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H Długońska

Publications and source records attributed to H Długońska.

At least 19 recordsLinked to original sources

Attenuation of mouse-virulent Toxoplasma gondii parasites is associated with a decrease in interleukin-12-inducing tachyzoite activity and reduced expression of actin, catalase and excretory proteins.

Determinants of Toxoplasma gondii virulence are still unknown, although genetic markers associated with T. gondii pathogenicity or host susceptibility to infection have been identified. To define indicator proteins of mouse virulence, type I strain parasites were attenuated by continuous passage in fibroblast culture and compared with the parental strain passaged in mice. The loss of acute virulence, evident by a 1000-fold higher pathogen dose causing 100% lethality in mice correlated with a less efficient infection of inflammatory cells at the site of inoculation, while parasite proliferation and invasiveness in vitro proved unimpaired. Infection with the attenuated parasites elicited earlier local interleukin-12 and strong interferon-gamma responses in vivo, although the activity that triggers interleukin-12 secretion in macrophages is reduced in the attenuated compared to the virulent strain variant. The interleukin-12-inducing T. gondii stimulus was identified as a protein(s) present in tachyzoite excretory products. Comparative proteome analysis combined with immunodetection and quantitation of a variety of T. gondii antigens indicated that the steady-state levels of actin, catalase, microneme protein 5, as well as dense granule proteins 1, 2, 3, 4, 5, 7, 8 and nucleoside triphosphate hydrolase 1 are decreased in the attenuated phenotype, whereas the surface antigen 1 and rhoptry protein 1 are produced at a similar level by virulent and attenuated parasites. In conclusion, these findings reveal a correlation between the efficient establishment of T. gondii infection in vivo and parasite synthesis of actin, catalase and several excretory proteins, and thus postulate a role for these molecules in acute virulence.

Actins↗

Tachyzoite-specific isoform of Toxoplasma gondii lactate dehydrogenase is the target antigen of a murine CD4(+) T-cell clone.

In two-dimensionally separated Toxoplasma gondii lysate, mouse Th1 clone 3Tx15 detects two proteins of apparent molecular weight 40000 and pI of 5.8 and 5.9. Microsequencing of peptide fragments from tryptic digestion of one of these proteins yielded partial sequences of T. gondii lactate dehydrogenase (LDH)1. As shown by Western blot, toxoplasmic LDH co-migrates in two-dimensional gel electrophoresis with both T-cell antigenic proteins. With synthetic peptides spanning the complete primary structure of T. gondii LDH1, the T-cell epitope was mapped to a nine amino acid partial sequence which exhibits a motif for binding to I-E(k), the class II restriction element of antigen recognition by clone 3Tx15. From the two known isoforms of T. gondii LDH, clone 3Tx15 specifically recognises tachyzoite LDH1, but not bradyzoite LDH2, as shown with the corresponding epitope peptides and recombinant proteins. Antigen-presenting cells infected with live bradyzoites stimulate 3Tx15 T cells, while killed bradyzoites provide no antigenic stimulus. This finding implies that a transformation into the tachyzoite stage occurs in cells challenged with bradyzoites. Although LDH1 represents one major constituent of the tachyzoite proteome, the protein does not seem to be immunogenic in T. gondii infection of mice. This is evident from the lack of serum anti-LDH immunoreactivity and the failure of adoptively transferred 3Tx15 T cells to protect against lethal challenge. In conclusion, a T-cell-stimulatory Toxoplasma antigen is identified by means of a novel, high-resolution T-cell blot technique, the clones antigenic fine specificity allowing detection of parasite-stage conversion.

Amino Acid Sequence↗

Serodiagnostics of Toxoplasma gondii invasions.

Diagnosis of T. gondii invasions is based mainly on serological tests, because of their relative simplicity and availability. In the present work we examined efficiency of immunoblot and two inhouse ELISA assays in anti-Toxoplasma antibody detection, comparing our results with those obtained using commercial ELISA kit of Organon Teknika. We found that inhouse ELISAs and immunoblot can be helpful in diagnosing toxoplasmosis.

Adult↗

[Immunity in Toxoplasma gondii infections].

The article presents selected data concerning pathogenesis, clinical manifestations, natural and specific resistance and vaccines against T. gondii infections. Toxoplasma gondii protozoan has been recognized as one of the most successful parasites infecting any nucleated cell of human individuals and most warm-blooded animals. The infection causes life-threatening disease in individuals with defective immunity such as fetuses, AIDS patients and transplant recipients. In immunocompetent humans toxoplasmosis is usually asymptomatic. Following an acute phase of infection characterized by systemic spread of rapidly dividing tachyzoites, bradyzoites encyst in various host tissues (brain, muscles) and may persist there lifelong. Toxoplasmosis in controlled by vigorous cell-mediated immune response capable of killing infected cells and parasites. As shown in the mouse experimental model natural killer cells (NK) are critical for the resistance at the early stage of primary infections, whereas adaptive immunity depends on T lymphocytes. Both CD4+ Th1 and CD8+ Tc1 lymphocytes are believed to mediate protection by producing of IFN-gamma, a pitoval cytokine that induces anti-Toxoplasma effector mechanisms in macrophages.

Animals↗

[Antigens of Toxoplasma gondii].

The paper presents antigenic structure of T. gondii tachyzoites and bradyzoites in respect of potential use of some chosen antigens for diagnostic and immunoprophylactic purposes.

Animals↗

[Antigens of Toxoplasma gondii].

The paper presents antigenic structure of T. gondii tachyzoites and bradyzoites in respect of potential use of some chosen antigens for diagnostic and immunoprophylactic purposes.

Animals↗

Cellular immune response to Listeria in genetically resistant and susceptible mouse strains.

Relatively Listeria-resistant C57B1/6 mice and more susceptible to the infection DBA/2 mice were immunized with Listeria-antigen (LA). Immunized DBA/2 mice developed weaker delayed hypersensitivity to LA and still eliminated listeriae less effectively than identically immunized C57B1/6 mice. An accessory function of LA-pulsed macrophages of normal C57B1/6 mice was only slightly enhanced as compared with LA-pulsed macrophages of DBA/2 mice. It is suggested that some suppressor lymphocytes, IgM+ and/or FcR+, could be responsible for the enhanced susceptibility of DBA/2 mice to listeriosis.

Animals↗

Phagocytosis and killing of Listeria by guinea pig macrophages and neutrophils.

The rate of the phagocytosis and intracellular killing of Listeria monocytogenes by guinea pig macrophages and neutrophils in vitro was determined. The anti-bacterial activity of the phagocytes against virulent Listeria monocytogenes was compared with their activity against avirulent strain of Listeria and Proteus mirabilis. It is suggested that the contribution of the macrophages and the neutrophils to anti-bacterial protection can depend on physiological state of bacteria.

Animals↗

Innate anti-listerial resistance of mice differing in their susceptibility to listeriosis.

The work was designated to compare the influence of an active immunization on the expression of anti-listerial resistance of relatively resistant to listeriosis C57B1/6 mice as compared with more susceptible to the infection DBA/2 mice. Although, specific immunization of DBA/2 mice enhanced their anti-listerial resistance but immunized DBA/2 mice still eliminated Listeria rods less effectively than immunized C57B1/6 mice. It means that innate difference in anti-listerial resistance between C57B1/6 and DBA/2 mice was maintained after immunizing them with the same number of alive bacteria. Greater anti-listerial resistance of C57B1/6 versus DBA/2 mice is associated with an increased accumulation of inflammatory Ms and PMNs in their peritonea and an increased capacity of their PMNs to restrict Listeria growth.

Animals↗

Stimulation of the mouse monocytes by Listeria monocytogenes.

The bacteria of Wellshimer's strain L. monocytogenes and their extract (LMA) showed in vitro the mitogenic activity which was demonstrated by increased proliferation of normal bone marrow cells and blood monocytes of the mouse strains resistant (C57Bl/6) and susceptible (DBA/2) to listeriosis. In the same experimental conditions the proliferation of spleen macrophages and resident peritoneal macrophages was not influenced. Besides, C57Bl/6 bone marrow cells, activated by live or killed L. monocytogenes, produced some growth factor for secondary bone marrow cell cultures.

Animals↗

Cell invasiveness of Proteus mirabilis and Proteus vulgaris strains.

Cell penetration ability of haemolytic and non haemolytic Proteus rods was compared. Among four Proteus strains all were able to invade the tested cells (Vero 135, HeLa, L-929 and human blood lymphocytes) but the expression of this feature by haemolytic strains was markedly higher. The survival and multiplication of intracellular bacteria, especially in the case of fresh human blood lymphocytes may be of importance for the development of infection in higher organisms.

Animals↗

The monoclonal antibodies against mouse macrophages.

Five rat-mouse hybridomas producing monoclonal antibodies specific for mouse macrophages were obtained. The paper describes the hybridoma preparation and serological characterization of the monoclonal antibodies.

Animals↗

Antimonocyte serum. The effect on blast transformation, RFC and PFC formation.

The paper is a continuation of the previous experiments. The results show that the rabbit and sheep antisera specific for monocytes after absorption with leukocytes deprived of phagocytosing cells do not affect E-rosetting cells and do not impair the blast transformation of normal leukocytes stimulated by PHA in vitro. However, they reduce the number of EAC rosettes formed by leukocytes and they decrease the ability of leukocytes to produce antibodies for SRBC.

Animals↗

Properties of antisera against lymphocytes of nude mice.

The activity of rabbit antisera against nu/nu BALB/c lymphocytes was estimated in vivo and in vitro. It was found that anti-lymphocyte serum (ALS) against nu/nu lymph node cells suppressed the alloantigen reaction and the spontaneous rosette-forming cell (sRFC) or plaque-forming cell (PFC) formation for T-dependent (sheep red blood cells) and T-independent (lipopolysaccharide) antigens. ALS against nu/nu spleen cells affected only the sRFC and PFC for T-independent antigen. The former serum exhibited a high cytotoxicity for the suspensions enriched or depleted in B cells, while the latter was more cytotoxic for the suspension enriched in B cells. This may indicate that ALS anti-nu/nu spleen cells is specific for B lymphocytes, and ALS anti nu/nu lymph node cells is directed not only to B cells but also to a subpopulation of T lymphocytes. It may suggest the existence of a subpopulation of T lymphocytes in nu/nu lymph node cells.

Animals↗