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D Kierek-Jaszczuk

Publications and source records attributed to D Kierek-Jaszczuk.

15 recordsLinked to original sources

Heterogeneity of polyclonal IgE characterized by differential charge, affinity to protein A, and antigenicity.

Functional and physical heterogeneity of polyclonal IgE has been reported. Extremely low serum concentrations of IgE have limited the study of these important differences. We have purified polyclonal dog IgE and developed polyclonal and monoclonal (mAb C2) anti-dog IgE antibodies. In this study chromatofocusing of dog IgE revealed two biologically active IgE fractions: IgE1 eluted at pH 5.0, and IgE2 eluted at pH 4.7. The two IgE subforms (IgEs) exhibited typical IgE characteristics: positive in the 48-hour passive cutaneous anaphylaxis response, heat-labile, identical molecular weight, and reactive to polyclonal anti-dog IgE. However, the two IgEs were found to be significantly heterogeneous. IgE1 bound to protein A and did not react with mAb C2 in ELISA and isoelectric focusing-immunoblotting, whereas IgE2 did not bind to protein A and reacted with mAb C2. Further, in sodium dodecylsulfate-polyacrylamide gel electrophoresis and immunoblotting, IgE2, but not IgE1, reacted with seven well-defined mAb anti-human IgE antibodies and an mAb anti-mouse IgE antibody, even though both IgE1 and IgE2 reacted with polyclonal anti-human and anti-mouse IgE. Neuraminidase or endoglycosidase treatment did not abolish the differential antigenicity and charge of IgE1 and IgE2, although the antigenicity of IgE2 was significantly reduced after incubation with endoglycosidase. These data suggest that carbohydrate moieties are not involved in the observed differences in antigenicity and charge and that the two IgE molecules represent distinct isotypes. In studies with seven purified IgE fractions obtained from different ragweed-allergic dogs, the distribution of ragweed IgE2 varied 200-fold, whereas ragweed total IgE levels varied only fourfold. This raises the possibility of a relationship between different IgEs and the allergic response.

Animals↗

Immunochemical identification of fungi using polyclonal antibodies raised in rabbits to exoantigens from Aspergillus ochraceus.

Aspergillus ochraceus Wilhelm is a producer of highly toxic mycotoxin, ochratoxin A, and is known to contribute to the damage of grain on storage. Rabbit antibodies were produced against the exoantigens of A. ochraceus, and ELISA and immunoblotting procedures were used to characterize their reactivity towards fungal exoantigens of four Aspergillus, seven Penicillium, three Fusarium, one Mucor and one Alternaria species. The antibodies were specific for A. ochraceus and essentially cross-reacted neither with other fungi nor with the water-soluble grain components. These antibodies, therefore, have the potential of being utilized for the discriminative monitoring of A. ochraceus in foodstuffs and feeds.

Animals↗

Antigen-specific suppressor factors of noncytotoxic CD8+ suppressor T cells downregulate antibody responses also to unrelated antigens when the latter are presented as covalently linked adducts with the specific antigen.

We had previously shown (i) that conjugates of a given antigen A (AgA) and monomethoxypolyethylene glycol (mPEG) induced AgA-specific tolerance in mice which was mediated by polyclonal CD8+ suppressor T (Ts) cells, as well as by soluble factor(s) of these cells (TsF), and (ii) that clones of nonhybridized CD8+ Ts cells could be derived from the above single cells, and monoclonal AgA-specific TsF could be released from these cloned cells. In the present study, we demonstrate that mice pretolerized by injection of AgA(mPEG)n are also unresponsive to an unrelated antigen B (AgB), or to its haptenated derivative AgB-Hpn, when AgB or AgB-Hpn is injected in the form of a covalent adduct with AgA, i.e., AgA-AgB or AgA-AgB-Hpn, but not when it is injected as a mixture with AgA; in this study human (myeloma) IgG (HIgG) served as AgA, and ovalbumin (OVA) or OVA-DNP3 served as AgB or AgB-Hpn. Moreover, this phenomenon was reproduced in vitro; i.e., Ts cells of mice tolerized with HIgG(mPEG)30, or the soluble monoclonal TsF of cloned Ts cells, exerted their associative suppressive effector function--in the obligatory presence of CD8+ T cells of syngeneic naive mice (Tn cells)--on antibody (Ab) formation to an Hp (DNP), when the Hp was present as a covalent adduct linked either directly to HIgG (e.g., HIgG-DNP7) or indirectly via OVA (as in HIgG-OVA-DNP3); however, no suppression of the anti-DNP Ab response was observed when OVA-DNP3 was present as a mixture with HIgG. Furthermore, it was established that the accessory cells involved in processing the specific Ag in the presence of the Ts cells were also downregulated, as reflected by their reduced capacity for presentation of the Ag to HIgG-specific helper T (Th) cells in proliferation assays. All these results demonstrate that (i) the phenomenon of linked immunological suppression may involve the downregulation of Th cells which recognize, concomitantly with the Ts cell, the appropriate epitopes of AgA and AgB on the same Ac cell, (ii) the downregulation of these Th cells may be a consequence of the downregulation of Ac cells by Ts cells interacting with the appropriate epitope(s) present on the Ac cells, and (iii) most remarkably the CD8+ Ts cells could be substituted by Tn cells "armed" with the specific monoclonal TsF.

Animals↗

Purification and identification of polyclonal IgE antibodies from ragweed-sensitized dog sera.

We have purified and characterized polyclonal dog IgE. Serum IgE was precipitated by (NH4)2SO4 and then purified by two different procedures. Ion exchange on DEAE-Sephacel, followed by HPLC using Tonen hydroxylapatite and then Protein G-Sepharose, produced a highly purified IgE fraction (No. 1) free of IgG, IgA and IgM as measured by ELISA, but recovery of IgE as measured by passive cutaneous anaphylaxis was low. Gel filtration on Sephacryl S-300, Con A-Sepharose and Protein G-Sepharose recovered 18% of initial IgE, 0.02% IgG, 0.4% IgM and 0.3% IgA. This IgE fraction (No. 2) was used to induce antibody production in rabbits. Western blot analysis was then performed for dog IgE fractions No. 1 and 2. Using the rabbit anti-dog IgE, a prominent IgE band with an apparent molecular mass of 226 kD was identified in fractions No. 1 and 2 subjected to nonreducing SDS-PAGE. This band also reacted with anti-human IgE, but not with anti-dog IgG or anti-dog IgA. Under reducing conditions the approximate molecular mass for the IgE & chain, estimated by Western blot using rabbit anti-dog IgE, was 73 kD, providing a molecular mass of 196 kD for dog IgE.

Allergens↗

Specific immunosuppression of human anti-murine antibody responses in hu-PBL-SCID mice.

Severe combined immunodeficient (SCID) mice were reconstituted with normal human peripheral blood leukocytes (PBLs) and were shown to produce a human anti-mouse immunoglobulin antibody response on immunization with heat-treated murine monoclonal IgG1 antibody to ovalbumin, referred to as ha-Mab-2. The human anti-mouse antibody response was proportional tot the number of B cells and mononuclear cells transferred from a given batch of PBL. However, pretreatment of hu-PBL-SCID mice with a tolerogenic covalent conjugate of monomethoxypolyethylene glycol (mPEG) and Mab-2 suppressed this response on subsequent injections of ha-Mab-2, and this suppression was shown to be antigen-specific, i.e., it did not suppress the antibody response to ovalbumin and did not affect the level of production of human immunoglobulin of hu-PBL-SCID mice. The suppression was due to the generation of human suppressor CD8+ T (Ts) cells, which down regulated CD4+ helper T cells in an antigen and HLA class I specific manner, i.e., these findings were in accord with the previously shown immunosuppressive effect of tolerogenic mPEG conjugates in normal mice.

Animals↗

Suppression of antibody responses in rats to murine anti-CD4 monoclonal antibodies by conjugates with monomethoxypolyethylene glycol.

The effectiveness of therapeutically relevant xenogeneic monoclonal antibodies (MoAb) may be counteracted by their inherent immunogenicity. Since conjugates of diverse proteins with mono-methoxypolyethylene glycol (mPEG) were shown to induce Ag-specific tolerance in mice and rats, we used outbred rats in this study as an experimental model for establishing the tolerogenicity of mPEG conjugates of murine MoAb. The results demonstrate that: (i) murine anti-rat CD4 MoAb (W3/25) were more immunogenic than murine anti-human CD4 MoAb (MAX.16H5) in rats; (ii) W3/25 preferentially induced an anti-idiotypic (anti-id) antibody response; and (iii) antibodies to both common and idiotypic determinants could be suppressed in rats by treatment with W3/25(mPEG)28.

Animals↗

Downregulation of helper T cells by an antigen-specific monoclonal Ts factor.

The findings of previous studies in this laboratory demonstrating that conjugates of human monoclonal (myeloma) IgG (HIgG) and monomethoxypolyethylene glycol (mPEG) were able to induce in mice antigen-specific tolerance and CD8+ suppressor T (Ts) cells were confirmed in the present study. An extract (TsF) of a nonhybridized clone of Ts cells (viz., clone 23.32), which had been derived from spleen cells of mice tolerized with HIgG(mPEG)26, was shown to possess antigen-specific suppressive activity. This monoclonal TsF was able to specifically suppress in vitro antibody formation only if it was present from the beginning of the culture. From the results of the cellular dissection of the system used it was concluded that (i) the TsF had no effect on fully differentiated primed B cells or plasma cells, and (ii) the TsF inactivated carrier-primed Th cells when the culture contained concomitantly naive CD8+ T cells, accessory cells, and antigen. These data support the view that the monoclonal TsF exerted its downregulating effect on Th cells only if it could first interact with a CD8+ T cell, in the presence of accessory cells and antigen.

Animals↗

Epitopic mapping of structural and nonstructural Aleutian disease virus proteins.

Common antigenic properties for p85 and p75 but a different antigenic character for p71 Aleutian disease virus (ADV) proteins were demonstrated by Western blot analysis with monoclonal antibodies. It was shown that four hybridomas (ADV-Hy 47, 66, 77 and 84) with specific reactivity for structural proteins p85 and p75 also recognized p25 but not the p71, nonstructural, protein. In turn, the monoclonal antibody ADV-Hy 2 recognized the p71 protein only. For further studies of their antigenic properties, the ADV proteins were subjected to enzymatic or chemical cleavage. The derived peptide fragments were analyzed by epitopic mapping. Depending on the cleavage reagent and monoclonal antibody applied, specific peptide maps were revealed. The maps of p85 and p75 were very similar, indicating that both proteins shared an extensive antigenic relationship. After cleavage with alpha-chymotrypsin and N-chlorosuccinimide and by using the ADV-Hy 84 monoclonal antibody, unique peptide fragments were identified with p85 which had no counterparts in p75 fragments.

Aleutian Mink Disease Virus↗

Serum and tissue alkaline phosphatases in pigs.

The alkaline phosphatases from serum, liver, bone and intestine of pigs were separated by starch and polyacrylamide gel electrophoresis. Treatments with neuraminidase, urea, heat, L-homoarginine and L-phenylalanine were performed. Variants of serum alkaline phosphatases were derived from different tissues and hence must be under the control of at least two different loci. Within the intestinal phosphatases, polymorphic electrophoretic patterns were observed among 195 animals.

Alkaline Phosphatase↗

Serum alkaline phosphatase polymorphism in pigs.

Genetic variants of serum alkaline phosphatase were studied by the method of starch gel electrophoresis in the Złotnicka Pstra breed of pigs. Two regions of alkaline phosphatase migration were observed. A single fraction in region I and four different phenotypes: AB, B, BC and BD in region II, were found. For AB, B and BC phenotypes the genetic control by three alleles AkpA, AkpB and AkpC is suggested. The observed segregation ratios in some cases deviated significantly from the expected ones.

Alkaline Phosphatase↗

Differentiated influence of heating and certain chemical agents on serum alkaline phosphatase activity in pigs.

The effect of heating, urea and L-homoarginine on the total activity of serum alkaline phosphatase was investigated in pigs of Akp B, Akp BC and Akp A phenotypes. Each of these factors decreased the activity of the enzyme, but under the experimental conditions applied the effect exerted by L-homoarginine was weakest. Statistically significant differences were demonstrated in the degree of action of each factor in different phenotypes of the animals. It was observed that urea as well as heating decreased the total activity of serum alkaline phosphatase in B-phenotype animals more than in animals of BC and AB phenotypes.

Alkaline Phosphatase↗

24 hours day cycle variations of serum alkaline phosphatase activity in piglets.

The activity of serum alkaline phosphatase in pigs changes in relation to the age of the animals [2, 4, 5, 7]. In chicken [3] it was observed that the activity of alkaline phosphatase showed cyclic fluctuations during the process of egg formation, but in the 24 hours day cyclic the activity of the enzyme was not increasing as far as the process of shell calcification was not taking place. In the presently reported work circadian fluctuations of alkaline phosphatase activity were investigated in the serum of piglets.

Alkaline Phosphatase↗

Electrophoretic polymorphism and activity of serum alkaline phosphatase in the ontogenetic development of piglets.

Qualitative and quantitative investigations of serum alkaline phosphatase were carried out in maturing piglets. It was found that with progressing maturation of the animals the activity of the enzyme decreased and its phenotype changed. It has been demonstrated that presence of the fast fraction of alkaline phosphatase causes a significantly greater activity of the enzyme. It has been demonstrated also that in each age group differences in the activity of the enzyme observed between litters were significantly higher than those observed within litters.

Aging↗