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Effect of complement (C3) depletion on the generation of memory in rabbits primed with antigens of Trypanosoma evansi.

Using the antibody response during secondary exposure of rabbits primed with antigens of Trypanosoma evansi as an indirect measure of immunological memory, it was shown that C3 decomplementaemia resulted in a reduced antibody response, with IgM being predominant in the sera samples followed by IgG and then IgA [corrected]. While significant differences were observed in the levels of IgG produced by the C3-depleted and C3-intact rabbits no differences were recorded in the levels of IgM and IgA produced by the two groups after C3 decomplementaemia. These results demonstrate that C3 depletion did not abolish memory of the T. evansi antigen in these rabbits but only modified the magnitude and pattern of their response. The host response to reinfection may be affected by such changes as those observed in this study.

Animals↗

Induction of IgM memory with RNA from the spleens of immunized mice.

Ribonucleic acid (immune RNA, iRNA), extracted from the spleens of mice immunized with sheep red blood cells (SRBC), induced specific immunological memory. The humoral immune responses of iRNA-treated animals were compared with in vivo and in vitro primary and secondary responses, using the haemolytic plaque-forming cell (PFC) assay. IgM antibody formation was markedly higher in iRNA-treated than in any other mice. The effect of iRNA was antigen-specific and similar materials from non-immunized mice had no activity.

Animals↗

Humoral immunity in the ewe. 2. The effect of pregnancy on the primary and secondary antibody response to protein antigen.

This study examines the effect of pregnancy on the quantity and isotype of antibody in ewes immunised with a novel primary antigen. The primary and secondary antibody levels to bovine serum albumin (BSA) in alum adjuvant, were compared between non-pregnant ewes and ewes immunised at different stages of pregnancy. Anti-BSA isotype specific responses were measured using an indirect ELISA. Results show the levels of immunoglobulin M (IgM) increased and persisted in response to BSA during pregnancy (P less than 0.05). Secondary immunoglobulin G1 (IgG1) titres were significantly impaired in late pregnancy and during lactation (P less than 0.05). The lower levels of immunoglobulin G2 (IgG2) were unaffected by pregnancy under these experimental conditions. Ewes were also immunised with BSA in alum adjuvant for their primary inoculum and BSA in different adjuvants for the secondary inoculation. Primary IgM persisted at higher levels during pregnancy compared with the response in non-pregnant ewes (P less than 0.05). Following the secondary injection, lower levels of anti-BSA specific IgM, IgG1 and IgG2 antibodies were produced in late pregnancy and during lactation compared with the levels in non-pregnant control ewes (P less than 0.05). Alterations in regulatory T-cell function or effector B-cell activity would most readily explain the qualitative changes in antibody titre observed following primary injection during pregnancy. The results also suggest an associated impairment of immunological memory following primary immunisation during pregnancy.

Adjuvants, Immunologic↗

T-independent type II immune responses generate memory B cells.

Unlike T-dependent immune responses against protein antigens, T-independent responses against polysaccharides confer long-lasting humoral immunity in the absence of recall responses and are not known to generate memory B cells. Here we report that polysaccharide antigens elicit memory B cells that are phenotypically distinct from those elicited by protein antigens. Furthermore, memory B cell responses against polysaccharides are regulated by antigen-specific immunoglobulin G antibodies. As the generation and regulation of immunologic memory is central to vaccination, our findings help explain the mode of action of the few existing polysaccharide vaccines and provide a rationale for a wider application of polysaccharide-based strategies in vaccination.

Animals↗

The lack of memory B cells in immune bone marrow.

Adoptive transfers of lymphoid populations between Ig-congenic strains of mice were performed to evaluate the presence of memory cells in the bone marrow of immune animals. Transfer of immune splenic B cells or immune peripheral blood mononuclear cells effectively transferred antigen-specific IgG1 antibody responses of donor origin. In contrast, BM from immune animals did not transfer a memory response. The lack of memory transfer with immune BM was not due to a suppressive activity of BM since (1) Purified antigen-specific B cells from BM did not transfer memory while purified antigen-specific B cells from immune spleen was a potent source of memory cells, and (2) cotransfer of immune BM with a source of memory B cells (immune PB) did not suppress the transfer of memory. Although immune BM did not have cells capable of transferring antigen-specific memory, copious amounts of antigen-specific antibody were spontaneously produced by immune BM in vitro. These studies suggest that the transfer of immunological memory observed in human BM transplant cases may be the consequence of PB contamination of BM preparations when collected.

Animals↗

Predicting the dynamics of antiviral cytotoxic T-cell memory in response to different stimuli: cell population structure and protective function.

This paper examines the numerical and functional consequences of various stimuli on antiviral CD8+ T-cell memory using a mathematical model. The model is based upon biological evidence from the murine model of infection with lymphocytic choriomeningitis virus (LCMV) that the phenotype of immunological memory represents low-level responses driven by various stimuli, and the memory CTL population is partitioned between resting, cycling and effector cells. These subpopulations differ in their lifespan, their potential to mediate antiviral protection and in the stimuli needed for their maintenance. Three types of maintenance stimuli are examined: non-antigen-specific (bystander) stimulation, persisting antigen stimulation and reinfection-mediated stimulation. The modelling predicts that: (i) stable persistence of CTL memory requires the presence of either bystander or antigen-specific stimulation above a certain threshold depending on the sensitivity of memory CTL to stimulation and their life-span; (ii) a relatively low level of stimuli (approximately 10(4) fold less on a per CTL basis compared to acute infection) is needed to stabilize the expanded memory CTL population; (iii) the presence of CTL subsets in the memory pool of different activation states and lifespans ensures the robustness of memory persistence in the face of temporal variation in the low-level stimuli and; (iv) an 'optimal' population structure of the memory CTL pool, in terms of immediate protection, requires the presence of both activated cycling and effector CTL. For this, persisting antigen alone or synergistically with bystander signals provide the appropriate stimulation, so that the stimuli equivalent to approximately 30 p.f.u. of LCMV in the spleen are sufficient to maintain approximately 10(5)-10(6) specific CTL in the memory pool. These observations are relevant both to our understanding of natural protective immunity and to vaccine design.

Animals↗

Establishment of memory for IL-10 expression in developing T helper 2 cells requires repetitive IL-4 costimulation and does not impair proliferation.

T helper (Th) lymphocytes can develop memory for the expression of particular cytokines, like IL-4 or IL-10, in that reexpression of those cytokines is independent of the original costimulatory signal IL-4 and depends only on T cell receptor stimulation. Here, we show that in the course of Th2 cell differentiation in vitro, IL-4 memory is established during primary activation of naïve Th cells, whereas the establishment of IL-10 memory requires repetitive stimulation of the Th cell with IL-4 and T cell receptor. Likewise, established IL-10 memory, maintained in the absence of further IL-4 signals, was observed in individual IL-10-producing cells generated from in vivo antigen-experienced CD62L(low) Th cells and isolated by using the newly developed cytometric cytokine secretion assay for IL-10. In naïve Th cells undergoing primary activation, the induction of both IL-4 and IL-10 memory requires DNA synthesis, but reexpression of the cytokine genes can occur throughout cell cycle. In in vitro polarized Th2 cell populations, Th cells with IL-4 or IL-10 memory do not differ in proliferative behavior. Populations of Th cells isolated from polarized Th2 cultures according to expression of IL-4 or IL-10 also do not differ in proliferative behavior. Their proliferation mainly depends on IL-2. Thus, effector memory Th lymphocytes with memory for IL-4 or IL-10 expression are not intrinsically impaired in their proliferative potential and can play an essential role in reactive immunological memory and its regulation.

Animals↗

Antigen challenge leads to in vivo activation and elimination of highly polarized TH1 memory T cells.

TH1 memory T cells derived from T cell receptor transgenic mice, in which the T cell antigen receptor is specific for a cytochrome C peptide in association with I-E(k), were transferred into normal B10.A mice and allowed to adopt a resting phenotype. When challenged, 30-60 days after transfer, with i.v. cytochrome C, the transgenic cells rapidly became activated, expressed mRNA for IFNgamma, and began to divide. However, after 48 h, the frequency of the cells fell progressively, reaching levels only slightly above the limit of detection by day 8 and thereafter remain depressed for up to 90 days. The remaining cells were anergic as shown by limitation in proliferation and IFNgamma production in response to in vitro antigen stimulation. Even if challenged with antigen emulsified in complete Freund's adjuvant, the overall pattern was similar, except that in the draining lymph nodes, the surviving antigen-specific cells were not anergic, although spleen cells were still strikingly anergic. Thus, antigenic challenge of mice possessing resting memory TH1 CD4 T cells leads to the unanticipated loss of most of the specific cells and an apparent depletion rather than enhancement of immunologic memory.

Animals↗

[The effect of hemodialysis on the virgin CD45RA+, CD45RO- and memory CD45RO+, CD45RA- lymphocyte count in patients with chronic renal failure].

UNLABELLED: The hallmark of immunological memory is a quick and effective response to a repeated antigen exposure. Virgin lymphocytes, with their surface receptors CD45RA+, CD45RO- are produced in primary lymphatic organs, then migrating to secondary lymphatic structures. Memory lymphocytes CD45RO+, CD45RA- produced in these organs migrate to non-lymphatic organs--a possible location of inflammatory process, thus enabling the immunological system to eliminate effectively the same antigen, when repeatedly present. The aim of the study was 1) to test the influence of hemodialysis on the number of virgin lymphocytes and/or memory lymphocytes; 2) whether such impact (if any) depends on the type of dialysis membrane used (cuprophan or polysulphon), 3) if the effect is different in patients with or without diabetes. Overall number of virgin T helper lymphocytes CD45RA+CD4+ was significantly lower in patients with end-stage renal disease, while the number of total CD45RO+, CD45RA- memory lymphocytes was significantly greater among patients with diabetic nephropathy, compared to normal control subjects. After 15 minutes of hemodialysis, number of virgin lymphocytes CD45RA+, CD45RO- (p < 0.001, p < 0.01) and their subclasses, as well as memory lymphocytes CD45RO+, CD45RA- were significantly decreased. After 15 minutes of hemodialysis with polysulphon membrane, the decrease in T virgin cytotoxic, B virgin CD45RA+CD4-, T memory cytotoxic as well as B memory CD45RO+CD4- lymphocytes was significantly lower, when compared with cuprophan membrane (p < 0.02). Among patients treated with cuprophan hemodialysis, the decrease of T helper memory CD45RO+CD4+ lymphocytes was significantly lower in patients with diabetic nephropathy, than in non-diabetic patients. CONCLUSIONS: In all patients with end-stage renal disease, the impact of hemodialysis on the number of memory lymphocytes CD45RO+, CD45RA-, as well as virgin lymphocytes CD45RA+, CD45RO- was shown, but the effect was less profound during hemodialysis with polysulphon membrane, compared to cuprophan. The presence of diabetic nephropathy effects the hemodialysis-induced changes in the number of T memory helper CD45RO+ CD45RO+CD4+ lymphocytes, with no impact on other subclasses of the examined cells.

Adult↗

Antibody responses to antigenic determinants of influenza virus hemagglutinin. II. Original antigenic sin: a bone marrow-derived lymphocyte memory phenomenon modulated by thymus-derived lymphocytes.

Mice immunized sequentially with two related influenza virus hemagglutinins (HA) produced a secondary antibody response with two different specificities. Some antibodies were specific for determinants common to both HA's. Paradoxically, some antibodies were directed to determinants existing only in the HA first encountered. Primed spleen cells treated with anti-theta serum and complement were transferred from animals immunized with the first HA to either normal, irradiated, or thymus-deprived recipients. These memory cells were boosted in the recipients with either the homologous or the heterologous cross-reacting HA. B-memory lymphocytes were shown to be directly triggered by both HA's and to be able to secrete, independently of T lymphocytes, antibodies to both kinds of determinants. However, T cells were shown to modulate this secondary response by either enhancing or suppressing antibody secretion by B-memory cells, depending on experimental conditions. These results are discussed in terms of antigen recognition by B cells and of kinetics of development of immunological memory.

Animals↗

Two subsets of memory T lymphocytes with distinct homing potentials and effector functions.

Naive T lymphocytes travel to T-cell areas of secondary lymphoid organs in search of antigen presented by dendritic cells. Once activated, they proliferate vigorously, generating effector cells that can migrate to B-cell areas or to inflamed tissues. A fraction of primed T lymphocytes persists as circulating memory cells that can confer protection and give, upon secondary challenge, a qualitatively different and quantitatively enhanced response. The nature of the cells that mediate the different facets of immunological memory remains unresolved. Here we show that expression of CCR7, a chemokine receptor that controls homing to secondary lymphoid organs, divides human memory T cells into two functionally distinct subsets. CCR7- memory cells express receptors for migration to inflamed tissues and display immediate effector function. In contrast, CCR7+ memory cells express lymph-node homing receptors and lack immediate effector function, but efficiently stimulate dendritic cells and differentiate into CCR7- effector cells upon secondary stimulation. The CCR7+ and CCR7- T cells, which we have named central memory (TCM) and effector memory (TEM), differentiate in a step-wise fashion from naive T cells, persist for years after immunization and allow a division of labour in the memory response.

Cells, Cultured↗

Experimental specific memory reaction to cornea, lens, and retina antigens.

Lymphocytes from rabbits immunized against various ocular extracts were challenged in vitro by the immunizing extract, by other ocular extracts from the same species, and by analogous extracts from other species. Immunological memory reaction, demonstrated by the blast transformation phenomenon, was found toward organ-specific and species-specific antigens. The organ cross-reactivity was greatest when cornea and lens were tested. Immunization of rabbits against calf cornea with extract emulsified in Freund adjuvant injected into the hind foot-pads induced the appearance of specific memory cells in popliteal lymph nodes, spleen, and blood. Immunization by interlamellar xenografting has shown that memory lymphocytes are mainly localized in the preauricular lymph nodes and are nearly absent from spleen and popliteal lymph nodes. These findings indicate the important role of the local immunological mechanism of the eye.

Animals↗

Biological characteristics of T and B memory lymphocytes in the rat.

The adoptive secondary antibody response of rats to the hapten-protein conjugate dinitrophenyl-diphtheria toxoid (DNP-DT) was used to investigate the migratory properties and rate of formation of T and B memory cells in the spleen. The experimental findings show that hapten (DNP-BSA)- and carrier (DT)-primed spleen cells act synergistically in the restoration of the adoptive anti-DNP response. Passage of both hapten- and carrier-primed spleen cells through an intermediate host (intravenous injection and subsequent collection in the thoracic duct lymph) showed that both cell types are able to recirculate from the blood to the lymph. In addition, memory to the hapten or carrier could be withdrawn from the spleen by prolonged thoracic duct drainage. The rate of formation of hapten- and carrier-primed spleen cells was studied by treating donors with [(3)H]thymidine for 48 h before cell transfer in an attempt to "suicide" rapidly dividing cells. Only a slight reduction in the adoptive response to the hapten or carrier was noted upon transfer of treated cells to irradiated hosts. In further experiments, the cell lineage of hapten- and carrier-primed cells was determined by treating each cell type in vitro with rabbit antirat B cell serum (RARBS) and complement. Although treatment with RARBS did not affect the adoptive response restored by carrier-primed cells, the same treatment abolished the response restored by hapten-primed cells. These findings indicate that T and B memory cells in the spleen of the rat are relatively long-lived, recirculating lymphocytes. The contribution of fixed or rapidly turning over cells to immunological memory is small or negligible as compared with the latter cells.

Animals↗

Antigens in tea-beverage prime human Vgamma 2Vdelta 2 T cells in vitro and in vivo for memory and nonmemory antibacterial cytokine responses.

Human gammadelta T cells mediate innate immunity to microbes via T cell receptor-dependent recognition of unprocessed antigens with conserved molecular patterns. These nonpeptide alkylamine antigens are shared by tumor cells, bacteria, parasites, and fungi but also by edible plant products such as tea, apples, mushrooms, and wine. Here we show that priming of gammadelta T cells with alkylamine antigens in vitro results in a memory response to these antigens. Such priming results also in a nonmemory response to whole bacteria and to lipopolysaccharide, characterized by IL-12-dependent secretion of IFN-gamma by gammadelta T cells and by gammadelta T cell proliferation. Drinking tea, which contains l-theanine, a precursor of the nonpeptide antigen ethylamine, primed peripheral blood gammadelta T cells to mediate a memory response on reexposure to ethylamine and to secrete IFN-gamma in response to bacteria. This unique combination of innate immune response and immunologic memory shows that gammadelta T cells can function as a bridge between innate and acquired immunity. In addition, these data provide an explanation for the health benefits of tea.

Anti-Bacterial Agents↗

Transfer of memory cells into antigen-pretreated hosts. II. Influence of localized antigen on the migration of specific memory B cells.

Following i.v. injection, 2,4,6-trinitrophenol (TNP)-primed memory cells localized in recipient lymph nodes draining a footpad injection of TNP-hemocyanin (TNP-KLH) in greater numbers than in contralateral nodes draining a p-azobenzenearsonate-coupled KLH injection. Such hapten-specific, unilateral memory B cell localization was still observed in immunosuppressed mice when antigen injections were given as long as 4 days prior to the memory cell transfer. The memory cells could be challenged to form plaque-forming cells by footpad injections of TNP-labeled Brucella abortus at 5 days, but not one day, after cell transfer. The present studies further clarify some parameters of this adoptive memory, as a model for the study of persistent local memory. Measures that promoted the unilateral lymph node retention of 125I-labeled antigen also facilitated unilateral accumulation of TNP-specific memory cells. Such measures included pretreatment of the recipients with cyclophosphamide, rather than gamma irradiation, injection of anti-carrier antibody the day before antigen, or use of small doses of preformed immune complexes instead of antigen alone. In general, a high ratio of lymph node-to-spleen and lymph node-to-blood concentration of antigen in recipients appeared crucial for unilateral localization of memory B cells. Splenectomy of recipients prior to cell transfer enhanced the difference in plaque-forming cell responses between draining and contralateral nodes, but decreased their difference when performed 1 day after cell transfer, suggesting that the spleen may have served as a trap for memory cells. I.v. injection of antigen at the time of B cell transfer also interfered with unilateral localization. The results demonstrate that in the presence of persisting depots of antigen within lymph nodes (and absence of significant amounts of antigen elsewhere), memory B cells can be retained locally without activation into antibody-secreting cells. This mechanism may, therefore, by responsible for the phenomenon of local, humoral, immunological memory.

Animals↗

Tracking human antigen-specific memory B cells: a sensitive and generalized ELISPOT system.

In the interest of better understanding the role of human memory B cells in protection against disease, we developed an assay to quantitate antigen-specific memory B cells in human blood. This assay utilizes a 6-day polyclonal stimulation of PBMC followed by an antigen-specific ELISPOT for the detection of memory B cells that have differentiated into antibody secreting cells (ASC) in vitro. We have used this assay to demonstrate that the anthrax vaccine (AVA; BioThrax) elicits a substantial population of protective-antigen (PA) specific memory B cells, and these B cells satisfy the canonical surface phenotype of human memory B cells: CD19(+)CD20(+)Ig(+)CD27(+). These anti-PA antigen-specific memory B cells are IgG(+) and represent up to 2% of circulating IgG(+) B cells. Furthermore, these results confirm that vaccine-elicited memory B cells reside in the CD27(+) B cell population. This ELISPOT-based system has been designed in a generalized manner, such that the assay can be rapidly adapted to detect human antigen-specific memory B cells of any given specificity. This method should be useful for quantitatively assessing the potency of vaccines and the longevity of B cell immunological memory to various vaccines or infectious diseases.

Anthrax Vaccines↗

Immune memory expression to Tnp-Ficoll in CB.20 mice: evidence for a multigenic control.

Trinitrophenyl (Tnp)-Ficoll, a class 2 thymus-independent (TI) antigen, generates in most mouse strains Tnp-specific B-memory cells which can be detected in situ 1 week after priming by a heterologous stimulation with Tnp-lipopolysaccharide (LPS) but not by a homologous Tnp-Ficoll challenge. We have investigated the secondary responses raised in CB.20 congenic mice by a homologous challenge in situ occurring at various time intervals after priming. We report that a memory-type response is obtained, culminating when the challenge is performed at 4 weeks; this finding assesses definitely the ability of TI-2 antigens to produce immunological memory under standard conditions. However, the same immunization procedure elicits no memory-type response in the majority of other mouse strains, suggesting a possible genetic control of the expression of memory to class 2 TI antigens. The utilization of F1 hybrids between C57BL/6 and BALB/c and of appropriate congenic strains shows indeed that this memory expression is under multigenic control: Igh-V or closely linked genes are clearly involved but a complementation with other gene(s), located outside the H-2 complex, is required for a memory-type response to Tnp-Ficoll. We have also analyzed the secondary heterologous response to Tnp-LPS in CB.20 mice at different times after Tnp-Ficoll priming. The difference in the kinetic profile of the heterologous (TI-2----TI-1) versus homologous (TI-2----TI-2) secondary responses is discussed in terms of B-memory-cell ontogeny and humoral regulation.

Animals↗

Plasmodium yoelii can ablate vaccine-induced long-term protection in mice.

Malaria is a serious cause of morbidity and mortality for people living in endemic areas, but unlike many other infections, individuals exposed to the parasite do not rapidly become resistant to subsequent infections. High titers of Ab against the 19-kDa C-terminal fragment of the merozoite surface protein-1 can mediate complete protection in model systems; however, previous studies had not determined whether this vaccine generated long-term protection. In this study, we report that functional memory cells generated by merozoite surface protein-1, per se, do not offer any protection. This is because the parasite induces deletion of vaccine-specific memory B cells as well as long-lived plasma cells including those specific for bystander immune responses. Our study demonstrates a novel mechanism by which Plasmodium ablates immunological memory of vaccines, which would leave the host immuno-compromised.

Animals↗