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Co-immunization of rhesus macaques with plasmid vectors expressing IFN-gamma, GM-CSF, and SIV antigens enhances anti-viral humoral immunity but does not affect viremia after challenge with highly pathogenic virus.

To investigate the adjuvant capacity of granulocyte-macrophage colony-stimulating factor (GM-CSF) and interferon (IFN-gamma), we cloned these rhesus cytokines into a mammalian expression vector. Two groups of six rhesus macaques (Macaca mulatta) received intradermal immunizations of plasmid DNA coding for SIV Eng and Gag, and influenza virus nucleoprotein (Flu-NP), with or without the co-administration of plasmid DNA coding for these cytokines. Humoral immune responses to antigens of both of these viruses and SIV specific T cell proliferative responses were significantly enhanced by co-immunization with the cytokines. These twelve monkeys, and a group of six naive controls, were challenged by the oral mucosal route with the uncloned and highly pathogenic SIVmac251. All monkeys became infected. The early CD4 decline was reduced in the group co-immunized with cytokine and viral plasmids. Unexpectedly, plasma viremia set points were not different in this co-immunized group and the non-immunized control group. On the other hand, monkeys vaccinated with equivalent amounts of empty vector plasmid (i.e. no cytokine inserts) along with plasmids expressing viral antigens demonstrated a slight but significant decrease in acute viremia compared to non-immunized controls (P<0.02). However, viral loads at set points were not significantly different between both the immunized and the non-immunized control group. Thus, although the cytokine vectors demonstrated detectable enhancement of the immune response to different viral antigens, such enhanced response did not translate into better anti-viral control in our experiment. These results underscore the need for further testing of cytokines as vaccine adjuvants in relevant animal models.

Animals↗

Oral immunization with recombinant Helicobacter pylori urease confers long-lasting immunity against Helicobacter felis infection.

Recombinant Helicobacter pylori urease (rUre) has been shown to confer protection against challenge with Helicobacter felis in mice. The purpose of the present study was to examine duration of the immune response and long-term protective efficacy of immunization with rUre. Swiss Webster mice were orally immunized four times at weekly intervals with 100 microg rUre plus 5 microg heat-labile enterotoxin of Escherichia coli (LT) adjuvant, or with LT only. At 4, 10, 20 or 40 weeks post immunization, 25 rUre-immunized mice and control mice were challenged with H. felis and sacrificed at 2 or 10 weeks post-challenge. H. felis infection was assessed by gastric urease assay and by histology. Anti-H. pylori urease specific antibody levels were measured in serum and saliva both pre- and post-challenge. Over the 40 week time period, the infection rates in rUre-immunized mice were significantly lower than those in controls (p < 0.05) as assessed by gastric urease activity. Protection ranged from 79 100% at 2 weeks post-challenge and 63-78% at 10 weeks post-challenge. Gastric bacterial density in rUre-immunized mice was significantly lower than that of controls (p < 0.03) as determined by histologic assessment. Anti-urease antibody levels remained elevated in the serum and mucosal compartments at 39 weeks following immunization. This study shows that immunization with rUre plus LT results in long-lasting protective immunity against challenge with H. felis.

Adjuvants, Immunologic↗

Induction of immune responses and safety profiles in rhesus macaques immunized with a DNA vaccine expressing human prostate specific antigen.

Prostate specific antigen (PSA) is a widely used marker for prostate cancer, which is secreted by normal prostate cells at low levels, but is produced more substantially by cancer cells. We have previously reported on the use of a DNA vaccine construct that encodes for human PSA gene to elicit host immune responses against cells producing PSA. DNA immunization strategy delivers DNA constructs encoding for a specific immunogen into the host, who becomes the in vivo protein source for the production of antigen. This antigen then is the focus of the resulting immune response. In this study, we examine the induction of immune responses and safety profiles in rhesus macaques immunized with DNA-based PSA vaccine. We observed induction of PSA-specific humoral response as well as positive PSA-specific lymphoproliferative (LPA) response in the vaccinated macaques. We also observed that the stimulated T cells from the PSA-immunized rhesus macaques produced higher levels of Th1 type cytokine IFN-gamma than the control vector immunized animals. On the other hand, DNA immunization did not result in any adverse effects in the immunized macaques, as indicated by complete blood counts, leukocyte differentials and hepatic and renal chemistries. The macaques appeared healthy, without any physical signs of toxicity throughout the observation period. In addition, we did not observe any adverse effect on the vaccination site. The apparent safety and immunogenecity of DNA immunization in this study suggest that further evaluation of this vaccination strategy is warranted.

Animals↗

Immune responses and protection against vaginal infection after nasal or vaginal immunization with attenuated herpes simplex virus type-2.

We compared nasal and vaginal immunizations using attenuated herpes simplex virus type-2 (HSV-2) for protection against vaginal infection with wild-type HSV-2. Mice were immunized once intranasally, intravaginally after progestin (DP) treatment, or intravaginally with scarification after oestradiol treatment. Compared with vaginal immunizations, nasal immunization did not increase immunoglobulin A (IgA) plasma cell numbers in the vagina or elicit a higher antiviral IgA titre in vaginal secretions. Both types of vaginal immunizations increased the number of immunoglobulin G (IgG) plasma cells in the vagina and the secretion/serum titre ratio of IgG antiviral antibody, indicating local production of virus-specific IgG in these groups. Cell-mediated immunity in the vagina, as indicated by memory T-cell secretion of interferon-gamma (IFN-gamma) in situ 20 hr after HSV-2 challenge, was essentially equivalent in the vaginally immunized groups but significantly lower in the nasal group, while lymphocyte recruitment to the vagina was similar in all three groups. All three immunizations protected all mice from neurological disease after challenge, but vaginal DP immunization induced the greatest immunity against reinfection of the vaginal epithelium.

Administration, Intranasal↗

Immune reactions in cattle after immunization with a Mycobacterium paratuberculosis vaccine and implications for the diagnosis of M. paratuberculosis and M. bovis infections.

After immunization of four calves with a live modified Mycobacterium paratuberculosis vaccine the course of the humoral and cell mediated immune reactions was studied during a 2-year clinical investigation. Furthermore, the possibility of shedding of the vaccine strain and the influence of the vaccination on the tuberculin skin test was determined. In addition to standard procedures recently developed diagnostic methods (antibody enzyme-linked immunosorbent assay, interferon-gamma test, polymerase chain reaction) were used. A cell-mediated immune reaction, reflected in an increased, specifically induced, interferon-gamma production developed much earlier (1-2 weeks post-immunization) than humoral immunity (8-16 weeks post-gamma immunization). While the increase in antibody titres was transient, declining to extremely low levels 48-60 weeks post-immunization, cell-mediated immunity remained detectable until the end of the investigation. Spread of the vaccine strain into the body and shedding were never detected during the whole course of the study except for one colon site in one calf. As late as 2 years after vaccine application positive or doubtful skin reactions against M. bovis purified protein derivative were measured, reflecting possible interference of the immunization with the diagnosis of bovine tuberculosis. At the end of the investigation, a positive cell-mediated immune reaction was detected the control animal although clinical, pathological and bacteriological examinations gave no indication for a mycobacterial infection.

Animals↗

Immune responses to hepatitis B surface antigen following epidermal powder immunization.

Langerhans cells in the epidermis of skin are potent antigen-presenting cells that trigger the immune system to respond to invading microorganisms. We have previously shown that epidermal powder immunization with a powdered inactivated influenza virus vaccine, by targeting the Langerhans cell-rich epidermis, was more efficacious than deeper tissue injection using a needle and syringe. We now report enhanced humoral and cellular immune responses to recombinant hepatitis B surface antigen following epidermal powder immunization. We observed that epidermal powder immunization with unadjuvanted hepatitis B surface antigen elicited an antibody titre equivalent to that induced by the alum-adjuvanted vaccine delivered by intramuscular injection, suggesting that epidermal powder immunization can overcome the need for adjuvantation. We demonstrated that synthetic CpG oligonucleotides (CpG DNA) could be coformulated with hepatitis B surface antigen and delivered by epidermal powder immunization to further augment the antibody response and modulate T helper cell activities. Epidermal powder immunization of hepatitis B surface antigen formulated with CpG DNA formulations resulted in 1.5-2.0 logs higher IgG antibody titres than alum-adjuvanted commercial vaccines administered by intramuscular injection. Formulation of hepatitis B surface antigen with CpG DNA elicited an augmented IgG2a antibody response and increased frequency of IFN-gamma secreting cells. In addition, CpG DNA was found to activate epidermal Langerhans cells and stimulate the production of TNF-alpha and IL-12 cytokines by epidermal cells, explaining its strong adjuvant activity following epidermal powder immunization. These results show that epidermal powder immunization is a safe and effective method to deliver hepatitis B surface antigen and the addition of new adjuvants, such as CpG DNA, may further enhance the efficacy of this vaccine.

Adjuvants, Immunologic↗

1.6-Angstroms crystal structure of EntA-im. A bacterial immunity protein conferring immunity to the antimicrobial activity of the pediocin-like bacteriocin enterocin A.

Many Gram-positive bacteria produce ribosomally synthesized antimicrobial peptides, often termed bacteriocins. Genes encoding pediocin-like bacteriocins are generally cotranscribed with or in close vicinity to a gene encoding a cognate immunity protein that protects the bacteriocin-producer from their own bacteriocin. We present the first crystal structure of a pediocin-like immunity protein, EntA-im, conferring immunity to the bacteriocin enterocin A. Determination of the structure of this 103-amino acid protein revealed that it folds into an antiparallel four-helix bundle with a flexible C-terminal part. The fact that the immunity protein conferring immunity to carnobacteriocin B2 also consists of a four-helix bundle (Sprules, T., Kawulka, K. E., and Vederas, J. C. (2004) Biochemistry 43, 11740-11749) strongly indicates that this is a conserved structural motif in all pediocin-like immunity proteins. The C-terminal half of the immunity protein contains a region that recognizes the C-terminal half of the cognate bacteriocin, and the flexibility in the C-terminal end of the immunity protein might thus be an important characteristic that enables the immunity protein to interact with its cognate bacteriocin. By homology modeling of three other pediocin-like immunity proteins and calculation of the surface charge distribution for EntA-im and the three structure models, different charge distributions were observed. The differences in the latter part of helix 3, the beginning of helix 4, and the loop connecting these helices might also be of importance in determining the specificity.

Amino Acid Motifs↗

Mucosal immunity and protection after intranasal immunization with recombinant adenovirus expressing herpes simplex virus glycoprotein B.

A recombinant adenovirus (Ad) expressing glycoprotein B (gB) of herpes simplex virus (HSV) type 1 (AdgB8) was evaluated as a mucosal vaccine candidate. When administered intranasally (inl) to C57B1/6 mice, AdgB8 induced levels of serum anti-HSV gB IgG antibodies similar to those of mice immunized intraperitoneally (ip), which neutralized both HSV-1 and -2. Mice immunized inl with AdgB8 produced secretory IgA specific for HSV gB, but mice immunized ip did not. Splenic anti-HSV cytotoxic T lymphocytes (CTL) were observed after inl and ip immunization; however, there was a time-dependent decrease in the anti-HSV CTL activity from spleens of inl immunized mice. Anti-HSV CTL were also present in the mediastinal lymph nodes after inl but not ip AdgB8 immunization. Furthermore, mice immunized inl with AdgB8 were protected against heterologous inl challenge with HSV-2, and this protection lasted longer than in ip-immunized mice. These results indicate that mucosal immunization with a recombinant adenovirus can induce mucosal and systemic immune responses and provide long-term protection from mucosally or sexually transmitted viruses.

Administration, Intranasal↗

Protective immunity to malaria: studies with cloned lines of Plasmodium chabaudi and P. berghei in CBA/Ca mice. I. The effectiveness and inter- and intra-species specificity of immunity induced by infection.

CBA/Ca mice were immunized by infection with cloned lines of Plasmodium berghei (isolates ANKA, KSP-11). Plasmodium chabaudi chabaudi (AS, CB) or Plasmodium chabaudi adami (DS) and then challenged with either homologous or heterologous parasites. Protective responses were assessed in immune mice relative to the controls by their ability to (i) extend the time taken for the mean parasitaemia to reach a predetermined level (1% or 0.1%) (ii) reduce peak parasitaemia (iii) resolve the parasitaemia sooner and/or (iv) control or eliminate recrudescences. At both the inter- and intra-species level, immunity appeared largely specific for the cloned line inducing it. At the interspecies level marginally effective cross-immunity was sometimes evident, thus P. berghei KSP-11 immune mice displayed some immunity against P.c. chabaudi AS, although immunity to this parasite was relatively ineffective against P. berghei ANKA or KSP-11. Cross-immunity was more apparent between the subspecies P.c. adami and P.c. chabaudi and between cloned lines of the latter parasite derived from the AS and CB isolates. These data reflect considerable inter- and intra-species structural and immunogenic differences in certain antigens of parasitized erythrocytes and merozoites, which have been identified in a number of murine malarias and associated with protective immunity. Similar differences recently identified in the equivalent antigens of the human parasite P. falciparum may therefore have important implications for protective immunity in man.

Animals↗

Differential effect of aging on B-cell immune responses to cholera toxin in the inductive and effector sites of the mucosal immune system.

The age-associated primary immune response of B cells from the Peyer's patches (PP), the lamina propria (LP), the mesenteric lymph nodes (MLN), and the spleen of mice following oral immunization with cholera toxin (CTx) was investigated. The induction of immune responses was assessed in 4-, 11-, and 24-month-old, individual C57BL/6J male mice by determining the number and isotype of anti-CTx ELISPOT-forming cells (SFC) in the PP, LPL, MLN, and spleen and the titer and isotype of serum anti-CTx antibody. The data indicate a significant age-associated decline in immunoglobulin G (IgG) and IgA anti-CTx SFC in the LP B cells but only in IgA anti-CTx SFC in the PP. No decline was seen in the anti-CTx SFC response in the MLN and spleen. Peroral immunization of mice with CTx resulted in a serum anti-CTx antibody response which was predominantly of the IgG class in all three age groups of mice tested. There was no age-associated decline in anti-CTx IgM, IgG, or IgA titers in serum. Isoelectric focusing and affinity immunoblotting revealed several distinct new antibody clonotypes in the immune serum of old mice following oral immunization with CTx. The results indicate a loss of immune responsiveness to CTx following oral immunization in senescent PP and LP B cells. The MLN and spleen B-cell responses were found to be refractory to the loss of immune function with aging. These findings suggest a differential effect of aging in the inductive and effector sites of the mucosal immune system, and the loss of antigen-specific IgA responses at mucosal sites may have adverse effects on the host's defense against potential pathogens.

Administration, Oral↗

Intranasal immunization with pneumococcal conjugate vaccines with LT-K63, a nontoxic mutant of heat-Labile enterotoxin, as adjuvant rapidly induces protective immunity against lethal pneumococcal infections in neonatal mice.

Immunization with pneumococcal polysaccharides (PPS) conjugated to tetanus toxoid (TT) (Pnc-TT) elicits protective immunity in an adult murine pneumococcal infection model. To assess immunogenicity and protective immunity in early life, neonatal (1 week old) and infant (3 weeks old) mice were immunized intranasally (i.n.) or subcutaneously (s.c.) with Pnc-TT of serotype 1 (Pnc1-TT). Anti-PPS-1 and anti-TT immunoglobulin G (IgG) and IgM antibodies were measured in serum and saliva, and vaccine-induced protection was evaluated by i.n. challenge with serotype 1 pneumococci. Pnc1-TT was immunogenic in neonatal and infant mice when administered s.c. without adjuvant: a majority of the young mice were protected from bacteremia and a reduction of pneumococcal density in the lungs was observed, although antibody responses and protective efficacy remained lower than in adults. The addition of LT-K63, a nontoxic mutant of heat-labile enterotoxin, as adjuvant significantly enhanced PPS-1-specific IgG responses and protective efficacy following either s.c. or i.n. Pnc1-TT immunization. Mucosal immunization was particularly efficient in neonates, as a single i.n. dose of Pnc1-TT and LT-K63 induced significantly higher PPS-1-specific IgG responses than s.c. immunization and was sufficient to protect neonatal mice against pneumococcal infections, whereas two s.c. doses were required to induce complete protection. In addition, i.n. immunization with Pnc1-TT and LT-K63 induced a vigorous salivary IgA response. This suggests that mucosal immunization with pneumococcal conjugate vaccines and LT-K63 may be able to circumvent some of the limitations of neonatal antibody responses, which are required for protective immunity in early life.

Adjuvants, Immunologic↗

Dynamics of interaction between complement-fixing antibody/dsDNA immune complexes and erythrocytes. In vitro studies and potential general applications to clinical immune complex testing.

Soluble antibody/3H-double-stranded PM2 DNA (dsDNA) immune complexes were briefly opsonized with complement and then allowed to bind to human erythrocytes (via complement receptors). The cells were washed and subsequently a volume of autologous blood in a variety of media was added, and the release of the bound immune complexes from the erythrocytes was studied as a function of temperature and time. After 1-2 h, the majority of the bound immune complexes were not released into the serum during blood clotting at either 37 degrees C or room temperature, but there was a considerably greater release of the immune complexes into the plasma of blood that was anticoagulated with EDTA. Similar results were obtained using various conditions of opsonization and also using complexes that contained lower molecular weight dsDNA. Thus, the kinetics of release of these antibody/dsDNA immune complexes differed substantially from the kinetics of release of antibody/bovine serum albumin complexes that was reported by others. Studies using the solution phase C1q immune complex binding assay confirmed that in approximately half of the SLE samples that were positive for immune complexes, there was a significantly higher level of detectable immune complexes in plasma vs. serum. Freshly drawn erythrocytes from some SLE patients exhibiting this plasma/serum discrepancy had IgG antigen on their surface that was released by incubation in EDTA plasma. Thus, the higher levels of immune complexes observed in EDTA plasma vs. serum using the C1q assay may often reflect the existence of immune complexes circulating in vivo bound to erythrocytes.

Antigen-Antibody Complex↗

Screening hospital employees for measles immunity is more cost effective than blind immunization.

OBJECTIVE: To examine alternative strategies in developing a cost-effective program to assure measles immunity among hospital employees. DESIGN: Observational. SETTING: Referral teaching hospital. PARTICIPANTS: Eighteen hundred "established" hospital employees with potential patient contact and 630 newly hired hospital employees. INTERVENTIONS: Established employees born after 1 January 1957 and all newly hired employees were screened for serologic evidence of measles immunity and immunized if necessary. MEASUREMENTS: Cost analysis. RESULTS: The cost of screening and directed immunization of established employees was $3.98 per employee compared with a potential cost of $10.03 to $42.80 per employee if all employees were "blindly" immunized with monovalent measles vaccine or trivalent mumps-measles-rubella vaccine. The cost of the screening and directed immunization of new employees was $2.42 per employee compared with potential costs of $8.30 to $39.34 per employee for blind immunization. These analyses assumed that varying percentages of employees would be able to produce documentation of having received a previous dose of vaccine or of having had measles. CONCLUSIONS: In a large referral hospital, screening for measles immunity followed by directed immunization was considerably less expensive than immunizing all potentially susceptible employees.

Cost-Benefit Analysis↗

University students immunized and not immunized for measles: a comparison of beliefs, attitudes, and perceived barriers and benefits.

OBJECTIVE: To compare students who were immunized or not immunized during the 1997 Simon Fraser University measles outbreak in British Columbia. METHODS: Descriptive comparative study using the Health Belief Model as a theoretical framework. A self-administered questionnaire was mailed to a stratified random sample of 400 immunized and 400 non-immunized SFU students. RESULTS: Perceived susceptibility, severity, barriers, cues to action, threat and student age were significantly related to being immunized. Logistic regression analysis achieved an overall correct prediction rate of 84.7% by including the contribution of the four variables of susceptibility, barriers, cues to action, and health motivation. Content analysis of the non-immunized students' descriptions of what it would have taken for them to be immunized indicated the influence of these four variables. DISCUSSION: The Immunization Health Belief Model Scale is a valuable tool for ascertaining attitudes and beliefs relating to immunization decision-making. Interventions targeted to significant beliefs may increase immunization coverage levels and result in improved disease prevention.

Adult↗

Regional differences of B cell immune responses to (4-hydroxy-3 nitrophenylacetyl) acetic acid (NP) antigen in senescent mucosal immune system.

The age-associated primary immune response of B cells from the mesenteric lymph nodes (MLN), the bronchial lymph nodes (BLN), lamina propria (LP), Peyer's patches (PP), and the spleen (Sp) of mice following peritoneal or oral immunization with (4-hydroxy-3-nitrophenylacetyl) acetic acid (NP) conjugated bovine gamma-globulin (NP-BGG) was investigated. The induction of immune responses was assessed in 4-, 11-, and 24-month old individual C57BL/6J male mice by determining the number and isotype of anti-NP ELISPOT-forming cells (SFC) in the MLN, BLN, PP, LP, and Sp, and the titer and isotype of serum anti-NP antibody. Data indicated a significant age-associated decline in immunoglobulin M (IgM) and IgG anti-NP SFC in the Sp. No age-related declines were seen in the anti-NP SFC responses in the MLN and BLN. Oral immunization of mice with soluble NP-BGG in combination with cholera toxin resulted in anti-NP SFC responses in LP and PP, which were predominantly of the IgM class followed by IgG and IgA. There were age-associated increases in IgM, IgG, and IgA anti-NP SFC responses in the LP and PP with negligible responses in the SP and MLN. Serum anti-NP IgM and IgG antibody titers in mice immunized intraperitoneally with NP-BGG were found to decline with age. Isoelectric focusing and affinity immunoblotting revealed a loss of several anti-NP antibody clonotypes in the immune serum of old mice following parenteral immunization with NP-BGG as opposed to several new antibody clonotypes following oral immunization. The findings suggested age-related regional differences of B cell immune responses to the NP antigen in the mucosal immune system. These changes in the NP specific antibody repertoires in the spleen and mucosa-associated tissues may be regulated by different mechanisms operating towards different antigens, and this in turn may influence the characteristic antibody responding to these antigens.

Aging↗

In vitro activation of rat neutrophils and alveolar macrophages with IgA and IgG immune complexes. Implications for immune complex-induced lung injury.

In the rat, both IgG and IgA immune complexes induce oxygen radical mediated lung injury that is partially complement-dependent. In vivo studies have suggested that the chief sources of oxygen radicals in IgG and IgA immune complex-induced lung injury are neutrophils and tissue macrophages, respectively. The current studies have been designed to provide additional insights into these two models of tissue injury. Preformed monoclonal IgG and IgA immune complexes stimulated dose-dependent O2-. and H2O2 production by alveolar macrophages. In contrast, neutrophils exhibited O2-. production and lysosomal enzyme secretion in response to IgG immune complexes, but not in response to IgA complexes. There is evidence that C5a significantly amplifies these responses. Purified human C5a enhanced the O2-. responses of neutrophils activated with IgG immune complexes and alveolar macrophages activated with either IgG or IgA immune complexes. Addition of C5a alone to neutrophils or alveolar macrophages had no direct stimulatory effect as measured by O2-. production. The observation that O2-. responses of immune complex-activated alveolar macrophages can be significantly enhanced by the presence of C5a and that C5a can also enhance O-2. responses of IgG immune complex-stimulated neutrophils suggests a potential amplification mechanism through which complement may participate in both IgG and IgA immune complex-induced lung injury. The present data corroborate in vivo studies which suggest that IgG immune complex lung injury is primarily neutrophil-mediated, whereas IgA complex lung injury is predominantly macrophage-mediated.

Animals↗

CpG DNA is a potent enhancer of specific immunity in mice immunized with recombinant hepatitis B surface antigen.

Unmethylated CpG dinucleotides in bacterial DNA or synthetic oligodeoxynucleotides (ODN) cause B cell proliferation and Ig secretion, monocyte cytokine secretion, and activation of NK cell lytic activity and IFN-gamma secretion in vivo and in vitro. The potent immune activation by CpG ODN suggests possible utility for enhancing immune responses to vaccines. Mice immunized with recombinant hepatitis B virus surface Ag and a CpG ODN as an immune enhancer have titers of Abs against HBsAg (anti-HBs) that are five times higher than those of mice immunized with HBsAg and the standard adjuvant, aluminum hydroxide (alum). Ab titers in mice immunized with HBsAg and both CpG ODN plus alum were 35 times higher than the titers in mice immunized with alum alone, indicating a strong synergistic interaction between the CpG ODN and alum. ODN without CpG motifs had little or no immune-enhancing activity at the doses used herein. Alum induces a Th2 humoral response (mostly IgG1) and no CTL. In contrast, CpG ODN gives a strong Thl response with predominantly IgG2a Abs and CTL, even when mixed with alum. In vitro studies to determine possible mechanisms of CpG immune-enhancing effects show that CpG ODN induce expression of costimulatory molecules on Ag-presenting cells and drive B cell isotype switching in the appropriate cytokine milieu. These studies demonstrate that CpG ODN are promising new immune enhancers for vaccination applications.

Adjuvants, Immunologic↗

Dendritic cell-based genetic immunization in mice with a recombinant adenovirus encoding murine TRP2 induces effective anti-melanoma immunity.

BACKGROUND: The induction of cellular immune responses to melanocyte-specific enzymes such as the tyrosinase family of proteins is the goal of various clinical studies for the immunotherapy of melanoma. Tyrosinase-related protein-2 (TRP2) is an attractive model antigen for preclinical studies in C57BL/6 mice because it is naturally expressed by the murine B16 melanoma and can be recognized by self-reactive cytolytic T lymphocytes (CTL). Here we describe efforts to develop genetic immunization with dendritic cells (DC) for the immunotherapy of melanoma in this clinically relevant system. METHODS: Recombinant adenoviruses encoding green fluorescent protein (Ad-EGFP) and murine TRP2 (Ad-mTRP2) were constructed using Cre-loxP-mediated recombination. DC were generated in vitro from precursors in bone marrow and transduced with Ad-EGFP or Ad-mTRP2. Mice were immunized by direct injection of adenovirus or by injection of Ad-transduced DC. Induction of tumor immunity was assessed by intravenous challenge with B16 melanoma cells and enumeration of experimentally induced lung metastases. RESULTS: Flowcytometric analysis of DC transduced with Ad-EGFP demonstrated endogenous fluorescence due to cytoplasmatic expression of EGFP in 30-60% of cells. Ad-EGFP-transduced DC simultaneously displayed the DC-specific marker NLDC145 and high levels of MHC and costimulatory molecules on their cell surface. Transduction of DC with Ad-mTRP2 resulted in strong intracellular expression of TRP2 which could be readily detected by immunostaining. Importantly, immunization of mice with cultured Ad-mTRP2-transduced DC completely prevented the development of lung metastases following an intravenous challenge with B16 melanoma cells. This striking protective effect was observed with both the intravenous and the subcutaneous route of DC immunization. In vivo depletion of T-cell subsets suggested that the protective effect of an immunization with Ad-mTRP2-transduced DC involved both CD8+ and CD4+ T-cells. CONCLUSIONS: Our results demonstrate that DC-based genetic immunization of mice with TRP2, a clinically relevant melanocyte-specific self-antigen, induces effective cellular immunity and prevents metastatic growth of B16 melanoma cells in vivo.

Adenoviridae↗