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Biomedical subjects

H Zahner

Publications and source records attributed to H Zahner.

At least 37 records · Page 2Linked to original sources

Intracellular calcium and pH conditions of cultured cells infected with Eimeria bovis or E. separata.

Loading of Eimeria bovis-infected Vero cells with membrane-permeant acetoxymethyl esters (AM-esters) of ion-sensitive dyes provided us with a noninvasive method for investigation of the permeability of the parasitophorous vacuole membrane (PVM) and simultaneous measurement of Ca2+ and H+ concentrations in different compartments of the infected cells. The distribution patterns of the cleaved membrane-impermeant dyes argue against the existence of nonselective pores in the PVM. There is also no indication of a parasitophorous duct connecting the vacuolar space with extracellular media. The pH inside the parasitophorous vacuole (PV) was lower than that in the cytoplasm of the host cell or the parasite, whereas the [Ca2+] in these compartments did not differ significantly. In HT29 cells infected with E. separata for 24 h the Ca2+ response to extracellular adenosine triphosphate (ATP) was significantly reduced, indicating influences on the host cell's intracellular signaling.

Adenosine Triphosphate↗

Microneme antigens of Eimeria bovis recognized by two monoclonal antibodies.

Two IgG1 monoclonal antibodies (mAbs 8-23F9 and 9-21G9) were developed after immunization of mice with homogenates of Eimeria bovis first-generation merozoites. Both mAbs reacted with antigens in the apical two-thirds of the parasites and immune electron microscopy determined the micronemes as targets. When tested by immunoblotting, mAb 8-23F9 failed to react with antigens separated under reducing conditions; under nonreducing conditions it recognized two components of >200 kDa. mAb 9-21G9 bound to antigens of 135 and 180 kDa after electrophoresis under reducing conditions and to a series of components when separated without reduction. The epitope of mAb 8-23F9 was destroyed by treatment of the antigen with endoglycosidase H and removal of phosphocholine (PC) by phospholipase C. Since mAb 8-23F9 does not recognize cytidine-linked PC, the data suggest that PC in combination with N-linked sugars and/or N-glycans is part of its epitope. In the case of mAb 9-21G9, endoglycosidase H did not alter the epitope. When E. bovis merozoite antigen was treated with phospholipase C the number of mAb 9-21G9-reactive constituents increased, suggesting that PC may otherwise mask the epitope. mAb 8-23F9 also bound to the apical area and the surface of E. bovis sporozoites and recognized a >200-kDa sporozoite component. When sporozoites invaded Vero cells in vitro, epitope-bearing components were released onto the host cell surface and became part of the early parasitophorous vacuole wall. At day 5 the binding of the mAb was again confined to the intracellular parasite. mAb 9-21G9 did not react with sporozoites but recognized the apical area of intra-cellular trophozoites on day 5 after invasion of host cells in vitro. When testing was done against a variety of other Apicomplexa in various assays, the only cross-reaction observed occurred with mAb 8-23F9, which bound to a conformationally determined 180-kDa component of Toxoplasma gondii cystozoites.

Animals↗

Eimeria separata: method for the excystation of sporozoites.

A method is described for the excystation and collection of infective sporozoites of Eimeria separata. The procedure uses conditions that resemble the in vivo environment. The first treatment of the oocysts in a 0.4% pepsin/HCl solution alters the oocyst wall, which becomes thinner. The second treatment in a 0.4% trypsin/0.75% taurocholate solution breaks the oocyst wall and sporocysts are released. A third incubation of the oocyst-sporocyst mixture in trypsin-free medium with 0.75% taurocholate and an additive of MgCl2 followed by a final incubation in RPMI medium supplemented with 1% fetal calf serum yields a sporozoite excystation rate of up to 90%.

Animals↗

A monoclonal antibody reacts species-specifically with amylopectin granules of Eimeria bovis merozoites.

An IgG1 monoclonal antibody (mAb 35B9) developed against first-generation merozoites of Eimeria bovis was shown by immunoelectron microscopy to react selectively with antigens localized in amylopectin granules. Amylopectin does not contribute to the epitope, as enzymatic degradation of carbohydrates in the parasite did not alter the binding pattern of mAb 35B9. When tested by immunoblotting, despite its organelle specificity the mAb recognized a variety of E. bovis merozoite I components with predominant molecules of 135 and 200 kDa. The epitope was not affected by treatment with endoglycosidase H; thus, N-linked sugar residues should not be involved in it. Alkaline cleavage (beta-elimination), however, destroyed the epitope; thus, the involvement of O-linked carbohydrates cannot be excluded. Treatment of E. bovis merozoite extract with phospholipase C changed the binding pattern of mAb 35B9 in a way that suggests the presence of phosphorylcholine molecules on several antigens recognized by the mAb, albeit not belonging to the epitope but rather masking it. The epitope was not found in free sporozoites of E. bovis or young intracellular parasites up to day 4 after invasion of cells in vitro, whereas 5-day-old trophozoites were found to contain it. It seems to be species-specific, as it could not be shown in sporozoites or merozoites of E. tenella or in stages of several other Coccidia.

Amylopectin↗

T cell responses in calves to a primary Eimeria bovis infection: phenotypical and functional changes.

The study aimed to characterize T cell responses in calves to a primary E. bovis infection. For this purpose, peripheral blood lymphocytes (PBL) were isolated from six infected calves and three controls during prepatency (Day 12 post infection (p.i.), patency (Day 25 p.i.) and postpatency (Day 35 p.i.). In addition, lymphocytes were isolated from various lymphatic organs (lnn. cervicales superficiales, lnn. jejunales craniales, lnn. jejunales caudales, lnn. caecales, lnn. colici, Peyer's patches (PP) and spleen) at necropsy (Day 35 p.i.). FACS analyses determined the proportions of CD4+-, CD8+-, CD2+-, and gammadelta+-T cells. Proliferative responses of the cells after stimulation with Concanavalin A (Con A) and an E. bovis-merozoite I antigen (EbAg) were measured. Furthermore, in situ hybridization experiments were performed for the detection of IL-2 and IL-4 mRNA in histological sections of lymphatic organs. Proportions of CD4+-, CD8+- and CD2+-expressing PBL were significantly increased 12 days p.i. in infected calves. While the proportions of CD4+- and CD8+-PBL declined until day 25 p.i. and finally reached control values, proportions of activated PBL (CD2+-T cells) remained at a high level throughout the observation period. Those of gammadelta+-PBL, in contrast, remained unaffected. The proportions of CD4+-, gammadelta+- and CD2+-T cells in lymphatic organs were significantly increased in comparison to uninfected controls, when determined 35 days p.i. Concerning the proportions of CD8+-T cells of the organs, however, there were no differences between the groups. PBL and cells from lymphatic organs except those from the PP showed strong proliferative response to the mitogen Con A, without a significant difference between the groups. Reactions to EbAg in contrast differed significantly between controls and E. bovis infected calves. Proliferation responses of PBL of infected animals were highest 12 days p.i.; subsequently they decreased and 35 days p.i. they were found within the ranges of controls. Lymphocytes isolated from lymphatic organs of infected animals reacted significantly stronger than lymphocytes from control animals, whereby most marked differences occured with cells from lymph nodes draining E. bovis infested parts of the intestine and from the spleen. These reactions were accompained by an increased transcription of the IL-2 gene but not of the IL-4 gene in gut associated lymphnodes of infected calves when compared with infected controls. The data suggest strong antigenic stimuli by developing first generation schizonts, and of predominant involvement of (CD4+) Th1 cells in the course of a primary E. bovis infection of calves.

Animals↗

Juvenile female Litomosoides sigmodontis produce an excretory/secretory antigen (Juv-p120) highly modified with dimethylaminoethanol.

A 120 kDa antigen produced by juvenile female Litomosoides sigmodontis (Juv-p120) was isolated and purified. The amino acid composition of the molecule was determined. Juv-p120 was shown to be highly modified with N,N-dimethyl-aminoethanol (28.4 mol%). Treatment of Juv-p120 with potassium hydroxide (beta-elimination) or with sodium m-periodate leads to the destruction of epitopes recognized by antibodies immune affinity-purified with isolated Juv-p120. Juvenile L. sigmodontis were shown to release Juv-p120 into the pleural cavity of infected Mastomys coucha before the onset of patency.

Amidohydrolases↗

Expression of the microfilarial sheath protein 2 (shp2) of the filarial parasites Litomosoides sigmodontis and Brugia malayi.

The microfilarial sheaths of the filarial parasites Brugia malayi, Brugia pahangi, and Litomosoides sigmodontis consist of several parasite proteins, probably ranging between 7 and 10. The gene encoding sheath protein 2 (shp2), which is the object of this study, is transcribed in embryos and in the uterine epithelium; at least in B. malayi, it is translated in both tissues. Apparently, shp2 is synthesized as a monomer, exported by the respective cells, and integrated into the microfilarial sheath. In the sheath, it exists as a highly polymerized molecule cross-linked by cysteine formation and other covalent bonds, presumably epsilon-(gamma-glutamyl)-lysine links.

Animals↗

Ivermectin-induced killing of microfilariae in vitro by neutrophils mediated by NO.

Rat neutrophil granulocytes isolated after intraperitoneal casein injection of the donors exhibit high cytotoxic efficacy in vitro against microfilariae of Litomosoides carinii in the presence of ivermectin. Optimum effects of 80-90% killing of microfilariae were obtained with 100 ng ivermectin per milliliter and a microfilariae: cell ratio of 1:100. Spleen cells killed approximately 30% of the microfilariae under these conditions. Cytotoxic effects were independent of any adherence of the cell to the larvae. In contrast to the effects of spleen cells, cytotoxicity of neutrophils completely abrogated when cells and targets were separated by a membrane impermeable for the cells, suggesting a very short-living mediator in the latter case. Correspondingly, cytotoxic effects of neutrophils were completely inhibited by the addition of the arginine analogues NG-monomethyl-L-arginine and L-canavanine, indicating the involvement of reactive nitrogen intermediates. The nitric oxide scavenger hemoglobin also protected the microfilariae. Several compounds which are known to interfere with reactive oxygen intermediates were ineffective. An excess of ferrous ions in the medium in the presence of a reducing agent significantly reduced the cytotoxic efficacy of neutrophils.

Animals↗

Renal disease in lymphatic filariasis: evidence for tubular and glomerular disorders at various stages of the infection.

Brugia malayi-infected patients, endemic normals with high levels of specific antibodies and European controls were investigated for kidney disorders by noninvasive techniques. Groups of patients with filarial infections included asymptomatic, microfilaraemic cases (group 1), patients with filarial fever (group 2) and with obstructive filariasis (group 3). Several patients underwent a treatment course with diethylcarbamazine (DEC) when blood and urine samples were collected. Urine samples were investigated for proteinuria and analysed by SDS-PAGE to discriminate between proteinurias caused by tubular and glomerular disorders. In addition, urine levels of alpha-1 microglobulin, of the brush border antigen gp400 and of N-acetyl-beta-glucosaminidase (NAG) activity were determined as indicators of tubular disorders, the albumin content of the urines served as indicator of glomerular alterations. IgG rheuma factors were also determined in the serum as possible reasons for glomerulonephritis. Neither in the endemic normals nor in the European controls there was evidence for kidney disorders. Infected patients had significantly increased proteinuria compared to controls. There were no significant differences between the 3 groups of infected persons, although the mean protein levels were highest in cases with chronic disease and lowest in asymptomatic patients. Quantitative urine analyses and results of accompanying tests suggest predominantly tubular but generally relatively weak disorders in asymptomatic infections; abundant involvement of the kidney which involves both compartments of the organ in the course of filarial fever; and partly severe and probably chronically progredient kidney alterations, which predominantly affect the glomerula in symptomatic cases. IgG rheuma factors do not seem to play a role in filarial infection associated renal disease. DEC-treatment indeed did not significantly alter degree and character of the proteinuria, but relatively high albumin levels in the urine of treated persons yet suggest increased glomerular disorders in these cases. In conclusion, renal disease appears to be a common event in Brugia filariasis; involving both the tubular and glomerular compartment of the organ its pathogenesis is obviously complex and not only immune complex-mediated.

Acetylglucosaminidase↗

Infection of BALB/c mice with the filarial nematode Litomosoides sigmodontis: role of CD4+ T cells in controlling larval development.

Litomosoides sigmodontis is the only filaria which develops from infective larvae into adults in immunocompetent laboratory mice. Depletion of CD4+ T cells from infected BALB/c mice resulted in worm and microfilarial burdens significantly higher than those of infected controls. Th2 cytokines, eosinophilia, and immunoglobulin E, which were strongly induced in infected controls, were diminished in CD4-depleted mice.

Animals↗

Brugia spp. and Litomosoides carinii: identification of a covalently cross-linked microfilarial sheath matrix protein (shp2).

A microfilarial sheath protein gene (shp2) coding for the major constituent of the insoluble, cross-linked sheath remnant (SR) from Brugia malayi, Brugia pahangi and Litomosoides carinii has been cloned and sequenced, based on peptide partial amino-acid sequences. All three closely related single-copy shp2 genes in the two genera carry a single intron in identical position; shp2 mRNAs are post-transcriptionally modified by both cis-splicing and trans-splicing. In accordance with their extracellular destinations the encoded proteins include signal peptide sequences; molecular masses of approx. 23 kDa are hence predicted for the mature secreted polypeptides. In their structures sheath matrix proteins shp2 may be regarded as extreme cases of a modular constitution, since these proteins largely consist of two different segments of multiple sequence repetitions, PAA and QYPQAP (or QYPQ), separated by elements of unique sequence. Extreme insolubility and cross-linking are likely to originate from these repetitive sequences within shp2, and to constitute the basic properties of a microfilarial matrix largely consisting of an shp2 network.

Amino Acid Sequence↗

Induction and prevention of shock-like lethal side effects after microfilaricidal treatment in filariae infected rodents.

In contrast to human carriers of microfilariae, filariae infected rodents generally tolerate an effective microfilaricidal treatment without obvious signs of adverse reactions. The study shows, however, that also the filariae (Litomosoides carinii, Brugia malayi) infected rodent Mastomys coucha can be rendered sensitive to side effects of the treatment by the administration of D-galactosamine (D-Gal), due to reduction of liver UTP levels. Independent of the drug (diethylcarbamazine, ivermectin, CGP 20376) and the parasite species, D-Gal-primed infected animals died within 4 days after a microfilaricidal treatment. Lethal effects did also occur in naive animals to which microfilariae had been transfused 18 h prior to the challenge with D-Gal and a microfilaricidal, provided the animals had received at least approximately 10(3) larvae/g body weight. Both infected animals and naive recipients of microfilariae could be protected from death by cyclosporin A, polyclonal antibodies to mouse TNF or suitable amounts of NG-monomethyl-L-arginine. Pentoxifylline was less protective. The results suggest that components play a role in adverse reactions after microfilaricidal treatment, which are released by dying/dead microfilariae and may interact with T lymphocytes independent of a specific state of immunity. In a sequela, TNF released by T cells seems to induce an excess synthesis of N-oxides which appear to be the final morbific agent.

Animals↗

In vitro cultivation of third-stage larvae of Brugia malayi to the young adult stage.

The in vitro cultivation of the filarial nematode Brugia malayi from the infective stage to the fourth and the young adult stage is described. Different culture conditions including cell-free systems and co-culture with different human lymphatic cell lines were compared. Cell-free systems reported by others to promote the in vitro development of the parasites to the adult stage failed to work, i.e. the parasite development stopped at the L4 stage and the larvae died after approximately 3 weeks. Cocultivation with each of the cell lines used enhanced the survival of the parasites. The best results were obtained employing the human T cell leukemia line Jurkat and human dermal fibroblasts as feeder cells in RPMI 1640 supplemented with 10% heat-inactivated human serum. This culture system allowed the cultivation of B. malayi for more than 7 weeks with an average growth of the larvae by factor 6.4 (0.77 +/- 0.035 cm) and a maximum growth by factor 10 (1.2 cm). 69% of the initially cultivated larvae (which corresponded to 100% larvae alive at that time) reached the fourth larval stage after 14 days, and 2.6% of the initially cultivated larvae (which corresponded to 17% of the parasites alive at that day) had reached the young adult stage by day 37 of culture. Parasites remained alive up to 52 days. During the first four weeks of culture, both the length and the periods of moulting of the in vitro cultivated filariae closely resembled those observed with B. malayi in vivo in rodent hosts.

Aedes↗

Litomosoides carinii microfilarial sheaths: partial amino acid sequences of several major polypeptide constituents.

Isolated sheaths from Litomosoides carinii microfilariae were disintegrated by reduction with dithiothreitol and were 14C-carboxymethylated. Five major sheath proteins thus solubilized were purified by size exclusion chromatography and reversed-phase HPLC (rpHPLC). Proteolytic fragments of complete sheaths and of the single sheath proteins were isolated by rpHPLC and were N-terminally sequenced. A library of 27 partial sheath polypeptide sequences was thus established, 21 of which could be assigned to three L. carinii sheath structural genes (shp1,2, and 3/3a) isolated on the basis of this and of previous amino acid sequence information. The remaining peptides document the presence of at least one additional major sheath constituent.

Amino Acid Sequence↗

Surface antigens of Litomosoides carinii microfilariae: agglutinating antibodies react with sheath components of 40 and 120 kilo Dalton molecular mass.

This study was conducted to identify surface antigens of the microfilarial sheath of Litomosoides carinii which are accessible to antibodies. Rabbit antisera were raised against the soluble and insoluble fractions of purified sheaths by extracting them with a buffer containing 2-mercaptoethanol and sodium dodecylsulphate. These sera and rabbit hyperimmune sera directed against homogenates of total microfilariae, mature (i.e. microfilariae liberating) female parasites and excretory-secretory products of adult females were able to agglutinate live and formaldehyde-fixed microfilariae. When the antisera directed against sheath constituents were administered to patently infected Mastomys coucha, the microfilaraemia of these animals was rapidly reduced and remained low for a period of 2-3 weeks. Antibodies specifically binding to the microfilarial surface were immunoaffinity-purified on formaldehyde-fixed microfilariae. The antibodies react with sheath antigens of 40 and 120 kDa molecular mass which are produced by the epithelium of the distal uterus of the mature female, secreted and attached to the surface of the sheaths. A 120 kDa antigen recognized by anti-sheath surface antibodies was also detected in the excretory-secretory products of in vitro-cultured immature female L. carinii from day 30 post-infection onwards. In the excretory-secretory products of mature adult female parasites recovered on day 130 post-infection, this 120 kDa molecule was absent. However, material reacting with the antibody was detected in the stacking gel of SDS-polyacrylamide gels. This finding may indicate that the basic units forming the 120 kDa antigen of immature adults or microfilarial sheath surface antigens occur in a highly polymerized form in the excretory-secretory products of mature female parasites.

Agglutination Tests↗