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Biomedical subjects

F Wunderlich

Publications and source records attributed to F Wunderlich.

At least 19 recordsLinked to original sources

Plasmodium chabaudi: estradiol suppresses acquiring, but not once-acquired immunity.

This study investigates the effect of estradiol (E) on self-healing of Plasmodium chabaudi malaria in mice of the inbred strain C57BL/10. Our data show: (1) Female mice and male castrates are capable of self-healing infections when challenged with 10(6) P. chabaudi-infected erythrocytes. Self-healing is completely suppressed after pretreatment of mice with 12 micrograms E injected sc twice a week for 3 weeks. (2) The suppressive effect of E is prevented by the estrogen receptor blockers tamoxifen and clomiphene. (3) The nonsteroidal E-agonist diethylstilbestrol (DES) also suppresses self-healing. This suppressive DES effect is prevented by tamoxifen. (4) In mice immune to P. chabaudi, neither survival rate nor the course of parasitemia is affected by E, even at 10-fold higher E doses. Our data suggest that the immunosuppressive action of E is a specific genomic effect, i.e., E-induced gene products prevent the development of protective immunity against P. chabaudi.

Animals

Testosterone-induced diminution of two peptides in spleen cells from testosterone-immunosuppressed B10 mice.

High-performance liquid chromatography (HPLC) is used to detect testosterone (T)-sensitive peptides in spleen cells isolated from female C57BL/10 mice immunosuppressed against Plasmodium chabaudi malaria by T treatment. Two peaks with retention times of about 25 min and 34 min, respectively, were identified to be diminished by about 52% and 47%, respectively, in spleen cells from T-treated mice compared to those from untreated mice. Amino acid sequencing revealed that the 24 min peak consisted of the dipeptide Met-Phe and the 34 min peak contained a degradative fragment of the alpha-chain of hemoglobin. Our data suggest that the immunosuppressive T treatment of B10 mice induces a perturbation of erythrophagocytosis in spleens.

Amino Acid Sequence

Effects of testosterone on Heterakis spumosa infections in mice.

This study describes the effects of testosterone (Te) on the intestinal nematode Heterakis spumosa in mice. The course of Heterakis infections is apparently under Te-control. At high circulating Te-levels as occurring in intact males, Te-treated females, and Te-treated castrated males, the period of release of Heterakis eggs in mouse faeces is greatly extended and the number of eggs released per unit time is markedly elevated in comparison to low Te-levels, as found in untreated females and castrated male mice. Also, the onset of the patent period occurs earlier in Te-treated mice. Testosterone also accelerates development and growth of both female and male worms of Heterakis in mice. Thus, young adult male worms can be observed in the upper colon of Te-treated castrated male mice on day 21 post-infection (p.i.), whereas, at that time, only L4 larvae are present in Te-untreated male castrates. Testosterone also favours the survival of nematodes in hosts. In untreated male castrates, the number of worms present on day 7 p.i. (L2 larvae) is approximately two thirds higher than that found on day 21 p.i. However, such a reduction in the number of worms does not occur in Te-treated castrated mice during the same period of time. The early phases of the life-cycle of Heterakis, i.e. hatching in the small intestine and final settling of L2 larvae in the upper colon are independent of Te. Also, Te does not affect motility and even slightly reduces the fecundity of adult female worms in vitro.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Testosterone-unresponsiveness of existing immunity against Plasmodium chabaudi malaria.

Testosterone (Te) is known to suppress immunity and to increase host susceptibility to many parasites. This study investigates the action of Te on immunity acquired against blood-stages of the malaria parasite Plasmodium chabaudi in female mice of the inbred strain C57BL/10. Our data show: (i) About 90% of mice infected with 10(6) P. chabaudi-infected erythrocytes are able to develop protective immune mechanisms which become evident in self-healing the infection. The capability of self-healing is lost when mice are pretreated with Te for 3 weeks. (ii) Mice which have self-healed infections acquire immunity to homologous rechallenge. Concomitantly, mice become Te-unresponsive in that their acquired immunity is not suppressible by Te-treatment. (iii) Flow cytometry reveals that Te-pretreatment entails an increase of CD8+ cells and a decrease of Ig+ cells by about 4% in spleens of non-immune mice. In immune mice, however, there is a Te-unresponsiveness of the percental distribution of splenic cell populations. (iv) Adoptive transfer experiments indicate that immunity is conferred by spleen cells, presumably non-T-cells. These cells are Te-unresponsive, since they exert their effect in Te-pretreated mice in the presence of Te. (v) Te-unresponsive immunity can be also transferred by serum, especially the IgG-fraction, obtained from immune mice. Our data demonstrate that Te prevents the development of protective immunity against P. chabaudi infections. However, when once established, protective immunity becomes unresponsive to Te. Our data suggest that the effector mechanisms of protective immunity involve Te-unresponsive B cells secreting protective IgG-antibodies.

Animals

Testosterone-induced suppression of self-healing Plasmodium chabaudi malaria: an effect not mediated by androgen receptors?

This study investigates whether androgen receptors (AR) mediate the suppressive effect of testosterone on self-healing Plasmodium chabaudi malaria. Our data show the following. (1) Female and castrated male mice of the inbred strain C57BL/10 self-heal and survive infections when challenged with 10(6) P. chabaudi-parasitized erythrocytes. However, self-healing is prevented when circulating testosterone levels are high as in intact males or in females and castrated males pretreated with 0.9 mg testosterone twice a week for 3 weeks. (2) The lethal outcome of P. chabaudi in intact males is not affected by different doses of AR blockers such as cyproterone acetate, cyproterone, flutamide and nilutamide when applied at least 3 weeks before infection and during infection. Also, these AR blockers do not impair the testosterone-induced lethal outcome of infections in testosterone-treated females and castrated males. (3) Tfm mice possessing mutant non-functional ARs and normal 'male' testosterone levels succumb to infection with P. chabaudi. However, the corresponding wild-type mice possessing functioning ARs are able to resist P. chabaudi infections at low circulating testosterone levels. (4) In contrast to testosterone, testosterone metabolites such as 5 alpha-dihydrotestosterone, 5 beta-dihydrotestosterone, androsterone and 1-dehydrotestosterone cannot suppress self-healing in castrated male B10 mice. Our data suggest that testosterone suppresses the development of protective immunity against P. chabaudi malaria, and that this immunosuppressive effect of testosterone is not primarily mediated by the classical AR response.

Animals

Distinct lipid compositions of parasite and host cell plasma membranes from Plasmodium chabaudi-infected erythrocytes.

Mouse erythrocytes infected with early or late trophozoites of the malaria parasite Plasmodium chabaudi were fractionated into free parasites and host cell plasma membranes, and both fractions were analyzed for cholesterol content and the composition of phospholipids and total fatty acids. The major results are: (i) parasites contain only a very low level of cholesterol which is about one-tenth of that of host cell plasma membranes. (ii) Parasites also contain less sphingomyelin and phosphatidylserine as well as more phosphatidylcholine than host cell plasma membranes. (iii) Parasites contain less 18:0 and 18:1 and more 18:2 and 20:4 fatty acids than host cell plasma membranes. (iv) During intraerythrocytic growth of parasites from early to late trophozoites, the relative proportions of cholesterol and phospholipids remain largely unchanged in both parasites and host cell plasma membranes. However, significant changes occur in the fatty composition of both compartments. There is an increase in the 20:4 and a decrease in the 18:0 and 18:1 fatty acids. (v) Plasma membranes of infected and non-infected erythrocytes exhibit about the same cholesterol content and phospholipid composition, but differ in the total fatty acid composition. Our data suggest the existence of distinct mechanisms controlling the different lipid compositions of parasites and host cell plasma membranes in whole Plasmodium chabaudi-infected erythrocytes during intraerythrocytic development of parasites, though both compartments are known to depend on the supply of various lipids from the host.

Animals

Testosterone-induced susceptibility to Plasmodium chabaudi malaria: variant protein expression in functionally changed splenic non-T cells.

This study investigates the effects of the male sex hormone, testosterone (Te), on self-healing of Plasmodium chabaudi malaria as well as on protein expression and functional properties of total spleen cells and splenic T cells in females of the mouse strain C57BL/10. About 90% of the B10 females survive a challenge with 10(6) P. chabaudi-infected erythrocytes. The percentage of self-healers, however, is reduced to about 60%, 40%, and 0% after pretreatment with Te for 1, 2, and 3 weeks, respectively. The progressive loss of the capability of self-healing is correlated with an increasing expression of five proteins in splenic non-T cells as revealed by two-dimensional fluorography after metabolic labelling of total spleen cells and T cells with [35S]methionine. These have molecular masses (isoelectric points) of about 10 kDa (pI 5.7), 14 kDa (pI 6.3), 14 kDa (pI 6.4), 38 kDa (pI 6.5), and 46 kDa (pI 5.5), respectively. Splenic non-T cells from mice treated with Te for 3 weeks have gained an increased capability to stimulate the concanavalin A-induced proliferative response of T cells. Te induces the changes in functional properties and protein expression of splenic non-T cells only in vivo and not in vitro. This suggests that the changes in splenic non-T cells as well as the prevention of self-healing P. chabaudi malaria are not directly induced by Te but rather indirectly, i.e. by a Te metabolite and/or Te-induced factor(s).

Animals

Testosterone and other gonadal factor(s) restrict the efficacy of genes controlling resistance to Plasmodium chabaudi malaria.

The effect of circulating concentrations of testosterone (Te) on resistance to Plasmodium chabaudi malaria was investigated in the H-2 congenic mouse strains C57BL/10, B10.A, B10.A(3R), B10.A(4R), and B10.D2. Te-levels were determined by radioimmunoassay and resistance was expressed in terms of percent self-healers after challenge with 10(6) P. chabaudi-infected erythrocytes. Our data indicate: (i) Females and castrated males reveal very similar interstrain variations of resistance. These do not correlate with the interstrain variations of the Te-levels. This is consistent with the view that resistance to P. chaubaudi is controlled by genes of the H-2 complex and genes of the non-H-2 B10-background, (ii) The polygenic control of resistance is inefficacious at high Te-levels. This is evident as high susceptibilities of males, Te-treated females and Te-treated castrated males. Moreover, high Te-levels correlate with susceptibilities to P. chabaudi within mice of the same sex of a given strain, (iii) B10-males chemically castrated using buserelin display the same low Te-level as those surgically castrated. The latter become resistant, while the former remain as highly susceptible to P. chabaudi as untreated B10-males. Obviously, other gonadal factor(s), besides Te, impose restrictions on genes controlling resistance to P. chabaudi malaria.

Alleles

Testosterone-induced abrogation of self-healing of Plasmodium chabaudi malaria in B10 mice: mediation by spleen cells.

This study investigates the suppressive effect of testosterone (Te) on the self-healing of Plasmodium chabaudi malaria in female mice of the strain C57BL/10, and, in particular, the possible role of spleen cells in mediating this Te effect. Our data show the following. (i) About 80% of B10 mice infected with 10(6) P. chabaudi-infected erythrocytes are capable of self-healing the infections. This capability is progressively impaired and finally abrogated after pretreating the B10 mice with Te for 3 weeks. (ii) The spleen is Te responsive. This becomes evident in a reduction of total spleen cells from 1.05 x 10(8) to 0.54 x 10(8) on average after Te treatment for 3 weeks. Moreover, Te treatment causes an increase in the relative proportion of CD8+ cells by about 4% and a decrease of Ig+ cells by about 4.5%, as revealed by flow cytometry. (iii) Spleen cells mediate the suppressive Te effect as revealed by adoptive transfer experiments. The percentage of self-healing mice dramatically decreases to about 8% when they receive, just prior to infection, nucleated spleen cells isolated from mice treated with Te for 3 weeks. This suppressive effect can be transferred by T cells in particular but also by non-T cells, though to a lesser extent. (iv) The adoptively transferred cells mediate their suppressive effect on self-healing only if the recipient mice receive Te during infection. Our data suggest that spleen cells become functionally changed by the Te treatment for 3 weeks. Particularly T cells, but also non-T cells, gain P. chabaudi-specific suppressive activities, and the cells require a Te-induced factor(s) to mediate these activities.

Animals

Cryptic disposition of antigenic parasite proteins in plasma membranes of erythrocytes infected with Plasmodium chabaudi.

Plasma membranes of Plasmodium chabaudi-infected erythrocytes contain seven major neoproteins with apparent molecular masses of 154, 145, 90, 72, 67, 52, and 33 kDa, respectively. These neoproteins, with the exception of the two larger ones, can be metabolically labelled with [14C]isoleucine. The seven neoproteins are antigenic as revealed by Western blotting using hyperimmune sera obtained from two different mouse strains. None of the parasite proteins is accessible from the outside in intact P. chabaudi-infected erythrocytes as determined by lactoperoxidase-mediated radioiodination, indirect immune fluorescence microscopy, or post-embedding immunoelectron microscopy. These methods, however, identify parasite proteins in host cell plasma membranes when the latter are artificially changed either during isolation or by methanol fixation. We conclude therefore that parasitic proteins are cryptically arranged in intact host cell plasma membranes of P. chaubaudi-infected erythrocytes.

Animals

Plasmodium chabaudi malaria: protective immunization with surface membranes of infected erythrocytes.

Plasmodium chabaudi-susceptible NMRI and B10.A mice were vaccinated with host cell plasma membranes isolated from P. chabaudi-infected erythrocytes. Most of the mice were protected from the lethal consequences of challenge with the homologous parasite, although protection was unassociated with a reduction in the course or peak of parasitemia. Vaccination also induced the production of antibodies against Pc90, which is the immunodominant protein expressed by parasites in host cell plasma membranes.

Animals

Resistance to Plasmodium chabaudi in B10 mice: influence of the H-2 complex and testosterone.

Resistance to Plasmodium chabaudi has been examined in different inbred mouse strains bearing identical H-2 haplotypes on different genetic backgrounds as well as in H-2-congenic mouse strains on B10 background. Resistance is expressed in terms of percent survival after a challenge with 10(6) P. chabaudi-infected erythrocytes. We can show that murine resistance to P. chabaudi is under complex polygenic control involving a non-H-2 gene(s) as well as genes in both I-A and I-E subregions of the H-2 complex. Our data indicate in particular that malaria protective antigens can be presented in context with I-Ab molecules but not in context with I-Ak molecules. Resistance controlled by I-Ab does not become apparent when I-Ek molecules are coincidentally expressed. Moreover, testosterone abrogates I-Ab-controlled resistance to P. chabaudi.

Animals

Expression of the parasite protein Pc90 in plasma membranes of erythrocytes infected with Plasmodium chabaudi.

Erythrocytes infected with the malaria parasite Plasmodium chabaudi contain the neo-protein Pc90 in their plasma membrane. We investigate origin, membrane disposition, and intraerythrocytic traffic of this Pc90. Metabolic labeling of P.-infected erythrocytes, combined with cell fractionation as well as Western blot analysis and immunoprecipitation using a Pc90-recognizing monoclonal antibody, show that Pc90 is synthesized by early to mid trophozoites and is transported without any apparent processing steps to the erythrocyte membrane. Based upon the inaccessibility of Pc90 from the outside in intact erythrocytes and the water solubility of membrane-associated Pc90, it is concluded that Pc90 is localized on the cytoplasmic face of the host erythrocyte membrane. Immunoelectron microscopy using a Pc90-specific monoclonal antibody and the occurrence of soluble Pc90 in host cell cytosol indicate that the Pc90 is transported in both a 'vesicle-bound' and a 'free' form through the erythrocyte cytoplasm.

Animals

Isolation and characterization of parasites and host cell ghosts from erythrocytes infected with Plasmodium chabaudi.

A new procedure has been developed which allows the concomitant isolation of viable parasites and host cell plasma membranes from erythrocytes infected with Plasmodium chabaudi trophozoites. The average final yield of parasites is 56%. Free parasites reveal a well preserved ultrastructure, incorporate [14C]isoleucine for at least 3 h, and synthesize about the same proteins as parasites within erythrocytes as monitored by sodium dodecyl sulphate-polyacrylamide gel electrophoresis (SDS-PAGE)-autoradiography. The host cell plasma membranes can be isolated in the form of ghosts with an average yield of 27%. The ghosts possess a structurally intact plasma membrane as revealed by freeze-etch electron microscopy. The ghosts are regularly associated with seven neo-proteins as identified by SDS-PAGE and isoelectric focusing (IEF)/SDS-PAGE. These neo-proteins have the following apparent molecular masses: 154 kDa, 145 kDa, 90 kDa, 72 kDa (pI 4.5), 67 kDa, 52 kDa, and 33 kDa (pI 5.7), respectively. The contamination of ghosts by parasite material and, conversely, the contamination of parasites by host cell plasma membranes is very low as demonstrated by light and electron microscopy, lactoperoxidase-mediated radioiodination and the distribution of the typical parasite marker enzymes such as choline kinase, cholinephosphotransferase and ethanolaminephosphotransferase.

Animals

Electron microscopical studies on cutaneous leishmaniasis in Ethiopia. II. Parasite and host cell differences between the localized and the diffuse form.

The ultrastructure of Leishmania aethiopica parasites and their host cells was investigated in lesions of 7 patients suffering from diffuse cutaneous leishmaniasis (DCL) and in lesions of 4 patients with localized cutaneous leishmaniasis (LCL). The appearance of host cells and parasites varied considerably in both disease forms. Host cell variations occurred especially in the number of cytoplasmic vesicles, the size of the parasitophorous vacuoles, and the number of amastigotes per parasitophorous vacuole. Differences concerned the occurrence of a special macrophage-type in DCL-lesions which was characterized by an electron-translucent cytoplasm and a low degree of parasitization, larger parasitophorous vacuoles with higher numbers of amastigotes per vacuole in infected macrophages from DCL-patients, and the number of electron dense granules in host cell vacuoles of DCL-patients. The parasites inducing DCL and LCL significantly differed in size and membrane structure: Amastigotes had a length of 2.27 +/- 0.48 micron and a width of 1.77 +/- 0.40 micron in DCL-lesions, and 1.92 +/- 0.40 micron and 1.48 +/- 0.32 micron in LCL-lesions. Promastigotes obtained from DCL-patients revealed 2078 +/- 308 integral membrane particles (IMP)/micron2 and 892 +/- 246 IMP/micron2 on the P- and E-fracture faces of plasma membranes, while the corresponding values of LCL-derived promastigotes amounted to 1690 +/- 376 IMP/micron2 and 652 +/- 274 IMP/micron2, respectively.

Animals

Cutaneous leishmaniasis in Ethiopia: I. Lymphocyte transformation and antibody titre.

The Ethiopian cutaneous leishmaniasis (ECL) caused by Leishmania aethiopica manifests itself in two different forms: The self-healing localized form (LCL) and the non-self-healing diffuse cutaneous leishmaniasis (DCL). In patients suffering from these two forms of ECL, the Leishmania antigen induced in-vitro lymphocyte response and the Leishmania specific antibody titres were investigated. Whole promastigotes and a soluble fraction thereof were used as antigens and antibody titres were determined by a newly developed enzyme-immunosorbent assay (ELISA). Mononuclear cells from the majority of patients but not from healthy donors proliferated in response to soluble Leishmania antigen. In contrast, whole promastigotes induced a proliferation in both patients and controls. Only DCL-cases failed to proliferate in response to both leishmanial antigens. On the average, sera from DCL-patients contained higher titres of Leishmania specific antibodies than those from LCL-patients. One practical implication of these results is that lymphocyte proliferation in combination with specific antibody titre can be used as a reliable diagnostic tool in ECL.

Adolescent

Fractionation of Plasmodium chabaudi-infected erythrocytes into parasites and ghosts.

We have developed a new procedure for subfractionation of Plasmodium chabaudi-infected erythrocytes into parasites and ghosts. Trophozoite-infected erythrocytes enriched over a percoll-step (:1.10 g/cm3) are subjected to a glycerol-enhanced osmotic shock. This induces the release of parasites and the emergence of erythrocyte ghosts, which can be separated on a continuous percoll gradient (:1.02----1.10 g/cm3). The parasites are intact in terms of ultrastructure and incorporation of 14C-isoleucine. The erythrocyte ghosts are purified over a two-step percoll gradient (:1.01-1.02 g/cm3). Our method recovers about 40%-50% of the initial ghosts and 70%-95% of the initially freed parasites.

Animals