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Skin graft rejection after allogeneic tooth transplants in mice.

Three strain combinations of in-bred mice representing strong and moderate histocompatibility barriers were used to determine if tooth allotransplants evoked strong or weak immunologic memory as measured by the second-set donor-strain skin graft technique. At issue was whether the anatomic site of engraftment could influence the outcome of these experiments. Recipients received either 5-mm-diameter skin grafts or one or four adult teeth. Experimental transplants were placed in subcutaneous pouches or in ear pouches. Control mice received only orthotopic skin grafts. Second-set orthotopic skin grafts were placed either one mo, six mo, or 11 mo after primary transplants. Skin grafts were observed daily until rejection occurred. We found that skin provoked strong memory in subcutaneous tissues, but that teeth generated very weak memory in subcutaneous tissues. Conversely, teeth placed in ear pouches were able to generate strong immunologic memory. This occurred whether donor and recipient shared H-2 allo-antigens, or whether one tooth or four teeth were grafted, and the difference persisted for at least six mo. We conclude that teeth are not weak antigens, nor is the subcutaneous site privileged regarding immunologic memory. Rather, there seems to be some critical interaction between teeth and the immune system draining subcutaneous tissues that results in a failure to generate strong anamnestic immunity. Perhaps definition of the processes involved will be of advantage in future human applications.

Animals↗

Dermal application of jet fuel suppresses secondary immune reactions.

Applying military jet fuel (JP-8) to the skin of mice activates systemic immune suppression. In all of our previous experiments, JP-8 was applied to immunologically naïve mice. The effect of jet fuels on established immune reactions, such as immunological memory, is unknown. The focus of the experiments presented here was to test the hypothesis that jet fuel exposure [both JP-8 and commercial jet fuel (Jet-A)] suppresses established immune reactions. Mice were immunized with the opportunistic fungal pathogen Candida albicans and, at different times after immunization (10 to 30 days), various doses of undiluted JP-8 or Jet-A were applied to their skin. Both the elicitation of delayed-type hypersensitivity (DTH) (mice challenged 10 days after immunization) and immunological memory (mice challenged 30 days after immunization) were significantly suppressed in a dose-dependent manner. Dermal exposure to either multiple small doses (50 microl over 4 days) or a single large dose (approximately 200-300 microl) of JP-8 and/or Jet-A suppressed DTH to C. albicans. The mechanism by which dermal application of JP-8 and Jet-A suppresses immunological memory involves the release of immune biologic response modifiers. Blocking the production of prostaglandin E(2) by a selective cyclooxygenase-2 inhibitor (SC 236) significantly reversed jet fuel-induced suppression of immunologic memory. These findings indicate, for the first time, that dermal exposure to commercial jet fuel (Jet-A) suppresses the immune response. In addition, the data reported here expand on previous findings by suggesting that jet fuel exposure may depress the protective effect of prior vaccination.

Animals↗

Supra dietary levels of vitamins C and E enhance antibody production and immune memory in juvenile milkfish, Chanos chanos (Forsskal) to formalin-killed Vibrio vulnificus.

Juveniles of milkfish, Chanos chanos (Forsskal), were fed two independent supra dietary levels of vitamins C (500 and 1500 mg kg(-1) feed, T1 and T2) and E (50 and 150 mg kg(-1), T3 and T4). Milkfish fed diets with supra (in addition to the vitamins present in the control diet) and normal levels (T5 containing 90 and 1.2mg of vitamins C and E, respectively, kg(-1) of feed) of vitamins were immunized (ip) with formalin-killed Vibrio vulnificus (FKVV). Priming and booster antibody responses to the injected bacterin were significantly (P<0.05) better in the milkfish juveniles fed supra dietary levels. Survival response of the experimental fish fed supra dietary levels of vitamins (T1, T2 and T3) was significantly (P<0.01) better than that of the control set. Protective response against virulent bacterial challenge of the vaccinated fish fed vitamin-supplemented diets (T2 and T3) was better than the control (T5) and T1 and T4. Memory factor reflecting immunological memory was superior in the fish fed vitamin-supplemented diets. Diets supplemented with either 1500 mg of Vitamin C or 50mg of Vitamin E kg(-1) produced the best antibody responses, final survival and protective response upon challenge. No conclusive inferences could be drawn on the growth responses from the experiment.

Animal Feed↗

Induction of long-term immunity to paralytic poliomyelitis by use of non-infectious vaccine.

Naturally acquired immunity to paralytic poliomyelitis, which is of long duration, is associated with serum antibody, immunological memory, or both. Persistence of circulating antibody is reassuring but not essential for long-term protection. Immunological memory induced by killed poliovirus vaccine is similar to that induced by infection, which is not a prerequisite for the induction of long-term immunity. Animal studies of experimental vaccines indicate that some antigenic components of poliovirus induce immunological memory without producing detectable antibody; killed poliovirus vaccine has the same effect in man. Killed vaccine containing 40, 8, and 32 D-antigen units of poliovirus types 1, 2, and 3, respectively, protects all recipients in both one-dose and two-dose schedules. This means that either schedule can be chosen to fit in with local immunisation programmes and thus reduce costs and increase population coverage.

Antibodies, Viral↗

Adoptive transfer of gut mucosal antitoxin memory by isolated B cells 1 year after oral immunization with cholera toxin.

A protocol was elaborated for the adoptive transfer of lymphocytes from mice which were orally immunized with cholera toxin (CT) to enable the study of long-term gut mucosal immunological memory at the single-cell level. Mesenteric lymph node (MLN) cells were transferred 1 year after priming immunizations, and recipient animals were challenged perorally on days 1 and 2 with CT before sacrifice on day 6 to 7 following transfer of cells. Strong antitoxin ELISPOT spot-forming cell (SFC) responses were recorded in spleens, MLN, and laminae propriae (LP) of recipient mice. In contrast, no SFC were found in Peyer's patches. The magnitude of the response equaled that of the acute response seen after optimal oral CT immunization and was directly dependent on the number of transferred cells. The memory antitoxin response in MLN and LP required oral challenge with CT as opposed to the spleen SFC response, which could also be triggered by intravenous challenge with antigen. Spleen cells from mice immunized perorally with CT were as effective as MLN cells in transferring immunological memory detectable in the gut immune system. Irrespective of the tissue source of transferring immunological memory detectable in the gut immune system. Irrespective of the tissue source of the memory cells, the isotype distribution of the antitoxin SFC response in recipient mice was similar with predominantly immunoglobulin A (96%) in LP and immunoglobulin G (66%) in MLN and spleen. Transfer of antitoxic memory was completely abrogated by treatment of the cells with J11d monoclonal antibody and complement prior to their injection into recipient mice by was unaffected by treatment with anti-Thy-1.2 antibody and complement, suggesting that long-term gut mucosal memory is carried by B cells. Antitoxin B memory cells might help explain the long-term protection against recurrent disease seen in convalescents from cholera in cholera-endemic areas.

Administration, Oral↗

CRM197-conjugated serogroup C meningococcal capsular polysaccharide, but not the native polysaccharide, induces persistent antigen-specific memory B cells.

Neisseria meningitidis is one of the leading causes of bacterial meningitis and septicemia in children. Vaccines containing the purified polysaccharide capsule from the organism, a T cell-independent antigen, have been available for decades but do not appear to provide protection in infancy or immunologic memory as measured by antibody responses. By contrast, T cell-dependent serogroup C protein-polysaccharide conjugate vaccines protect against serogroup C meningococcal disease from infancy onward and prime for immunologic memory. We compared the magnitude and kinetics of plasma cell and memory B-cell responses to a meningococcal plain polysaccharide vaccine and a serogroup C glycoconjugate vaccine in adolescents previously primed with the conjugate vaccine. Plasma cell kinetics were similar for both vaccines, though the magnitude of the response was greater for the glycoconjugate. In contrast to the glycoconjugate vaccine, the plain polysaccharide vaccine did not induce a persistent immunoglobulin G (IgG) memory B-cell response. This is the first study to directly show that serogroup C meningococcal glycoconjugate vaccines induce persistent production of memory B cells and that plain polysaccharide vaccines do not, supporting the use of the conjugate vaccine for sustained population protection. Detection of peripheral blood memory B-cell responses after vaccination may be a useful signature of successful induction of immunologic memory during novel vaccine evaluation.

Adolescent↗

Activation of the aryl hydrocarbon receptor diminishes the memory response to homotypic influenza virus infection but does not impair host resistance.

Although suppression of a primary immune response by aryl hydrocarbon receptor (AhR) ligands is well known, few studies have explicitly examined the effects of AhR agonists on immunological memory. Therefore, the goal of this study was to characterize the anamnestic response to influenza virus in mice exposed to the most potent AhR ligand, 2,3,7,8-tetrachlorodibenzo-p-dioxin (TCDD). Mice were given a single dose of TCDD, which caused suppression of the primary response, and kinetics of the recall antibody and CD8(+) T cell responses to homotypic infection were monitored. Two to three months after primary infection, virus-specific IgG levels were suppressed in mice treated with TCDD, and remained suppressed after reinfection. In contrast, IgA levels were enhanced in the TCDD-treated group. The recall response of virus-specific CD8(+) T cells was also suppressed, as the number of virus-specific memory CD8(+) T cells was diminished, and the kinetics of the recall response was delayed. No morbidity or mortality was observed in vehicle- or TCDD-treated mice, and mice in both groups cleared the virus within three days after reinfection. Thus, with regard to understanding how activation of the AhR during a primary immune response affects the generation of immunological memory, our data present a mixed story. On one hand, TCDD treatment reduced the primary response, resulting in lower levels of virus-specific IgG and diminution of the memory CD8 pool. However, the secondary response to homotypic infection was nevertheless host-protective. These findings have implications for determining the mechanisms by which AhR ligands adversely affect lymphocyte function and understanding the mechanisms that control the acquisition of immunological memory.

Administration, Intranasal↗

The secondary immune response against liposome associated antigens.

In the present experiments, the secondary immune response against antigens is studied after priming with liposome associated antigens and booster injections with the antigen alone, in order to study the effect of liposomes on the generation of immunological memory against the associated antigens. Liposomes show adjuvant activity with respect to both the primary and secondary immune response against associated human serum albumin (HSA). When the injected dose of liposome associated HSA was too low to elicit a primary immune response, generation of immunological memory against the antigen could not be detected. Horse radish peroxidase (HRP) associated with liposomes did not elicit a primary immune response, but immunological memory against the antigen was established.

Animals↗

T memory cells: quality not quantity.

Immunological memory to pathogens is associated with clonal expansion and heightened responsiveness of antigen-specific T cells. Recent work emphasizes that, for efficient protective immunity, qualitative changes in T memory cells are vitally important.

Animals↗

CD45RC isoforms define two types of CD4 memory T cells, one of which depends on persisting antigen.

The cellular basis of immunological memory remains a controversial area with respect to the identity of memory T cells and the role of persisting antigen. CD4 T cells are phenotypically divided by the expression of high and low molecular weight isoforms of CD45, surface markers that are frequently used to identify "naive" (CD45Rhigh) and "memory" (CD45Rlow) subsets. The latter subset responds rapidly in antigen recall assays but paradoxically has a short life span, a property that is difficult to reconcile with long-term memory. The present study examines these issues using a DTH (delayed-type hypersensitivity) model in which contact sensitivity to dinitrochlorobenzene (DNCB) was transferred to athymic nude rats by recirculating CD4 T cell subsets defined in the rat by the anti-CD45RC mAb OX22. As expected, CD45RC+ (but not RC-) CD4 T cells from normal unprimed rats transferred a DNCB-specific DTH response, whereas, 4 d after sensitization the CD45RC- (memory) subset alone contained the DNCB reactivity. However, when donor cells were collected from thymectomized rats sensitized two mo earlier, DNCB-specific responses were transferred by both CD45RC- and RC+ subsets suggesting that many of the latter had developed from cells with a memory phenotype. This was confirmed when CD45RC CD4 T cells from 4-d primed rats were parked in intermediate nude recipients and recovered 2 mo later. DNCB-specific activity was now found wholly within the CD45RC+ "revertant" subset; the CD45RC-CD4 T cell population was devoid of activity. Importantly, we found that the total switch-back from CD45RC- to RC+ could be prevented, apparently by persisting antigen. The results indicate that there are two functionally distinct categories of memory T cells: one, a short-lived CD45Rlow type which orchestrates the rapid kinetics, the other, a longer-lived CD45Rhigh revertant which ensures that immunological memory endures.

Animals↗

B lymphocyte regulation of the immune system. I. In vivo biologic activity of the novel lymphokine, B cell-derived enhancing factor (BEF).

B cell-derived enhancing factor (BEF) is a lymphokine of B cell origin which was originally identified and characterized by its ability to enhance in vitro antibody responses, an effect shown to be due to the ability of BEF to reduce the activation of suppressor T cells. The present study was undertaken to determine whether BEF could also be active in modulating antibody responses in vivo. The data presented here demonstrate that BEF is biologically active in vivo, as manifested by significantly enhanced primary IgM and IgG antibody responses in mice that were either injected with BEF prepared exogenously or implanted with growing BEF-secreting cells of a B cell line. Moreover, BEF was shown to enhance subsequent development of immunologic memory in mice pretreated with BEF at the time of primary immunization; these mice then displayed enhanced secondary responses when challenged with the same antigen some weeks later. The mechanism by which BEF exerts biologic activities to positively modulate in vivo antibody responses and immunologic memory reflects the ability of BEF to modulate one or more T cell functions, as evidenced by the following findings. 1) Transient in vitro exposure to BEF of T cells, but not of B cells, endowed such cells with the capacity to adoptively transfer enhanced primary antibody responses to irradiated recipients. 2) Utilizing adoptive in vivo antibody responses, in which fractionated B cell or T cell populations were obtained from BEF-pretreated mice, revealed that one effect of BEF which results in enhanced immunologic memory is related to its activity on T cells during the priming phase of the immune response. Finally, the existence of this B cell-derived lymphokine and the demonstration of its in vivo regulatory effects on the immune system provide yet another example of the emerging biologic importance of B lymphocytes in the overall regulation of the immune system.

Animals↗

Meningococcal serogroup C conjugate vaccine is immunogenic in infancy and primes for memory.

The safety, immunogenicity, and immunologic priming of 2 dosages (2 microgram or 10 microgram) of a meningococcal C oligosaccharide-CRM197 conjugate vaccine was evaluated in 114 infants vaccinated at ages 2, 3, and 4 months. Antibody persistence and response to boosting with 10 microgram of meningococcal C polysaccharide were assessed. The meningococcal conjugate vaccine produced fewer local reactions than concurrent routine immunizations. Total serogroup C-specific immunoglobulin geometric mean concentration (GMC) increased from 0.3 microgram/mL before vaccination to 13.1 microgram/mL at age 5 months. Serum bactericidal antibody (SBA) geometric mean titers (GMTs) rose from <1:4 to 1:1057 at 5 months and fell by 14 months to 1:19. Following boosting, anti-C-specific immunoglobulin GMC rose to 15.9 microgram/mL and SBA GMT to 1:495. Antibody responses in the 10-microgram dose cohort were significantly higher at 5 months (P<.01) than in the 2-microgram dose cohort but were lower after polysaccharide boosting (P=.02). This meningococcal conjugate vaccine was well tolerated and immunogenic and induced immunologic memory in infants.

Bacterial Capsules↗

Rapid effector function in CD8+ memory T cells.

The nature of the CD8+ T cells that underlie antiviral protective immunological memory in vivo is unclear. We have characterized peptide-specific CD8+ T lymphocytes directly ex vivo from peripheral blood in humans with past exposure to influenza virus, using single cell interferon gamma (IFN-gamma) release as a measure of effector function. In individuals in the memory state with respect to influenza virus infection, unrestimulated antigen-specific CD8+ T cells displayed IFN-gamma release within 6 h of antigen contact, identifying a population of memory CD8+ T cells that exhibit effector function without needing to divide and differentiate over several days. We have quantified circulating CD8+ effector T cells specific for six different MHC class I-restricted influenza virus epitopes. Enumeration of these CD8+ T cells gives frequencies of peptide-specific T cells that correlate with, but are in general severalfold higher than, CTL precursor frequencies derived from limiting dilution analysis, indicating that this novel population of memory CD8+ T cells has hitherto been undetected by standard means. The phenotype of these cells, which persist at a low frequency long after recovery from an acute viral infection, suggests that they play a role in protective immunological memory.

Adult↗

Acquisition of antigen presentasome (APS), an MHC/costimulatory complex, is a checkpoint of memory T-cell homeostasis.

Immunologic memory is associated with the activation and expansion of antigen-specific T cells, followed by clonal deletion and survival of a small number of memory T cells. This study establishes that effector and rested memory T cells can acquire major histocompatibility complex (MHC)/CD80 molecules (antigen presentasome [APS]) upon activation in vitro and after vaccination in vivo. We demonstrate for the first time that acquisition of APS by rested memory T cells is correlated with increased levels of apoptosis in vivo and up-regulation of caspase-3, bcl-x, bak, and bax in our in vitro studies. Moreover, our results demonstrate that memory T cells with acquired APS can indeed become cytotoxic T lymphocytes and kill other cells through perforin-mediated lysis. In addition, they retained the production of interferon gamma and T-helper 2 (Th2) type cytokines. The acquisition of APS by memory T cells might be an important checkpoint leading to the clonal deletion of the majority of effector T cells, possibly allowing the surviving cells to become long-term memory cells by default.

Animals↗

Evidence for induction of polysaccharide specific B-cell-memory in the 1st year of life: plain Haemophilus influenzae type b-PRP (Hib) boosters children primed with a tetanus-conjugate Hib-DTPa-HBV combined vaccine.

UNLABELLED: The lack of an adequate immune response to the major polysaccharide of the Haemophilus influenzae type b (Hib) capsule (polyribosyl ribitol phosphate) (PRP) in very young infants (< 18 months) can be overcome by conjugating PRP to a T-cell dependent carrier protein. We studied whether administration of a tetanus-PRP conjugate vaccine reconstituted with a diphtheria-tetanus-acellular pertussis-hepatitis B (DTPa-HBV) vaccine as a three dose primary course at 3, 4 and 5 months of age induced PRP-specific immunological memory, by examining the anti-PRP response to a dose of unconjugated PRP given with the DTPa-HBV booster approximately 1 year later. The unconjugated PRP elicited protective anti-PRP antibody levels (> or = 0.15 microgram/ml) in all but 3 of the 369 vaccinees, including 13 infants who failed to demonstrate a measurable immune response after the primary course. In a sub-cohort of 54 subjects all had anti-PRP levels > or = 0.5 microgram/ml within 7-14 days of the booster showing a rapid anamnestic type response. Both primary and booster responses were predominantly IgGl indicating a T-cell dependent response. The DTPa-HBV components elicited protective anti-diphtheria, anti-tetanus and anti-HBs antibody levels in > or = 98.5% of vaccinees, and immune responses to each of the acellular pertussis vaccine components in 92.3%-97.3% of subjects. CONCLUSION: The tetanus-PRP conjugate vaccine not only elicited a good primary humoral response, but also induced immunological memory so that the infants were able to mount a large and rapid immune response to subsequent exposure to plain PRP, indicating that protection against circulating wild-type Hib had been generated. Successful induction of immunological memory occurred even when there was no measurable humoral anti-PRP response to the primary course. Tetanus-PRP conjugate vaccine can be used in combination with DTPa-HBV vaccine, when administered separately or as a single injection in the same syringe, in primary immunisation schedules at 3, 4 and 5 months of age.

Age Factors↗

Imperfect memory and the development of Haemophilus influenzae type B disease.

Considerable evidence indicates that both anticapsular antibody and immunologic memory play a role in immunity to Haemophilus influenzae type b (Hib) disease. The efficacy of memory (or antibody) cannot be expected to be 100%; therefore some individuals may develop invasive disease despite their having been naturally primed. The proportion of cases of H. influenzae type b disease with evidence of immunologic memory is related to both the efficacy of memory in preventing disease and the age-related prevalence of memory in the population. The task is to discern the relative contributions of antibody and memory in conferring protection and to determine the extent to which natural exposure and vaccination establish these two effector mechanisms.

Antibodies, Bacterial↗

Hepatitis B surface antigen-specific T and B cell memory in individuals who had lost protective antibodies after hepatitis B vaccination.

Long-term protection after hepatitis B vaccination is dependent on the persistence of a strong immunologic memory. In search of reliable markers for a hepatitis B surface antigen (HBsAg)-specific immunological memory we studied the cellular and humoral immune responses of 15 healthy individuals who were successfully vaccinated but had lost anti-HBs titers. To determine the reactivity of vaccine-induced HBsAg-specific T cells of both effector and memory phenotype CD4+/CD45RA+ and CD4+/CD45R0+ T cells, respectively, were isolated, stimulated with HBsAg and tested for IFN-gamma and IL-5-secretion by enzyme-linked immunospot assays (Elispot). To detect even small numbers of specific T cells, we enriched the appropriate subpopulation from the entire PBMC population. B cell memory was analysed by cocultivation of isolated B cells with CD4+ T cells and identification of anti-HBs-secreting cells by Elispot. All individuals were revaccinated and humoral and cellular responses were determined. The results showed significant numbers of HBsAg-specific memory T and B cells present in all vaccinees despite the absence of specific antibodies. Our data suggest that individuals who had lost their anti-HBs seropositivity still show immunologic T cell memory and that these T cells are able to trigger anti-HBs production of B cells activated by revaccination.

Adult↗