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H Tabel

Publications and source records attributed to H Tabel.

At least 19 recordsLinked to original sources

Experimental African trypanosomiasis: lack of effective CD1d-restricted antigen presentation.

BALB/c mice are highly susceptible to African trypanosomiasis, whereas C57BL/6 mice are relatively resistant. Other investigators have reported that the synthesis of IgG antibodies to purified membrane form of variant surface glycoprotein (mfVSG) of Trypanosoma brucei is CD1 restricted. In this study, we examine the role of the CD1d/NKT cell pathway in susceptibility and resistance of mice to infection by African trypanosomes. Administration of anti-CD1d antibodies to Trypanosoma congolense-infected BALB/c mice neither affects the parasitemia nor the survival time. Correspondingly, CD1d(-/-) and CD1d(+/+) BALB/c mice infected with T. congolense or T. brucei show no differences in either parasitaemia or survival time. The course of disease in relative resistant C57BL/6 mice infected with T. congolense is also not affected by the absence of CD1d. Parasitaemia, survival time, and plasma levels of IgG2a and IgG3 parasite-specific antibodies in infected CD1d(-/-) C57BL/6 are not different from those of infected CD1d(+/+) C57BL/6 mice. We conclude that CD1d-restricted immune responses do not play an important role in susceptibility/resistance of mice infected with virulent African trypanosomes. We speculate that virulent trypanosomes have an evasion mechanism that prevents the induction of a parasite-specific, CD1d-restricted immune response by the host.

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Innate resistance to experimental African trypanosomiasis: differences in cytokine (TNF-alpha, IL-6, IL-10 and IL-12) production by bone marrow-derived macrophages from resistant and susceptible mice.

Resistance to African trypanosomiasis is under multigenic control. BALB/c mice are highly susceptible while C57Bl/6 mice are relatively resistant. Macrophages eliminate opsonized trypanosomes from the bloodstream and are involved in immunosuppression. We therefore investigated the production of a number of cytokines (IL-10, IL-6, TNF-alpha and IL-12) by bone marrow-derived macrophages (BMDM) from C57Bl/6 and BALB/c mice following challenge with either Trypanosoma congolense or Trypanosoma brucei. BMDM from C57Bl/6 mice, upon challenge with whole cell extracts (WCE) of T. congolense or T. brucei, produced significantly more TNF-alpha and IL-12 than those from BALB/c mice. The production of these cytokines was significantly enhanced by pretreatment of the cells with IFN-gamma. BMDM from BALB/c mice, however, produced significantly more IL-6 and IL-10 than those from C57Bl/6 mice. In contrast to LPS stimulation, simultaneous treatment of cells with WCE and IFN-gamma enhanced IL-10 synthesis by BMDM from BALB/c mice. These results indicate that cytokine genes are differentially regulated in macrophages from trypanosome-susceptible and -resistant mice and are consistent with our previous findings wherein retrovirus-immortalized macrophage cell lines from BALB/c and C57Bl/6 mice produce differential amounts of cytokines after phagocytosis of trypanosomes.

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Susceptibility and resistance to Trypanosoma congolense infections.

We have put emphasis on recent findings in experimental Trypanosoma congolense infections in highly susceptible BALB/c and relatively resistant C57Bl/6 mice. Based on various analyses, it has been shown that a major difference in resistance to T. congolense infections is expressed early in infection at the macrophage level. A novel plastic-adherent Thy1.2(+) suppressor lymphocyte, which in absolute synergy with a Thy 1.2(-) cell exerts its suppression via interleukin-10 and interferon-gamma opens up an exciting new field of research.

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Innate resistance to Trypanosoma congolense infections: differential production of nitric oxide by macrophages from susceptible BALB/c and resistant C57Bl/6 mice.

BALB/c and C57B1/6 mice differ in resistance to Trypanosoma congolense infections. Evidence suggests that macrophages play a central role in the resistance to trypanosomiasis. Nitric oxide (NO) produced by macrophages in response to various stimuli or pathogens is one of the important arms of nonspecific immunity. We investigated the production of NO by the peritoneal macrophages and bone marrow-derived macrophages (BMDM) from trypanosome-resistant C57B1/6 and -susceptible BALB/c mice following stimulation with T. congolense whole cell extract (WCE) or following phagocytosis of T. congolense mediated by anti-variant surface glycoprotein (VSG) antibodies of IgM or IgG2a isotype. C57B1/6 peritoneal macrophages as well as BMDM produced significantly more NO than similar BALB/c macrophages in response to T. congolense lysate and IFN-gamma. In both BALB/c and C57B1/6 BMDM cultures, phagocytosis of T. congolense mediated by anti-VSG antibodies of IgG2a isotype in the presence of IFNgamma induced two- to ninefold more NO than phagocytosis mediated by IgM antibodies and C57B1/6 BMDM produced significantly higher amounts of NO than BALB/c BMDM under these conditions. NO produced by BMDM was found to exert trypanostatic effect on T. congolense in vitro, but was not found to influence the in vivo infectivity of these treated parasites under the conditions used in this study.

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Cytokines and antibody responses during Trypanosoma congolense infections in two inbred mouse strains that differ in resistance.

We studied IL-4, IL-10 and IFN-gamma secretion by splenocytes and the plasma levels of different isotypes of antibodies against various antigens of Trypanosoma congolense in highly susceptible BALB/c and relatively resistant C57BL/6 mice during the early course of infection with T. congolense. The patterns of appearance of cytokine spotforming cells in the spleens were essentially similar in the two mouse strains although higher numbers were detected in the spleens of BALB/c than C57BL/6 mice on some days post-infection. However, the amount of IL-4, IL-10 and IFN-gamma secreted into the culture fluids was dramatically different. From day 4 forward, splenocytes from BALB/c mice secreted very high levels of these cytokines. In contrast, splenocytes from infected C57BL/6 mice did not secrete detectable levels of IL-4 throughout the period tested. The secretion of IL-10 and IFN-gamma by C57BL/6 splenocytes only became appreciable on day 6 and was down-regulated by day 8, when the first wave of parasitaemia was being controlled. At days 6-8, splenocytes from infected C57BL/6 mice secreted two-fold higher amounts of IL-12 p40 than those from BALB/c mice. Infected BALB/c mice mounted an earlier IgM antibody response to variant surface glycoprotein (VSG), formalin-fixed T. congolense and whole T. congolense lysates than did infected C57BL/6 mice. However, they failed to make any detectable IgG3 and IgG2a antibody responses to these antigens whereas infected C57BL/6 mice made strong IgG3 and IgG2a responses. We speculate that enhanced resistance against T. congolense infections in mice may be mediated by IL-12 dependent synthesis of IgG2 antibodies to VSG and possibly also common trypanosomal antigens.

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Innate resistance to experimental Trypanosoma congolense infection: differences in IL-10 synthesis by macrophage cell lines from resistant and susceptible inbred mice.

BALB/c and C57Bl/6 mice differ in resistance to T. congolense infections. We investigated the production of various cytokines (IL-10, IL-6, TNF-alpha and TGF-beta) by macrophages from these mice. Macrophage cell lines (BALB.BM cells) of BALB/c mice but not (ANA-I cells)of C57BL/6 mice constitutively produced IL-10. Challenge of these cells with trypanosomes induced the production of 50-100 times more IL-10 in BALB.BM cells than in ANA-1 cells. Pre-incubation of the cell lines with IFN-gamma. prior to the trypanosome challenge, further upregulated this IL-10 production in BALB.BM but not in ANA-1 cells. Primary cultures of bone marrow-derived macrophages (BMDM) from BALB/c mice also produced more IL-10 following challenge with IFN-gamma and opsonized trypanosomes than did the C57Bl/6 BMDM. Similarly after challenge with trypanosomes, BALB.BM and BALB/c BMDM produced significantly more IL-6 than did the analogous cells from the C57Bl/6 mice following such challenges. Higher steady state levels of TNF-alpha mRNA accumulated in ANA-1 cells than in BALB.BM cells following challenge with IFN-gamma and opsonized trypanosomes. Findings of this study for the first time indicate a differential regulation of cytokines (IL-10, IL-6 and TNF-alpha) in macrophages of mice that significantly differ in their susceptibility to infections with T. congolense.

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Experimental African trypanosomiasis: differences in cytokine and nitric oxide production by macrophages from resistant and susceptible mice.

Immunosuppression in experimental infections with Trypanosoma congolense is mediated by the synergistic action of macrophages and a novel lymphocyte(s), which involves the activity of IFN-gamma as well as IL-10. BALB/c mice are highly susceptible while C57Bl/6 mice are relatively resistant to T. congolense infections. Plasma and/or supernatants of spleen cell cultures of infected susceptible BALB/c mice have more IL-10 but less IL-12 than those of infected relatively resistant C57Bl/6 mice. Cells of a BALB/c macrophage cell line, when pulsed with T. congolense, produce more IL-10 and IL-6, but have less TNF-alpha mRNA, than equally treated cells of a C57Bl/6 cell line. Peritoneal and/or bone marrow-derived macrophages obtained from BALB/c mice, pulsed with T. congolense in culture, produce less nitric oxide, TNF-alpha and IL-12, but more IL-6 and IL-10 than equally treated macrophages isolated from C57Bl/6 mice. We suggest that genetic resistance to African trypanosomiasis is expressed at the level of the macrophage.

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Experimental murine Trypanosoma congolense infections. II. Role of splenic adherent CD3+Thy1.2+ TCR-alpha beta- gamma delta- CD4+8- and CD3+Thy1.2+ TCR-alpha beta- gamma delta- CD4-8- cells in the production of IL-4, IL-10, and IFN-gamma and in trypanosome-elicited immunosuppression.

Trypanosome-induced suppression of T and B cell responses to parasite-related and -unrelated Ags is considered a major mechanism of evasion of the host's immune defenses by the parasite. Reduced T and B cell responses have been attributed to suppressor T cells, suppressor macrophages, or both. We have previously shown that endogenously produced IL-10 and IFN-gamma mediate the suppression of T cell responses in Trypanosoma congolense-infected mice. Here, we show for the first time that splenic CD3+ Thy1.2+ alphabeta- gammadelta- CD4+ 8- and CD3+ Thy1.2+ alphabeta- gammadetla- CD4- 8- cells that copurify with plastic-, nylon wool-, or Sephadex G-10-adherent cell populations, in synergy with adherent Thy1.2- cells, are the major producers of IL-4, IL-10, and IFN-gamma in T. congolense-infected mice. We further demonstrate the involvement of these cells in the suppression of T cell proliferative responses to mitogen and in B cell responses to a parasite-unrelated Ag.

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Experimental murine Trypanosoma congolense infections. I. Administration of anti-IFN-gamma antibodies alters trypanosome-susceptible mice to a resistant-like phenotype.

The mechanisms regulating resistance or susceptibility to African trypanosomes have been enigmatic. In this study, we assessed the production of several cytokines (IL-4, IFN-gamma, and TNF-alpha) in vivo and in vitro using genetically susceptible (BALB/c) or resistant (C57BL/6) mice infected with cloned Trypanosoma congolense and the role of these cytokines in pathogenesis of this infection. Plasma of infected BALB/c mice contained higher levels of IL-4 and IFN-gamma than the plasma of infected C57BL/6 mice. Conversely, plasma TNF-alpha levels were elevated significantly in the resistant mice relative to the susceptible ones. Splenic IFN-gamma mRNA appeared earlier and were maintained at higher levels in infected BALB/c than in C57BL/6 mice. Both spontaneous and Con A-induced secretions of IL-4 and IFN-gamma by splenocytes from infected BALB/c mice were significantly higher than those from their C57BL/6 counterparts. Con A-induced proliferation of splenocytes from infected BALB/c mice was progressively suppressed. Nitric oxide was not involved in this suppression, but the suppression was positively correlated with IFN-gamma secretion. Addition of neutralizing Abs to IFN-gamma to cultures of Con A-stimulated spleen cells from infected BALB/c mice effectively reversed this suppression. Furthermore, administration of anti-IFN-gamma Abs to BALB/c mice early during infection dramatically shifted the phenotype of these susceptible mice to a more resistant-like phenotype, as expressed by a low and undulating parasitemia and a >300% increase in survival period. These results strongly suggest that the enhanced induction and secretion of IFN-gamma during T. congolense infections contribute to the relative susceptibility of BALB/c mice to the disease.

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Immunoregulation in experimental murine Trypanosoma congolense infection: anti-IL-10 antibodies reverse trypanosome-mediated suppression of lymphocyte proliferation in vitro and moderately prolong the lifespan of genetically susceptible BALB/c mice.

We infected highly susceptible BALB/c and relatively resistant C57BL/6 mice with cloned Trypanosoma congolense and followed the effects of these infections on the circulating parasite numbers, mouse mortality and cytokine expression. C57BL/6 mice controlled their parasitaemia and survived for up to 163 +/- 12 days, while BALB/c mice could not control their parasitaemia and succumbed to the infection within 8.4 +/- 0.5 days. Susceptible BALB/c mice had dramatically higher plasma levels of IL-10 than the resistant C57BL/6 mice from day 7 forward. This was preceded by an earlier and higher level induction of splenic IL-10 messenger RNA (mRNA) expression in the infected BALB/c mice. There was a strong negative correlation between the splenocyte proliferative responses to Concanavalin-A (Con-A) and their production of IL-10 in these infected BALB/c mice. Co-treatment of the Con-A-stimulated spleen cell cultures with monoclonal anti-IL-10 antibodies, but not isotype-matched control antibodies, could completely reverse this suppression of the splenocyte proliferative response. Finally, in three experiments, anti-IL-10 antibody treatment in vivo reduced the peak circulating parasitaemia of infected BALB/c mice by 43% and increased their median survival periods by 38% relative to isotype-matched control antibody-treated mice.

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Effect of different cytokines on the growth of Trypanosoma congolense cultured under axenic conditions.

We previously reported that susceptible BALB/c mice had high amounts of interleukin-4 (IL-4) and interleukin-10 (IL-10) in their plasma after infection with Trypanosoma congolense and the levels of these cytokines decreased dramatically after berenil treatment. These observations instigated us to speculate that these cytokines might be directly affecting the growth of these parasites. Previously, it was reported that interferon gamma (IFN-gamma) had a growth stimulatory effect on T. brucei brucei in vitro. Although recombinant murine IL-4, IL-10 and IFN-gamma used in this study were biologically active, none of these cytokines had any growth stimulatory or inhibitory effect on T. congolense in vitro.

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Alternative pathway of complement in ruminants: role in infection.

Besides being initiated by antigen-antibody complexes, the classical pathway also can be activated by two innate mechanisms: (1) A family of proteins called collectins, which resemble C1q, bypass the activation of C1q. (2) Acute phase proteins, belonging to the family of pentraxins, activate the classical pathway by binding to C1q. The term 'alternative' complement pathway is a misnomer. This system is a primary primitive immune mechanism. It is phylogenetically older than the classical pathway. Contrary to the classical pathway, it does not require development of a specific immune response before getting into action. It acts within minutes after the microorganism has entered the body. The alternative pathway is continually activated at a low controlled rate but amplified by the surface of intruding microorganisms. It has the capacity to distinguish between self and non-self. Many nonpathogenic microorganisms are killed by the alternative pathway of complement. Pathogens have developed evasion mechanisms to escape the killing effect of this pathway. The kinetics of the activation of the alternative pathway of ruminants differs from that of mouse and man. The difference might be mediated by conglutinin.

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Genetics of resistance to Trypanosoma congolense in inbred mice: efficiency of apparent clearance of parasites correlates with long-term survival.

To study the genetic parameters of resistance to Trypanosoma congolense infection, highly susceptible BALB/c and relatively resistant C57BL/6 mice were crossed to produce reciprocal F1 and F2 offspring. Mice were infected with T. congolense and monitored for parasitemia within the first 2 wk and also for their survival periods. BALB/c mice showed unrestrained parasite growth to the time of death (median survival period, msp = 12.0 days), whereas in C57BL/6 mice, parasitemia reached an initial peak on day 6 and was followed by a rapid apparent clearance of the parasites in an average period of 3 days. Their msp was 163.0 days. The F1 mice cleared the parasites, following the first peak of parasitemia, in an average period of 4 days and had an msp of 69.5 days. Thus, the F1 offspring displayed an intermediate phenotype between susceptible and resistant parents in terms of parasite clearance and survival period. Resistance in F2 mice, as measured by survival times, was inherited as a polygenic trait. Among F2 mice, there was an inverse correlation between the time taken to clear the initial wave of parasitemia and the survival period, r = -0.58; P < 0.05. Thus, the pattern of control of the parasites following the first peak of parasitemia appears to be a good predictive factor for the survival period of mice infected with T. congolense.

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A non-hemolytic assay for the activation of the alternative pathway of bovine complement.

An assay for assessing activation of the bovine alternative pathway of complement was developed. The assay focused on events on the surface of yeast. Yeast cells were incubated with EGTA-Mg2+ plasma, washed and the yeast-bound complement proteins eluted by 100 mM methylamine. Detection of eluted proteins was achieved by Western blot and ELISA. An ELISA for the quantification of the Bb fragment of factor B was chosen to measure activation of the alternative pathway of complement. Using this system, it was possible to demonstrate the kinetics of deposition of Bb on yeast incubated with plasma samples from individual cattle and to show differences between cattle. We were able to categorize cattle into 'fast or slow amplifiers' of the alternative pathway of complement. We suggest that this classification has implications for host protection against invading microorganisms.

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Immune lysis of Trypanosoma congolense: generation of a soluble covalent complex of variant surface glycoprotein and bovine complement component C3b.

Organisms of Trypanosoma congolense variant antigenic type TC13 (VAT TC13) were incubated, at 37 degrees C for 60 min, with fresh bovine serum in the presence of antibody specific for the variant surface glycoprotein (VSG). Upon immune lysis, soluble VSG (54 kDa) and a larger complex (about 225 kDa), containing VSG, was detected in the supernatant fluid of the mixture. Neither soluble VSG nor the VSG complex were detected when fresh bovine serum was incubated with organisms of T. congolense in the absence of specific antibody. Within a narrow range of low antibody concentration, the release of soluble VSG and the formation of the VSG complex were correlated with the amount of specific antibody added to the mixture. The VSG complex could be precipitated with rabbit antibodies specific for VSG of VAT TC13 or antibodies specific for bovine complement C3. The VSG complex was detected by Western blot with rabbit anti-VSG of VAT TC13 as well as rabbit antibovine C3. The complex was found to consist of VSG covalently bound to bovine complement component C3b. Potential pathophysiological implications are discussed.

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Differences in the activity of the alternative pathway of complement in BALB/c and C57Bl/6 mice.

The deposition of C3b on the surface of zymosan was assessed in inbred strains of mice. Mg(2+)-EGTA plasma from C57Bl/6 and BALB/c mice was incubated with zymosan and deposited C3b was eluted by methylamine. Eluted C3b was detected and quantified by Western blot and an enzyme-linked immunosorbent assay. 3- to 4-fold more C3b was deposited on zymosan incubated with C57Bl/6 plasma than on zymosan incubated with BALB/c plasma (p < 0.01). Data on the kinetics of deposition of C3b suggest a faster and greater activity of the alternative pathway of complement (ACP) in C57Bl/6 than in BALB/c. Higher C3b deposition in C57Bl/6 plasma occurs in the presence of higher plasma factor H concentration (1.3-fold of BALB/c concentration; p < 0.01) and is accompanied by higher factor H deposition on zymosan (3- to 10-fold of BALB/c concentration; p < 0.01). Demonstrable differences in the activity of the proteins of the ACP may provide a biological basis for the genetic variation in innate resistance to infectious organisms observed in inbred strains of mice.

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Plasma levels of proteins of the alternative complement pathway in inbred mice that differ in resistance to Trypanosoma congolense infections.

Inbred BALB/c, A/J, and C57B1/6J mice were infected with Trypanosoma congolense (Trans Mara strain), clone TC13, and monitored for parasitemia, survival times, and plasma levels of complement components C3, C5, factor B, and factor H. Parasitemia was highest in BALB/c, intermediate in A/J, and lowest in C57Bl/6J mice. The mean survival times were 11.5 +/- 0.9, 23.8 +/- 2.3, and 119 +/- 26 days for BALB/c, A/J, and C57Bl/6J mice, respectively. Preinfection levels of factor H were significantly correlated with survival times (r = 0.7722, P less than 0.001). Marked differences were observed between the plasma levels of C3, factor B, and factor H in the 3 mouse strains following infection. Complement C5 levels showed the fewest changes. In the initial postinfection period, BALB/c mice had highest increases in the levels of the 4 complement proteins but also had the greatest declines toward the end of the infection. Factor H levels showed a biphasic increase in BALB/c and C57Bl/6J, but not in A/J mice, with peaks at days 3 and 9. Complement C3 levels declined in all mice toward the terminal stage of the disease. In the late stages of infection, factor B levels markedly decreased in BALB/c but significantly increased in C57Bl/6J mice. Factor B levels measured at the terminal stages in BALB/c, A/J, and C57Bl/6J were correlated positively with their respective survival times (r = 0.714, P less than 0.01). The results suggest that genetic differences in the alternative complement pathway might affect the resistance to T. congolense infections.

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