Search PubMed⌕ Search

Biomedical subjects

B Diamond

Publications and source records attributed to B Diamond.

At least 127 records · Page 7Linked to original sources

Requirements for suppressor cell activation. Role of accessory cells.

In the 4-hydroxy-3-nitrophenyl acetyl (NP) suppressor system, third order suppressor cells (Ts3) subset of suppressor cells is generated after Ag priming, but, in order to express suppressor activity, these cells need to be further activated or triggered with a specific second order suppressor factor. By in vitro activation of Ts3-containing lymph node cells or a pTs3 hybridoma we now show that macrophages are also required for Ts3 activation. In addition, we demonstrate that IJ genetic restrictions control this activation process. Furthermore, we directly demonstrate Ts3 activation using cloned macrophage hybridoma cells. To further investigate the interactions between Ts3 cells and the accessory cells involved in their activation, we attempted to block the second order suppressor factor mediated activation of Ts3 cells with antibodies. The activation of Ts3 cells can be blocked by the addition of anti-IJ, anti-IJ idiotype or anti-NPb idiotype antibodies, but not by anti-CD8, anti-IA, or anti-IE antibodies. Anti-IJ mAb blocked Ts3 activation at the lymphocyte level whereas anti-IJ idiotype blocked activation at the accessory cell level. Finally we tested, whether these antibodies can also directly activate primed Ts3 cells. We demonstrate that cross-linked anti-IJ, anti-NPb and anti-CD3 antibodies can activate Ts3 cells. The results are discussed in terms of receptor-ligand structures on Ts and accessory cells which are required for the activation of Ts3 cells.

Animals↗

Monoamine oxidase inhibitory properties of milacemide in rats.

Milacemide is a glycine prodrug with reported antiepileptic antimyoclonic properties. In this study, milacemide increased "wet dog shakes" in rats pretreated with 5-Hydroxytryptophan (5-HTP) and carbidopa. Moreover, it worsened the serotonin behavior syndrome precipitated by 5-HTP and the monoamine oxidase inhibitor tranylcypromine. The serotonin syndrome was also elicited by the combination of milacemide and 5-HTP without tranylcypromine. In vitro, milacemide inhibited both monoamine oxidase A and B from the frontal cortex of rats, to a greater extent for MAO B. This drug is currently under investigation in humans as an antiepileptic agent and precautions for the consequences of monoamine oxidase inhibition should be considered when the drug is used in high doses.

5-Hydroxytryptophan↗

The molecular origin of anti-DNA antibodies.

The in vitro observation that a single point mutation in the protective anti-phosphorylcholine anti-bacterial antibody, S107, converts it into an autoantibody that reacts with dsDNA has focused our attention on the role of somatic mutation in generating autoantibodies. It has also led us to examine the significance of an individual's prior response to environmental antigens on the subsequent production of autoantibodies. The fact that genes of the S107 heavy chain variable region family could encode autoantibodies made it possible to clone and sequence the relevant germline genes of this small family from autoimmune (NZB x NZW)F1 mice and to compare these to the comparable genes in non-autoimmune mice. The germline genes from the normal and autoimmune mice are quite homologous and the small number of polymorphisms are not likely to predispose the autoimmune mice to the production of autoantibodies. (NZB x NZW)F1 mice respond to immunization with phosphorylcholine with a response that is largely encoded by the VH1 gene of the S107 family. However, when these same mice begin to make autoantibodies, their anti-DNA antibodies which are encoded by this family are in fact derived from the VH11 gene. The VH11 encoded anti-DNA antibodies which have been sequenced are all of the IgG2a subclass, react with dsDNA, and have undergone significant somatic diversification from the germline gene. Analysis of the ratio and location of the replacement and silent mutations suggests that the regulation of the autoantibody response differs from that of the normal response to foreign antigens. Our studies suggest that the utilization of a particular VH germline gene in the immune response to foreign antigens early in life does not lead to the preferential utilization of that same gene in the subsequent production of autoantibodies.

Amino Acid Sequence↗

Functional analysis of cloned macrophage hybridomas. VI. Differential ability to induce immunity or suppression.

We previously screened a series of macrophage hybridomas derived from fusion of P388D1 (H-2d) tumor cells with CKB (H-2k) splenic adherent cells for their ability to induce I-J restricted Ts cell responses. One Ia+ macrophage clone (63) consistently induced Ag-specific, I-J-restricted Ts. To evaluate whether macrophage hybridoma 63 also induced delayed-type hypersensitivity (DTH) immunity, mice were immunized with hapten-coupled macrophage hybridoma cells. Hapten-coupled splenic adherent cells and control macrophage hybridomas induced significant primary DTH responses, whereas hapten-coupled macrophage 63 induced little or no immunity when injected into H-2 compatible hosts. However, macrophage hybridoma 63 specifically activated I-Ak, I-Ad, or I-Ed restricted T cell hybridomas/clones, in vitro in the presence of appropriate Ag. Three different strategies designed to eliminate suppressor cell activity were successfully used to demonstrate that hapten-coupled macrophage 63 could also induce in vivo immunity. First, after immunization with hapten-coupled macrophages, mice were treated with cyclophosphamide. Second, macrophage 63 was treated with anti-IJ idiotype antibody before 4-hydroxy-3-nitrophenyl acetyl hapten (NP) coupling. Finally, haptenated macrophages were injected into I-A compatible but I-J incompatible recipients. These protocols are known to inhibit the induction of Ts activity, thus these results indirectly suggest that there is stimultaneous generation of Ts activity in vivo. The latter hypothesis was tested in adoptive transfer experiments. Transfer of lymph node cells from NP-63 primed B10.BR (H-2k) mice induced immunity in naive 4R animals, whereas the same number of immune cells suppressed NP-induced DTH responses in 5R mice. The combined results indicate that a cloned macrophage line can activate both Th and Ts cells. Macrophages which induce Ts activity may be responsible for maintaining the balance of immunity vs suppression. The data support the hypothesis that IJ interacting molecules (IJ-IM) expressed on macrophages are critical for induction of suppressor cell activity.

Animals↗

Monoclonal anti-idiotypic antibodies to an I-J interacting molecule inhibit suppression in an H-2 restricted way.

We have obtained 10 mAb from two independent fusions that are anti-idiotypic to the combining site of an anti-I-Jk antibody. These mAb block Ts cell function isn a genetically restricted manner in vitro and in vivo and recognize a determinant on macrophage membranes. In addition, they do not affect the I-Ek-restricted activation of a Th cell line specific for pigeon heart cytochrome c. We conclude that these mAb may recognize a molecule other than conventional I-Ek on cells interacting with Ts cells that is involved in mediating Ts activity. The molecule recognized may be a modified I-Ek molecule or a molecule not encoded by the genes encoding I-Ek.

Animals↗

Evidence for immunoglobulin Fc receptor-mediated prostaglandin2 and platelet-activating factor formation by cultured rat mesangial cells.

The possibility of Fc-dependent uptake of IgG immune complexes was examined in subcultured rat mesangial cells free of monocytes. 195Au-labeled colloidal gold particles were coated either with BSA only or with BSA followed by rabbit anti-BSA-IgG or the F(ab')2 fragment of the IgG. Mesangial cells preferentially took up 195Au particles covered with BSA-anti-BSA-IgG over those covered with BSA or the F(ab')2 fragment. This uptake was a time-dependent and saturable process inhibitable by sodium azide or cytochalasin B. Using phase-contrast microscopy in the light reflectance mode, it was established that essentially all mesangial cells took up IgG-coated gold particles. By electron microscopy the process was shown to consist of vesicular uptake with delivery to endosomes. Mesangial binding-uptake of the IgG-covered particles was associated with stimulation of PGE2 synthesis and production of platelet-activating factor, a lipid mediator of inflammation. To characterize the potential Fc receptor for IgG we used the rosetting technique with sheep red blood cells coated with IgG subclass-specific mouse monoclonal antibodies. 50% of mesangial cells exhibited rosetting with red cells coated with mouse IgG2a, whereas negligible rosetting was observed with IgG2b or IgG1. Competition experiments confirmed the specificity of IgG2a binding. We conclude that cultured rat mesangial cells exhibit specific receptors for IgG and that occupancy of Fc receptors results in endocytosis and is associated with generation of PGE2 and platelet-activating factor. These observations may be of significance for immune-mediated glomerular diseases.

Animals↗

Preferential expression of the systemic lupus erythematosus-associated idiotype 8.12 in sera containing monoclonal immunoglobulins.

The 8.12 idiotype defines a population of anti-DNA antibodies present in the serum of patients with systemic lupus erythematosus. As part of our studies to elucidate the genetic origin and structural features of anti-DNA antibodies, we examined monoclonal immunoglobulin (Ig)-containing sera from 706 patients for expression of the 8.12 idiotype. We found 41 such sera to have significant 8.12 reactivity (greater than 4 SD above the mean of normal controls) and demonstrated that in 24 of these sera (8 IgM, 14 IgG, and 2 IgA) this reactivity could be localized to the monoclonal protein. In addition, 12 of the 8.12-reactive monoclonal Ig (11 IgG and 1 IgA) bind dsDNA. In the other 17 sera, the 8.12 reactivity could be attributed to polyclonal antibody. These findings provide further evidence that the serum monoclonal Ig frequently express the antigenic and idiotypic reactivities of autoantibodies. Furthermore, these data support the contention that anti-DNA specificity may result from somatic diversification of germ-line Ig gene sequences.

Antibodies, Antinuclear↗

The production and characterization of monoclonal antibodies to a human colonic antigen associated with ulcerative colitis: cellular localization of the antigen by using the monoclonal antibody.

We detected in human colon extracts a 40 kDa protein(s) that specifically reacts with tissue-bound IgG obtained from the colon of patients with ulcerative colitis or CCA-IgG. Using the hybridoma technology, we developed monoclonal antibodies to this 40 kDa protein. The specific immunoreactivity of one of the monoclonal antibodies (7E12H12, IgM isotype) against the 40 kDa protein was demonstrated both by ELISA and by immunotransblot. Competitive binding experiments showed that CCA-IgG inhibits the binding of 7E12H12 to the 40 kDa protein, suggesting the recognition of common epitope(s) on the 40 kDa protein by the monoclonal antibody and CCA-IgG. 7E12H12 was used to determine cellular localization of the 40 kDa protein. Biopsy tissue specimens from colon, esophagus, stomach, duodenum, jejunum, ileum, liver, pancreas, lungs, kidneys, salivary, and mammary glands were obtained. Tissue specimens were fixed in 4% paraformaldehyde or in 10% formalin. Sections were sequentially incubated with the hybridoma supernatant, biotinylated anti-mouse IgM, avidin-biotin-peroxidase complex, and 3,3'-diaminobenzidine. An unrelated hybridoma supernatant was used as control. The monoclonal antibody exclusively recognized colonic epithelial cells both in the crypt and on the luminal surface. Immunoreactivity was present on the plasma membrane chiefly along the basolateral areas of the cells. Plasma membrane localization of the 40 kDa protein was confirmed by immunoelectron microscopy. All colonic mucosal biopsy specimens from both adult and fetal colon reacted with the monoclonal antibody. None of the biopsy specimens from stomach, duodenum, jejunum, ileum, liver, pancreas, or non-gastrointestinal tissue reacted with the antibody, confirming the organ specificity of the 40 kDa protein. The interaction between this colonic epithelial membrane protein and the CCA-IgG may play an important role in the pathogenesis of ulcerative colitis.

Antibodies, Monoclonal↗

Antibody inhibition of suppressor cell induction.

The IJ genetic restrictions of suppressor T (Ts) cells are controlled by H-2-related determinants that are expressed on antigen-presenting cells. This has led to the hypothesis that Ts cells carry receptors for a self H-2-related ligand that is expressed on specialized antigen-presenting cells. We refer to this H-2-related ligand as the IJ interacting molecule. This report evaluates the ability of rabbit antibodies directed against idiotypes on monoclonal anti-IJ antibodies (the latter are presumably reactive with the Ts cell receptor) to bind IJ interacting molecule and to inhibit antigen presentation to Ts cells. Such anti-idiotypic reagents were prepared against T cell-reactive monoclonal anti-IJk and anti-IJd antibodies. The F(ab')2 fragments of these anti-idiotypic reagents blocked Ts cell induction. The inhibition was haplotype specific and mapped to the IJ region. The anti-idiotypic antibodies blocked the generation of Ts1, Ts2, and Ts3 cells. The cellular target of the blocking activity mediated by these anti-idiotypic antibodies is a macrophage. This was shown by using a cloned macrophage hybridoma line for both Ts induction and absorption of antibody activity. The combined data support the concept that macrophages express IJ interacting determinants that are responsible for Ts cell induction.

Animals↗

Idiotypic analysis of myeloma proteins: anti-DNA activity of monoclonal immunoglobulins bearing an SLE idiotype is more common in IgG than IgM antibodies.

The anti-idiotype 3I which recognizes a determinant on kappa-chains of anti-DNA antibodies in SLE patients also recognizes a determinant on kappa-chains of 82/706 myeloma proteins tested. Twenty-nine of these 82 proteins bind to double-stranded DNA, including two monoclonal IgM, one monoclonal IgA, and 26 monoclonal IgG proteins. DNA binding is much more frequent in the IgG than in the IgM myeloma proteins (p less than 0.001), and is also associated with cationic antibody charge. Two-dimensional gel electrophoresis reveals markedly increased charge heterogeneity of both heavy and light chains of the monoclonal IgG as compared with the monoclonal IgM proteins. We postulate that the increased charge heterogeneity of the IgG-associated 3I-reactive kappa-light chains may reflect somatic mutation, and that DNA specificity within the 3I idiotype system arises by somatic mutation of germ-line genes found in normal individuals. DNA binding may be associated with those mutations that give rise to a cationic immunoglobulin charge.

Antibodies, Monoclonal↗

A monoclonal antibody to a cross-reactive idiotype on cationic human anti-DNA antibodies expressing lambda light chains: a new reagent to identify a potentially differential pathogenic subset.

Anti-double-stranded DNA antibodies are commonly found in the serum of patients with systemic lupus erythematosus (SLE). They are a heterogeneous group of antibodies thought to differ in pathogenicity. The degree of heterogeneity and the structural correlates of pathogenicity, however, remain poorly defined. To address these questions we have been generating anti-idiotypic antibodies to the anti-DNA antibodies found in the serum of SLE patients. In this paper we report the generation and characterization of a new murine monoclonal anti-idiotype, 8.12, that recognizes a subset of anti-DNA antibodies that is present in serum of approximately 50% of patients with SLE. The 8.12 anti-idiotype recognizes uniquely cationic anti-DNA antibodies, all of which express lambda light chains. In murine models of SLE, it has been suggested that cationic anti-DNA antibodies are preferentially deposited in the kidney. It may be, therefore, that 8.12 recognizes a subset of anti-DNA antibodies of particular pathogenic significance.

Antibodies, Anti-Idiotypic↗

Development of a monoclonal antibody specifically reactive to gastrointestinal goblet cells.

A mouse monoclonal antibody (7E6A5) of IgG isotype, reacting specifically with mucin-producing goblet cells of the human gastrointestinal tract, has been developed. 7E6A5 reacts by an ELISA with colonic protein eluted from a DEAE column. A screening by immunoperoxidase assay of 76 specimens from 19 different human tissues showed that the immunoreactivity of 7E6A5 was confined exclusively in the globules of goblet cells in the colon, the appendix, and the small intestine. Nongoblet small and large intestinal epithelial cells did not react. Immunoelectron microscopy demonstrated the reactivity with mucin droplets in a homogeneous granular pattern inside the globules of goblet cells. Mucus-secreting cells from remaining parts of the gastrointestinal tract and other mucus-secreting organs such as respiratory, genitourinary tracts, salivary and mammary glands did not show any reactivity to 7E6A5. These findings indicate that the antigen recognized by 7E6A5 is shared by the goblet cells of both the small and large intestines and is unique to them. The monoclonal antibody may be useful in the study of function of mucus-secreting goblet cells and may represent an important tool in the evaluation of diseases such as ulcerative colitis, colon cancer, and intestinal metaplasia in gastric mucosa that are associated with quantitative changes in goblet cell numbers or with qualitative differences in mucin secretion.

Antibodies, Monoclonal↗

Suppression of anti-DNA antibody synthesis in vitro by a cross-reactive antiidiotypic antibody.

An understanding of the regulatory mechanisms that govern the humoral immune response will be facilitated by the availability of techniques for the measurement of specific antibody production in vitro. We have developed an enzyme-linked immunosorbent assay system for the measurement of in vitro anti-DNA antibody production by peripheral blood mononuclear cells (PBMC) from patients with systemic lupus erythematosus. Using this technique, the PBMC from 74% of serologically active SLE patients produced levels of anti-DNA antibodies that were greater than 2 SD above the mean of 18 +/- 9 IU/ml for normal subjects. Furthermore, the addition of 3I, a monoclonal anti-idiotypic antibody that recognizes a cross-reactive determinant on anti-DNA antibodies, was shown to specifically inhibit anti-DNA production in vitro.

Antibodies, Anti-Idiotypic↗

Use of anti-idiotypic antibodies to explore genetic mechanisms of production of anti-DNA antibodies.

Systemic lupus erythematosus (SLE) is characterized by the production of autoantibodies with a broad range of antigenic specificities, including specificity for double-stranded DNA. Analysis of the idiotypic profile of anti-DNA antibodies both in humans and mice has demonstrated presence of cross-reactive idiotypes, suggesting that they arise from a restricted number of germline genes. Our laboratory has previously reported the generation of 3I, a monoclonal anti-idiotypic antibody which recognizes a cross-reactive idiotype on anti-DNA antibodies in a majority of unrelated humans with SLE. We have recently studied the expression of 3I in sera of three human kindreds with familial SLE. We found 6 of 8 SLE patients and 15 of 19 unaffected family members had elevated 3I reactivity. Eleven of these family members had no anti-DNA activity despite elevated 3I reactivity, suggesting that expression of this idiotype in certain individuals is part of the normal immune response. In another set of experiments using an in vitro culture system we examined somatic mutants of the S107 mouse myeloma cell line. This line makes an antibody which bears the T15 idiotype, a common idiotype on antibodies to the bacterial antigen phosphoryl choline (PC). U4, a mutant, makes an immunoglobulin which varies by one amino acid from the parent protein, retains the T15 idiotype, but loses reactivity with PC and acquires reactivity with DNA. We have found that some anti-DNA antibodies in mice with spontaneous lupus and in mice immunologically induced to make anti-DNA antibodies bear the T15 idiotype and may represent somatic mutants arising in vivo.

Animals↗