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A Multiepitope Intranasal Adenoviral Vaccine Induces Robust Mucosal Immunity and Protection against SARS‑CoV‑2.

BACKGROUND: Vaccination has been central to mitigating the COVID-19 pandemic; however, the continual emergence of SARS-CoV-2 variants of concern (VOCs) has reduced the effectiveness of current intramuscular vaccines that primarily target the Spike (S) protein. Although updated formulations are periodically introduced, there remains a critical need for next-generation vaccine platforms capable of inducing broad, variant-independent protection. Here we evaluate a heterologous intranasal (i.n.) prime-boost vaccination strategy using bovine adenoviral (BAd) and chimpanzee adenoviral (ChAd) vectors expressing the S1 subunit in combination with either full-length membrane (M) and nucleocapsid (N) proteins (Ad-S1 + N + M) or multiepitope constructs derived from M and N (Ad-S1 + Epi/N + Epi/M). The constructs were incorporated with the autophagy-inducing peptide C5 (AIP-C5) to enhance antigen-specific T-cell responses. RESULTS: In BALB/c mice, Ad-S1 + Epi/N + Epi/M vaccination induced robust S1-specific immunity while simultaneously inducing strong N- and M-specific humoral and cellular responses that were comparable to or greater than those induced by Ad-S1 + N + M. All S1-containing formulations generated high neutralizing antibody titers (~ 3.8 log₁₀) against Omicron B.1.1.529 and BA.2.86 variants, although titers against the ancestral Wuhan strain were approximately one log₁₀ lower. In K18-hACE2 mice, i.n. immunization with S1-expressing vectors provided near-complete protection against BA.2.86 challenge, with undetectable lung viral titers and viral genome copies. CONCLUSION: An i.n. multiepitope adenoviral vaccine incorporating conserved SARS-CoV-2 antigens induces robust mucosal, humoral, and cellular immune responses and confers significant protection following SARS-CoV-2 challenge.

Animals↗

SARS-CoV-2 infection and vaccination elicit distinct pharyngeal mucosal B cell responses in children.

Mucosal immunity is an important correlate of protection against respiratory infections such as SARS-CoV-2. Comparing B cell responses in the upper respiratory tract following vaccination and infection may offer unique insights into mucosal immunity. Here, we characterized antigen-specific B cells in the tonsils, adenoids, and peripheral blood of children who had been infected with SARS-CoV-2 or vaccinated with SARS-CoV-2 mRNA vaccines. SARS-CoV-2-specific switched memory B cells (BSM) and germinal center B cells were found in the blood and pharyngeal lymphoid tissues after vaccination or infection. However, infection generated a higher proportion of IgA+ BSM and CXCR3+CD21+ BSM, which showed distinct spatial localization, greater clonal expansion and increased propensity for plasma cell differentiation compared to their CXCR3- counterparts, accompanied by persistent activation of innate and T follicular helper cells in the tissues. Our data provide evidence for tissue-specific B cell memory after either SARS-CoV-2 vaccination or infection, but with distinct characteristics that can influence the quality, durability, and localization of immunity.

Journal Article↗

The influence of salicyl-azo-sulfapyridine on the immune response to antigenic tumour cells inoculated into the coecal lumen of C3H mice.

Pretreatment of C3H mice with salicyl-azo-sulfapyridine (SASP) was found to increase the susceptibility of the intestine to malignant ascites cells inoculated into the coecal lumen. The response to intestinal immunization was radically changed by prior treatment of mice with SASP. In non-treated animals protection against a subsequent graft followed the intracoecal inoculation of ascites tumour cells. By prior treatment of the mice with SASP the protective immune response was suppressed and some of the treated animals showed enhanced tumour growth of the challenging graft. The immunological enhancement induced in SASP-treated animals was transferable by spleen cells to untreated mice. In sera from SASP-treated and intestinally immunized animals were found factors which in a competitive manner interfered with the binding of antibodies to antigenic sites on the tumour cell membrane. It is proposed that treatment with SASP modifies the intestinal immunity by suppressing antibody production and increasing production of antigen-specific factors lacking some of the immunoglobulin determinants.

Animals↗

Interaction of cholera toxin and toxin derivatives with lymphocytes. III. Modulating effects in vivo by cholera toxin on the graft-versus-host reactivity of lymphoid cells: suggested inhibition of suppressor cells.

The influence of cholera toxin (CT), and thus probably of cyclic AMP, on the capacity of parental lymphoid cells to elicit a graft-versus-host reaction (GVHR) was studied. Toxin-treated DBA/1 mice were used as cell donors and untreated DBA/1xC57B1/6 F1 hybrid mice as recipients, and the GVHR reactivity of the transferred cells was estimated by their ability to induce spleen enlargement or stimulation of antibody formation ('allogenic effect') in the recipients. Spleen cells from donors intravenously injected with 1 microgram CT 1-3 days earlier, gave a significantly stronger GVHR than did spleen cells of untreated mice. Choleragenoid, a toxin analog devoid of the toxin's ability to activate plasma membrane adenylate cyclase even though it binds efficiently to cells, had no effect on the GVHR-inducing capacity of the spleen cells. The enhanced GVHR by spleen cells from toxin-treated DBA/1 animals was reduced to the normal level when the donor cells were transferred along with lymphoid cells from untreated animals of the same strain. Spleen was the most powerful source of the suppressive influence. No evidence for a redistribution of suppressor cells following administration of CT was found. Spleen cells from mice syngeneic with the recipients had no suppressive effect. The results suggest that parenterally administered CT, directly or indirectly, can inhibit a cell population in spleen which normally exerts an antigen-specific suppressive regulatory influence on the development of GVHR.

Cholera Toxin↗

Differential depletion of T lymphocytes in the spleen of dengue virus-infected mice.

Following the i.c. inoculation of dengue type 2 virus (DV) the spleen weight of infected mice was reduced, as was the proportion of cells killed by ATS and complement (T lymphocytes) in spleen-cell suspensions. In DV-infected mice the mean haemolysin titre, 16 days after i.p. inoculation of 4 x 10(8) SRBC, was 47 compared with 406 in normal mice and spleen cells from DV-infected mice produced significantly reduced direct GVH reactivity in Parker strain (PS) infant mice. Adoptive transfer of spleen cells obtained from mice given three weeks i.p. doses of DV or a single i.c. dose, suppressed antigen-specific antibody secretion as detected by Jerne plaque technique. This suppression was abrogated by pretreating the transferred cells with ATS and complement. Thus DV selectively depletes T-lymphocyte subpopulations responsible for helper and effector functions and spares suppressor T cells in the spleen of infected mice.

Animals↗

Anti-receptor antibody. I. Isolation and characterization of the immunoglobulin receptor for phosphorylcholine.

We have demonstrated a phosphorylcholine-binding protein in lysates from radioiodinated splenocytes of immunized mice. Immunoprecipitation with anti-receptor antibody of lysates from splenocytes obtained from animals undergoing a primary response or from mice immunized 4 to 6 months earlier with antigen demonstrated that this protein contained H and L chains. Therefore, we have isolated an antigen-specific receptor from the surface of spleen cells from both immunized and "memory" animals. This receptor Ig comprises approximately 10% of total cell surface Ig.

Animals↗

Allotypic suppression in rabbits: competition for target cell receptors between isologous and heterologous antibody and between native antibody and antibody fragments.

Neonatal injection with various foreign proteins (normal goat serum, human Cohn fraction II, human albumin) caused a stimulation of immunoglobulin synthesis. This effect was not antigen-specific and did not constitute a conventional antibody response directed against the injected substance. When this stimulatory effect of foreign protein was minimized, the heterologous (goat) anti-rabbit allotype antibody and rabbit antibody F(ab') 2 fragments not only failed to induce suppression but also competed with the suppression-inducing native rabbit antibody. Allotypic suppression in a rabbit can thus only be induced by an antibody molecule possessing an intact Fc portion of isologous, rabbit origin. Antibody to Ae14, an allotypic specificity located on the Fc portion, failed to induce suppression or stimulation of immunoglobulin synthesis. This was attributed to the position of Ae14 in the cell membrane which reduced its accessibility to antibody.

Albumins↗

Evidence for the clonal abortion theory of B-lymphocyte tolerance.

This paper deals with the behavior of adult mouse bone marrow cells placed in tissue culture with or without antigen, and subsequently assessed for immune competence after adoptive transfer into lethally X-irradiated, syngeneic hosts. Attention was focussed on B lymphocytes through using hapten human gamma globulin (HGG) preparations as putative tolerogens in tissue culture, the T-cell-independent antigens DNP-POL and NIP-POL as challenge injections in adoptive hosts, and numbers of hapten-specific PFC in host spleens for the quantitation of immune competence. It was found that the capacity of bone marrow cells to mount an adoptive immune response rose by a factor of about fivefold over 3 days in tissue culture. This rise was completely abolished by the presence in the culture of hapten-HGG conjugates with about one mole of hapten per carrier molecule. The prevention of the emergence of immune competence amongst maturing B cells was termed clonal abortion tolerogenesis. Dose-response studies showed the lowest effective antigen concentration to be between 2.5 times 10- minus 10 and 2.5 times 10- minus 9 M, and a standard concentration of 2.5 times 10- minus 8 M was chosen as producing near maximal effects. The tolerance was antigen-specific and time-dependent, being maximal only when antigen was present continuously as the cultured cells was maturing. It did not depend on the presence of T lymphocytes in marrow, and was not of an "infectious" type. In contrast to tolerogenesis of mature B lymphocytes by high antigen concentrations, it could not be abolished by lipopolysaccharide. We speculate that clonal abortion may be a tolerance mechanism of great physiological significance for self-recognition, and discuss the results in the framework of other recent tolerance models, including those involving receptor blockade and suppressor T cells.

Animals↗

Early steps in specific tumor cell lysis by sensitized mouse T lymphocytes. I. Resolution and characterization.

Addition of high molecular weight dextran to culture medium prevents the initiation of T lymphocyte-mediated killing by holding the cytolytic T lymphocytes (CTL) and target cells in suspension and preventing intercellular contact. Suspension in 10% dextran was used to interrupt the ongoing formation of adhesions between CTL and target cells already in contact in a centrifuged pellet. The results demonstrate that 1) firm adhesions form between CTL and target cells within 1 min at 37 degrees C; 2) once formed, these adhesions are stable at low temperature and are resistant to mechanical shearing forces; 3) these adhesions can be disrupted by EDTA; 4) immediately after the adhesions form, separation of the CTL from the target cells prevents lysis of the latter; 5) after incubation of targets adhering to CTL for an additional 6 min at 37 degrees C, removal of the CTL no longer prevents target cell lysis. Thus, target cells become "programmed" for subsequent lysis within a few minutes after contact with CTL, after which lysis occurs during the next several hours without further participation of the effector cell. At 15 degrees C, adhesions form 1/17 as fast as at 37 degrees C. Programming of target cells for lysis occurs 1/76 as fast at 15 degrees C as at 37 degrees C. Thus, the programming for lysis step is about 4-fold more temperature dependent than the adhesion step. In addition to being detected by subsequent target cell lysis in 10% dextran, the adhering cell clusters can be counted with low power microscopy. This permitted verification that EDTA separates the clusters after programming for lysis is complete. Moreover, the great majority of the clusters seen at 37 degrees C are antigen-specific. Knowledge of the cluster size distribution and the subsequent level of lysis permits the deduction that not less than 6% of the sensitized peritoneal cell populations used were CTL.

Animals↗

Regulation of helper cell activity by specifically adsorbable T lymphocytes.

Mice immunized with soluble proteins such as human serum albumin (HSA) or ovalbumin (OA) develop in their spleens antigen-specific T and B lymphocytes. These populations of lymphocytes can be separated from each other by different means; e.g. treatment with anti-theta-antiserum and complement removes selectively T lymphocytes, whereas passage through glass bead columns coated with mouse immunoglobulin (Ig): anti-Ig complexes creates a relatively pure population of T lymphocytes. During the course of such separation studies it was observed that the helper capacity of HSA (or OA) immune mouse spleen cells after Ig:anti-Ig column passage frequently was higher than expected from the enrichment in theta-positive cells. In addition, after adsorption onto antigen coated Bio-Gel beads this effect was even more pronounced, i.e., and increase in the relative helper capacity of about 3 or 4 times compared with an increase in the content of theta-positive cells from about 30% to 40 to 50% after adsorption. The present results will demonstrate that the increased helper capacity was a specific phenomenon which was regulated by theta-positive cells. The regulatory cells specifically adsorbed onto antigen-coated Bio-Gel beads have not been successfully eluted by EDTA or excess-free antigen so far, and they were still adsorbed after pre-incubation with anti-Ig antibodies under conditions where specific B lymphocyte adsorption was almost prevented.

Adsorption↗

T cell memory for the cytotoxic response to hapten-modified target cells.

This study describes the development of memory and cytotoxic murine T cells against syngeneic haptne N equals[N-(3-nitro-4-hydroxy-5-iodophenyl-acetyl)-Beta-alanylglycylglycyl] associated antigen. Memory activity in this system had the following characteristics. a) In vitro challenged cells primed in vivo resulted in an augmented cytotoxic response compared to cells primed in vitro. b) The augmented cytotoxic response in vitro was antigen-specific for both target cells in the lytic reaction and stimulator cells in the secondary response. c) Memory activity was long lasting (at least 2 months). d) Memory cells were not cytotoxic. e) Memory activity as well as the cytotoxic cells generated in a secondary response in vitro were T cell dependent, These findings are consistent with the results of others who have investigated T cell dependent memory in other cell-mediated reactions.

Animals↗

Recruitment of effector lymphocytes by initiator lymphocytes. Recruited lymphocytes are immunospecific and include graft-versus-host-reactive lymphocytes.

We have shown previously that initiator T lymphocytes (ITL), sensitized in vitro against fibroblast antigens, recruit effector T cells in vivo. After injection into hind footpads of syngeneic recipients, sensitized ITL migrated to the draining popliteal lymph nodes (PLN) and activated a trapping mechanism by which circulating lymphocytes were recruited in the PLN. This paper reports experiments designed to test the immunospecificity of these recruited T lymphocytes (RTL). We found that immunospecific RTL were depleted from other lymphoid organs during recruitment in the PLN. However, immunospecific ITL were not depleted from spleens during PLN recruitment. Thus ITL and RTL are functionally distinguishable. We show that specific GVH reactive lymphocytes were also lost from spleens and distal lymph nodes during trapping of RTL in the PLN. Thus, the trapping phase of the recruitment response is immunospecific, as are the sensitization and effector phases. The trapped RTL are antigen-specific, and include the pool of GVH-reactive-lymphocytes committed to the same alloantigen. Thus, it appears that GVH-reactive cells respond to syngeneic ITL sensitized against allogeneic fibroblasts.

Animals↗

[Experimental allergic encephalomyelitis as a model for the study of therapeutic concepts for encephalomyelitis disseminata].

The induction of immunological tolerance with, and for, the caused organotypical antigen is a conception for a specific therapy for neuroimmunological diseases with at least a partial autoallergic pathogenesis. Appropriate to a set step-by-step programme for the development of antigen-specific therapy preventive tolerance experiments were carried out at the model of experimental allergic encephalomyelitis (EAEM) with allogenic myelin basic protein (BP) prepared from rabbits. The result is: 100 ug BP given intravenously simultaneously with 100 ug BP in incomplete Freud's adjuvant given intracutanously twice a week and 40 mg Cyclophosphamid given daily during the minor clinical incidence rate and no signs of EAEM pathomorphologically. A longlasting tolerance for the BP could be obtained as a test proved after 100 days. Hints are given for further potential therapeutic treatments, such as the use of antigen bound chemically to the immunosuppressive drug or the use of chemically modified BP for the induction of a specific tolerance.

Animals↗

Coexistence of helper and suppressor activities in carrier-primed spleen cells.

Both helper and suppressor activities for an in vitro IgG anti-hapten (Lac) response to Lac-HRBC were demonstrated in the same population of carrier (HRBC)-primed spleen cells. The relative radiosensitivity of suppressor activity permitted the selective removal of suppression and the demonstration of help. Both activities appear to be T cell-dependent and antigen-specific. Dilution analysis showed that help and suppression are mediated by distinct populations of cells.

Animals↗

Purification and partial characterization of a tumor-specific blocking factor from sera of mice with growing chemically induced sarcomas.

The purification of a blocking factor from the sera of tumor-bearing mice is described. Whole serum with blocking activity-the ability to inhibit specific cell-mediated anti-tumor immunity in microcytotoxicity tests-was fractionated on immunoadsorbent columns containing Sepharose-bound syngeneic normal mouse immunoglobulins and immunoglobulins from tumor-immune donors. The blocking serum was derived from mice which had carried a transplanted methylocholanthrene-induced sarcoma for 21 to 28 days. Elution of the immunoadsorbents recovered the blocking activity in a single fraction. This fraction was blocking activity in a single fraction. This fraction was radiolabeled and analyzed by SDS gel electrophoresis and Sephadex G-200 column chromatography. The active component of the blocking serum was shown to be a polypeptide of m.w. 56,000. Specificity testing implied that the factor was likely to be either tumor antigen or an antigen-specific suppressor molecule.

Animals↗

In vitro studies on H-2 linked unresponsiveness to synthetic polypeptide antigens. II. Induction of suppressor cells in both responsive and unresponsive mice to (T,G)-A-L and GAT;.

Antigen-specific T-suppressor cells can be induced in vitro from unprimed lymphoid cells of high responder (C57BL/10) and low responder (B10.Br, B10.A, CBA) mice to (T,G)-A-L and high responder (B10, B10;A) and non-responder (B10.G, DBA/1) mice to GAT10. The suppressor cells induced from high and low or non-responder mice appear identical in efficiency, in the antigen concentration required for induction and in their induction kinetics.

Animals↗

In vitro induction of polyclonal killer T cells with 2-mercaptoethanol and the essential role of macrophages in this process.

Killer T cells against allogeneic and syngeneic tumor cells were generated in vitro by the addition of 2-mercaptoethanol (2-ME) to the murine spleen cell culture in the absence of any antigenic stimulation. The maximum activity of T cell-mediated cytotoxicity (CMC) induced with 2-ME was observed on day 4 of culture and the induction of CMC was completely inhibited by the addition of inhibitor of DNA synthesis, hydroxyurea, or cytosin arabinoside. CMC induced with 2-ME was specifically inhibited by the addition of unlabeled target cells to the 51Cr-release assay system. These results indicated that killer T cells were generated in the presence of 2-ME as a result of nonspecific polyclonal activation of precursors into cytotoxic effector cells and that they recognized target cells with antigen-specific recognition receptors. Spleen cells deprived of adherent cells showed impaired induction of CMC with 2-ME. The addition of peritoneal exudate macrophages to splenic T cells restored this response. The result indicated that macrophages were essential for the induction of CMC with 2-ME. The possibility that the function of macrophages was mediated by soluble factor(s) released from macrophages was demonstrated by the separate culture of splenic T cells and macrophages in double-chambered, Marbrook-type vessels and by the addition of supernatants from macrophage cultures to splenic T cells. 2-ME and soluble factor(s) released from macrophages seemed to be required for the activation of precursors into killer cells.

Animals↗

Immunologic tolerance to HGG in mice. I. Suppression of the HGG response in normal mice with spleen cells or a spleen cell lysate from tolerant mice.

Adoptive transfer of spleen cells or spleen cell lysates from mice tolerant to human-gamma-globulin (HGG) specifically suppressed the response of normal syngeneic recipients to HGG. The suppressive activity could be transferred for over 100 days after tolerance induction. The suppression induced by both spleen cells and spleen cell lysate was found to be specific as evidenced by a normal response to a challenge with turkey-gamma-globulin or goat erythrocytes. The activity of the suppressive lysate could be removed by passing the material through an HGG immunoadsorbent column but not by passing it through an anti-HGG column or a BSA column. These results indicated that the factor had antigen specificity and was probably not antigen-antibody complexes. That this suppression was not due to a shifting of the kinetics of the antibody response has also been demonstrated. The antigen-specific suppressor factor in the tolerant spleen cell lysates was a protein with a m.w. of approximately 45,000 daltons. The kinetics of the appearance of both suppressor cells and suppressor factor were consistent with a mechanism of active suppression functioning in the maintenance of tolerance to HGG.

Animals↗