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Biomedical subjects

K Lövgren

Publications and source records attributed to K Lövgren.

At least 19 recordsLinked to original sources

Conjugation of synthetic peptides to carrier iscoms: factors affecting the immunogenicity of the conjugate.

This study was designed to explore optimal conditions for the conjugation of a synthetic peptide to preformed influenza virus iscoms using MHS (maleimidohexanoyl-N-hydroxy-succinimide ester) as coupling agent. The peptide used in this study comprised amino acids 122-138 of porcine growth hormone (pGH). Different ratios of peptide to carrier iscoms were tested and the resulting conjugates were analysed for composition, antigenicity and immunogenicity. The problem of low solubility and poor immunogenicity of high-density peptide conjugates is discussed and a general protocol for conjugation of peptides to carrier iscoms is proposed.

Animals↗

Long-standing protection of macaques against cell-free HIV-2 with a HIV-2 iscom vaccine.

We investigated the capacity of two immunostimulating-complex (iscom) formulations including inactivated native HIV-2 viral proteins and selected peptides to induce protective immunity against HIV-2 in a nonhuman primate. Four cynomolgus monkeys were first immunized with five i.m. injections of purified detergent-disrupted HIV-2 virions (total dose, 0.7 mg) in iscoms over a period of 16 months. At months 18 and 20, all four macaques were given booster immunizations with iscom-coupled V3-derived synthetic peptides representing a dominating neutralizing region of HIV-2 gp125. Two weeks after the final dose of vaccine, the four vaccinated animals, together with four controls, were challenged i.v. with 10 monkey infectious doses (MID50) of monkey-cell-grown homologous cell-free virus, HIV-2SBL-6669/H5. After the challenge, the four control animals became readily infected; however, three of four vaccinated animals were protected as shown by repeated negative virus isolations and negative polymerase chain reaction for viral DNA and by failure to transmit HIV-2 infection with whole blood and lymph node cells into naive cynomolgus macaques. One of three protected animals showed an anamnestic antibody response to a dominating antigenic site, indicating possible limited virus replication. The vaccine-protected monkeys were subsequently resistant to rechallenge infection at 12, 15, and 18 months after the first challenge, suggesting that a reasonable duration of protective immunity had been induced by the vaccine.

AIDS Vaccines↗

Immunopotentiation of synthetic oligopeptides by chemical conjugation to iscoms.

A method has been devised for coupling cysteine-containing peptides to pre-formed immune stimulating complexes (iscoms). Four different peptides were used and the peptide-iscom conjugates were evaluated as immunogens in mice. It was demonstrated that highly immunogenic peptide-iscom conjugates can be prepared provided that the peptides are successfully linked to the carrier iscoms.

Adjuvants, Immunologic↗

Plasmodium falciparum: the immune response in rabbits to the clustered asparagine-rich protein (CARP) after immunization in Freund's adjuvant or immunostimulating complexes (ISCOMs).

The Plasmodium falciparum clustered asparagine-rich protein (CARP) is a merozoite-associated antigen which contains approximately 30% asparagine. Analysis of the DNA sequences located 5' of the cloned 1.4-kb CARP gene in the P. falciparum genome suggests that this gene fragment may encode the complete CARP and that the gene product is a protein of M(r) 50,000. To analyze the immunogenicity of CARP, the gene was expressed as a fusion protein with staphylococcal protein A (SpA-CARP). Immunization of rabbits with SpA-CARP in Freund's complete adjuvant (FCA) resulted in a strong antibody response against CARP as measured in ELISA. This response was efficiently boosted and sustained over a long time while that induced by two immunizations with SpA-CARP in ISCOMs was weak and of shorter duration. In both instances, the antibody levels against CARP were further increased by a second booster injection consisting of either SpA-CARP or CARP fused to the serum albumin-binding region (BB) of streptococcal protein G (BB-CARP) in PBS, indicating that immunizations with SpA-CARP in FCA or ISCOMs had induced a CARP-specific immunological memory. Boosting with BB-CARP in PBS was more efficient than boosting with SpA-CARP in PBS. In all rabbits, the antibodies obtained after the booster with CARP in PBS were the most efficient inhibitors of merozoite invasion in vitro. The antisera reacted with the intracellular parasite in immunofluorescence and with a band of M(r) 50,000 in immunoblotting while several high-molecular-weight components as well as the one of M(r) 50,000 were immunoprecipitated. The specificity of the antibody responses varied between the different rabbits as indicated in ELISA, with short synthetic peptides representing different CARP sequences. Taken together, the results suggest that a previously cloned genomic DNA fragment may encode the complete P. falciparum blood-stage antigen CARP and that CARP is immunogenic in rabbits both when administered in FCA or ISCOMs.

Amino Acid Sequence↗

The induction of cell-associated and secreted IL-1 by iscoms, matrix or micelles in murine splenic cells.

The kinetics of the expression of membrane-associated IL-1 (mIL-1) and soluble IL-1 (sIL-1) was studied in in vitro stimulated spleen cells from non-primed mice or from mice primed with influenza virus antigens incorporated in the immuno-stimulating complexes (iscoms) or as micelles. Matrix, which is the carrier structure for the antigens in the iscom, was used as a non-antigen stimulus. The IL-1 produced was assayed in an IL-1-dependent cell line and the specificity was demonstrated in a blocking experiment with antiserum to IL-1 alpha. Soluble IL-1 alpha was also quantified in ELISA. Iscoms and matrix induced production of mIL-1 and sIL-1 in cultures from non-treated mice as well as from mice primed 4 days before with iscoms or micelles. Micelles were a less strong stimulus and did not induce production of sIL-1. Micelles induced production of mIL-1 in cultures from non-primed mice or from mice which were recently immunized with micelles. No mIL-1 expression was induced by micelles if the spleen cells originated from mice immunized shortly before with iscoms. Depletion experiments demonstrated that sIL-1 was produced by adherent cells upon stimulation with iscoms or matrix. However, factor(s) from the non-adherent cells seem to be necessary for optimal secretion of sIL-1.

Animals↗

Immunogenicity in rabbits and monkeys of influenza ISCOMs conjugated with repeated sequences of the Plasmodium falciparum antigen Pf155/RESA.

Rabbits and monkeys were immunized with two fusion proteins, ZZ-M3 and ZZ-M5, coupled to pre-formed influenza virus membrane glycoprotein ISCOMs. The fusion proteins comprise two IgG-binding domains from staphylococcal protein A (ZZ) and repeated amino acid sequences from the C-terminal (M3) or central (M5) repeat regions of the Plasmodium falciparum antigen Pf155/RESA. The induced antibody responses were of long duration, could be efficiently boosted and were comparable to those obtained with Freund's Adjuvant. The produced antibodies reacted with M3, M5, protein A and the influenza glycoprotein, recognized Pf155/RESA and inhibited merozoite invasion in vitro. These results suggest that coupling of immunogens to pre-formed ISCOMs may be a basis for construction of multivalent subunit vaccines.

Amino Acid Sequence↗

Immune responses and resistance to Toxoplasma gondii in mice immunized with antigens of the parasite incorporated into immunostimulating complexes.

Immunostimulating complexes were prepared with antigens extracted from tachyzoites of Toxoplasma gondii and were used to immunize mice. The major antigens incorporated into the immunostimulating complexes were the P30 and P22 antigens and an antigen with an approximate molecular weight of 6,000. Other antigens of molecular weights above 30,000 were also present. High antibody titers to T. gondii antigens and a delayed-type hypersensitivity reaction were noted for the immunized mice. Challenge of these mice with tachyzoites injected interperitoneally or with oocysts administered orally resulted in a statistically significant (P < 0.001) conditional probability of survival compared with that of controls. In contrast, the differences between immunized mice and controls challenged with tissue cysts did not attain statistical significance.

Animals↗

Effects of adjuvants and multiple antigen peptides on humoral and cellular immune responses to gp160 of HIV-1.

The capacity of five different adjuvants, AlPO4, a muramyldipeptide formulation (MDP.TSL), Freund's adjuvant, immunostimulating complex and its matrix components to elicit humoral and cellular responses in rabbits immunized with the human immunodeficiency virus type 1 (HIV-1) envelope protein rgp160IIIB was compared. The highest antibody titers against gp160 and gp41/gp120 epitopes were seen with rgp160 in MDP.TSL or Freund's adjuvant, whereas the broadest responses were seen in rabbits immunized with rgp160 in matrix or MDP.TSL. The broadest spectrum of high-avidity antibodies was also induced by rgp160 in MDP.TSL. Neutralizing titers against HIV-1IIIB, low titers to HIV-1MN, and the most efficient inhibition of viral cell-to-cell spread was seen with rgp160 in MDP.TSL. The strongest and most persisting cellular responses were induced by rgp160 in AlPO4 or MDP.TSL. Using MDP.TSL as the adjuvant, we also improved the immune response against gp120 epitopes by boosting rgp160-primed rabbits with rgp160, multiple antigenic peptides (MAPs), or unconjugated peptides. The MAPs induced high neutralizing titers and were superior to rgp160 alone in inducing both humoral and cellular reactivity. MAPs are therefore strong candidates for inclusion into future HIV-1 vaccines.

Acetylmuramyl-Alanyl-Isoglutamine↗

Interactions between immune-stimulating complexes (ISCOMs) and peritoneal mononuclear leucocytes.

Studies were undertaken in mice using immune-stimulating complexes (ISCOMs) or micelles prepared from envelope glycoproteins of human influenza virus (PR8) and matrix (i.e., ISCOM skeleton without incorporated antigen). Electron microscopic studies showed that ISCOMs, in contrast to micelles, have a remarkable affinity for cell membranes and seem to rapidly promote their own internalization by cells to which they adhere. PR8 ISCOMs, but not matrix nor micelles, significantly increased the expression of membrane Ia by peritoneal mononuclear leucocytes 24 hr after intraperitoneal immunization.

Animals↗

Antigen-specific increases in the number of splenocytes expressing MHC class II molecules following restimulation with antigen in various physical forms.

To understand how a presentation system for antigens initiates an immune response and why it has a strong adjuvant activity, a number of parameters need to be analysed. In this study the frequency of spleen cells expressing MHC class II (Ia antigen) was determined after immunization of mice and restimulation of their spleen cells, in vitro, with influenza virus envelope proteins in different physical forms, namely iscoms, micelles and virus particles. All three forms of the antigen stimulated, in an antigen-specific manner, an increased proportion of spleen cells expressing MHC class II in the restimulation experiments. The induction of increased MHC class II expression was at least partly dependent on antigen-specific induction of IFN-gamma since an antibody to IFN-gamma partly inhibited the increase of MHC class II+ cells induced by iscom or by Concanavalin A. The iscom-borne antigens were superior to micelles to prime the immune response in vitro, indicating a capacity to induce memory cells. This primed immune response was readily recalled in vitro, as measured by IFN-gamma production and an increased number of MHC class II positive cells.

Animals↗

High antibody responses in rabbits immunized with influenza virus ISCOMs containing a repeated sequence of the Plasmodium falciparum antigen Pf155/RESA.

Immunostimulating complexes (ISCOMs) are spherical structures where immunogens are presented as multimers in a matrix of the adjuvant Quil A. ISCOMs have been shown to enhance the immunogenicity of several antigens important to both human and veterinary vaccine development. We have coupled a fusion protein, designated ZZ-M2, comprising eight copies of the C-terminal repeat subunit EENV of the Plasmodium falciparum blood-stage antigen Pf155/RESA and two IgG-binding domains of staphylococcal protein A (SpA), to preformed influenza virus envelope protein ISCOMs. Rabbits immunized with the conjugated ISCOMs produced high titres of antibodies even after the first injection. These antibodies reacted with the EENV repeat sequence in ELISA and with Pf155/RESA in immunofluorescence on infected erythrocytes. The antibody response, which was sustained for more than 20 weeks, was efficiently boosted and superior or equal to that obtained after immunization with ZZ-M2 in Freund's complete adjuvant. In contrast, the antibody response induced in rabbits immunized with ZZ-M2 in Syntex Adjuvant Formulation-MF (SAF-MF) was weak and of short duration. The antibodies produced after immunization with ZZ-M2 coupled to influenza virus ISCOMs mainly recognized epitopes formed by two or more EENV subunits and were highly specific for Pf155/RESA. Furthermore, the antibodies efficiently inhibited merozoite reinvasion of erythrocytes in vitro, indicating that they recognized epitopes exposed on the native antigen. In addition, the ZZ-M2-conjugated ISCOMs also induced high titres of antibodies reacting with SpA or the influenza virus envelope protein.(ABSTRACT TRUNCATED AT 250 WORDS)

Adjuvants, Immunologic↗

Immune response after immunization with an experimental Toxoplasma gondii ISCOM vaccine.

Mice were immunized with ISCOM preparations of tachyzoites from two different strains of Toxoplasma gondii. The antibody response and the cellular response, as measured in vitro, were comparable with those found in chronically infected mice. When challenged with virulent T. gondii tachyzoites, all the immunized mice died, whereas all the chronically infected mice survived. However, the immunized mice generally survived longer than non-immunized animals.

Animals↗

Increased immunogenicity of a non-amphipathic protein (BSA) after inclusion into iscoms.

Bovine serum albumin (BSA) was used as a non-amphipathic model protein to be included into iscoms. Pretreatment at an acidic pH (2.5) was used to reveal hydrophobic regions, after which BSA could be integrated. In immunization experiments in mice the BSA iscoms induced long lasting and considerably higher serum antibody responses than non-treated monomeric BSA or BSA aggregated by acidic treatment.

Animals↗

Effect of iscoms and their adjuvant moiety (matrix) on the initial proliferation and IL-2 responses: comparison of spleen cells from mice inoculated with iscoms and/or matrix.

In the iscom, antigen is attached by hydrophobic interactions to a matrix which is built up by the adjuvant Quil A and lipids. Thus, the iscom presents antigen in multiple copies on a small particle with a built-in adjuvant. By studying the specific antibody response, in vitro proliferation and IL-2 secretion by splenocytes from mice following different in vivo treatments with iscoms and/or matrix, we attempted to distinguish between nonspecific stimulatory effects, caused by the matrix or iscoms, and specific responses to the antigens incorporated into iscoms. The results strongly suggest that matrix and also iscoms exert a nonspecific adjuvant activity by a transient high spontaneous proliferation of cells collected within 2 weeks after administration of iscoms or matrix. This high rate of proliferation was preceded by suppressed proliferation, 3 days after injection with matrix or iscom. The adjuvant component included in iscoms, i.e., the matrix, does not excert a mitogenic stimulation in vitro or influence the levels of specific antibodies in serum. Specific responses to the antigens included in iscoms were recorded both as increasing levels of serum antibodies and as iscom-induced proliferation of immune spleen cells in vitro. The recruitment of IL-2 was only related to the specific stimulation induced by the antigens in iscom.

Adjuvants, Immunologic↗

An experimental influenza subunit vaccine (iscom): induction of protective immunity to challenge infection in mice after intranasal or subcutaneous administration.

An experimental influenza virus (A/PR/8/34(H1N1] vaccine was tested and evaluated in mice. The mice were inoculated once or twice intranasally or subcutaneously with 1 or 10 micrograms of iscoms prior to challenge with high dose of live virus. It was demonstrated that two intranasal administrations were as efficient as two s.c. administrations, both routes inducing high levels of antibody and protection against challenge infection. With a one-dose regimen, the s.c. route induced a somewhat higher antibody response than the intranasal route; this might be explained by technical difficulties connected with an intranasal administration.

Administration, Intranasal↗

Inflammatory response and antigen localization following immunization with influenza virus ISCOMs.

The inflammatory response, antigen retention, and antigen localization was studied in mice after immunization with influenza virus glycoproteins presented in two physically defined forms--micelles and ISCOMS (immunostimulating complexes). Two hours after intraperitoneal injection, the proportion of polymorphonuclear leukocytes (PMNs) in peritoneal lavage cells increased from less than 1% to 82% in ISCOM-treated mice and from less than 1% to 41% of the total cell count in micelle-treated mice. For both treatment groups, the proportion of PMNs returned to around zero 24 h postimmunization. Total recovery of radioactive antigen was significantly greater (P less than 0.05) in ISCOM-treated than in micelle-treated mice at one, two, and eight days postinjection. At all times tested, animals given ISCOMs had significantly more radioactive antigen in their spleens than animals given micelles. By electron microscopy ISCOMs were found to attach externally to the plasma membrane or within phagosomes of macrophages in close association with the membranes.

Animals↗