. Complexes that contain as little as 400 ng of IL-4 have considerable in vivo stimulatory activity, and a maximal effect on splenocyte Ia expression is induced by injection of 2 micrograms of complexed IL-4. The stimulatory effect of IL-4-containing complexes on splenocyte Ia expression can be blocked by increasing the ratio of anti-IL-4 mAb to IL-4, by injection of anti-IL-4R mAb, and by in vivo aggregation of the complexes. Complexes of IL-4 with a non-neutralizing anti-IL-4 mAb do not have increased IL-4 agonist activity in vivo. These observations are most consistent with the possibility that neutralizing anti-IL-4 mAb act as carrier proteins that increase the in vivo half-life of IL-4 by preventing its excretion, and possibly, by preventing modification of its active site. The enhanced agonist effect of IL-4-anti-IL-4 mAb complexes is not unique; complexes of IL-3 with a neutralizing anti-IL-3 mAb have a greatly increased ability, compared with free IL-3, to stimulate mucosal mastocytosis, and complexes of IL-7 with a neutralizing anti-IL-7 mAb have a greatly increased ability, compared with free IL-7 or IL-7 complexed with a non-neutralizing anti-IL-7 mAb, to stimulate an increase in pre-B cell number. These observations suggest that complexes of cytokines and neutralizing anti-cytokine mAb may provide a generally useful way to increase the magnitude and duration of cytokine effects in vivo.

Animals↗

Enhanced detection of PCR products through use of TOTO and YOYO intercalating dyes with laser induced fluorescence--capillary electrophoresis.

Recent developments in the chemical synthesis of DNA-binding dyes have enhanced detection of polymerase chain reaction (PCR) products by capillary electrophoresis. These dyes are dimers of thiazole orange (TOTO) or oxazole orange (YOYO) and have a very high binding affinity for DNA (Haugland, 1992). These dyes show enhanced fluorescence signals when they bind to double-stranded DNA and their fluorescence in the unbound state is almost zero, making them extremely useful in detecting minute (fg) quantities of DNA. We report here the utility of these dyes in DNA typing applications using a laser-induced fluorescence detector in conjunction with a capillary electrophoresis system.

Benzoxazoles↗

Role of antigen-specific T cell help in the generation of in vivo antibody responses. I. Antigen-specific T cell help is required to generate a polyclonal IgG1 response in anti-IgD antibody-injected mice.

A system in which injection of mice with an antibody to mouse IgD that they recognize as foreign stimulates a large, T cell-dependent IgG response was used to study whether Ag-specific T cell help is required to stimulate polyclonal (non-Ag-specific) IgG production in vivo. Igha x Ighb allotype heterozygous mice were injected with a conjugate of a foreign Ag coupled to a mAb specific for one of the two IgD allotypes expressed in these mice. This conjugate cross-links mIgD on B cells that express the recognized allotype. These cells process the conjugate and present the foreign Ag to Ag-specific T lymphocytes, which become activated. Thus, B cells of the recognized allotype can be stimulated by cross-linking of their mIgD, Ag-specific T cell help, non-Ag-specific cytokines, and non-Ag-specific contact with activated T cells. In contrast, B cells that express the Igh allotype not recognized by the Ag-anti-IgD antibody conjugate (bystander B cells) can be stimulated in this system only by non-Ag-specific cytokines and non-Ag-specific contact with activated T cells. Although both recognized and bystander B cells in conjugate-injected mice demonstrated substantial increases in size and Ia expression, only the recognized B cells were induced to synthesize DNA and to make a substantial polyclonal Ig response. Bystander B cells still failed to secrete IgG when mice were injected with an anti-IgD-Ag conjugate specific for the other Igh allotype as well as a mAb that cross-linked IgD of the bystander B cell allotype. These observations demonstrate that although non-Ag-specific cytokine and contact-mediated T cell help are sufficient to induce B cells to increase in size and Ia expression in anti-IgD antibody-injected mice, Ag-specific T cell help is required to stimulate the generation of an IgG response in these mice.

Animals↗

Antigen presentation by B lymphocytes to CD4+ T lymphocytes in vivo: importance for B lymphocyte and T lymphocyte activation.

B lymphocytes, like macrophages and dendritic cells, can present antigen to CD4+ T cells. Antigen presentation by B cells is essential for the generation of an in vivo T cell dependent antibody response, and repeated antigen presentation by B cells to T cells is necessary to induce B cell clonal expansion. Presentation of antigen by resting B cells to unprimed T cells tolerizes T cells, while anti-IgD antibody activates B cells and allows B cell antigen presentation that productively activates T cells. However, activation is not all that is required for B cells to productively present antigen to T cells.

Animals↗

An intrinsic B cell defect is required for the production of autoantibodies in the lpr model of murine systemic autoimmunity.

Mice homozygous for the gene lpr develop marked lymphadenopathy and a spectrum of autoantibodies closely resembling that of human systemic lupus erythematosus. The unusual T cell phenotype of the expanded lymphocyte population and the T-dependence of several antibodies in this strain have suggested that primary T cell abnormalities underlie the autoimmune syndrome. Using double chimeras, we now show that expression of the lpr gene in B cells is absolutely necessary for autoantibody production. Combinations of anti-Thy 1.2 + C' treated bone marrow from congenic strains of C57BL/6 mice, differing only at the immunoglobulin heavy chain (Igh) and lpr loci, were transferred into lethally irradiated B6/lpr mice. Double chimerism was documented by allotype-specific surface IgD and IgM immunofluorescence assay of peripheral blood and by allotype-specific enzyme-linked immunosorbent assay for total IgM in serum. Despite the presence of both +/+ and lpr B cells, IgM and IgG2a anti-chromatin as well as IgM anti-IgG were entirely the products of lpr B cells. Total serum IgG2a and IgG1 were also dominated by the lpr phenotype but not to the same extent. A similar experiment using B6/lpr-Igha recipients confirmed these findings. Additional experiments in which B6/lpr recipients were infused with ratios of donor bone marrow favoring B6.C20 +/+ over B6/lpr showed that even though +/+ B cells were overrepresented, autoantibodies were only of the lpr allotype. In addition, in the presence of lpr B cells, normal B cells showed little response to an exogenous, T cell-dependent antigen. The data thus indicate that lpr B cells manifest an intrinsic abnormality which is essential for autoantibody production in the lpr model.

Animals↗

Trends in quantitative cancer risk assessment.

Quantitative cancer risk assessment is a dynamic field, more closely coupled to rapidly advancing biomedical research than ever before. Six areas of change and growth are identified: expansion from models of cancer initiation to a more complete picture of the total carcinogenic process; trend from curve-fitting to biologically based models; movement from upperbound estimates to best estimates, with a more complete treatment of uncertainty; increased consideration of the role of susceptibility; growing development of expert systems and decision support systems; and emerging importance of risk communication.

Disease Susceptibility↗

Study of early appearance of skin lesions in coal gasification workers.

A retrospective cohort morbidity study was conducted among workers employed at the Kosovo coal gasification plant and a reference population of open-pit lignite miners. The aim was to determine the rate of early skin cancer and pre-cancerous skin lesions. In 15 years of commercial operation of the coal gasification plant, seven workers were diagnosed with benign skin tumors, six with pre-cancerous skin diseases, but none with skin cancer. The lesions were significantly fewer than were reported earlier over a shorter time period and in a smaller population at a coal hydrogenation plant. Compared to the reference population who received medical care in the same clinic, gasification workers had a lower skin cancer rate, but a higher rate of benign skin tumors and potentially pre-cancerous skin diseases.

Adult↗

Polyclonal activation of the murine immune system by an antibody to IgD. X. Evidence that the precursors of IgG1-secreting cells are newly generated membrane IgD+B cells rather than the B cells that are initially activated by anti-IgD antibody.

Injection of BALB/c mice with an affinity-purified goat antibody to mouse IgD (GaM delta) stimulates T cell-independent B cell activation as well as later T cell activation. Activated T cells then induce polyclonal differentiation of B cells into IgG1-secreting cells, which results in an approximately 100-fold increase in serum IgG1 level. It is not known whether the same B cells that are initially activated by GaM delta are the progenitors of the IgG1-secreting cells. To investigate this issue a system was developed in which CB20 mice, which are congenic to BALB/c mice but express Ig of the beta allotype rather than the BALB/c alpha allotype, were injected with GaM delta and simultaneously or subsequently also received BALB/c B cells. The IgG1 response generated by the donor BALB/c B cells was quantitated by an assay specific for IgG1 of the alpha allotype. Our experiments with this system indicate that: 1) BALB/c B cells transferred 2 days after CB20 mice were injected with GaM delta generate a much larger IgG1 response than do BALB/c B cells transferred simultaneously with GaM delta antibody; 2) B cells that express membrane IgD generate the great majority of this response; 3) differences in the magnitudes of the responses of BALB/c B cells transferred at different times after CB20 mice were injected with GaM delta antibody cannot be explained by differences in homing of the donor B cells to the host spleen or by short survival of donor BALB/c B cells after their transfer; and 4) the response made by donor BALB/c B cells transferred 2 days after CB20 mice were injected with GaM delta is proportionate to donor cell representation in the host spleen 1 day after their transfer, whereas the response made by donor cells transferred simultaneously with GaM delta is disproportionately small. These observations suggest that most of the IgG1 antibody made by GaM delta-injected mice is generated by newly produced, mIgD+ B cells that appear approximately 2 days after GaM delta injection, rather than by those B cells that are present in the spleen at the time of GaM delta injection, and support the view that signals that induce B cell secretion of Ig require an interaction with at least partially activated Th cells.

Animals↗

Rapid stimulation of large specific antibody responses with conjugates of antigen and anti-IgD antibody.

Injection of mice with goat anti-mouse IgD antibody stimulates a large IgG1 anti-goat IgG antibody response, as well as polyclonal IgG1 production. To determine if this phenomenon could be used to induce large antibody responses to other Ag, covalent conjugates were produced between BSA or other Ag and H delta a/1, a mAb specific for IgD of the a allotype, and between BSA and AF3.33, a mAb specific for IgD of the b allotype. Injection of H delta a/1-BSA into BALB/c mice, which express Ig of the a allotype, or into (BALB/c x CB20)F1 mice (a x b allotype heterozygotes) induced IgG1 anti-BSA antibody responses that peaked 8 to 9 days after injection, and were more than 1000 times larger than those induced by injection of BSA alone, and 100 times larger than those induced by injecting unconjugated BSA plus H delta a/1. H delta a/1-BSA was no more immunogenic than unconjugated BSA when injected into CB20 mice, which express Ig of the b allotype, while AF3.33-BSA greatly enhanced anti-BSA antibody production in CB20, but not in BALB/c mice. Mice serially immunized with three different Ag conjugated to H delta a/1 made large antibody responses to all three Ag, provided that the mouse strain used did not recognize allotypic determinants on H delta a/1 as foreign and produce a neutralizing antibody response. Intravenous and s.c. routes of inoculation produced responses of similar magnitude and relatively low variability; responses to footpad or intramuscular inoculation were more variable, and i.p. inoculation induced smaller responses. Injection of BALB/c mice i.v. with 100 micrograms of H delta a/1-BSA induced an IgG1 anti-BSA response of 5.6 mg/ml, which was approximately 70% of the total IgG1 response. Anti-BSA responses to 30 micrograms of conjugate or less were much smaller, but could be considerably enhanced by adding unconjugated H delta a/1 to the inoculum. This system will be useful for the rapid stimulation of large antibody responses to biologically important Ag, and for investigating mechanisms of Ag processing and B and T cell activation.

Animals↗

Autoantibodies in chronic graft versus host result from cognate T-B interactions.

A chronic graft-versus-host reaction (GVH) induced in nonautoimmune mice causes a syndrome that closely resembles SLE. In this model, donor T cells react against incompatible host Ia structures and generate excessive help, which activates a subpopulation of self-reactive B cells. We have studied whether these self-reactive B cells are activated by direct interaction with alloreactive T cells or by nonspecific bystander effects. Two types of chimeras were made: double-parental chimeras, differing at both Ia and Igh allotype [B6.C20 + bm12----(B6.C20 x bm12)F1]; and control chimeras [(B6.C20 x bm12)F1----(B6.C20 x bm12)F1]. A chronic GVH syndrome was induced in the chimeras by infusion of B6 or bm12 spleen cells. Coombs and antichromatin autoantibodies were measured using Igh allotype-specific immunoassays. The double-parental chimeras that received bm12 cells made autoantibodies principally of the Igha allotype, indicating that the bm12 T cells interacted only with the Iab-bearing host B cells. Conversely, double-parental chimeras that received B6 cells made mostly Ighb autoantibodies, indicating direct cognate interaction with the Iabm12-bearing host B cells. The control chimeras made autoantibodies of both allotypes. These results indicate that autoantibodies in chronic GVH result from direct T-B interactions and not from nonspecific T cell-derived factors.

Animals↗

Allotype-specific immunoregulation of autoantibody production by host B cells in chronic graft-versus host disease.

A chronic graft-vs-host (GVH) reaction induced in nonautoimmune mice by the transfer of Ia-incompatible spleen cells results in a syndrome that closely resembles SLE in the spectrum of autoantibodies and immunopathology. We have utilized Ia- and Igh-congenic strains to study the immunoregulation of autoantibody-producing B cells in this model. We have found that the autoantibodies are produced almost entirely by the host B cells. The transferred donor B cells contributed neither to the autoimmune response nor to the total serum Ig, with rare exceptions. The donor cell population did, however, exert an Igh allotype-specific immunoregulatory effect on the host B cells. For example, in allotype-heterozygous recipients, the autoantibodies were preferentially made by those host cells that expressed the donor allotype, whereas those host B cells that expressed nondonor allotype were relatively suppressed. In allotype-homozygous recipients, the donor cells frequently suppressed the host IgG2a allotype completely. This suppression sometimes prevented the IgG antichromatin response, although in other cases the response occurred with the use of a different isotype. In a final set of experiments, a chronic GVH reaction was induced in which both the donors and the recipients were Igh allotype heterozygous and yet differed at Ia. In this case, no donor influence on allotype should be expected; yet the IgG2a autoantibodies were clearly skewed toward the b allotype. These results show that host B cells play a unique role in the GVH autoimmune syndrome. In addition, they are immunoregulated in allotype-specific manners, some of which presumably involve interaction with donor T cells.

Animals↗

Experimental induction of systemic lupus erythematosus by recognition of foreign Ia.

A chronic GVH reaction induced in normal mice results in a syndrome that closely resembles SLE. In this study, we compared the autoimmune GVH syndrome induced in parent (C57BL/6Kh [B6] and B6.C-H-2bm12 [bm12]) and F1 [( B6 x bm12]F1) mice by transfer of parental spleen cells. A majority of the mice in all groups developed autoantibodies to chromatin and erythrocytes, and some of the mice also produced anti-dsDNA antibodies. The predominant isotype of the anti-chromatin autoantibodies was found to be IgG2a, although high levels of IgG2b antibodies were also present. Autoantibody production was in general more intense and more prevalent in parent----F1 hybrid combinations, compared to parent----parent infusions. No influence of host or graft gender was observed. These studies show that a chronic GVH reaction can be induced by both parent----parent and parent----hybrid combinations.

Animals↗