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Biomedical subjects

N Lycke

Publications and source records attributed to N Lycke.

At least 37 records · Page 2Linked to original sources

Induction of the trypanosome lymphocyte-triggering factor (TLTF) and neutralizing antibodies to the TLTF in experimental african trypanosomiasis.

We have demonstrated that African trypanosomes secrete a novel trypanokine, the trypanosome-derived lymphocyte-triggering factor (TLTF), which activates CD8+ cells to produce interferon-gamma (IFN-gamma) that in turn stimulates parasite growth. The gene for TLTF was recently cloned, and recombinant TLTF (rTLTF) showed bioactivity that was similar to native TLTF. In this work, we employed two anti-TLTF monoclonal antibodies (mAbs) to detect levels of TLTF during Trypanosoma brucei brucei (T. b. brucei ) infections in mice. Furthermore, rTLTF was utilized to assess levels of anti-TLTF antibodies. Mice with intact genes (wild type), and knockout mice with disrupted IFN-gamma (IFN-gamma-/-) or IFN-gammaR (IFN-gammaR-/-) genes were studied. The knockout mice were used in order to illustrate the role of IFN-gamma in the production of antibodies to TLTF. While wild-type mice showed high parasitaemia accompanied by high TLTF levels and low anti-TLTF antibodies at day 3 postinfection (p.i.), low TLTF was measured together with increased anti-TLTF antibodies at day 21 p.i. IFN-gamma-/- mice exhibited very low parasitaemia, TLTF and anti-TLTF antibody levels. In contrast, IFN-gammaR-/- mice revealed very high parasitaemia, increased TLTF levels, but decreased anti-TLTF antibodies. In a biological assay for TLTF, Fab' fragments of anti-TLTF antibodies dose dependently inhibited the TLTF-induced IFN-gamma production by splenocytes, suggesting a regulatory importance of these antibodies. Our data demonstrate a role of IFN-gamma in the generation of neutralizing antibodies to TLTF. Furthermore, the induction of TLTF and its antibodies may constitute a new approach for future diagnosis of African trypanosomiasis.

Animals↗

Hydrophobicity engineering of cholera toxin A1 subunit in the strong adjuvant fusion protein CTA1-DD.

Protein engineering of the cholera toxin A1 subunit (CTA1) fused to a dimer of the Ig-binding D-region of Staphylococcus aureus protein A (DD) was employed to investigate the effect of specific amino acid changes on solubility, stability, enzymatic activity and capacity to act as an adjuvant in vivo. A series of CTA1-DD analogues were selected by a rational modeling approach, in which surface-exposed hydrophobic amino acids of CTA1 were exchanged for hydrophilic counterparts modeled for best structural fit. Of six different mutants initially produced, two analogues, CTA1Phe132Ser-DD and CTA1Pro185Gln-DD, were demonstrated to have 50 and 70% increased solubility, respectively, at neutral pH. The double mutant CTA1Phe132Ser/Pro185Gln-DD was at least threefold more soluble, demonstrating an additive effect of the two mutations. Only the Phe132Ser analogue retained full biological activity and stability compared with the native CTA1-DD fusion protein. Two mutants, Pro185Gln and Phe31His mutations, exhibited unaltered ADP-ribosyltransferase activity in vitro, but demonstrated markedly reduced adjuvant function. Since the Pro185 and Phe31 amino acids are located in close vicinity on the distal side of the molecule relative to the enzymatically active cleft, it is conceivable that this region is involved in mediating a biological function, separate from the enzymatic activity but intrinsic to the adjuvant activity of CTA1.

Animals↗

Novel enabling technologies for vaccine development. 26-27 January 1999, Royal Society, London, UK.

This was a very well-organized meeting with a highly attractive program featuring some of the leading people in current vaccine development. A special focus was given to novel adjuvant research and the possibility of developing combination vaccines. Close to 150 participants from academia and industry gathered in the excellent conference center of the Royal Society and the two-day sessions were superbly chaired by Professor Myron Levine, (Center for Vaccine Development (CVD), University of Maryland, Baltimore, USA) and Dr Ronald Ellis (BioChem Pharma Inc, Boston, MA, USA).

Journal Article↗

Mice with an inactivated joining chain locus have perturbed IgM secretion.

A mouse with an inactivated joining chain locus was produced by gene targeting in embryonic stem cells by deleting the first exon. Heterozygote (J+/-) and homozygote (J-/-) offspring from these mice showed normal total serum immunoglobulin levels and a normal peripheral B cell compartment when compared to wild-type littermates. The distribution of serum immunoglobulin isotypes in serum was different; IgA levels were elevated while IgM levels were reduced in J-/- mice as compared to wild-type mice. High molecular weight serum IgM was reduced in J+/- and J-/- mice and instead found in oligomeric form of undefined structure. Furthermore, serum IgM from J+/- and J-/- mice showed a reduced ability to activate complement. The number of splenic and bone marrow IgM plaque-forming cells were reduced in unimmunized J+/- as well as in J-/- mice. Furthermore, the number of plaque-forming cells was reduced in B cells from both J+/- and J-/- mice after stimulation with lipopolysaccharide in vitro. The perturbation of IgM production in J-/- mice appears to affect a late stage of differentiation, because cells with intracellular IgM were readily detected both in vivo and in vitro. Finally, after immunization with T-dependent or T-independent antigens the IgM component of the immune response was reduced in J-/- mice while only a marginal reduction of the IgG response was detected.

Animals↗

Recombinant cholera toxin B subunit is not an effective mucosal adjuvant for oral immunization of mice against Helicobacter felis.

Cholera toxin is a potent oral mucosal adjuvant for enteric immunization. Several studies suggest that commercial cholera toxin B subunit (cCTB; purified from holotoxin) may be an effective non-toxic alternative for oral immunization. The present study was performed, using an infectious disease model, to determine if the oral mucosal adjuvanticity of CTB is dependent on contaminating holotoxin. Mice were orally immunized with Helicobacter felis sonicate and either cholera holotoxin, cCTB or recombinant cholera toxin B subunit (rCTB). Serum immunoglobulin G (IgG) and intestinal immunoglobulin A (IgA) antibody responses were determined and the mice were challenged with live H. felis to determine the degree of protective immunity induced. All orally immunized mice responded with serum IgG antibody titres regardless of the adjuvant used. However, only mice immunized with either holotoxin or the cCTB responded with an intestinal mucosal IgA response. Consistent with the production of mucosal antibodies, mice immunized with either holotoxin or cCTB as adjuvants were protected from challenge while mice receiving H. felis sonicate and rCTB all became infected. cCTB induced the accumulation of cAMP in mouse thymocytes at a level equal to 0.1% of that induced by holotoxin, whereas rCTB was devoid of any activity. These results indicate that CTB possesses no intrinsic mucosal adjuvant activity when administered orally. Therefore, when used as an oral adjuvant, CTB should also include small, non-toxic doses of cholera toxin.

Adjuvants, Immunologic↗

Induction of gut mucosal immune responses: importance of genetic background and Th1/Th2 cross-regulation.

The reciprocal regulation of T-helper cell (Th) subsets is widely documented in various animal models of infectious diseases. In this study IFN-gamma/IL-4 double knockout (DKO) mice were used to analyse the role of Th subsets in mucosal immune responses. We found that the DKO mice had normal IgA differentiation but impaired induction of specific gut mucosal antibody responses after oral immunization using cholera toxin adjuvant. Both Th1 and Th2 responses were reduced compared with wild-type mice. Despite the absence of both IFN-gamma and IL-4 in the DKO mice the overall results were similar to previous observations in IFN-gamma receptor-knockout (IFN-gammaR-/-) mice and did not suggest a strict cross-regulation of the two Th subsets in the gut mucosa. To further examine the role of IFN-gamma in mucosal immunity we compared two different mouse strains lacking IFN-gamma, i.e. IFN-gamma-/- (C57BL/6) and IFN-gammaR-/- mice (129/Sv). We found that IFN-gammaR-/- mice exhibited reduced mucosal antibody responses and decreased Th1 and Th2 activity after oral immunization, while IFN-gamma-/- mice had intact antibody responses and increased Th2 responses. Thus, genetic differences were found to critically affect the development of a specific gut mucosal immune response. An enhanced Th2 activity in the Peyer's patches following oral immunization was associated with an ability to mount strong intestinal IgA immunity.

Animals↗

A novel concept in mucosal adjuvanticity: the CTA1-DD adjuvant is a B cell-targeted fusion protein that incorporates the enzymatically active cholera toxin A1 subunit.

A promising novel concept in mucosal adjuvant research is demonstrated here. The adjuvant and toxic effects of the cholera toxin (CT) have been successfully separated in a gene fusion protein, CTA1-DD. This protein consists of the ADP-ribosylating A1 subunit of CT linked to a synthetic analogue of protein A. The CTA1-DD protein was found to exert comparable adjuvant activity to that of CT after systemic as well as mucosal immunizations with soluble protein antigens, such as KLH or ovalbumin (OVA). However, contrary to CT it was completely non-toxic. The CTA1-DD approach to the construction of a potential vaccine adjuvant is unique and highly promising. Conceptually, the CTA1-DD fusion protein demonstrates that: (i) contrary to CT the CTA1-DD is a highly targeted adjuvant, directed to B cells and possibly other antigen-presenting cells; (ii) it is possible to introduce ADP-ribosyltransferase activity into cells via an alternative pathway to the GM1 receptor pathway used by CTB; (iii) the adjuvant effect of CTA1-DD, and possibly also of CT, depend on the enzymatic activity; and (iv) one possible mechanism, shared by CT, that may explain the adjuvant effect of CTA1-DD is its ability to induce expression of the costimulatory molecule CD86 on B cells.

Adjuvants, Immunologic↗

The influence of costimulation and regulatory CD4+ T cells on intestinal IgA immune responses.

It is thought that IgA B-cell differentiation is highly dependent on activated CD4+ T cells. In particular, cell-cell interactions in the Peyer's patches involving CD40 and/or CD80/CD86 have been implicated in germinal-center formation and IgA B-cell development. Also soluble factors, such as IL-4, IL-5, IL-6, and TGF beta may be critical for IgA B-cell differentiation in vivo. Here we report on some paradoxical findings with regard to IgA B-cell differentiation and specific mucosal immune responses that we have recently made using gene knockout mice. More specifically, we have investigated to what extent absence of CD4+ T cells, relevant cytokines, or T-cell-B-cell interactions would influence IgA B-cell differentiation in vivo. Using CD4- or IL-4-gene knockout mice or mice made transgenic for CTLA4Ig, we found that, although specific responses were impaired, total IgA production and IgA B-cell differentiation appeared to proceed normally. However, a poor correlation was found between, on the one hand, GC formation and IgA differentiation and, on the other hand, the ability to respond to T-cell-dependent soluble protein antigens in these mice. Thus, despite the various deficiencies in CD4+ T-cell functions seemingly intact IgA B-cell development was observed.

Abatacept↗

Cytokines and anti-cytokine autoantibodies during experimental african trypanosomiasis in mice with disrupted interferon-gamma and interferon-gamma receptor genes.

We studied cytokines and anti-cytokine autoantibodies (Aabs) during T.b.brucei infections in IFN-gamma-/-, IFN-gammaR-/- and wild-type mice. Increased serum levels of IFN-gamma, TNF-gamma and IL-4 with decreased Aabs to these cytokines were recorded early during infections in all mice (except IFN-gamma in IFN-gamma-/- mice). Later, these responses were reversed, and surprisingly Aabs reacting to IFN-gamma in the IFN-gamma -/- mice were detected. To examine the possibility that an IFN-ç immunoreactive molecule might be expressed due to infections and upon gene deletion, anti-IFN-gamma antibody was inoculated and resulted in abrogation of such Aabs. The scenario was different for IL-10 and TGF- since IFN-gammaR-/- and wild-type mice showed low cytokines and high Aabs early during infections, but later high cytokines and low Aabs were registered. Interestingly, IFN-gamma-/- mice exhibited reversed levels of both IL-10 and TGF-beta, and also of their Aabs. Fab fragments of purified serum immunoglobulins showed binding and neutralizing effects in biological assays. Pre-absorption of the Fab fragments with a cytokine inhibited the binding and neutralization effects of this cytokine, but not of other cytokines. These results highlight an important role for autoimmunity in cytokine regulation, and that genomic deletion of IFN-gamma modulates cytokines and their Aab responses in experimental African trypanosomiasis.

Animals↗

Xenograft rejection of porcine islet-like cell clusters in normal, interferon-gamma, and interferon-gamma receptor deficient mice.

BACKGROUND: The aim of the present study was to evaluate the role of the T-cell cytokine interferon (IFN)-gamma in mediating macrophage activation in xenograft rejection. METHODS: For this purpose, fetal porcine islet-like cell cluster (ICC) transplants were placed under the renal capsule of normal mice and mice with a homozygous targeted disruption of the IFN-gamma or the IFN-gamma receptor gene. Some of the mice were continuously infused with cyclosporine (CsA, 12.4 mg/kg body weight/day) or CsA vehicle by subcutaneously implanted osmotic pumps. Histological evaluation of the xenografts was performed 6 or 12 days after transplantation. RESULTS: All animals, irrespective of recipient group, readily rejected the ICC xenograft, although the rejection process was slightly delayed in mice deficient in IFN-gamma. Analysis of the infiltrating cells within the xenograft in knockout mice revealed a pattern similar to that found in control animals. Six days after transplantation, there was an abundant infiltration of macrophages (Mac-1, F4/80, and major histocompatibility complex II markers) in the ICC grafts. Quite in contrast, there was only a low to moderate number of T cells (CD3 marker) present in the ICC grafts. Treatment with CsA had no effect on the rejection process. In grafts removed from mice with a disruption of the IFN-gamma gene, occasional surviving endocrine cells, and in some cases also a few intact ICC, were found within the otherwise obliterated xenograft. Few or no surviving endocrine cells were found in the grafts obtained from the other groups of mice. CONCLUSIONS: Thus, the present study demonstrates that macrophage activation, and subsequent destruction of an ICC xenograft, can operate in the absence of IFN-gamma in the pig-to-mouse model.

Animals↗

Migration of host and donor T cells in small bowel transplantation.

In this study migration of host and donor CD4+ and CD8+ T cells in a fully allogeneic model was described and compared with the migration pattern in a graft-versus-host reaction (GVHR) model, where the T-cell traffic in the graft served as a physiological control. Heterotopic small bowel transplantations were performed in a rat model, with animals being sacrificed on postoperative days (POD) 2, 3, 4, 5, and 7. Graft and host mesenteric lymph nodes were harvested, homogenized, and stained with monoclonal antibodies against MHC class I, CD4+, and CD8+ antigens. The host and donor T cell migration patterns were studied using a double-staining flow cytometric technique. We found that during the development of rejection, the normal physiological circulation of graft and host T cells was disrupted. In the graft of the allogeneic model, a shift from host cell to graft cell dominance occurred on POD 3-4. This change in migration pattern coincided in the host with a 6% peak in graft cell infiltration, which disappeared on POD 7. These patterns of T-cell migration may be further explored for diagnostic purposes.

Animals↗

Murine CD4 T-cell response to Helicobacter infection: TH1 cells enhance gastritis and TH2 cells reduce bacterial load.

BACKGROUND & AIMS: Previous findings suggest that TH1 cellular immune responses contribute to Helicobacter-associated gastritis. To further investigate this issue, interleukin 4 gene targeted mice were infected with Helicobacter felis, and a series of adoptive transfer experiments was performed to evaluate the role of both TH1 and TH2 cells. METHODS: Antigen-specific spleen cells from immunized/challenged or nonimmunized/infected mice or CD4+ T-cell lines were transferred adoptively into naive recipients before live bacterial challenge. RESULTS: Transfer of cells from both groups of donors as well as TH1 or TH2 cell lines exacerbated gastric inflammation in the recipients. No effect on bacterial load was observed in recipients of bulk spleen cells from infected mice or recipients of TH1 cell lines. In contrast, when either a TH2 cell line or bulk cells from immunized challenged mice were transferred adoptively, recipients showed a dramatic reduction in bacterial load. Increased numbers of bacteria were also noted in interleukin 4-deficient mice. CONCLUSIONS: These data suggest a differential contribution of TH1 and TH2 cell-mediated immune responses in Helicobacter infection: one associated with the pathogenesis of disease (TH1 phenotype) and the other associated with protection from or control of infection (TH2 phenotype).

Adoptive Transfer↗

Tandem repeats of T helper epitopes enhance immunogenicity of fusion proteins by promoting processing and presentation.

Empirical findings have shown that recombinant chimeric proteins may be made more immunogenic if T helper epitopes are incorporated as tandem repeats. In the present study we investigated the mechanisms responsible for the enhanced immunogenicity of fusion proteins composed of the heat-stable enterotoxin of enterotoxigenic E. coli (STa) linked to multiple copies of the ovalbumin323-339 T helper epitope (ova) and a connecting dimer of an Ig-binding region of Staphylococcus aureus protein A (ZZ), which were previously shown to stimulate strong anti-STa titres in mice. We used B cell and macrophage cell lines as APC and IL-2 production by ova-specific T cells as our read-out system. Fusion proteins containing four repeated T helper epitopes were found to be the most immunogenic and resulted in 50-fold higher IL-2 production than constructs with a single T helper epitope. Under limiting APC conditions the construct with four epitopes was the best inducer of IL-2, indicating that this construct was most effectively processed by the APC. Analysis of IL-2R alpha expression by flow cytometry confirmed that four copies gave the highest frequency of activated T cells in culture, indicating a direct correlation between ability to activate T cells and IL-2 production in culture. Also in vivo, the fusion protein with four epitopes exhibited the strongest T cell priming effect. Moreover, both in vitro and in vivo, the ZZ construct was found to serve as an efficient means for targeting of the fusion proteins to B cells, thereby allowing access to the Ig receptor uptake pathway for Ag. The present study provides direct evidence that fusion proteins can be constructed to optimize processing in the individual APC and enhance activation of clonal T cells.

Animals↗

B-cell-deficient mice develop complete immune protection against genital tract infection with Chlamydia trachomatis.

We evaluated the ability of mice made genetically deficient for B cells to resolve a primary infection and to develop protective immunity against vaginal challenge with a human isolate of Chlamydia trachomatis bacteria. The B-cell-deficient microMT mice cleared a primary ascending infection with similar or faster kinetics compared with wild-type mice. The presence of chlamydial inclusion bodies and the degree of inflammation in the upper genital tract was comparable and showed similar kinetics in microMT as in wild-type mice. Following resolution of the primary infection the mice were challenged by 100 ID50 of live bacteria and the level of protection and the extent of local inflammation was assessed. Strikingly, all microMT mice, as well as most of the wild-type mice, demonstrated complete immune protection with no bacterial shedding. While high titres of chlamydia-specific antibodies were stimulated locally and systemically in wild-type mice, no antibodies were detected in microMT mice. However, in both strains, immunohistochemical analysis of the upper genital tract demonstrated the presence of large numbers of CD4+ T cells and increased levels of interferon-gamma (IFN-gamma)-producing cells. The results unequivocally demonstrate that antibodies are not required for full protection to develop against ascending infection with a high dose of C. trachomatis in the female genital tract. Our study confirms the notion that cell-mediated immunity, in particular that owing to CD4+ T helper I (Th1)-type cells, is critical for host resistance against C. trachomatis in mice.

Animals↗

Studies in knockout mice reveal that anti-chlamydial protection requires TH1 cells producing IFN-gamma: is this true for humans?

Chlamydia trachomatis is one of the major causes of infertility and preventable blindness in the world. The organism is of particular interest from an immunological point of view because it is one of the few obligate intracellular bacterial pathogens. There is some evidence that repeated infections in humans stimulate protective immunity. However, until recently, it was unclear which components of the adaptive immune system give rise to protection. Studies in gene knockout mice reported here and elsewhere now give a coherent and cogent picture of the importance of the Th1 response, in particular IFN-gamma, for the localization and eradication of C. trachomatis genital tract infection. The key questions still to be addressed are the identity of the IFN-gamma responsive cells and whether the mouse is truly representative of host protection against chlamydiae in humans.

Animals↗

Genital tract infection with Chlamydia trachomatis fails to induce protective immunity in gamma interferon receptor-deficient mice despite a strong local immunoglobulin A response.

CD4+ T cells have been found to play a critical role in immune protection against Chlamydia trachomatis infection. Since both humoral and cell-mediated antichlamydial immunity have been implicated in host protection, the crucial effector functions provided by the CD4+ T cells may rely on Th1 or Th2 functions or both. In the present study, we evaluated the development of natural immunity following vaginal infection with C. trachomatis serovar D in female gamma interferon receptor-deficient (IFN-gammaR-/-) mice with a disrupted Th1 effector system. We found that in comparison with wild-type mice, the IFN-gammaR-/- mice exhibited a severe ascending primary infection of prolonged duration which stimulated almost 10-fold-stronger specific local immunoglobulin A (IgA) and IgG responses in the genital tract. Following resolution of the primary infection and despite the augmented antibody responses to chlamydiae, the IFN-gammaR-/- mice were completely unprotected against reinfection, suggesting that local antibodies play a subordinate role in host protection against chlamydial infection. Immunohistochemical analysis of frozen sections of the genital tract revealed many CD4+ T cells in the IFN-gammaR-/- mice, with a dominance of interleukin 4-containing cells in mice following resolution of the secondary infection. However, in contrast to the findings with wild-type mice, the typical clusters of CD4+ T cells were not found in the IFN-gammaR-/- mice. Few and similarly distributed CD8+ T cells were observed in IFN-gammaR-/- and wild-type mice. Whereas chlamydia-infected macrophages from wild-type mice had no inclusion bodies (IB) and produced significant amounts of nitric oxide (NO) in the presence of IFN-gamma, macrophages from IFN-gammaR-/- mice contained many IB but no NO. These results indicate that CD4+ Th1 cells and IFN-gamma, rather than local antibodies, are critical elements in host immune protection stimulated by a natural ascending C. trachomatis infection in the female genital tract.

Animals↗

Human and rodent interferon-gamma as a growth factor for Trypanosoma brucei.

An example for the bidirectional exchange of activating signals between a pathogen and immunocompetent cells in the host is presented. Trypanosoma brucei, which include subspecies that cause African sleeping sickness, secrete a molecule that triggers lymphocytes to produce interferon (IFN)-gamma. We now report that proliferation of T. brucei is stimulated in axenic cultures by IFN-gamma. The growth-enhancing effect on the pathogen is inhibited by anti-IFN-gamma receptor (R) antibodies and does not occur after exposure to other cytokines, i.e. IFN-alpha, IFN-beta and tumor necrosis factor (TNF)-alpha. While rodent-pathogenic T. brucei strains are stimulated by rat IFN-gamma, human pathogenic strains are more potently stimulated by human IFN-gamma. Rat and human IFN-gamma can partially block each others effects. Mice with disrupted IFN-gamma genes have reduced parasitemia and prolonged survival, while the outcome is reversed in mice that lack the IFN-gamma R gene.

Animals↗