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R Benner

Publications and source records attributed to R Benner.

At least 91 records · Page 5Linked to original sources

Flare up of joint inflammations induced by cloned helper T cells. Retention of the helper T cells.

Joint inflammations were induced in mice by intra articular (ia) injection of cloned helper T cells specific for methylated bovine serum albumin (mBSA) together with mBSA. Local injection of mBSA several weeks after waning of a joint inflammation induced by cloned helper T cells caused a flare up reaction. This indicates that the helper T cells persisted in the joint after the primary inflammation. In the present paper we show that the helper T cells can also persist for some time in a knee joint in the absence of the specific antigen and/or an inflammatory reaction.

Animals↗

Generation of suppressor T cells after local immunization with histocompatibility antigens.

Subcutaneous (sc) hind-foot immunization (HFI) of mice with allogeneic spleen cells can induce a state of delayed-type hypersensitivity (DTH) as well as a state of suppression of DTH. This paper deals with the suppression induced by HFI. The state of suppression could be adoptively transferred by spleen cells and lymph node cells between Days 3 and 7 after HFI only. However, in the hind-foot-immunized mice the state of suppression lasted at least 25 days. The suppressor cells expressed the Thy-1+, Lyt-1-2+ phenotype and suppressed DTH antigen-specifically. The suppressor cells, however, also suppressed DTH responses to unrelated third-party alloantigens, provided the latter were administered during the induction of DTH together with the same alloantigens that were used for HFI. The HFI-induced T-suppressor cells suppressed the induction phase of DTH (i.e., the proliferative activity of the draining lymph node cells after secondary sc immunization), but not the expression phase of DTH (i.e., the activity of previously activated DTH effector T cells). H-2D compatibility between the donors of the HFI-induced T-suppressor cells and the recipients was required for the adoptive transfer of suppression. The differences in effect of local immunization versus systemic immunization on the induction and functional activity of T-suppressor cells are discussed.

Animals↗

Lipopolysaccharide-induced suppression of graft-versus-host reactivity in mice.

Reconstitution of lethally irradiated mice with spleen cells from donors that had been treated with lipopolysaccharide (LPS) intravenously and allogeneic spleen cells subcutaneously leads to a suppressed anti-host delayed-type hypersensitivity (DTH). Either donor injection alone proved to be ineffective. The state of suppression appeared to be antigen-specific, but, depending on the experimental conditions, also anti-host DTH to third-party alloantigens could be suppressed. The suppression was mediated by a population of Thy-1- suppressor cells that could also be induced in athymic nude mice. The suppressor cells specifically adhered to anti-kappa-coated plastic plates, but were not adsorbed by passage through a Sephadex G-10 column. Thus, it appears that the combined donor treatment with LPS and allogeneic spleen cells induces a population of B cells that can suppress anti-host immune reactivity.

Animals↗

Lipopolysaccharide-induced suppression of DTH-reactivity to histocompatibility antigens. I. Kinetic aspects and specificity.

The effects of bacterial lipopolysaccharide (LPS) on the development of DTH-reactivity to alloantigens in mice were investigated. DTH to a particular set of alloantigens could be suppressed by treatment of responder mice with a single intravenous (i.v.) injection of 100 micrograms LPS and a simultaneous subcutaneous (s.c.) injection of the appropriate allogeneic spleen cells. The suppression lasted at least 60 days and affected the afferent limb of the DTH response as well as the efferent limb. The suppression could be adoptively transferred to naive syngeneic recipient mice by spleen cells, but not by immune serum, and proved to be antigen-specific. In spite of this specificity, the DTH-response against unrelated "third-party" alloantigens could be suppressed as well, provided the latter were presented during the induction-phase of DTH together with the alloantigens that had been used for the induction of suppression.

Animals↗

Clonal analysis of the synergistic mitogenic effect of lipopolysaccharide and dextran sulphate on B cell activation, growth, and differentiation into Ig-secreting cells.

Splenic B cells of BALB/c mice were stimulated in vitro either with lipopolysaccharide (LPS), dextran sulphate (DxS), or with both LPS and DxS. The absolute frequency of B cells that differentiate into clones of immunoglobulin (Ig)-secreting cells upon activation with these mitogens was determined by means of limiting dilution analysis. Determination of the number of Ig-secreting cells in DxS-stimulated cultures with the protein A plaque assay proved to be difficult because of the anti-complementary activity of DxS. Therefore, we assayed the number of Ig-secreting cells with a reverse ELISA-plaque assay. This assay is complement-independent and is at least as sensitive as the protein A plaque assay. The results showed that LPS, DxS, and the combination of LPS and DxS stimulate 1 in 27, less than 1 in 500 and 1 in 15 nucleated spleen cells of BALB/c mice to proliferation and differentiation into a clone of Ig-secreting cells, respectively, indicating that these mitogens have a synergistic effect on B cells at the precursor cell level. Analysis of the clone size of the activated B cells showed that the combination of both mitogens also caused a larger clone size. Thus, the synergistic effect of LPS and DxS that was previously observed in mass cultures is due to two separate effects. Quantitatively most important, however, is that more precursors are activated by the combination of the two mitogens.

Animals↗

Murine macrophage cell line AP284 presents antigen to cloned MT4+, Lyt-2- T cells in vitro and in vivo.

A murine macrophage cell line AP284 that appeared to be mature in phenotype was isolated. After repeated cloning, the cell line expressed the markers Mac-1, Mac-2, Mac-3, 2.4G2, F4/80 as well as Ia antigens. Moreover, it was positive for the enzymes nonspecific esterase and acid phosphatase, negative for alkaline phosphatase and was able to phagocytize latex beads. We studied whether this cell line was able to present antigen to cloned MT4+, Lyt-2- T cells specific for methylated bovine serum albumin (mBSA) or ovalbumin (OVA). The in vitro proliferative response of the cloned T cells specific for mBSA or OVA was found to be effectively supported by AP284. This proliferation could be blocked by monoclonal antibodies against Ia determinants. AP284 also effectively presented antigen in vivo as was shown in a foot swelling assay measuring delayed type hypersensitivity (DTH) to mBSA caused by specific cloned T cells with the helper phenotype. This offers a unique model system for studying the process of antigen presentation in which both the antigen presenting cells and the T cells are monoclonal.

Animals↗

The influence of T cells on homogeneous immunoglobulins in sera of athymic nude mice during aging.

In this study, results are presented which are in agreement with predictions made on basis of the 'three-stage hypothesis' on the development of benign monoclonal gammapathy (BMG). In a T-cell depletion model. C57BL/Ka nude mice were shown to develop single and multiple homogeneous immunoglobulins (H-Ig) during aging in the highest frequencies known so far. Ninety per cent of the C57BL/Ka nude mice displayed one or more H-Ig at 12 months of age. In a T-cell supplementation model, infusion of corticosteriod resistant T cells into 9-month-old BALB/c nude mice resulted in a decrease in the frequency of H-Ig from 43% at 9 months down to 20% at 15 months of age. In contrast, the frequency of H-Ig in the control group increased from 40% at 9 months up to 68% at 12 months. The results show that normally functioning T cells are essential for the generation of a normal, heterogeneous Ig spectrum; they further support the validity of the three-stage hypothesis with regard to the role of an impairment of the T immune system in the pathogenesis of BMG.

Aging↗

Degradation of polysaccharides and lignin by ruminal bacteria and fungi.

Bermudagrass (Cynodon dactylon) leaf blades and whole cordgrass (Spartina alterniflora) fiber were evaluated for degradation of cell walls by microbial groups in ruminal fluid. The groups were selected by the addition of antibiotics to the inoculum as follows: (i) whole ruminal fluid (WRF), no antibiotics; (ii) cycloheximide (C) to inhibit fungi, thus showing potential bacterial activity; (iii) streptomycin and penicillin (S,P) to inhibit fiber-degrading bacteria, showing potential fungal activity; (iv) streptomycin, penicillin, and chloramphenicol (S,P,CAM) to inhibit all bacteria including methanogens; (v) streptomycin, penicillin, and cycloheximide (S,P,C) to inhibit all microbial activity as a control; and (vi) autoclaved ruminal fluid (ARF) to inhibit all biological activity as a second control. Scanning electron microscopy of tissue degradation indicated that tissues not giving a positive histological reaction for lignin were more readily degraded. Cordgrass was more highly lignified, with more tissues resisting degradation than in bermudagrass. Patterns of degradation due to treatment resulted in three distinct groups of data based on the extent of fiber or component losses: WRF and C greater than S,P and S,P,CAM greater than S,P,C and ARF. Therefore, bacterial activity was responsible for most of the fiber loss. Fiber degradation by anaerobic fungi was significantly less (P = 0.05). Cupric oxide oxidation of undigested and digested bermudagrass fiber indicated that phenolic constituents differed in their order of resistance to removal or solubilization. Vanillyl and syringyl components of lignin were the most resistant to decomposition, whereas ferulic acid was readily solubilized from fiber in the absence of microbial activity.(ABSTRACT TRUNCATED AT 250 WORDS)

Animal Feed↗

Adaptation of phytoplankton-degrading microbial communities to thermal reactor effluent in a new cooling reservoir.

In water column and sediment inocula from a nuclear reactor cooling reservoir, natural phytoplankton substrate labeled with C was used to determine aerobic and anaerobic mineralization rates for a range of temperatures (25, 40, 55, and 70 degrees C) expected during reactor operation. For experiments that were begun during reactor shutdown, aerobic decomposition occurred at temperatures of <55 degrees C. After 2 months of reactor operation, aerobic rates increased substantially at 55 and 70 degrees C, although maximum rates were observed at temperatures of </=40 degrees C. The temperature range for which maximum anaerobic mineralization (i.e., the sum of CH(4) and CO(2)) was observed was 25 to 40 degrees C when the reactor was off, expanding to 25 to 55 degrees C during reactor operation. Increased rates at 55 degrees C, but not 70 degrees C, correlated with an increase in the ratio of cumulative methane to carbon dioxide produced over 21 days. When reduced reactor power lowered the maximum temperature of the reservoir to 42 degrees C, aerobic decomposition at 70 degrees C was negligible, but remained substantial at 55 degrees C. Selection for thermophilic decomposers occurred rapidly in this system in both aerobic and anaerobic communities and did not require prolonged exposure to elevated temperatures.

Journal Article↗

The influence of genetic factors associated with the immunoglobulin heavy chain locus on the development of benign monoclonal gammapathy in ageing IgH-congenic mice.

The role of genetic factors associated with the immunoglobulin heavy chain locus (Igh) in the development of benign monoclonal gammapathy (BMG), a benign B-cell proliferative disorder, was investigated in six Igh congenic mouse strains during ageing. The strains used had a C57BL or BALB background: C57BL/6, BALB.Igb and CB-20 carrying the C57BL Igh (Ighb allotype), BALB/c and C57BL/6.Iga carrying the BALB/c Igh (Igha allotype) and BAB-14, that is of BALB/c origin with the exception of the constant part of the Igh, which is of C57BL origin. The frequency of homogeneous immunoglobulins (H-Ig), both single and multiple, was the highest in C57BL/6 mice, followed by C57BL/6.Iga. The frequencies of H-Ig in BALB.Igb and CB-20 mice were higher than those of BALB/c and BAB-14, although somewhat lower than in C57BL/6.Iga mice. Multiple H-Ig were found especially in the sera of C57BL/6 mice. Categorization of the monoclonal gammapathies (MG) on the basis of their origin showed a single transient monoclonal B-cell proliferation in 0-8% of the mice of all strains. Persistent, non-progressive MG, presumably BMG, were detected in 64% of C57BL/6, 30% of C57BL/6.Iga, 22% of BALB.Igb, 17% of CB-20, 13% of BAB-14 and 6% of BALB/c mice. Multiple myeloma or Waldenström-like B-cell lymphoma were found to be responsible for 2-4% of the paraproteinemias in all strains. The remaining H-Ig, varying from 11% of the C57BL/6 to 70% of the BAB-14 mice, could not be evaluated in time. The most frequent isotypes of the BMG within C57BL/6 and C57BL/6.Iga were IgG2a and IgG2b, respectively; IgM was the most frequent isotype within the four BALB congenic strains. The immunoglobulin heavy chain allotypes under investigation appeared to be only partly related to the onset, occurrence, multiplicity and persistence of the BMG developing in these Igh congenic C57BL and BALB strains during ageing. The immunoglobulin heavy chain allotypes, however, were not related to the major isotype of the BMG. The results obtained in CB-20 and BALB.Igb on the one hand, and in BAB-14 on the other hand, may suggest a role for the variable part of the Igh in the development of BMG. Since no absolute influence could be ascribed to the Igh, we assume that primarily other genetic sequences regulating proliferative B-cell functions account for the pathogenesis of BMG.

Aging↗

Joint inflammation in mice induced by a MT4+ Lyt-2- T cell clone. Characteristics and the induction of flare-up reactions.

Joint inflammations were induced in mice by cloned MT4+ Lyt-2- T cells specific for methylated bovine serum albumin. This was done either by intra-articular or by i.v. administration of the cloned T cells, together with local injection of the antigen. Local rechallenge with methylated bovine serum albumin several weeks after waning of the joint inflammation caused a flare-up reaction. The inflammations were quantified by a 99mTc-uptake method and examined histologically. The arthritis induced by the cloned T cells showed aspects of a delayed type hypersensitivity reaction characterized by an intense infiltrate which resembles the inflammation in the human rheumatoid joint. The data presented show that joint inflammations can be induced by T cells only and that, after waning, reexposition to the original antigen can induce a flare-up reaction. The data suggest a central role of T cells in the induction and the exacerbations observed in rheumatoid arthritis.

Animals↗

In vivo priming of helper and suppressor T cells by alloantigens. Frequency analysis with the use of an in vitro limiting dilution assay.

Earlier studies have demonstrated that T cells activated in mixed lymphocyte reactions can exert positive as well as negative allogeneic effects on B cells expressing the appropriate alloantigens on their surface. We investigated the effect of in vivo priming of T cells with alloantigens on their capacity to help or suppress allogeneic B cell cultures against sheep erythrocytes. We used immunization protocols that have been shown to be optimal for induction of alloantigen-specific delayed-type hypersensitivity (DTH) and alloantigen-specific suppressor T (Ts) cells for DTH. The results show that in vivo stimulation with alloantigens, depending on the immunization route and the lymphoid organ studied, can be as effective as in vitro stimulation in increasing the frequency of alloantigen-specific helper T (Th) cells and Ts cells. Subcutaneous immunization induced a 10-fold frequency raise of Th cells as well as of Ts cells in the lymph nodes. In the spleen the Th cell population was hardly affected by s.c. immunization, whereas the Ts cell population increased by at least a factor 20. Intravenous immunization, on the other hand, selectively expanded the Th cell population in the spleen, whereas the splenic Ts cell population and the Th and Ts cells in the lymph nodes were not affected. Comparison of these results with our previous data concerning characteristics and the requirements of in vivo activation of alloantigen-specific DTH reactive T cells and of alloantigen-specific Ts cells suggest that different Ts cell populations are involved in suppression of alloantigen-specific DTH in vivo and of allogeneic suppression of in vitro induced sheep erythrocytes specific antibody formation.

Animals↗

Fine specificity and T-cell receptor beta-chain gene rearrangements of five H-2Db-specific cytotoxic T-cell clones.

A panel of cytotoxic T lymphocyte clones that recognize H-2b target cells has been established. Six different clones were distinguished according to the following criteria. First, the fine specificity of the clones was determined by testing proliferation and cytotoxicity on target cells of recombinant mice. Clone 221 recognized H-2Kb, and five other clones recognized H-2Db. Clone 433 distinguished itself from the other five Db-specific clones by cross-reacting with an antigen on H-2k cells. Second, the presence of an idiotypic determinant as defined by the 3F9 clone-specific monoclonal antibodies was investigated in cytotoxicity inhibition experiments. One of the Db-specific clones, 653, was inhibited by these antibodies and was therefore clearly different from the other Db-specific clones. The third criterion involved the rearrangement pattern of the DNA coding for the beta chain of the T-cell receptor. Southern blot analysis showed that each clone had a unique pattern. Interestingly, clone 653, which expresses the same idiotypic determinant as clone 3F9, had deleted the C beta 1 gene cluster, whereas this gene is functionally expressed in clone 3F9.

Animals↗

Early development of Ig-secreting cells in young of germ-free BALB/c mice fed a chemically defined ultrafiltered diet.

The influence of antigenic stimulation on the early development of the "spontaneously" occurring ("background") IgM-, IgG-, and IgA-secreting cells has been studied in mice. To evaluate the effect of such exogenous stimulation by an evolving microbial microflora, the young of BALB/c mice that were kept under germ-free conditions and fed a low molecular weight chemically defined synthetic diet (GF-CD) were compared with the young of conventional BALB/c mice fed natural ingredients (CV-NI). The young were first suckling maternal milk and between Days 15 and 18 changed to the same diet as their parents. Background Ig-secreting cells in the spleen were enumerated in the protein A plaque assay. The specificity repertoire of the IgM-secreting cells was determined with plaque assays specific for sheep red blood cells (SRBC) that were haptenized with different concentrations of nitroiodophenyl (NIP), 4-hydroxy-3.5-dinitrophenyl (NNP), and 2,4,6-trinitrophenyl (TNP). The results show that during the first few weeks of life the numbers of background IgM-, IgG-, and IgA-secreting cells in the spleen develop faster in CV-NI mice than in GF-CD mice. At 4 weeks of age equal numbers of IgM- and IgG-secreting cells were found in both groups of mice, but the number of IgA-secreting cells remained reduced in GF-CD mice during the whole period of observation. The frequencies of IgM-secreting cells specific for the differently haptenized SRBC were the same in both groups of mice during the observation period of 10 weeks. This suggests that the ontogenetic appearance of IgM-, IgG-, and IgA-secreting cells in the spleen, and the specificity repertoire of the IgM-secreting cells, as far as was tested in our panel, is independent of exogenous antigenic and/or mitogenic stimulation. However, during neonatal development the rate of development of the background Ig synthesis is enhanced by environmental antigenic stimulation.

Animal Feed↗

Flare-up of delayed-type hypersensitivity initially induced by murine cloned helper T cells.

Delayed-type hypersensitivity (DTH) reactions were induced in mice by cloned helper T cells directed against methylated bovine serum albumin (mBSA). The DTH reactions were induced either by local injection of the helper T cells together with the antigen in the hind feet or by intravenous (iv) administration of the cloned T cells and local injection of the antigen. Local or systemic (oral or iv) administration of mBSA after waning of the DTH induced by the cloned helper T cells caused a flare-up reaction. This indicates that functional helper T cells persist at the inflammation site. The inflammations were quantified in a foot swelling assay and were examined histologically. The inflammation measured in the flare-up reaction was generally lower than in the acute reaction. Histologically the acute inflammation showed edema and a large proportion of granulocytes, whereas the flare-up reaction appeared more histiocytic and showed less edema.

Animals↗

Deterioration of cellular immunity during aging. The relationship between age-dependent impairment of delayed-type hypersensitivity reactivity, interleukin-2 production capacity, and frequency of Thy-1+,Lyt-2- cells in C57BL/Ka and CBA/Rij mice.

The effect of aging on the delayed-type hypersensitivity (DTH) to sheep red blood cells (SRBC) in vivo and the interleukin-2 (IL-2) production capacity in vitro by spleen cells from young (17 weeks) and old (125 weeks) CBA/Rij and C57BL/Ka mice were investigated. For both CBA/Rij and C57BL/Ka mice an age-related decline in the DTH response to SRBC and the IL-2 production capacity was observed. Both parameters are mediated by Thy-1+,Lyt-2- spleen cells. For both mouse strains the proportion of Thy-1+,Lyt-2- spleen cells declined less strongly with aging than the DTH reactivity and the IL-2 production capacity. From this it was concluded that not only a quantitative but also a qualitative decrease of T-cell function occurs during senescence. It was also investigated whether the proportion of Thy-1+,Lyt-2- peripheral blood lymphocytes can be used as a predictive value with regard to the decline of DTH with aging of the corresponding mouse. This was indeed found to be the case in CBA/Rij mice, but not in C57BL mice.

Aging↗