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1.
Utilizing a variety of lymphoid tissues from three common laboratory species, comparative studies were performed to investigate the competence of the dissociated cells to respond to a heterologous erythrocyte with the development of specific plaque-forming cells. Dissociated spleen cells harvested from BDF1 mice consistently developed specific plaque-forming cells (PFC) to sheep red blood cells (SRBC), while hamster spleen cells inconsistently developed specific antibody-forming cells to SRBC. Under identical conditions, guinea pig spleen cells did not develop significant numbers of PFC to SRBC. However, lymph node cell cultures of all three species tested yielded specific PFC. In the mouse and hamster lymph node cell cultures, the yield of PFC per culture or per 106 recovered viable cells was always greater than the yield from companion spleen cell cultures. Guinea pig mesenteric lymph node cell cultures developed the major PFC response to SRBC, while both mesenteric and peripheral lymph node cell cultures from hamsters were equivalent in their response to SRBC. The data demonstrate that it is possible to develop a primary antibody response to SRBC in vitro utilizing normal endogenous hamster or guinea pig lymphoid cells, if lymph nodes are the source of cells.  相似文献   

2.
Enhancement of murine in vitro antibody formation by hyperthermia   总被引:6,自引:0,他引:6  
The influence of hyperthermia on primary in vitro antibody formation by C57BL/6 splenocytes to a T-dependent antigen, sheep red blood cells (SRBC), and a T-independent antigen, trinitrophenyl-lipopolysaccharide (TNP-LPS), was evaluated. Following heat treatment (39 or 40 °C), spleen cells demonstrated two- to fivefold increases in antibody production to SRBC. This enhancement of humoral immunity is critically dependent on the timing of hyperthermia administration relative to antigenic exposure. Examination of the kinetics for the SRBC response revealed that heat significantly lengthens the time period of antibody production. Although a number of parameters were examined, antibody production to TNP-LPS from hyperthermically treated cultures were comparable to control (37 °C treated) cultures. Finally, we have determined that the heat-induced increases in antibody formation to SRBC are mediated through T lymphocytes.  相似文献   

3.
Addition of supernatants from rat thymic epithelial cultures (TES) to rat thymocytes stimulated with T-cell-mitogens or allogeneic cells leads to an increase in 14C-TdR incorporation. Furthermore, in the presence of TES, spleen cells from athymic nu/nu mice exhibit an enhanced in vitro antibody production to SRBC, whereas TES has no such effect on spleen cells from T-cell-deprived mice. If TES is added together with thymocytes to T-cell-deprived spleen cell cultures, the number of plaque-forming cells to SRBC is enhanced, suggesting that TES induces a helper cell function in thymocytes which, if added alone, have no effect. TES also increases intracellular levels of cAMP in thymocytes in vitro and appears to act on a membrane site distinct from the β-adrenergic receptor. TES fails to affect mitogen responses, MLR and cAMP levels of lymphocytes from other lymphoid organs. The biological activity of TES as compared to that of thymic extracts is discussed.  相似文献   

4.
SJL mice are high responders to the polyproline region of poly(Tyr,Glu) -polyPro-polyLys, (T,G)-Pro-L and of poly (Phe,Glu) -polyPro-polyLys, (Phe,G)-Pro-L, whereas DBA/1 mice are the low responders to this moiety. The low responsiveness of DBA/1 mice to polyproline could be enhanced by immunization with (T,G)-Pro-L 4 days after stimulation of peritoneal cells by thioglycolate. The same effect was observed when DBA/1 mice were immunized with 107 syngeneic peritoneal exudate cells (PEC) preincubated in vitro with the immunogen. Similar treatments of SJL mice did not enhance the high response to polyproline, nor did it enhance low responses to other synthetic polypeptides tested.The enhancing effect of PEC on immunocompetent cells was established by transferring graded numbers of spleen cells together with 107 PEC into irradiated syngeneic DBA/1 recipients. The effective cell type in the PEC was found to be the macrophage as the same results were observed with the adherent-cell population. Furthermore, the effect was not abolished after in vitro irradiation of PEC with 5000 R or by anti-θ treatment. In vivo irradiation of the PEC donors 2 days before the cells were harvested also did not influence the phenotypic correction of the low responsiveness.Transfer experiments in which graded inocula of either marrow cells or thymocytes from DBA/1 donors were transferred into syngeneic recipients in the presence of an excess of the complementary cell type together with PEC indicated that the enhancing effect was reflected in the bone-marrow-cell population only.  相似文献   

5.
The effect of the methanol extract residue (MER) fraction of BCG tubercle bacilli on the generation of primary antibody responsiveness in vitro to sheep red blood cells (SRBC) was ascertained in cell reconstitution experiments, employing enriched populations of mouse macrophages and of T and B lymphocytes. In each of the antibody generation cultures one or another of the cell fractions had been exposed to MER, either by treatment of the donor animals or by preincubation with the agent for 48 hr in vitro. In some experiments, supernatants of MER-preincubated cells were employed in place of the cells. Macrophages and T cells that had been exposed to MER in vivo or in vitro and their supernatants demonstrated a markedly greater effect than nonexposed cells in the generation of direct specific plaque-forming cells (PFC) upon antigenic stimulation of the cultures with SRBC. In contrast, PFC production was not stimulated in B-lymphocyte populations that had been in contact with the agent.  相似文献   

6.
Restoration of the impaired antibody response to sheep erythrocytes (SRBC) in cultures of mouse spleen cells, which were deprived of thymus-derived lymphocytes (T cells) by treatment with anti-mouse brain-associated θ (BAθ) antiserum and complement, was studied by adding a small portion of syngeneic or allogeneic normal spleen cells in vitro. Allogeneic spleen cells had a far greater effect than syngeneic spleen cells on the restoration, as far as the normal spleen cells added were able to recognize the alloantigens on the anti-BAθ serum-treated spleen cells (bone marrow-derived lymphocytes). Treatment of the allogeneic spleen cells with mitomycin C did not affect their activity in the restoration of the impaired antibody response. The possibility that the role of T cells in the antibody response to SRBC may be replaced by a nonspecific mediator derived from T cells reacting with allogeneic cells was proven by the finding that supernatant of the mixed allogeneic spleen cell cultures restored the impaired anti-SRBC antibody response of the T cell-depleted spleen cells. The effect of such culture supernatant on the restoration of the antibody response was greatest when it was added to the T cell-depleted spleen cell cultures one day after cultivation with SRBC, suggesting that the effectiveness may result from triggering of the proliferation and differentiation of antibody-forming cell precursors, which have already reacted with the antigen, to antibody-forming cells.  相似文献   

7.
Thioglycollate-stimulated peritoneal exudate cells (PEC), harvested from mice immunized against sheep erythrocytes (SRBC) and transferred to normal syngeneic recipients, reverse the immunosuppression caused by passively administered anti-SRBC antibody. Macrophages purified from PEC on BSA gradients did not reverse immunosuppression; neither did suspensions of cells from mesenteric lymph nodes of immune mice. Mixtures of the purified macrophages and lymph node cells were fully capable of reversing immunosuppression. Thus, two types of cell, one a macrophage and one a lymphocyte, are required. Both must be compatible with the recipient mice at the H-2 complex. However, only the macrophages must necessarily be obtained from an immune donor. When “immune” macrophages were preincubated in vitro with “normal” lymph node cells before transfer to antibody-treated syngeneic recipients, a significant reversal of the immunosuppressive effect occurred. The ability of whole PEC or spleen cells to reverse the immunosuppressive effect of passive antibody is acquired rapidly after injection of a single low dose of antigen. Development of this ability precedes the appearance, in the circulation, of immunosuppressive antibody.  相似文献   

8.
A modification of the Marbrook system for obtaining both primary and anamnestic responses from chicken spleen cells in vitro is described. The patterns of responsiveness of chicken spleen cell cultures resembled those previously described for the mouse. However, the requirement for normal chicken serum (NCS) to support the response could not be replaced by foetal calf serum (FCS). Cell survival, response kinetics, antigen dose requirements, antibody class, and temporal development of memory are described. The requirement for cooperation of B and T cells in the SRBC response was demonstrated by the use of specific anti-T and anti-B sera.  相似文献   

9.
Spleen cells from mice immunized with SRBC were subjected to controlled rate freezing to ?100 °C. Complete recovery of PFC was obtained with DMSO used as the cryopreservative. Simple dilution of spleen cells in DMSO, or a single cycle of freezing and thawing in DMSO prior to short-term culture, resulted in early loss of recoverable cells. A single cycle of freezing and thawing inhibited the in vitro immune response to SRBC while having little effect on the response to TNP-T4. The in vitro blastogenic responses to LPS and PHA-P were severely reduced in cultures of frozen and thawed cells.  相似文献   

10.
Short-term cultures of human tonsilar lymphocytes (HTL), 5 × 106 cells/culture, in medium RPMI 1640 supplemented with human group AB serum were studied for the production of plaque-forming cells (PFC) against sheep (SRBC) and bovine (BRBC) red blood cells following in vitro stimulation by various allogeneic lymphoid cells. Of 55 HTL specimens examined, 48 produced a significant number (50–300/culture) of PFC against SRBC and/or BRBC following the in vitro stimulation. The optimal doses of the stimulator HTL and peripheral blood lymphocytes (PBL) were 107 and 5 × 106/culture, respectively. After the stimulation, PFC appeared in significant numbers on the third day, reached the peak number on the sixth day, and decreased sharply in number thereafter. Removal of E-rosetting cells from both stimulator and responder populations abolished the PFC formation. PFC formation against SRBC was inhibited by solubilized Forssman antigen, while PFC formation against BRBC was inhibited strongly by Hanganutziu-Deicher antigen, hardly by Paul-Bunnell antigen and not at all by Forssman antigen. Supernatants of mixed lymphocyte culture of PBL were shown to enhance PFC formation of HTL cultures stimulated by allogeneic lymphocytes. The results of this study indicated that in vivo primed B cells of the HTL were triggered in vitro by allogeneic stimulation for the heterophile antibody formation. Since these antibodies are apparently directed against Forssman and Hanganutziu-Deicher antigens, the “allo” nature of these antigens as well as their relationship to the previously described heterophile transplantation antigens have to be clarified.  相似文献   

11.
The roles of macrophages and T cells in the adjuvant effect of lipopolysaccharide (LPS) were studied. In vitro anti-trinitrophenyl (anti-TNP) antibody responses to TNP-Ficoll and TNP-keyhole limpet hemocyanine (TNP-KLH) in spleen cells of C57BL/6 mice showed the most enhancement, when LPS was added to cultures at 1 μg/ml 48 hr after culture was started. The responses to these antigens were enhanced markedly by LPS in whole and macrophage-depleted spleen cells. The enhancement was greater in the latter group than in the former. The adjuvant effect among whole, T cell-depleted, macrophage-depleted and both macrophage- and T cell-depleted spleen cells was compared. The response to TNP-Ficoll was enhanced markedly by LPS in all groups. The enhancement was greater in the latter two groups than in the first two groups. The response to TNP-KLH was enhanced by LPS strongly in macrophage-depleted spleen cells, moderately in whole and both macrophage- and T cell-depleted spleen cells, and only slightly in T cell-depleted spleen cells. Enhancement was restored to T cell-depleted spleen cells by adding T cells. The response to TNP-KLH of macrophage-depleted spleen cells of LPS-responsive C3H/HeN mice which was enhanced by LPS was suppressed by adding splenic macrophages of C3H/HeN mice, but not of LPS-nonresponsive C3H/HeJ mice. The response to TNP-KLH of macrophage-depleted spleen cells of C3H/HeJ mice was not enhanced by LPS, irrespective of the addition of macrophages of C3H/HeN mice. The results indicate that B cells are activated directly by LPS, and T cells enhance and macrophages suppress the adjuvant effect of LPS.  相似文献   

12.
In Marbrook-type diffusion cultures the in vitro response to SRBC declines drastically after a Day 4–5 peak. This decrease in the PFC response is not the result of deteriorating culture conditions but reflects the generation of an inhibitory factor during the culture period. The presence of formaldehyde-fixed Staphylococcus aureus in the reservoir of a culture system in which cell and reservoir chambers are separated by a 0.2-μm Nuclepore membrane permits a higher antibody response. This enhancing effect is dependent upon the continuous removal by S. aureus of antibodies or antigen-antibody complexes produced in culture during the course of the response. In addition, supernatant transfer experiments indicate that, during an in vitro response, antigen-specific, antibody-mediated suppression is an important factor in the net outcome of the response and in its regulation. Under the conditions of this study, no evidence for the generation of suppressor cells in vitro was found.  相似文献   

13.
The long-term effects of adult splenectomy on immunocompetent cells was studied in BALB/c mice during an observation period of 600 days following splenectomy in comparison to age-matched controls. The percentage and absolute number of circulating Thy 1.2-positive (T) cells diminished gradually, reaching about 50% of the level of T cells in age-matched controls, with a concomittant increase in the proportion of Ig-positive (B) cells. The in vitro response of peripheral blood lymphocytes (PBL) to T-cell mitogens showed a 60% decrease of [3H]TdR uptake following phytohemagglutinin stimulation without a significant impairment of the responsiveness to concanavalin A. Alloreactivity of PBL was unaltered by splenectomy since both the in vitro reactivity of PBL to allogeneic cells using mixed leukocyte reaction, and the in vivo assay, measuring a first set skin allograft survival, were similar to those observed in age-matched controls. Studies on the humoral antibody responsiveness to sheep red blood cells (SRBC) indicated a diminished primary, and normal secondary anti-SRBC responses in splenectomized mice. No IgG response was detectable in mice primed with SRBC starting at 160 days following splenectomy, whereas normal IgG titers were observed following SRBC boost in splenectomized mice. We conclude that the spleen seems to play a regulatory role on some immune functions during adult life in mice.  相似文献   

14.
Cell viability and the production of direct PFC were studied in mouse spleen cell cultures after cortisol treatment in vivo or in vitro at various times relative to primary stimulation with SRBC in vitro.Cortisol treatment in vivo reduced spleen cell numbers by 88% after 48 hr, but cultures of the remaining cells produced as many PFC in vitro as did cultures of equal numbers of normal spleen cells.In normal spleen cell cultures incubated with cortisol for 4 hr prior to the addition of antigen, peak responses of PFC/culture and PFC/106 cells occurred 24 hr later than in controls and averaged, respectively, 27% and 141% of control values. Minimum viable cell numbers were observed in cortisol-treated cultures after 3 days; thereafter cell numbers gradually increased. These results were not significantly altered when cultures were treated simultaneously with cortisol and antigen.The response was not suppressed if the addition of antigen preceded that of cortisol by more than 4 hr. Suppression was also considerably reduced if fetal calf serum was used when preparing cells for culture.  相似文献   

15.
A solubilized sheep red blood cell (SRBC) antigen (supernatant fraction obtained by centrifuging 107-2 × 108 sonicated SRBC at 6 × 104 g for 30 min [Sup-SRBC]), whose ability to inhibit anti-SRBC plaque formation was 70% of that of the original sonicated SRBC, was unable to elicit a detectable antibody response in either unprimed or SRBC-primed mice. However, Sup-SRBC as well as intact SRBC antigens generated memory for the secondary response, which was transferable to irradiated syngeneic recipients by injection of immune spleen cells. The memory generated by Sup-SRBC involved helper memory for anti-trinitrophenyl group (TNP) response to challenge with TNP-conjugated SRBC. Increase in the helper T cell memory in the spleens of Sup-SRBC-primed mice was also demonstrated by an in vitro culture experiment and by an adoptive cell transfer experiment. In contrast, no detectable B cell memory was generated by Sup-SRBC. Repeated stimulation with Sup-SRBC never induced significant antibody response but reduced the level of memory. A single injection of a low dose (106) of SRBC also failed to induce a definite primary antibody response generating memory for the secondary response. However, repeated stimulation with this dose of SRBC induced a high antibody response and generated good memory. From these results it is suggested that the intact structure of SRBC is required for the activation of B cells, but is not necessary for the stimulation of T cells.  相似文献   

16.
Secondary antibody responses generated in vitro with spleen cells from mice primed and boosted with SRBC or TNP-KLH antigen were found to be influenced by the amount of Ca2+ in the culture medium. Relatively low levels of Ca2+ (0.1 mM) were optimally supportive for the generation of PFC in vitro, with higher, more physiological levels of Ca2+ (1.0–1.7 mM) suppressing the generation of PFC by as much as 100%. Suppression by high levels of Ca2+ was most pronounced when the amount of antigen used to elicit the in vitro antibody response was high, whereas responses generated by lesser amounts of antigen were minimally affected by Ca2+ level. Ca2+-mediated suppression was localized to an intermediate phase (24–48 hr) of the response. Mitogenic and polyclonal antibody responses were not affected by high levels of Ca2+. The effect of Ca2+ concentration on the secondary, IgG-producing antibody response may be significant in terms of understanding the various control mechanisms interacting in regulation of IgG synthesis.  相似文献   

17.
The participation of H-2I gene products in generating virus-specific proliferative and/or cytotoxic T-lymphocyte (CTL) responses was investigated. Spleen cells from mice infected with vaccinia virus were restimulated secondarily in vitro with syngeneic virus-infected peritoneal exudate cells (PEC) and then restimulated in tertiary cultures with virus-infected PEC from syngeneic and partially histoincompatible strains of mice. Based on the finding that comparable proliferative responses resulted when stimulating the responding cells were histocompatible at the H-2K, I, or D region of the major histocompatibility complex (MHC), the additively enhanced, but not potentiated, proliferation caused by identity at two or three H-2 regions was analyzed. Enhancement of proliferation followed when the H-2K/D components plus virus and the H-2I components plus virus were either on the same, or alternatively on two, stimulating cells. This suggests that H-2K, D, and I plus virus trigger distinct T-cell subsets. A virus-specific CTL response was generated in vitro when spleen cells from virus-primed mice and even unprimed mice were stimulated with cells sharing only H-2K and/or H-2D of the MHC. Identity at the H-2I region did not stimulate a CTL response, nor did it influence the magnitude of the KD restricted response. Nevertheless, the presence of anti-Ia antiserum in cultures of syngeneic stimulators and responders inhibited the cytotoxic response to a great extent. Therefore, H-2I region products seem to participate in the generation of virus-specific CTL in vitro.  相似文献   

18.
Nonspecific immune responses during the course of murine Trypanosoma cruzi infection were examined in mouse strains genetically resistant or susceptible to the Brazil strain of T. cruzi. Spleen cells from infected susceptible (C3H) or resistant [C57 B1/10 and FI (C3H × C57)]mice at various points during the course of infection exhibited a reduced response to concanavalin A and lipopolysaccharide in vitro. Since this reduced response occurred in both susceptible and resistant mice, it was not predictive of resistance or susceptibility in vivo. We next examined the kinetics of in vivo primary antibody response to sheep red blood cells (SRBC) in infected C3H and C57 mice. C3H mice exhibited inhibition of the direct plaque-forming cell assay (d-PFC) which persisted until death. In contrast C57 mice exhibited no inhibition of the response at Day 5 and subsequently a markedly augmented response was observed. Other strains of mice were similarly investigated: all the susceptible mice examined (A/J, BALB/c) showed inhibition or depression of the primary antibody response and resistant mice [B10Br, C57B1/10, SJL, F1 (C3H × C57)]demonstrated either no inhibition or considerable augmentation of this response. CS7 mice resistant to the Brazil strain were susceptible to the Tulahuén strain. The mice in this latter group exhibited a markedly significant inhibition of the in vivo primary antibody response to SRBC. Culture forms of the Brazil strain protected C3H mice from a virulent challenge. This immunization resulted in a markedly augmented antibody response. The data reported herein are consistent with the notion that inhibition of the primary antibody response to SRBC correlates with susceptibility whereas no inhibition or, indeed, augmentation of the response correlates with natural as well as acquired resistance.  相似文献   

19.
The capacity of purified γG1 and γG2 anti-sheep red blood cell (SRBC) antibodies to exert antigen-specific feedback regulations on the primary in vitro immune response to SRBC was studied. Antibodies were administered to the culture in the native form, as sheep erythrocyte-antibody complexes or as pepsin-derived F(ab′)2 antibody fragments. Marked differences in the feedback regulatory effects of γG1 and γG2 antibodies were found. Antibodies of the γG1 class suppressed the immune response to SRBC, whereas γG2 antibodies isolated from the same serum exerted an augmenting effect on antibody synthesis. These opposing feedback effects on in vitro antibody synthesis were immunologically specific, relatively insensitive to changes in antigen concentrations, and could be elicited by either adding antibodies and antigen separately to the culture or as preformed antigen-antibody complexes. Experiments comparing the activities of the F(ab′)2 antibody fragments with the parent γG1 and γG2 antibodies suggested that the Fc fragments may be involved in these regulatory effects on the immune response. It is concluded that the antigen-specific suppressive and augmenting effects on antibody synthesis shown here are determined by the antibody class. In addition, we suggest that these opposing antibody-mediated feedback effects may represent one of the important elements of the immune response.  相似文献   

20.
Restoration of the Immune Response to Sheep Erythrocytes by a Serum Factor   总被引:5,自引:0,他引:5  
THE immune response of CBA mice to sheep erythrocytes (SRBC) is known to be thymus-dependent because strain members thymectomized during the first few hours of life exhibit a marked inability to respond to this antigen1,2. Experiments with isoantisera suggested that a cell to cell interaction is involved in this response. Thymus cells per se do not develop into haemolytic plaque-forming cells, but in some, so far obscure, way they cause cells of bone marrow origin to become producers of haemolytic plaques2,3. A study of spleen cells from neonatally thymectomized (NNT) mice in a tissue culture system indicated that the decreased responsiveness to SRBC is also expressed in vitro. In that case 15×106 NNT spleen cells produced only 500 haemolytic plaques when assayed on day 4 of culture. But when 15×106 thymus cells were added to identical cultures of NNT spleen cells at inception, the number of haemolytic plaque forming cells increased to 2,300 (ref. 4). When an equivalent number of thymus cells alone were incubated with SRBC there was no response.  相似文献   

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