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Biomedical subjects

D A Harn

Publications and source records attributed to D A Harn.

At least 55 records · Page 3Linked to original sources

Failure of schistosomiasis to significantly decrease testosterone levels in Brazilian men.

Schistosomes can decrease the reproductive potential or castrate both invertebrate (snail) hosts as well as vertebrate (mouse, rat, and hamster) hosts. To determine if host castration occurs in human males, we examined testosterone levels in the sera of 38 Brazilian males, 16-35 years of age, who had Schistosoma mansoni infections. We found that individuals with intestinal schistosomiasis exhibited serum testosterone levels similar to those of noninfected controls. Four subjects with severe hepatosplenic disease also exhibited testosterone levels within the normal range. We did observe a negative correlation between parasite load (as predicted by fecal egg count) and testosterone levels but could not dissociate this relationship from the effect of age on either parameter. Therefore, in contrast to rodent models, host castration does not appear to be a usual side effect of human schistosomiasis.

Adolescent↗

Characterization of isoelectric point (pI) fractions of soluble egg antigen of Schistosoma japonicum.

The soluble egg antigen of Schistosoma japonicum was fractionated into 20 individual isoelectric point (pI) fractions with different pIs ranging from 1.86-11.40 by isoelectric focusing (IEF). The fractions were tested for humoral and cellular responses, as well as in vitro granuloma formations. The results indicated that the fractions in the acidic region (pI 3.78-5.54) may play an important role in granuloma elicitation in schistosomiasis japonica, and antibodies are also involved in the regulation of granuloma formation especially at the early stage (5 week postinfection).

Animals↗

Candidate vaccine antigens that stimulate the cellular immune response of mice vaccinated with irradiated cercariae of Schistosoma mansoni.

Vaccination with radiation-attenuated cercariae confers the highest levels of resistance to challenge infection in experimental schistosomiasis and requires Ag-specific T cells. Therefore, this study aimed to identify specific Ag that stimulate the cellular immune response of mice vaccinated with irradiated cercariae of Schistosoma mansoni. Four experimental groups representing different levels of resistance in the vaccine model (C57BL/6J versus CBA/J mice vaccinated with 15- or 50-krad irradiated cercariae) were compared for in vitro lymphocyte proliferation and lymphokine production. Adult worm extracts fractionated by isoelectric focusing were used as Ag. Lymphocyte proliferation of all groups was limited to three consecutive isoelectric fractions (pH 4.6-6.3). Interestingly, the antibody response of these mice was directed to Ag in the same isoelectric fractions, three of which had previously been identified as paramyosin, heat shock protein 70, and the integral membrane protein Sm23. These Ag as well as two 28 kDa proteins, triosephosphate isomerase and glutathione S-transferase, in purified native or recombinant form or as a synthetic peptide, stimulated lymphocyte proliferation. Lymphocytes of vaccinated C57BL/6J mice generally showed higher levels of proliferation than did CBA/J mice. Interestingly, cells of once-vaccinated mice responded better than did cells of mice vaccinated three times. Lymphokine assays demonstrated that IL-2 and IL-4 was generally reduced after multiple vaccinations and varied qualitatively as well as quantitatively between mouse strains. This study substantiates that the five Ag, paramyosin, heat shock protein 70, triosephosphate isomerase, glutathione S-transferase, and the integral membrane protein Sm23, are important candidates for a defined antischistosomal vaccine.

Animals↗

The cell-mediated response to schistosomal antigens at the clonal level. III. Identification of soluble egg antigens recognized by cloned specific granulomagenic murine CD4+ Th1-type lymphocytes.

Granulomatous inflammation in schistosomiasis is a consequence of T cell-mediated hypersensitivity to parasite egg Ag. In the present study we used three consecutive independent chromatographic procedures to fractionate and identify the soluble egg Ag recognized by schistosome-specific, cloned, murine, CD4+ Th1-type lymphocytes, which had been shown previously to be capable of mediating granuloma formation in vivo when adoptively transferred to normal syngeneic hosts challenged with an i.v. injection of eggs. The stimulatory activity resided in two acidic egg molecules, with apparent molecular masses of 64 to 68 kDa and 38 to 42 kDa, each of which ran as a single band on SDS-PAGE after purification. Fast performance liquid chromatography and SDS-PAGE performed under reducing conditions suggested that the two molecules are related and that the 38- to 42-kDa molecule is a subunit of the 64- to 68-kDa molecule. Polyclonal lymphoid cells from schistosome-infected mice were similarly stimulated by the purified 64- to 68-kDa and 38- to 42-kDa molecules, implying that these are sensitizing Ag in the natural disease.

Animals↗

Candidate vaccine antigens identified by antibodies from mice vaccinated with 15- or 50-kilorad-irradiated cercariae of Schistosoma mansoni.

In murine schistosomiasis, the highest levels of resistance to cercarial challenge are obtained by vaccination with radiation-attenuated cercariae. To identify candidate vaccine antigens relevant to the vaccine model, we examined parasite antigens recognized by antibodies from mice vaccinated with irradiated cercariae of Schistosoma mansoni. To optimize recognition of a wide spectrum of antigens, several factors that influence the level of protection in this model were varied; specifically, we examined the effect of (i) single versus multiple vaccinations with irradiated cercariae, (ii) the dose of irradiation (15 or 50 kilorads) administered to the cercariae, and (iii) the genetic background of mouse strains, high-responder (C57BL/6J) versus moderate-responder (CBA/J) mice. We found that the number of vaccinations did not alter antibody specificity but modified the relative antibody titers against particular antigens. The dose of irradiation used to attenuate the immunizing cercariae had a similar effect on antibody titers but in addition influenced antibody specificity. Only mice that had been vaccinated with moderately irradiated cercariae recognized cathepsin B (Sm31) and Sm32. Interestingly, when vaccinated mice of the two strains, C57BL/6J and CBA/J, were compared, differences in antibody responses to particular antigens were observed. Both strains recognized the integral membrane protein Sm23, glutathione S-transferase, and cathepsin B, whereas Sm32 and paramyosin were recognized only by CBA/J mice, and heat shock protein 70 was recognized exclusively by C57BL/6J mice. In this study, we conclusively identified six distinct antigens that are specifically recognized by the humoral immune response of vaccinated mice.

Animals↗

Isotype responses to candidate vaccine antigens in protective sera obtained from mice vaccinated with irradiated cercariae of Schistosoma mansoni.

In experimental schistosomiasis, sera of mice multiply vaccinated with radiation-attenuated cercariae of Schistosoma mansoni passively transfer resistance against cercarial challenge to naive mice. To further characterize these sera, we tested their protective capacities in two mouse strains (C57BL/6J and CBA/J) and compared the antigen-specific isotype compositions of the different protective sera by means of the enzyme-linked immunosorbent assay. By using an array of purified schistosomal antigens, the patterns of antibody titers and isotypes differed for each experimental group and antigen. In the most-protective C57BL/6J sera, high levels of immunoglobulin G1 (IgG1), IgG2a, and IgG2b bound to heat shock protein 70 and the integral membrane protein Sm23, whereas recognition of these antigens by less-protective CBA/J sera was lower. Glutathione S-transferase (GST) was recognized predominantly by IgM antibodies of all vaccinated groups, and a significant portion of this response was directed against carbohydrate epitopes. Antibodies specific for triosephosphate isomerase, paramyosin, and Sm32 (hemoglobinase) were present in less-protective sera and thus seem less relevant for passive transfer of resistance. The results of this study suggest a contribution of IgG antibodies specific for heat shock protein 70 and Sm23, and possibly a contribution of GST-specific IgM antibodies, to the protective effect of sera from C57BL/6J mice vaccinated with irradiated cercariae.

Animals↗

T and B cell epitope mapping of SM23, an integral membrane protein of Schistosoma mansoni.

SM23 is an integral membrane protein of the blood-vessel dwelling parasitic worm Schistosoma mansoni. This protein has been detected with antibodies in all stages of the parasite found in the human host, notably the lung stage, and therefore is of interest as a vaccine candidate. In addition SM23 has been shown to be a member of a proposed new superfamily of membrane proteins whose structures do not conform to the previously known classifications. To date there are 13 members including ME491 (CD63, Pltgp40), CD9 (p23), TAPA-1, CD37, CD53, MRC OX-44, CO-029, MRP-1, L6, the gene product of TI-1, the target of mAb AD-1, SM23, and SJ23 (the Schistosoma japonicum homologue). Most of these molecules except for those in the two blood vessel-dwelling parasites are found in membranes of hemopoietic and/or malignant cells and all have unknown function. In this study we used recombinantly expressed full-length and partial molecules as well as synthesized peptides to map T cell and B cell epitopes of SM23. The two predicted external hydrophilic domains were found to be highly immunogenic and contained several B cell epitopes. There were at least four T cell epitopes in the large hydrophilic domain. One segment of 23 amino acids contained both a T cell and B cell epitope as well as the putative glycosylation site. This particular segment was recognized by immune sera and cells of every mouse strain tested. The elucidation of these epitopes demonstrates the immunogenic nature of this molecule and raises questions as to the role of SM23 in the host/parasite relationship.

Amino Acid Sequence↗

A protective monoclonal antibody specifically recognizes and alters the catalytic activity of schistosome triose-phosphate isomerase.

mAb M.1 was previously shown to recognize a 28-kDa Ag in all stages of the human helminth parasite, Schistosoma mansoni, and to bind to the surface membranes of newly transformed schistosomula in a transient manner. Here we demonstrate that M.1 passively transfers partial resistance (41-49%) to cercarial challenge in naive mice. Thus, the 28-kDa Ag recognized by M.1 is a putative vaccine candidate. After immunoaffinity purification, tryptic digests of the 28-kDa Ag were prepared and individual peptides were sequenced. Amino terminus sequences of tryptic peptides of the 28-kDa Ag had high (79-87%) sequence homology with the mammalian glycolytic/gluconeogenic enzyme triosephosphate isomerase (TPI). Purified, native 28-kDa Ag from adult parasites was shown to function enzymatically in an analogous manner to yeast and mammalian TPI in the reverse reaction. Addition of M.1 antibody to the enzyme reaction altered the catalytic activity of schistosome TPI. To determine the immunologic cross-reactivity of this vaccine candidate with mammalian TPI, Western blot analysis was performed and demonstrated that M.1 was immunologically specific for the schistosome enzyme.

Amino Acid Sequence↗

The cell-mediated response to schistosomal antigens at the clonal level: development and characterization of a panel of egg antigen-specific murine T cell clones.

The cellular basis of the immune response underlying the granulomatous hypersensitivity in experimental murine schistosomiasis caused by Schistosoma mansoni was investigated by examining a panel of 16 egg antigen-specific T cell clones. The clones were derived from a sensitized T cell line by limiting dilution, and were selected on the basis of their strong responses against schistosomal egg antigens. By cytofluorographic analysis, it was determined that all clones were T helper cells and expressed the CD3+CD4+CD8- phenotype. Lymphokine analysis revealed that some clones secreted either interleukin (IL)-2 or IL-4, but a surprisingly large number were double producers. Southern blot analysis verified the clonality of these T cells and indicated that the clones examined included at least five independent clones by the criterion of T cell receptor beta gene rearrangements. Despite their diversity, the clones responded strongly, and virtually exclusively, to egg antigen components with isoelectric points in the limited range of 4.7 to 5.2. The relevant antigenic egg molecules were shown to require processing by accessory cells for presentation to, and stimulation of, the T cell clones.

Animals↗

Comparison of irradiated-cercaria schistosome vaccine models that use 15- and 50-kilorad doses: the 15-kilorad dose gives greater protection, smaller liver sizes, and higher gamma interferon levels after challenge.

The protection and immune response to infection caused by the parasite Schistosoma mansoni were studied by comparison of two murine irradiated-vaccine models. Mice were exposed from 1 to 4 times to infective-stage cercariae attenuated with either a moderate dose (15 kilorads) or a high dose (50 kilorads) of radiation. Seven weeks after challenge infection, the mice were assessed for resistance, liver size, and lymphokine responses to parasite antigens. Both vaccine models showed high levels of protection, but the moderate-dose model proved superior in that mice in those groups achieved higher levels of resistance in fewer exposures. Additionally, the mice exposed three times and four times to moderately irradiated cercariae all had significantly lower liver weights independent of worm burden. Assessment of lymphokine production by the spleen cells at the time of perfusion showed that gamma interferon was the only lymphokine of those measured that was differentially produced in the two models and correlated with a decrease in size of in vitro granulomas. The findings suggest that a selected vaccine regimen may lead to greater resistance and decreased liver pathology, the latter of which appears to be mediated by induction of gamma interferon.

Analysis of Variance↗

[Generation and immunochemical characterization of an anti-egg monoclonal antibody specific to Schistosoma japonicum].

Monoclonal antibodies (McAbs) were generated from mice immunized with soluble egg antigen (SEA) of Schistosoma japonicum. Five of which were specific to SEA of S. japonicum. The isotype of these McAbs was IgG1. Immunoblotting showed that the approximate molecule weight of the antigens recognized by the McAbs were 22 kDa, 116 kDa and greater than 200 kDa respectively. At least 3 isomorphs of the 22 kDa antigen recognized by 1E1 were found at pI 4.6-6 with 2-D Western blot. Moreover, immunoprecipitation using 125I-labeled S. japonicum SEA demonstrated that only one band corresponding to 30 kDa was recognized by 1E1.

Animals↗

A cloned ATP:guanidino kinase in the trematode Schistosoma mansoni has a novel duplicated structure.

Creatine kinase (CK) is part of a conserved family of ATP:guanidino phosphotransferases whose members play important roles in intracellular energy flow. Previously characterized members of this family are approximately 80-kDa dimers of two related 40-kDa subunits. We have cloned a gene from the parasitic trematode Schistosoma mansoni which has substantial amino acid sequence similarities to CK. Like the genes for vertebrate CKs, this gene is developmentally regulated; mRNA levels are high in the infective cercarial stage but rapidly decrease upon transformation to the parasitic schistosomulum stage. In contrast to members of the guanidino phosphotransferase family characterized previously, however, the schistosome gene appears to be a direct fusion of two CK-like domains that encode a single 74-kDa polypeptide. Correlative evidence from enzyme assays of crude parasite homogenates suggests that the cloned gene is a creatine kinase. This represents the first molecular cloning of an invertebrate ATP:guanidino phosphotransferase.

Amino Acid Sequence↗

A Schistosoma mansoni epitope recognized by a protective monoclonal antibody is identical to the stage-specific embryonic antigen 1.

In infections with the parasitic trematode Schistosoma mansoni, a component of the host defense is directed against the invading larval form, and carbohydrates on the surface of these larvae are targets for the immune attack during the early stages of infection. To identify such carbohydrate epitopes, which may be suitable for immunization against schistosomiasis, we have previously generated monoclonal antibodies to surface antigens; some of these confer protection to naive mice when passively administered. Here we show that one of the protective antibodies recognizes a determinant present in both the parasite and its mammalian hosts. The immunohistochemical distribution of this determinant in the head of embryonic mice was found to be identical to the stage-specific embryonic antigen 1 (SSEA-1), an epitope abundant in pre-implantation embryos, several adult tissues, and malignant tumors. Oligosaccharides containing the SSEA-1 trisaccharide Gal beta 1-4(Fuc alpha 1-3)GlcNAc inhibit antibody binding to parasite antigen. SSEA-1 antibodies generated from mice immunized with rodent neural antigens bind to the surface of the schistosome larvae and mediate antibody-dependent cellular cytotoxicity. SSEA-1 antibodies are also elicited during human schistosomiasis infection, and this autoantibody response may be involved in the development of the natural immunity against the parasite.

Animals↗

Schistosoma mansoni: the host immune response to egg antigens. I. Partial characterization of cellular and humoral responses to pI fractions of soluble egg antigens.

Soluble egg Ag (SEA) were separated according to charge by agarose-IEF (A-IEF) in order to partially characterize those antigenic determinants that may elicit the granulomatous response in schistosomiasis mansoni. Coomassie blue-stained A-IEF gels of SEA showed that this technique was able to resolve multiple isobands. A-IEF gels were sliced into 18 or 36 fractions from anode to cathode, and the SEA components from the isoelectric point (pI) fractions were eluted from gels in a manner that allowed for their direct utilization in both cellular and in humoral immunoassays. Only Ag in two distinct pI ranges consistently elicited lymphoproliferative responses, with the major stimulatory fractions being in the acid (3.5 to 5.0) range. Lymphocytes from mice infected for 10 wk had higher proliferative responses to both SEA and fractionated Ag in this acid pI range when compared to lymphocytes from mice infected for 25 wk; however, the latter had an enhanced response to Ag with a pI range of 6.2 to 6.4. In contrast to the cellular responses, the corresponding sera from these mice, or from schistosome-infected patients, recognized Ag in all pI fractions as determined by ELISA. However, although protective and nonprotective mAb (which recognize an egg Ag that cross-reacts with a 38-kDa schistosomular Ag) bound to most acidic fractions, only the nonprotective mAb (which also recognize determinants on keyhole limpet hemocyanin), bound, in addition, to fractions in the basic range. Finally, the m.w. of Ag in the various pI fractions were determined by SDS-PAGE analysis.

Animals↗

Monoclonal anti-idiotypic and anti-anti-idiotypic antibodies from mice immunized with a protective monoclonal antibody against Schistosoma mansoni.

To study the role of idiotypic anti-idiotypic interactions in schistosomiasis, mice were immunized with a mAb, E.1, which bound to soluble egg and larval stage Ag and also passively transferred resistance to cercarial challenge in mice. Subsequently, hybridomas were produced from E.1 immunized mice and tested for the ability to inhibit E.1 binding to soluble egg Ag. The results showed that anti-idiotypic mAb (Ab2) were produced. The range of inhibitory activity was from 33 to 100%. By using a direct Ab2 binding assay, the Ab2 were shown to be idiotypic specific, not isotype specific. It was also found that six of the hybridomas bound to soluble egg Ag and were therefore anti-anti-idiotypic antibodies (Ab3). Ab3 were shown to be inhibited from binding to soluble egg Ag by Ab2. To the authors' knowledge, this is the first time that an in vivo network relevant to an infectious organism has been reproduced in vitro such that both Ab2 and Ab3 were produced from the same animals independent of exposure to parasite Ag.

Animals↗

Purification and immunochemical characterization of a 22 kilodalton surface antigen from Schistosoma mansoni.

A 22 kDa antigen (Sm22) was purified from schistosomula membrane extracts by immunoaffinity chromatography with monoclonal antibody M.2. Western blotting suggested that the epitope bound by M.2 required a specific conformational folding of the molecule, which was sensitive to reducing agents. Two-dimensional electrophoresis of purified Sm22 demonstrated that the single 22 kDa protein recognized by M.2 on one-dimensional gel analysis was composed of at least two isomorphs. Additional Western blotting showed that Sm2 was one of the major antigens recognized by mouse anti-irradiated cercariae serum, and that this same serum recognized at least one epitope which was not sensitive to reducing agents. The mice vaccinated with irradiated cercariae were shown to be 75% protected from cercarial challenge. Sera from a rabbit immunized with Sm22 contained antibodies which bound to the surface of schistosomula and detected a single protein at 22 kDa by immunoprecipitation or Western blot. The rabbit anti-Sm22 sera also immunoprecipitated a 22 kDa in vitro translation product, indicating that at least one epitope on Sm22 is not dependent on glycosylation.

Animals↗