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Interactions of glucocorticoids and heparin on the humoral immune response of mice.

Interactions of glucocorticoids and heparin on the humoral immune response of mice to SRBC have been studied. Heparin injected subcutaneously in a depot-form 2 hours before immunization restores the antibody-forming ability of mice immuno-suppressed by hydrocortisone, through pretreatment of mice only with heparin 3 days before immunization decreases the PFC-count in the spleen. Cortisone (ip) and heparin (sc) per se injected at about the time of immunization with suboptimal doses of SRBC resulted only in a slight stimulating or no effect on spleen PFC count and serum antibody level. Cortisone and heparin applied in combination, however, exerted a stimulatory effect on the humoral immune response to SRBC. The route of steroid administration pointed to the significance of macrophages in this phenomenon. As the cooperative effect of heparin + cortisone on the humoral immune response shows a good correlation with their cooperative effect on in vivo (3H)dThd incorporation and thymidine kinase activity of spleen, it was hypothesized that an in vivo mitogenic activity for the spleen cells was responsible for the adjuvant effect observed.

Animals↗

Cell-mediated and humoral immune response in diabetic patients with periodontitis.

Cell-mediated and humoral immune responses were assessed in 50 patients with type II or non-insulin-dependent diabetes mellitus and 50 nondiabetic patients with periodontitis. The values were compared with those of 50 age and sex-matched control subjects. The cell-mediated immunity assessed by enumerating the total and high-affinity rosette-forming cells of the patient did not show any significant variation from that of the normal control subjects. The humoral immune response was assessed by estimating serum immunoglobulins G, A, M, D, and E by single radial immunodiffusion. Except IgD, all other immunoglobulins were found to be elevated significantly in both diabetic and nondiabetic subjects. The alteration in humoral immune response may be the cause or the effect of periodontitis. The defective host response reported in diabetic patients may be responsible for the increased incidence of periodontitis in diabetic patients as compared to nondiabetic patients.

Adult↗

Etiopathogenetic aspects of hepatitis A II. Specific and nonspecific humoral immune response during the course of infection.

The anti-HAV humoral immune response in the IgM, IgA, and IgG classes was analyzed weekly in 35 patients with clinically overt hepatitis A during the time of their hospitalization and 2-3 years afterward. In parallel, the dynamics of total immunoglobulins and complement C3 component (C3) levels were determined. The results suggest that the appearance of class-specific anti-HAV is compatible with the course of primary humoral immune response, with IgM and IgA anti-HAV, providing immunity in the early and intermediate phases of the infection, and IgG anti-HAV, providing immunity in the later phase. The overall appearance of anti-HAV, total immunoglobulins, and C3, do not support the view that liver injury is mediated by the humoral immune mechanisms. Instead, the hepatocyte damage is probably caused by direct viral cytotoxicity. This hypothesis is supported by a case of hepatitis A in a patient under immunosuppressive treatment.

Adolescent↗

[Intrathecal humoral immune response in pediatric patients with meningoencephalitis due to Coxsackie B5].

INTRODUCTION: Childhood is sensibly affected by viral meningoencephalitis outbreaks. OBJECTIVE: To study the intrathecal humoral immune response in a group of children suffering from Coxsackie B5 meningoencephalitis outbreak. Patients and methods. Forty eight sick children were studied. Serum and cerebrospinal IgA, IgM, IgG and albumin were quantified by radial immunodiffusion. It had been evaluated by reibergrams. RESULTS: Seventeen children has blood-cerebrospinal fluid barrier dysfunction. Four different patterns of intrathecal immune humoral response were observed mainly IgG and three major immunoglobulins class. Mean cell counts was 624 +/- 517 x 10(6) cells/l with a lymphocyte predominance. CONCLUSION: An intrathecal humoral response were reported as an early patterns like in delayed non-diagnostic puncture and in evolutive puncture in adults patterns with viral meningoencephalitis.

Antibodies, Viral↗

Immunological studies with aortic and venous tissue antigens. III. Examination of cell-mediated and humoral immune response induced by human vascular antigens.

The effects of human vascular antigens on the cell-mediated and the humoral immune response were studied in guinea pigs. In animals immunized with buffer extracts of aortic and venous wall a well measurable cell-mediated and humoral immune response were developed. Between the two kinds of vascular extracts in the skin tests, migration inhibition tests and antibody-production tests a cross-reactivity was observed, whereas the induction of desoxyribonucleic acid-synthesis proved to be specific. No cellular or humoral immune response to vascular extracts was detectable in the control animals. Analysing the time-kinetics of the cell-mediated and humoral immune response it was found, that with the increased production of antibodies the cellular immune reactions did not cease until the ninth week.

Animals↗

Comparison of the murine humoral immune response to recombinant simian virus 40 large tumor antigen: epitope specificity and idiotype expression.

Baculovirus-derived recombinant simian virus 40 (SV40) large tumor antigen (SV40 T-Ag) was used to immunize inbred strains of mice to compare the humoral immune responses. Specifically we examined the epitope specificities and idiotype (Id) expression on anti-(SV40 T-Ag) responses induced in BALB/c and C57BL/6 inbred strains of mice. The predominant SV40 T-Ag epitopes recognized by the anti-(SV40 T-Ag) responses appeared to differ between these two inbred strains, this being based on the ability of sera to inhibit the binding of several murine monoclonal antibodies specific for SV40 T-Ag. In addition, anti-(SV40 T-Ag) responses produced in C57BL/6 mice failed to express a previously described cross-reactive Id expressed in the anti-(SV40 T-Ag) response in BALB/c mice. This cross-reactive Id is detected by a mouse monoclonal anti-Id, designated 58D, which has been shown to represent a potential focal point for manipulating the humoral immune response to SV40-induced tumors in BALB/c mice. Together, these data indicate that the functional duality of the humoral immune response, as assessed by epitope recognition and Id expression, differs between these two inbred strains of mice when immunized with a recombinant SV40 T-Ag.

Animals↗

Cell-mediated and humoral immune response in various vascular diseases.

Cellular and humoral immune reactions were studied in patients with myocardial infarction, arteriosclerosis obliterans and superficial thrombophlebitis. Antigens were prepared from human aortic wall with lipid plaques and from vena cava tissue. Migration of leukocytes was inhibited and both DNA-synthesis and antibody production were increased in all groups of patients. No immune reaction could be observed in the controls. A cross-reactivity between aortic and vascular extracts was detected by the leukocyte migration test and by the passive hemagglutination technique, while the induction of DNA-synthesis proved to be specific. Investigating the time-kinetics of cellular and humoral immune response, cellular immune reactions were found to be still present long after the appearance of humoral antibodies.

Antibody Formation↗

Regulation of the immune response. I. Suppression of delayed-type hypersensitivity by T cells from mice expressing humoral immunity.

The ability of horse red blood cell (HRBC)-specific T cells from mice expressing humoral immunity to suppress the induction of HRBC-specific delayed-type hypersensitivity (DTH) was investigated. The transfer of Ig-negative spleen cells, from mice injected 4 days previously with HRBC, completely suppressed the development of DTH in mice treated with cyclophosphamide and sensitized with HRBC. The suppressor cell was found to be lysed by treatment with anti-theta serum and complement. Furthermore, hemocyanin-specific immune T cells were able to suppress the DTH induced to HRBC, provided these two antigens were coupled together. These studies suggest that T cells present under conditions were humoral immunity is induced can suppress DTH and that such cells play an important role in the regulation of the immune response.

Animals↗

Humoral immune response in mice against a circulating antigen induced by adenoviral transfer is strictly dependent on expression in antigen-presenting cells.

Adenoviral transfer of human apo A-I in Balb/c mice induces a strong humoral immune response against the transgene product when expression is driven from the ubiquitously active CMV promoter but induces no immune response when driven by the hepatocyte-specific 256-base pair apo A-I promoter. Here the hypothesis was tested, which is that the humoral immune response against the circulating transgene product correlates with its expression in antigen-presenting cells. No humoral immune response was observed after adenoviral transfer of vectors with human apo A-I expression driven by the hepatocyte-specific apo C-II or 1.5-kilobase (kb) human alpha(1)-antitrypsin promoter, but antibodies were induced after transfer with vectors driven by the ubiquitously active U1b promoter and the murine MHCII E beta promoter. A strict correlation was observed between antigen expression in the spleen and the occurrence of an immune response. Coinjection of the 1.5-kb human alpha(1)-antitrypsin and the murine MHCII E beta promoter-driven vectors resulted in a very short-lived humoral immune response against human apo A-I, suggesting that the time course of human apo A-I expression is a critical determinant of the development of tolerance for human apo A-I. High titers of antibodies against human apo A-I after subcutaneous gene transfer with the MHCII E beta promoter-driven vector underscore the potential of this promoter for vaccination purposes. In conclusion, humoral immune response in mice against a circulating antigen induced by adenoviral transfer is strictly dependent on expression in antigen-presenting cells.

Adenoviridae↗

Oral administration of type-II collagen peptide 250-270 suppresses specific cellular and humoral immune response in collagen-induced arthritis.

Oral antigen is an attractive approach for the treatment of autoimmune and inflammatory diseases. Establishment of immune markers and methods in evaluating the effects of antigen-specific cellular and humoral immune responses will help the application of oral tolerance in the treatment of human diseases. The present article observed the effects of chicken collagen II (CII), the recombinant polymerized human collagen II 250-270 (rhCII 250-270) peptide and synthesized human CII 250-270 (syCII 250-270) peptide on the induction of antigen-specific autoimmune response in rheumatoid arthritis (RA) peripheral blood mononuclear cells (PBMC) and on the specific cellular and humoral immune response in collagen-induced arthritis (CIA) and mice fed with CII (250-270) prior to immunization with CII. In the study, proliferation, activation and intracellular cytokine production of antigen-specific T lymphocytes were simultaneously analyzed by bromodeoxyuridine (BrdU) incorporation and flow cytometry at the single-cell level. The antigen-specific antibody and antibody-forming cells were detected by ELISA and ELISPOT, respectively. CII (250-270) was found to have stimulated the response of specific lymphocytes in PBMC from RA patients, including the increase expression of surface activation antigen marker CD69 and CD25, and DNA synthesis. Mice, fed with CII (250-270) before CII immunization, had significantly lower arthritic scores than the mice immunized with CII alone, and the body weight of the former increased during the study period. Furthermore, the specific T cell activity, proliferation and secretion of interferon (IFN)-gamma in spleen cells were actively suppressed in CII (250-270)-fed mice, and the serum anti-CII, anti-CII (250-270) antibody activities and the frequency of specific antibody-forming spleen cells were significantly lower in CII (250-270)-fed mice than in mice immunized with CII alone. These observations suggest that oral administration of CII (250-270) can suppress the cellular and humoral immune response in collagen-induced arthritis, and the simultaneous analysis of antigen-specific cellular and humoral immune responses at single-cell level will help the understanding of the oral tolerance mechanisms in CIA and the development of innovative therapeutic intervention for RA.

Administration, Oral↗

[Induction of specific cytotoxic T lymphocytes and humoral immune response by MUC1 DNA vaccine in mice].

AIM: To observe the specific cytotoxic T lymphocyte and humoral immune response induced by MUC1 DNA inmunization in mice. METHODS: Female BALB/c mice were immunized intramuscularly with 100 microg pcDNA3.1-MUC1 3 times at intervals of 3 weeks. Three weeks after the last immunization, tumor challenge experiments were performed by inoculation of MUC1 positive breast cancer cell line EMT6. Both humoral immune response and CTL-specific cytotoxicity were detected by immunohistochemical staining and (51)Cr release assay, respectively. RESULTS: The cytotoxicity of MUC1-specific CTLs to EMT6 target cells showed that the cytotoxic effect was different at various ratio of effector cells to target cells. At ratios of 100:1, 50:1, 25:1 and 12.5:1, the specific lysis in MUC1cDNA group reached 54.1%, 39.8%, 26.4% and 20.1%, while two control groups 13.2%, 10%, 8.2%, 7.2% and 11.7%, 9.8%, 7.7%, 7.0%, respectively. The former was markedly higher than the two latters(P<0.01). MUC1 expression was exhibited to be positive in breast cancer tissue by immunohistochemical staining with BALB/c mouse sera against MUC1 cDNA. There was only 40% tumorigenic rate in MUC1 cDNA immunized group, while there 100% in pcDNA3.1(+) and NS control groups. There was a significant difference between MUC1 cDNA group and control groups (P<0.05). CONCLUSION: Specific CTLs and antibody prodution are elicited by MUC1 DNA inmunization. MUC1 cDNA inmunization partly inhibit the growth of implanted tumor in mice.

Animals↗

Identification of HER2/ neu-derived peptides capable of inducing both cellular and humoral immune responses in HLA-A24 positive breast cancer patients.

HRE2/neu-specific cellular and humoral immune responses are often detected in breast cancer patients, but identification of more immunogenic CTL epitope peptides is necessary prior to development of a cancer vaccine. There is accumulating evidence of strong immunogenicity of peptides capable of inducing both cellular and humoral immune responses. To identify such peptides, this study intended to determine HER2/neu-derived peptides capable of inducing both cellular and humoral immunity in HLA-A24(+) breast cancer patients. IgGs reactive to the HER2(342-350), HER2(485-493), and HER2(553-561) peptides were detected in the sera of these patients with the frequency of 47, 24, and 24%, respectively. These peptides also induced peptide-specific and tumor-reactive CTL activity in the peripheral blood mononuclear cells of HLA-A24(+) breast cancer patients with the frequency of 50, 63, and 25%, respectively, but such activity was not induced from any HLA-A24(-) patients. Cellular and humoral responses to each of these three peptides were also observed in PBMCs and sera from the other epithelial cancer patients. These results may provide a scientific basis for new clinical trials of HER2/neu-peptide-based immunotherapy for breast cancer and also other epithelial cancer patients.

Antibody Formation↗

Cellular and humoral immune response analysis of bone-allografted rats.

Long-term cellular and humoral immune responses were studied in inbred rats in which bone was allografted. Transplants were made across major histocompatibility barriers. Mixed lymphocyte culture tests and humoral cytotoxicity assays were performed in order to determine degrees of cellular and humoral immunity. Grafts of complete bone and of bone free of marrow elicited both types of immune response and it is proposed that transplantation antigens for both types of reaction exist in the bone tissue itself. A gene-dose effect was found. Allogeneic bone grafts gave a stronger reaction than semiallogeneic grafts, and second-set grafts triggered a hypersensitivity type of humoral immune response. This study suggests that until the host-bone graft immunological relationship is better understood, the graft tissue should be matched to the host for major transplantation antigens to help prevent unexpected failures in massive bone allotransplantation.

Animals↗

Further evaluation of the incorporation of an immunotoxicological functional assay for assessing humoral immunity for hazard identification purposes in rats in a standard toxicology study.

A previous study (Ladics et al., 1995) conducted in our laboratory using the known immunosuppressant agent, cyclophosphamide, indicated that a functional assay for assessment of humoral immunity may be conducted in rats in a standard toxicology study. The objective of this study was to further examine the feasibility of conducting an immunotoxicological assay for assessing humoral immunity in rats in a standard toxicology study using a chemical, carbon tetrachloride (CCl4), whose principal target organ of toxicity is not the immune system. Specifically, the previous study and this study were done to determine whether the conduct of an assay for assessing humoral immune function would affect standard toxicological endpoints. Male CD rats were untreated or dosed orally for 30 or 90 days, excluding weekends, with vehicle or 12.5 or 25 mg/kg CCl4. Six days prior to sacrifice, selected rats were injected intravenously with sheep red blood cells (SRBC) for assessment of humoral immune function. One day prior to necropsy, blood for hematological and clinical chemical measurements was collected from each rat. On the day of necropsy standard protocol tissues were collected, weighed, processed to slides, and later examined microscopically. One-half of each spleen was used to assess spleen cell numbers and quantitate lymphocyte subsets (Thelper; Tcyt/sup; total T- and B-cells) by flow cytometry. Serum was analyzed for anti-SRBC IgM antibody by using an enzyme-linked immunosorbent assay. Administration of 12.5 and 25 mg/kg CCl4 for 30 days decreased SRBC-specific serum IgM levels 42 and 45%, respectively, while 25 mg/kg CCl4 for 90 days increased SRBC-specific IgM levels by 50%. CCl4 did not alter splenic lymphocyte subset numbers nor the weight nor morphology of lymphoid organs. Exposure to 25 mg/kg CCl4 did increase liver weight and serum sorbitol dehydrogenase levels, as well as produce centrilobular fatty change. SRBC administration did not alter any hematological or clinical chemistry parameters, nor lymphocyte subset numbers. With the expected exception of the spleen (slight increase in number and size of germinal centers), administration of SRBC did not significantly alter the weights or morphology of routine protocol tissues. Furthermore, administration of SRBC did not mask the rather mild hepatotoxic effects of CCL4 exposure observed in this study. Based on these and previous findings, it appears that a functional assay for assessing humoral immunity may be conducted in animals on standard toxicology study without altering standard toxicological endpoints.

Animals↗

Specific immune response genes of the guinea pig. V. Influence of the GA and GT immune response genes on the specificity of cellular and humoral immune responses to a terpolymer of L-glutamic acid, L-alanine, and L-tyrosine.

The ability of guinea pigs to make immune responses to the random linear copolymer of L-glutamic acid and L-alanine, GA, and to L-glutamic acid and L-tyrosine, GT, is each controlled by a different immune response gene. On the other hand, the random linear terpolymer of L-glutamic acid, L-alanine, and L-tyrosine, GAT, which contains both GA and GT antigenic determinants, is immunogenic in all guinea pigs. After GAT immunization, all animals develop delayed hvpersensitivity and serum antibody specific for GAT. However, only those guinea pigs possessing the GA immune response gene demonstrate cross-reactive delayed hypersensitivity when challenged with GA. In addition, the anti-GAT antisera produced by those animals having the GA gene contain cross-reacting anti-GA antibodies. The sera from guinea pigs lacking the GA gene have no anti-GA antibody activity. Thus, we have demonstrated that a specific immune response gene controlling responsiveness to a "simple" antigen can determine the specificity of both cellular and humoral immune responses to a more complex antigen.

Alanine↗

Humoral immunity before and after thymectomy in myasthenia gravis.

Humoral immunity was studied in 10 patients with myasthenia gravis before thymectomy, in 15 different patients over 10 years after thymectomy, and in normal controls. Antibody titers to acetylcholine receptor were significantly (p less than 0.01) lower in the post-thymectomy group. However, other antibody titers to common viruses, and to Escherichia coli, and isohemagglutinins showed no significant change. Levels of IgM and IgE (with atopic subjects excluded) decreased following thymectomy (p less than 0.05). Autoantibodies persisted, apart from those directed against the acetylcholine receptor. The absence of any significant changes in humoral immunity after thymectomy for myasthenia gravis suggests that there is no generalized loss of helper T-cell function.

Adult↗

Humoral immune response of calves to bluetongue virus infection.

Humoral immune responses of 7 calves to bluetongue virus (BTV) infection were evaluated by plaque-reduction assay and immunoblotting. Most readily interpretable results were obtained with the immunoblot assay when colostrum-deprived calves were used, and sera were reacted with proteins in partially purified extracts of BTV. Viremia persisted in calves for 35 to 56 days, and BTV coexisted in blood for several weeks with virus-specific neutralizing antibody. Calves developed antibody to virus protein 2, the major determinant of virus neutralization, at 14 to 28 days after inoculation; this time interval also coincided with the appearance of neutralizing antibody in serum. Virus clearance in BTV-infected calves did not coincide with humoral immune responses to protein 2 or other virion proteins.

Animals↗