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G Corradin

Publications and source records attributed to G Corradin.

At least 73 records · Page 4Linked to original sources

Induction of sustained and elevated immune responses to weakly immunogenic synthetic malarial peptides by encapsulation in biodegradable polymer microspheres.

Biodegradable microspheres (MS) based on poly(D,L-lactide) and poly(D,L-lactide-coglycolide) have the capacity to release encapsulated antigens over defined lengths of time depending on their composition and to elicit and sustain strong and long-lasting immune responses to protein antigens. In the present study, two synthetic multiple antigenic peptides (MAP), P30B2 and (NANP)6P2P30, were incorporated into MS of different compositions. P30B2 and (NANP)6P2P30 are composed of one or two universal T helper epitopes from tetanus toxin, 947-967 (P30) and 830-843 (P2), and of a B cell epitope derived from the repeat sequence of Plasmodium berghei or Plasmodium falciparum, respectively. BALB/c mice were immunized with these two peptides in different formulations, including individual MS or mixtures of MS with various release properties, Incomplete Freund's adjuvant (IFA) or as soluble peptides. MS formulations elicited strong and sustained proliferative and antibody responses comparable to those obtained with the IFA preparations. Furthermore, MS formulations induced specific isotype/ subclass antibodies similar to those induced by IFA. No significant augmentation of total serum IgE was detected during this study. In addition, a boosting effect was obtained when the immunized mice were reinjected with a small antigen dose in IFA several months later. These results indicate that biodegradable MS may be a suitable vaccine delivery system/adjuvant not only for protein antigens but also for weakly immunogenic synthetic peptides.

Amino Acid Sequence↗

Peptide immunization in humans: a combined CD8+/CD4+ T cell-targeted vaccine restimulates the memory CD4 T cell response but fails to induce cytotoxic T lymphocytes (CTL).

Immunization with short antigenic peptides represents a potential strategy to induce peptide-specific CTL in vivo. In this study, a synthetic vaccine consisting of an HIV-derived, HLA-A2.1-binding CTL epitope and a tetanus toxin-derived T helper epitope was evaluated for its capacity to induce peptide-specific CTL in humans. Thirteen volunteers were immunized and boosted twice with 100 micrograms of the CTL epitope plus 300 micrograms of the T helper peptide (p30). Peripheral blood mononuclear cells (PBMC) were regularly analysed for cytotoxic and proliferative responses before, between and after the immunizations, and the serum was tested for anti-peptide antibodies. No unequivocal induction of HIV peptide-specific CTL in any of the volunteers was observed. However, a wide pattern of mild and transient side reactions was observed, ranging from local redness at the injection site to generalized exanthema, myalgias, arthralgias and fever. The side-effects were related to the T helper epitope, as they were similar to the side-effects experienced after tetanus immunization, correlated to the magnitude of the p30-specific in vitro proliferative response, and occurred only if p30 was co-injected. No antibodies against the HIV-derived peptides nor against p30 were detectable in the serum after repeated immunizations. The data suggest that the CTL peptide, at the concentration used in this study, failed to induce a cytotoxic immune response in vivo, although the T helper peptide seems to be capable of restimulating the specific memory T cells.

Animals↗

Recognition of synthetic 104-mer and 102-mer peptides corresponding to N- and C-terminal nonrepeat regions of the Plasmodium falciparum circumsporozoite protein by sera from human donors.

In the present work, we analyze the recognition of synthetic polypeptides encompassing the aminoterminal (amino acids 22-125) and the carboxy terminal (289-390) regions of the circumsporozoite (CS) protein of Plasmodium falciparum by sera from donors living in endemic area of South America and Africa. Two populations were studied: one on the Colombian Pacific coast, with low endemicity for malaria; and a western African village exposed to a very intense transmission of P. falciparum. Antibodies directed to the two polypeptides were found at high titers in both populations. Furthermore, this response was observed in individuals lacking antibodies to the highly repetitive central sequence of the CS protein (NANP). The epitopes responsible for this recognition were mapped to the region 81-125 and 316-346 of the N- and C-termini, respectively. When the two populations were compared, both showed high titers of antibodies to the two flanking peptides. However, while 95% of the sera from African adults showed antibodies against the repeat region of the CS protein, only 37% of the Colombian adults studied had these antibodies. Furthermore, African donors of various ages exhibited different patterns of recognition of the two polypeptides. In African children less than five years of age, antibodies were found in comparable levels to Colombian adults; however, in older African donors, the response to NANP became dominant. These findings may reflect the skewing effect of the humoral response towards the central repetitive epitope under conditions of frequent exposure to malaria infections. The production of such polypeptides encompassing regions that contain multiple epitopes for antibodies, T helper, and cytotoxic T lymphocyte epitopes would be advantageous in the generation of new and more efficient malaria vaccines.

Adolescent↗

Anchoring of an immunogenic Plasmodium falciparum circumsporozoite protein on the surface of Dictyostelium discoideum.

The circumsporozoite protein (CSP), a major antigen of Plasmodium falciparum, was expressed in the slime mold Dictyostelium discoideum. Fusion of the parasite protein to a leader peptide derived from Dictyostelium contact site A was essential for expression. The natural parasite surface antigen, however, was not detected at the slime mold cell surface as expected but retained intracellularly. Removal of the last 23 amino acids resulted in secretion of CSP, suggesting that the C-terminal segment of the CSP, rather than an ectoplasmic domain, was responsible for retention. Cell surface expression was obtained when the CSP C-terminal segment was replaced by the D. discoideum contact site A glycosyl phosphatidylinositol anchor signal sequence. Mice were immunized with Dictyostelium cells harboring CSP at their surface. The raised antibodies recognized two different regions of the CSP. Anti-sporozoite titers of these sera were equivalent to anti-peptide titers detected by enzyme-linked immunosorbent assay. Thus, cell surface targeting of antigens can be obtained in Dictyostelium, generating sporozoite-like cells having potentials for vaccination, diagnostic tests, or basic studies involving parasite cell surface proteins.

Amino Acid Sequence↗

Localization of HLA-A2.1-restricted T cell epitopes in the circumsporozoite protein of Plasmodium falciparum.

Localization of human MHC class I-restricted T cell epitopes in the circumsporozoite (CS) protein of the human parasite Plasmodium falciparum is an important objective in the development of antimalarial vaccines. To this purpose, we synthesized a series of overlapping synthetic 20-mer peptides, spanning the entire sequence of the 7G8 CS molecule except for the central repeat B cell domain. The P.f.CS peptides were first tested for their ability to bind to the human MHC class I HLA-A2.1 molecule on T2, a human cell line. Subsequently, the use of a series of shorter peptide analogues allowed us to determine the optimal A2.1 binding sequence present in several of the 20-mers. Binding P.f.CS peptides were further tested for their capacity to activate PBL from HLA-A2.1+ immune donors living in a malaria-endemic area. Specific IFN-gamma production was detected in the supernatant of cultures of PBL from exposed individuals. Cytotoxic T cell lines and clones were derived from the PBL of one responder, and their activity was shown to be HLA-A2.1-restricted and specific for the peptide 334-342 of the CS protein. In addition, double transgenic HLA-A2.1 x human beta 2-microglobulin mice were immunized with peptide 1-10 of the CS protein. T cells derived from immune lymph nodes displayed a peptide-specific HLA-A2.1-restricted cytolytic activity after one in vitro stimulation.

Amino Acid Sequence↗

Strong similarities in antigen fine specificity among DRB1* 1302-restricted tetanus toxin tt830-843-specific TCRs in spite of highly heterogeneous CDR3.

We investigated the Ag fine specificity of four TCRs that shared the same V beta segment but used V alpha s of three different subfamilies and displayed highly heterogeneous alpha and beta CDR3. The TCRs recognized the tetanus toxin tt830-843 (QYIKANSKFIGITE) epitope presented by DRB1*1302. By using a large panel of monosubstituted peptide analogues, we first defined the requirements for tt830-843 binding to DRB1*1302. We found that three residues, I832, N835, and G840, were critical for the interaction with DRB1*1302. Residues potentially contacted by the four TCRs were functionally defined by measuring the IL-2 response to the analogues. Except for the first and the last three residues, as well as I832 and G340, all of the others appeared to provide contacts with the four TCRs, indicating a considerable overlapping in the way these TCRs interact with the peptide. More importantly, and contrary to expectations, the two TCRs expressing the same V alpha/V beta germ-line segments showed a strikingly similar reactivity toward nearly all substitutions; moreover, more pronounced differences were observed when comparing TCRs using different V alpha segments. These results indicate that TCRs with entirely distinct CDR3s in the context of conserved V segments may not differ substantially in the way they recognize the ligand, and may provide new insights into understanding the formation of TCR/peptide/MHC ternary complexes. During these studies, we noticed that analogues with nonconservative substitutions at I832, which bound very unstably to DRB1*1302, could effectively stimulate T cells, suggesting a role of the TCR in contributing toward stabilization of peptide binding.

Amino Acid Sequence↗

Induction of protective polyclonal antibodies by immunization with a Plasmodium yoelii circumsporozoite protein multiple antigen peptide vaccine.

Monoclonal Abs against the repeat region of the circumsporozoite protein (CSP) completely protect mice against Plasmodium yoelii (Py), but synthetic peptide and recombinant protein vaccines designed to produce only Abs to the PyCSP repeat region have never been reported to consistently provide protection. This lack of protection in the rodent model system has predicted the poor protection achieved in humans after immunization with synthetic peptide and recombinant protein P. falciparum CSP vaccines and has raised serious questions regarding the capacity for vaccine-induced polyclonal Abs against the CSP to consistently protect humans. We now report immunization studies with a multiple Ag peptide vaccine designed to rely on "universal" T epitopes from tetanus toxin to produce T cell help for induction of protective Abs against the repeat region of the PyCSP. When delivered with a nonionic block co-polymer adjuvant, the vaccine protected 78 to 100% of three inbred strains of mice, and 100% of outbred mice against P. yoelii sporozoite challenge. Protection was associated with Ab titer, and passive transfer of purified IgG from immune mice protected naive recipients. Similar protection was achieved when the peptide was encapsulated in liposomes with lipid A and mixed with aluminum hydroxide. By demonstrating for the first time solid protection against P. yoelii by polyclonal Abs against the CSP, these data provide the rationale for assessment of a similarly constructed and formulated P. falciparum CSP multiple Ag peptide vaccine in humans.

Amino Acid Sequence↗

A simple mathematical model for the functional peptide/MHC/TCR interactions.

T cell-specific activation requires ligation of TCRs with peptide-MHC complexes on the APC. On the basis of simple chemical and statistical laws, we have constructed a mathematical model to describe this trimolecular interaction between effector and target cells, and we demonstrate its predictive value in the case of in vitro peptide Ag titration. Moreover, this model can generate mechanistic explanations for cellular immunity phenomena like anergy, peripheral tolerance, cell-mediated suppression, TCR antagonism, and thymic selection events.

Amino Acid Sequence↗

Antigen-processing organelles from DRB1*1101 and DRB1*1104 B cell lines display a differential degradation activity.

We have developed an in vitro assay for tetanus toxin (tt) C fragment (C-fr) degradation. Purified endosomes (abbreviated endosomes 1101 or 1104) and lysosomes (abbreviated lysosomes 1101 or 1104) from the DRB1*1101 (Gly 86) and DRB1*1104 (Val 86) B cell lines were used to degrade 125I-labeled C-fr in vitro. Using three distinct methods of analysis, we show that the capacity of endosomes and lysosomes to degrade the tt C-fr or tt synthetic Y-P30 peptide differed. Using sodium dodecylsulfate-polyacrylamide gel electrophoresis, 125I-labeled C-fr degradation patterns observed either with endosomes 1101/1104 or lysosomes 1101/1104 are distinct both in terms of the number of fragments and the kinetics of generation of the fragments. These results were confirmed by high-performance liquid chromatography analysis, where we observed that the elution profiles of the 125I-labeled Y-P30 peptide digested by endosomes 1101/1104 were different compared to those obtained with lysosomes 1101/1104. Furthermore, the kinetics of degradation of 125I-labeled Y-P30 were faster with lysosomes 1104 than with lysosomes 1101. This difference in activity of the 1101 and 1104 organelles was also found in a functional assay where we showed that the activation capacity of the P30 peptide was diminished when digested by lysosome 1104, regardless of the antigen-presenting cell (APC) used, whereas endosomes 1101 or lysosomes 1101 modified P30 peptide in a form that discriminated between presentation by 1101 or 1104 APC. Taken together, these results suggest that the differential processing and presentation displayed by the DRB1*1101 and DRB1*1104 APC is due partly to a different enzymatic content and partly to the dimorphism at position DR beta 86.

Amino Acid Sequence↗

CD8+ T-cell protective immunity induced by immunization with Plasmodium berghei CS protein-derived synthetic peptides: evidence that localization of peptide-specific CTLs is crucial for protection against malaria.

Immunization of BALB/c mice (H-2d) with a mixture of major histocompatibility complex (MHC) class I- and MHC class II-restricted synthetic peptides emulsified in incomplete Freund's adjuvant (IFA) induced a high level of specific cytotoxic T lymphocyte (CTL) activity. Peptides 249-260 or 252-260, derived from the circumsporozoite protein of Plasmodium berghei and representing a H-2Kd-restricted CTL epitope, were injected twice subcutaneously or intraperitoneally in BALB/c mice in combination with the tetanus toxin-derived universal T-helper peptide P30 in IFA. No protection was observed after exposure of immunized mice to infected mosquitoes. In contrast, when peptide 252-260-specific CTLs were expanded in vitro and adoptively transferred into naive recipient, mice were partially protected (64%) against a subsequent sporozoite challenge. Furthermore, direct transfer of lymph nodes or spleen cells from mice immunized with the peptide PbCS 252-260 also conferred protection to recipient mice. This protection was long-lasting and similar to that obtained with irradiated sporozoites.

Amino Acid Sequence↗

A single administration of tetanus toxoid in biodegradable microspheres elicits T cell and antibody responses similar or superior to those obtained with aluminum hydroxide.

The use of biodegradable polymer microspheres as a single dose vaccine delivery system was investigated by using tetanus toxoid (TT). In order to compare the immunogenicity of TT-microspheres (TT-MS) with aluminum hydroxide (alum)-based TT, BALB/c mice were immunized with TT in different formulations including individual or mixtures of MS and TT-alum. All TT-MS formulations elicited high proliferative and antibody responses comparable to those obtained with TT-alum formulation. Antibody levels remained elevated over a long period of time. Certain individual MS preparations elicited lower antibody titers than the MS mixtures. More importantly, the proliferative and antibody responses induced by a single injection of three TT-MS mixtures with different particle sizes and degradation rates were similar to those obtained with three injections of TT-alum. In addition, TT-MS induce similar isotypesubclass antibodies to those TT-alum induced. These results raise the possibility to obtain optimal and long-lasting immune responses by single administration of the three TT-MS mixture formulations alone.

Aluminum Hydroxide↗

Identification of HIV protein-derived cytotoxic T lymphocyte (CTL) epitopes for their possible use as synthetic vaccine.

CTL are by far the most important defence mechanisms against viral infections, and many attempts have been undertaken to induce protective CTL in vivo. In order to identify CTL epitopes for their possible use as peptide-vaccine candidates, HIV proteins were screened for peptide sequences which (i) fulfil the binding motif of the HLA-A2.1 molecule, and (ii) are involved in the natural immune response to HIV. From 73 nonameric peptides satisfying the binding motif, 20 peptides were synthesized and their binding to HLA-A2.1 was monitored by measuring the expression of HLA-A2.1 molecules on the cell surface of the mutant cell line T2. To evaluate the involvement in natural HIV infection, strongly binding peptides were used in cytotoxicity assays to assess their capacity to generate a peptide-specific CTL response in vitro. From 20 nonameric peptides synthesized, only five showed strong binding to HLA-A2.1. All five binding peptides had the secondary anchor residues, recently proposed by Ruppert et al. [1] to be required for binding to HLA-A2.1. The discrimination between bound and unbound peptides confirmed the importance of these secondary anchor residues which, beside the known binding motif, may dictate if a peptide can bind to HLA-A2.1 or not. In HIV- donors, no CTL activity against any of the HIV-derived peptides was detectable after a 12-day in vitro stimulation. In contrast, HIV-infected persons showed a cytotoxic response against peptide-labelled target cells, suggesting that they had developed upon HIV infection a cytotoxic immune response against the identified CTL epitopes.

Amino Acid Sequence↗

Identification of a nonameric H-2Kk-restricted CD8+ cytotoxic T lymphocyte epitope on the Plasmodium falciparum circumsporozoite protein.

Class I-restricted CD8+ cytotoxic T lymphocytes (CTL) against the circumsporozoite protein (CSP) protect mice against the rodent malaria parasite, Plasmodium yoelii, and vaccines designed to produce protective CTL against the P. falciparum CSP (PfCSP) are under development. Humans and B10.BR (H-2k) mice have been shown to have CD8+ CTL activity against a 23-amino-acid region of the PfCSP (residues 368 to 390 from the PfCSP 7G8 sequence) that is too long to bind directly to class I major histocompatibility complex molecules. To identify within this 23-amino-acid peptide a shorter peptide that binds to an H-2k class I major histocompatibility molecule, a primarily CD8+ (97.8%) T-cell line (PfCSP TCL.1) was produced by immunizing B10.BR mice with recombinant vaccinia virus expressing the PfCSP and stimulating in vitro spleen cells from these immunized mice with L cells transfected with the PfCSP gene (LPF cells). PfCSP TCL.1 lysed LPF cells and L cells pulsed with peptide PfCSP 7G8 368-390. When 15 overlapping nonamer peptides spanning the 368 to 390 sequence were tested, only one peptide, PfCSP 7G8 375-383 (Y E N D I E K K I), which includes an H-2Kk-binding motif, E at amino acid residue 2, and I at residue 9, sensitized targets for lysis by PfCSP TCL.1. Furthermore, a 10(3)- to 10(4)-fold lower concentration of the nonamer than that of the 23-amino-acid peptide was required to sensitize target cells for lysis by PfCSP TCL.1. Presentation by H-2Kk was demonstrated by using 3T3 fibroblast cells transfected with the murine H-2Kk or H-2Dk genes, and only the H-2Kk transfectants were lysed by PfCSP TCL.1 after incubation with peptide PfCSP 7G8 375-383. Binding to H-2Kk was confirmed by competitive inhibition of binding of labelled peptides to affinity-purified Kk molecules. Substitution of the anchor amino acid residue, E, at position 2 with A dramatically reduced binding to Kk and eliminated the capacity of the peptide to sensitize target cells for killing. Variation of non-anchor residues did not markedly reduce binding to Kk but in some cases eliminated the capacity of the peptide to sensitize targets for cytolysis by PfCSP TCL.1, presumably by eliminating T-cell receptor-binding sites. These data suggest that similar studies with human T cells will be required for optimal development of peptide-based vaccines designed to produce protective class I-restricted CD8+ CTL against the PfCSP in humans.

3T3 Cells↗

Elicitation of specific cytotoxic T cells by immunization with malaria soluble synthetic polypeptides.

We have studied the immunogenicity of Plasmodium falciparum circumsporozoite (CS) protein-derived synthetic polypeptides in mice. These synthetic peptides correspond to the N- and the C-terminal domains 22-125 and 289-390, respectively of the P. falciparum 7G8 isolate CS protein expressed on the sporozoite surface. They comprise what is believed to be the mature protein, except for the central repetitive B cell domain. BALB/c (H-2d) mice were immunized s.c. with 50 micrograms soluble CS polypeptides emulsified in IFA. After a single immunization, CS-specific helper and cytotoxic T lymphocytes (CTLs) could be obtained. The resultant CTLs obtained by in vitro restimulation of primed lymph node (LN) cells recognized H-2Kd target cells in the presence of short synthetic peptides defined in the present study. These epitopes are contained within the N- and C-terminal regions of the CS protein, and correspond to sequences 39-47 and 333-342. In addition, these CTLs can specifically lyse H-2d target cells transfected with the CS gene. These results suggest that, by immunization of mice with large soluble CS synthetic polypeptides in IFA, it is possible to obtain MHC class I-restricted T cell responses specific for the CS protein. This approach might be advantageous in the formulation of efficient malaria subunit vaccines.

Amino Acid Sequence↗

Functional analysis of two tetanus toxin universal T cell epitopes in their interaction with DR1101 and DR1104 alleles.

In this study we have investigated the interaction between two DR11 alleles (DB*1101 and DB*1104) and two previously described tetanus toxin (tt) universal T cell epitopes P2(tt830-843) and P30(tt947-967) by means of a functional cytotoxic competition assay. Both truncation analysis and single alanine substitution analysis were performed. In addition, the capacity of truncated and single alanine substituted peptides to be recognized by human T cell clones from donors bearing the DR1101 or DR1104 alleles was assessed. In the case of truncated peptides the same binding and recognition pattern was observed with both alleles. Longer peptides were better competitors and more potent stimulators, a result that should be taken into account when these peptides are used as immunogens. None of the single alanine substitutions could abrogate or strongly diminish the inhibitory capacity of the analogues tested indicating the lack of strong "anchor residues" present in P2 and P30 and implicated in DR binding. In addition, although the original peptide sequences were presented to specific T cell clones with comparable efficiency, some of the alanine single substituted peptides were better recognized in association with one of the alleles by clones derived from individuals bearing the homologous allele. The only exception was the tt951-967 analogue ttW955A, which was preferentially recognized in association with the DR1104 allele regardless of the clone tested. This suggests that, although it binds to both alleles with comparable efficiency, the MHC-peptide complex so formed is conformationally distinguishable by specific T cell clones.

Alleles↗

Peptide-antibody conjugates for tumour therapy: a MHC-class-II-restricted tetanus toxin peptide coupled to an anti-Ig light chain antibody can induce cytotoxic lysis of a human B-cell lymphoma by specific CD4 T cells.

Anti-idiotype antibody therapy of B-cell lymphomas, despite numerous promising experimental and clinical studies, has so far met with limited success. Tailor-made monoclonal anti-idiotype antibodies have been injected into a large series of lymphoma patients, with a few impressive complete tumour remissions but a large majority of negative responses. The results presented here suggest that, by coupling to antilymphoma idiotype antibodies a few molecules of the tetanus toxin universal epitope peptide P2 (830-843), one could markedly increase the efficiency of this therapy. We show that after 2-hr incubation with conjugates consisting of the tetanus toxin peptide P2 coupled by an S-S bridge to monoclonal antibodies directed to the lambda light chain of human immunoglobulin, human B-lymphoma cells can be specifically lysed by a CD4 T-lymphocyte clone specific for the P2 peptide. Antibody without peptide did not induce B-cell killing by the CD4 T-lymphocyte clone. The free cysteine-peptide was also able to induce lysis of the B-lymphoma target by the T-lymphocyte clone, but at a molar concentration 500 to 1000 times higher than that of the coupled peptide. Proliferation assays confirmed that the antibody-peptide conjugate was antigenically active at a much lower concentration than the free peptide. They also showed that antibody-peptide conjugates required an intact processing function of the B cell for peptide presentation, which could be selectively inhibited by leupeptin and chloroquine.(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acid Sequence↗