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F Dieli

Publications and source records attributed to F Dieli.

At least 73 records · Page 4Linked to original sources

Induction of contact sensitivity by cell-associated immunocomplexes requires activation of the early complement components.

Lymph node cells collected from CBA/J mice 4 days after painting the skin with picryl chloride behave like antigen presenting cells and induce contact sensitivity when injected into naive recipient mice. The immunizing capacity of these '4-day' cells is due to T cells which carry on their membrane hapten-IgM immunocomplexes. Incubation of the cells with complement from mouse strains that express high C4 serum levels (C4H), abolishes their immunizing capacity. This effect is related to the activation of the early components of the classical complement pathway, as supported by experiments using C3 and C4-depleted or C5 and C6-genetically deficient mouse sera. The detection of different amounts of C3b and C4b on the surface of 4-day T cells after incubation with C4L and C4H sera supports the possibility that membrane bound activated complement components could modify the immunizing capacity of these cells. Results herein reported suggest that membrane-bound C3b and C4b are not per se inhibitory but interfere with the residual complement activating capacity of 4-day T cells. The role of complement activation by 4-day T cells is pivotal as complement depletion of recipient mice by cobra venom factor (CVF) inhibits the immunizing capacity of untreated 4-day T cells, while 4-day T cells treated with complement in vitro and injected together with C4a anaphylatoxin are able to immunize recipient mice.

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Immune deviation in the mouse: transfer of selective depression of the contact sensitivity and interleukin-2 response with retention of interferon-gamma production requires CD8+ T cells.

Mice were injected intravenously (i.v.) with trinitrophenyl (TNP)-modified spleen cells. They were subsequently immunized by epicutaneous application of 2,4,6-trinitrochlorobenzene (TNCB, picryl chloride) or 'oxazolone'. The intravenous injection of antigen caused immune deviation (split tolerance) with selective loss of contact sensitivity (CS) and antigen-induced interleukin-2 (IL-2) production, and concomitant retention of antigen-induced interferon-gamma (IFN-gamma) production. This phenomenon was antigen specific as the response to oxazolone was unaffected. Moreover, lymph-node cells stimulated with antigen three times in vitro (from 'deviated' mice which had been injected with antigen i.v., and then sensitized with TNCB) showed limited proliferation. The per cent of IL-2R+ cells and the absolute number of V beta 8+ cells dropped. In contrast, lymph-node cells from 'undeviated' mice showed increased proliferation and IL-2 production on repeated stimulation with antigen in vitro and the per cent of IL-2R+ cells and the absolute number of V beta 8+ cells recovered increased. Spleen cells, taken from mice 3-7 days after the injection of antigen i.v., transferred immune deviation to normal recipients i.e. following epicutaneous immunization with TNCB, the recipients showed the same selective unresponsiveness as the donors. Thy-1+ CD4- CD8+ cells were required. These findings indicate that immune deviation can be demonstrated at the level of lymphokine production.

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Impairment of contrasuppressor activity in mice infected with the paramyxovirus of Newcastle disease.

Spleen cells from mice infected with the virus of Newcastle disease (NVD) fail to mediate the passive transfer of contact sensitivity to simple chemical haptens such as picryl chloride (Pcl) and oxazolone (Ox). The inhibitory effect of NDV can be bypassed by treating recipient mice with low doses of cyclophosphamide (Cy), suggesting that the T-effector cell which mediates the passive transfer of contact sensitivity is not affected by NDV infection. Vicia Villosa-adherent cells from immune mice display contrasuppressor activity and restore the ability of cells from NDV-infected mice to transfer contact sensitivity to naive recipients. In contrast, Vicia Villosa-adherent cells from NDV-infected mice fail to exert any contrasuppressor activity. Furthermore, contrasuppressor activity can also be detected in the culture supernatants of Vicia Villosa-adherent cells from uninfected, sensitized mice, but not in culture supernatants of Vicia Villosa-adherent cells from NDV-infected mice. The present results suggest that a Vicia Villosa-adherent contrasuppressor cell population is impaired by NDV infection.

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Major histocompatibility complex regulation of the class of the immune response: the H-2d haplotype determines poor interferon-gamma response to several antigens.

The lymph node cells of CBA (H-2k), but not BALB/c (H-2d) mice, release interferon (IFN)-gamma into the supernatant when immunized with picryl chloride epicutaneously and then exposed to antigen (haptenized cells) in vitro 4 days later. The failure in IFN-gamma production maps to the major histocompatibility complex (MHC; H-2d) in the congenic BALB/c, BALB/k and BALB/b mice. The evidence that this is an MHC regulation of the class of response to a range of antigens and not a classical Ir gene effect is (a) the difference is seen with several antigens including picryl chloride, "oxazolone" and purified protein derivative of tuberculin and (b) BALB/c mice, which fail to produce IFN-gamma, show excellent contact sensitivity to picryl chloride. It was also found that the crosses between responder and nonresponder strains (CBA x BALB/c)F1 respond to antigen on responder cell but not on nonresponder cells. This influence of MHC on the class of the immune response is a possible basis for some of the associations of MHC with disease.

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Role of the fourth complement component (C4) in the regulation of contact sensitivity. III. In vivo effect of purified C4.

Lymph node cells obtained from CBA/J mice 4 days after painting with contact sensitizing agents such as picryl chloride or oxazolone ("4-day" cells), induce contact sensitivity into naive recipient mice by membrane-associated immunocomplexes. This immunizing capacity is abolished after incubation of the cells in serum from mice with high C4 levels (C4H), but not in serum from mice with low C4 levels (C4L), and the inhibitory activity of C4H serum is due to the activation of the early components of the classical complement pathway. The presence of 4-day cells depends on C4 levels: in fact, C4H mice lack these cells because they activate their own complement in vivo, whereas C4L mice fail to activate complement in vivo and possess 4-day cells. CBA/J (C4L) mice injected with purified C4 preparations from the C4H mice BALB/c, lose 4-day cells and show a short-term contact-sensitivity reaction, exactly as BALB/c mice, thus indicating that C4 levels play a role in the control of contact-sensitivity reaction to simple chemical haptens.

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Role of the fourth complement component (C4) in the regulation of contact sensitivity. II. Qualitative differences between C4 molecules from high- and low-C4 mouse strains.

Lymph node cells collected from CBA/J mice 4 days after painting with picryl chloride induce contact sensitivity in naive recipient mice by virtue of hapten IgM immuno complexes. The immunizing capacity of these cells ("4-day" cells) is abolished after incubation of the cells with a C4-deficient guinea pig serum reconstituted with plasma or purified C4 from mice with high C4 levels (C4h), but not with plasma or purified C4 from mice with low C4 levels (C41). The inhibition of the immunizing capacity of 4-day cells is due to the activation of the early components of the classical complement pathway which is likely to result in the solubilization of membrane-bound immunocomplexes. However, the same amounts of CBA/J and BALB/c C4 have a different effect in inhibiting the induction of contact sensitivity by 4-day cells. In fact, by dose-response experiments, we have found that the amount of C41 able to inhibit the induction of contact sensitivity is about threefold higher than that of C4h. Analysis of the covalent binding ability of C4h and C41 reveals that C4h is able to bind to the surface of 4-day cells more efficiently than C41 and this probably accounts for the difference of the two C4 molecules in inhibiting the immunizing capacity of 4-day cells. Results are discussed in terms of different reactivities of C4h and C41 with the surface of 4-day cells.

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The molecular basis of the low hemolytic activity of C4 molecules from low-C4 mice with IgM-coated erythrocytes.

This study investigated the origin of the different hemolytic activity of two allotypes of murine C4, C4H (C4-high) and C4L (C4-low) in the presence of IgM-coated erythrocytes. C4H displayed a threefold higher hemolytic titer (expressed in hemolytic units/microgram protein) than C4L. No difference was found between c4H and C4L either in stability at 37 degrees C at different pH values and in the rate of C4H and C4L hydrolysis by activated Cl. The major functional difference was found in the covalent binding capacity to IgM-coated erythrocytes, with the amount of C4H bound being about threefold higher than that of C4L. A marked difference in the reactivity of the C4b fragment of C4H and C4L toward amino and hydroxyl groups was detected. Using glycine and glucose to competitively inhibit the binding of C4H and C4L, it was observed that C4L selects preferentially for the amino groups of glycine, whereas C4H reacted preferentially with the hydroxyl groups of glucose. Furthermore, the chemical modification of the red cells amino groups by ethylacetimidate, had no appreciable effect on the binding of C4H, but reduced that of C4L. Southern blot hybridization experiments using Hind III-digested liver DNA and a cDNA probe derived from the 5' end of the mRNA (clone pAT-A) indicated that the C4H allele was associated with a 5-kb Hind III fragment, whereas the C4L allele was associated with a 15-kb Hind III fragment. The possibility that a structural difference between C4H and C4L is responsible for their different reactivities is discussed.

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Role of macrophages in bypassing the inhibitory activity of Newcastle disease virus on the T-suppressor-cell circuit which regulates contact sensitivity to picryl chloride.

The interaction between the paramyxovirus of Newcastle disease virus (NDV) and the T-suppressor-cell circuit which regulates the expression phase of contact sensitivity reaction to picryl chloride was investigated. NDV infection impairs the T-acceptor-cell (Tacc) activity, as demonstrated by the failure of Tacc from mice infected with NDV both on Day 0 and on Day 3 to release the nonspecific inhibitor of the passive transfer of contact sensitivity. Tacc from NDV-infected mice fail to bind appreciable amounts of exogenous T suppressor factor, so indicating that the virus eliminates this T-cell population. However, macrophages from mice infected with NDV are able to release a nonspecific inhibitor of the passive transfer of contact sensitivity, indicating that the inhibition of Tacc activity in mice infected with NDV is bypassed by macrophages, so that the T-suppressor circuit is functionally active in NDV-infected mice. The mechanism of the selective inhibition of the Tacc activity by NDV is discussed.

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Role of the fourth complement component (C4) in the regulation of contact sensitivity. I. Analysis in mice with high and low C4 levels.

Lymph node cells collected from CBA/J mice 4 days after painting the skin with picryl chloride are able to immunize naive recipients by hapten-IgM immuno complexes. These cells ("4-day" cells) activate the early components of the classical pathway of complement from mice of the H-2 Sd haplotype (high-C4), but fail to activate the classical pathway of complement from mice of the H-2 Sk haplotype (low-C4). Incubation of "4-day" cells in complement from mice with high-C4 levels abolishes the induction of contact sensitivity, probably as a consequence of the solubilization of membrane-bound immuno complexes caused by complement activation. The presence of "4-day" cells is determined by the levels of C4. In fact, using strains of mice which differ only at the S region of the H-2 complex, we found that mice of the H-2 Sd (and perhaps H-2 Sb) haplotype (high-C4 levels) lack "4-day" cells in their lymph nodes and this is due to the activation of the early components of the classical complement pathway which occurs in vivo in these mice during sensitization with picryl chloride. The finding that contact sensitivity reaction to picryl chloride in H-2 Sk mice lasts about 21 days, whereas H-2 Sd mice show a contact sensitivity reaction until 7 days after sensitization, strongly suggests that the S region, and in particular C4 levels, controls the persistence of "4-day" immunogenic cells, and so play a role in the duration of the contact sensitivity reaction to picryl chloride in the mouse.

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Suppression of contact sensitivity by a plastic adherent T-cell, induced in mice infected with Newcastle disease virus (NDV).

Previous studies have demonstrated that lymph node cells of mice skin-sensitized 24 h before are able to transfer contact sensitivity (CS) in naive recipients. These antigen presenting cells (APC) lose the ability to induce CS when donor mice are treated with the virus of Newcastle Disease (NDV) at the time of sensitization. In this paper we demonstrate that the cell capable of suppressing CS is a virus induced plastic adherent T-cell, which inhibits otherwise normal APC. In fact, the APC in infected mice are fully competent, as demonstrated by their ability to transfer CS, if the adherent T-cell population is removed by plastic adherence. Analysis shows that the CS suppressing adherent T-cells are Thy 1.2+, Lyt 1.1+ and I-J+ subset. The inhibition of CS by the NDV induced adherent T-cell is antigen non-specific and genetically restricted. We have also demonstrated that picrylated cells from NDV infected mice fail to trigger the release of non-specific inhibitor (nsINH) in the T-suppressor circuit. The effect of the adherent suppressor T-cell in that circuit was determined and the results indicate that the virus induced T-cell is able to suppress the release of nsINH by blocking the function of the APC.

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T suppressor afferent cells which regulate contact sensitivity to picryl chloride act across genetic barrier.

This paper investigates the requirement for genetic restriction in the action of T suppressor afferent cells (Ts-aff) which regulate the induction phase of contact sensitivity to picryl chloride. The results here reported show that Ts-aff which inhibit both the induction of contact sensitivity and DNA synthesis in the draining lymph nodes of sensitized mice, act across both H-2 and Igh genetic barrier and constitute new evidence which discriminates between two T suppressor cell populations in contact sensitivity.

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Inhibition of lymphocyte mitogenesis in mice infected with Newcastle disease virus: viral interference with the interleukin system.

Spleen cells from mice infected with Newcastle disease virus (NDV) fail to proliferate when cultured with allogeneic cells or with concanavalin A (Con A). This failure is not due to impairment of interleukin-1 (IL-1) production or to a lack of accessory cell function as stimulator cells from NDV-infected mice induce DNA synthesis in the mixed lymphocyte reaction. However, spleen cells from NDV-infected mice fail to produce detectable amounts of interleukin-2 (IL-2) when stimulated with mitogenic doses of Con A and do not respond to exogenous IL-2-containing preparations. Furthermore, absorption experiments suggest that cells from NDV-infected mice fail to bind appreciable amounts of exogenous IL-2. All these events seem to be infection-dependent, as cells from mice injected with ultraviolet-inactivated NDV (UV-NDV) behave normally.

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Infection of mice with Newcastle disease virus inhibits the T suppressor afferent cell circuit which regulates contact sensitivity to picryl chloride.

The interaction between Newcastle disease virus (NDV) and the suppressor cell circuit which regulates the induction phase of contact sensitivity reaction to picryl chloride (Pcl) was investigated. NDV infection impairs the activity of the T suppressor afferent cells (Ts-aff) which inhibit DNA synthesis in the draining lymph nodes of mice specifically sensitized with Pcl and the development of contact sensitivity. The inhibitory effect of NDV was evident when the virus was administered up to 2 days before or at the same time as the injection of picrylsulfonic acid; this effect required infectious virus, as NDV inactivated by ultraviolet irradiation failed to inhibit Ts-aff activity. Taken together with the previous finding that the T suppressor efferent cell is unaffected by NDV, the present results support the view that contact sensitivity reaction to picryl chloride is regulated by two distinct T-suppressor-cell circuits.

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[Activation of the alternative complement pathway by Newcastle disease virus. I) Effect of the virus on the complement system in vivo and in vitro].

The authors have studied the effect of the paramyxovirus of Newcastle disease on the complement system in the mouse. The results obtained show that NDV activate both in vivo and in vitro the alternative complement pathway, suggesting that the intervention of complement system during viral infections represents a general biological phenomenon.

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Complement activation by cell-associated immune complexes in contact sensitivity.

Lymph node cells collected 4 days after painting the skin with picryl chloride activate the first components of the classical pathway of complement cascade, as shown by consumption of C4 of rabbit complement with total sparing of C5 and factor B activity. In contrast, lymph node cells collected 1 or 6 days after sensitization fail to do so. The ability of "4-day" cells to activate complement is inhibited by treating the cells with specific low-molecular-weight hapten, which is known to dissociate the immune complex present on the cell surface. When mouse serum was used as source of complement, a different behavior in complement activation between CBA/J and B10.D2-New/SnJ serum was observed: "4-day" cells failed to consume CBA/J serum whereas a normal complement activation was detected when B10.D2-New/SnJ serum was used. Using these two sera which differ in the level of C4, an inverse relationship between the ability of "4-day" cells to activate complement and their capacity to induce contact sensitivity when injected into the footpad of normal recipients was reported. Experiments performed using sera from C5 genetically deficient mice demonstrate that only the early complement components are involved, suggesting that membrane immune complexes are solubilized as a result of complement activation; on the other hand, membrane bound activated complement components could alter the immunizing potential of "4-day" cells.

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Analysis of the T suppressor cell circuit which regulates contact sensitivity in mice infected with the virus of Newcastle disease.

The interaction between the virus of Newcastle disease (NDV) and the different cellular elements involved in the T suppressor cell circuit which regulates the expression phase of contact sensitivity has been investigated. NDV does not interfere with the production of the antigen-specific T suppressor factor (TsF) but inhibits its binding to T acceptor cells (Tacc). This cell when armed with TsF and exposed to the antigen corresponding to TsF releases a non-specific inhibitor of the transfer of contact sensitivity. More detailed analysis of the effect of NDV on the Tacc system showed that not only Tacc activity is impaired by NDV, but also the ability of antigen presenting cells (APC) to trigger Tacc armed with TsF is inhibited. The impairment of APC activity by NDV has been also investigated using another system, such as the induction of contact sensitivity by footpad cell transfer. The possibility that a virus-induced membrane modification might be responsible for the effect of NDV on the regulation of contact sensitivity is discussed.

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Depression of contact sensitivity to oxazolone by the paramyxovirus of Newcastle disease. Impairment by infectious virus of effector T cells which mediate the response to contactant.

The paramyxovirus of Newcastle disease (NDV) impairs the contact sensitivity to oxazolone in CBA/J mice: in vitro treatment with the infectious virus inhibits the passive transfer of contact sensitivity. Experiments performed with three different virus preparations demonstrate that only the infectious virus is able to inhibit the hypersensitivity reaction while treatment of virus by heat or ultraviolet irradiation wipes out its inhibitory activity. These results suggest that I-NDV depresses the response to oxazolone by its action on T immunoblasts which mediate the response to contactant.

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