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Biomedical subjects

E B Bell

Publications and source records attributed to E B Bell.

At least 37 records · Page 2Linked to original sources

CD45RC+ CD4 T cell subsets are maintained in an unresponsive state by the persistence of transfusion-derived alloantigen.

The ability of preoperative blood transfusion to extend the survival of organ allografts is well known but poorly understood. To study this phenomenon, adult PVG (RT1c) rats were rendered tolerant of DA (RT1a) cardiac allografts by prior donor-specific blood transfusion (DST). We investigated the cellular basis of the transfusion effect by adoptively transferring CD4 T cell subsets, obtained from thoracic duct lymph of tolerant rats, into cardiac allografted athymic PVG nude recipients. Surprisingly, CD4 T cells from DST rats evoked acute rejection on adoptive transfer. Evidence indicated that CD8 T cells played no role in DST-induced tolerance. Analysis of CD4 T cell subsets, defined in the rat by mAb OX22 (anti-CD45RC), revealed an unusual pattern of responsiveness. CD45RC+ CD4 T cells (normally capable of inducing prompt rejection), when obtained from rats given a specific blood transfusion, were depleted of alloreactive cells and deficient at inducing rejection. In contrast, the CD45RC- subset (normally slow at evoking graft destruction) was highly active and ten-fold-enriched in its ability to induce rejection. Destruction of cardiac allografts by this latter subset was, however, completely inhibited by giving nude recipients a specific (but not a third-party) blood transfusion two weeks before heart grafting and cell transfer. Apparently, tolerance was maintained by residual elements of the prior blood transfusion that prevented the specific CD45RC- subset from regaining an alloaggressive capacity.

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Migration pathways of CD4 T cell subsets in vivo: the CD45RC- subset enters the thymus via alpha 4 integrin-VCAM-1 interaction.

The present investigation examines the localization and migration of purified T cell subsets in comparison with B cells, CD8 T cells and CD4+ CD8- single-positive thymocytes. CD4 T cell subsets in the rat are defined by mAb MRC OX22 (anti-CD45RC), which distinguishes resting CD4 T cells (CD45RC+) from those (CD45RC-) which have encountered antigen in the recent past--subpopulations often referred to as 'naive' and 'memory'. Purified, 51Cr-labelled CD45RC+ CD4 T cells broadly reflected the migration pattern of CD8 T cells and B cells. Early localization to the spleen was followed by a redistribution to mesenteric lymph nodes (MLN) and cervical lymph nodes (CLN), B cells migrating at a slightly slower tempo. There was almost no localization of these subpopulations to the small or large intestine [Peyer's patches (PP) excluded]. In contrast, CD45RC- CD4 T cells (indistinguishable in size from the CD45RC+ subset) localized in large numbers to the intestine; they were present here at the earliest time point (0.5 h), persisted for at least 48 h but did not accumulate, indicating a rapid exit. Numerically, localization of CD45RC- CD4 T cells in the MLN could be accounted for entirely by afferent drainage from the intestine. Unexpectedly, CD45RC- CD4 T cells (but not other subsets) localized and accumulated in the thymus. In vivo treatment with mAb HP2/1 against the integrin alpha 4 subunit inhibited almost entirely CD45RC- CD4 T cell migration into the PP (98.1%), intestine (87.1%), MLN (89.1%) and thymus (93.5%); migration into the CLN was only reduced by half. To distinguish between recognition of MAdCAM-1 and VCAM-1 by alpha 4-containing integrins, recipients were treated with mAb 5F10 against rat VCAM-1. Except for the thymus and a small reduction in CLN, localization of CD45RC- CD4 T cells was unaffected; entry to the thymus was almost completely blocked (92.3%) by anti-VCAM-1. The results indicated (i) that CD45RC- CD4 T cells alone showed enhanced localization to the gut and PP, probably via alpha 4 beta 7-MAdCAM-1 interaction; (ii) that many CD45RC- cells entered non-mucosal LN independently of alpha 4 integrin or VCAM-1; and (iii) that entry of mature recirculating CD45RC- CD4 T cells into the thymus across thymic endothelium was apparently regulated by alpha 4 integrin-VCAM-1 interaction.

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The survival and turnover of mature and immature CD8 T cells.

The present investigation has examined the phenotype, survival and fate of immature and mature CD8 T cells. CD4- CD8+ 'single positive' thymocytes (a model for recent thymic emigrants) were Thy-1+ CD45RC- RT6- before transfer to normal euthymic recipients, but changed phenotype within 7-10 days to become Thy-1- CD45RC+ RT6(+)--the phenotype of mature resting CD8 T cells. Following transfer to athymic nude recipients CD8 T cells from thoracic duct lymph of allotype-marked rats increased 12-17-fold during the first 2 months. Proliferation occurred in the complete absence of CD4 T cells and the donor CD8 T cells persisted [at 15-18% of peripheral blood lymphocytes (PBL)] for the life of the recipients. When combined with equal numbers of CD4 T cells, however, CD8 T cells occupied only 3-4% of PBL; in these animals CD4 T cells plateaued at 15-16% of PBL. The results suggested that CD8 T cells competed poorly with rapidly dividing CD4 T cells for limited space in a recirculating pool in which total T-cell numbers are homeostatically regulated. Although able to proliferate and self-renew in athymic nude recipients, when transferred to normal euthymic animals donor-derived mature CD8 T cells declined in number with time; their half-life was estimated to be 34 days. Similar studies with purified CD4- CD8+ 'single positive' thymocytes gave a comparable half-life of 37 days. The results indicated that lifespan was not due to an ageing process among CD8 T cells, but was rather a reflection of cell turnover dependent on thymic output.

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Membrane CD45R isoform exchange on CD4 T cells is rapid, frequent and dynamic in vivo.

CD4 T cells bearing high (240-190 kDa) and low (180 kDa) molecular mass isoforms of the leukocyte common antigen CD45 define functionally distinct subsets which have been equated with naive and memory T cells. In the rat, CD4 T cells expressing a high molecular mass isoform [identified by monoclonal antibody MRC-OX22 (anti-CD45RC)] exchange this for the 180 kDa molecule (CD45RC-) when stimulated by antigen. Here we show, by transferring mature allotype-marked CD45RC- CD4 T cells (depleted of immature Thy-1+ CD45RC- recent thymic emigrants) into normal euthymic recipients, that many T cells re-express the high molecular mass isoform in less than 6 h. By 24 h, 30-60% of CD45RC- CD4 T cells became CD45RC+; within a week the entire cohort appeared to exchange the low for the high molecular mass isoform. Isoform exchange was dynamic and many CD4 T cells returned once again to the CD45RC- state. CD45RC- CD4 T cells declined in number more rapidly than the CD45RC+ subset after transfer. The results suggest that CD45R isoforms distinguish between resting T cells (CD45RC+) and those which have encountered antigen in the recent past. CD45R isoforms would appear to be unsuitable markers of naive and memory T cells.

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Thymic education curtailed: defective immune responses in nude rats reconstituted with immature thymocyte subsets.

We have studied the ability of thymocyte subsets from allotype marked donors to populate athymic nude rats with T cells and to restore immune responsiveness. Following adoptive transfer, CD4-CD8- double-negative (DN) thymocytes (lymphoid precursor cells) or the CD4+CD8+ double-positive (DP) subset (intermediate thymocytes) or CD4+CD8- single-positive (CD4 SP) cells (mature thymocytes) each generated a permanent population of CD4+ progeny in syngeneic nude recipients. DN and DP thymocytes also produced small numbers of CD8+ cells; there was no evidence of a CD4-CD8- or CD4+CD8+ donor cell population. CD4 SP thymocytes conferred T cell functions [graft-versus-host (GVH) responses, allograft rejection and thymus-dependent antibody responses] on nude rats that were almost indistinguishable from those conferred by mature peripheral recirculating CD4 T cells. Transfer of DP thymocytes extended the life-span of the immunoincompetent nudes and produced CD4+ progeny with near normal GVH responsiveness. However, DP-derived CD4+ cells were deficient at inducing allograft rejection and provided little or no help for antibody synthesis. The CD4+ progeny of DN thymocytes did not prolong the survival of nude recipients, gave reduced GVH reactivity, showed almost no capacity to initiate skin allograft rejection and failed to help B cells produce antibody. The results suggest that intrathymic development proceeds stepwise; each stage is accompanied by acquisition of additional properties that are reflected by T cell responses in the periphery. Thymic education does not become complete until the SP stage is reached when thymocytes become fully independent of the thymic microenvironment.

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Mast cell recovery following chronic treatment with compound 48/80.

Histochemical and functional properties of mast cells (MC) in Brown Norway rats recovering from chronic treatment with the MC secretagogue compound 48/80 were examined. In the skin, treatment for 5 days with compound 48/80 resulted in a marked decrease in MC subpopulations defined by differential alcian blue/safranin staining. Both safranin-positive connective tissue MC and alcian blue staining MC were reduced in number. This was accompanied by significant decreases in skin histamine and rat MC serine protease I contents and a loss of specific IgE-mediated passive cutaneous anaphylaxis (PCA) activity. The PCA reaction did not return to normal before 2 months after stopping treatment and only when the numbers of safranin-positive connective tissue MC and skin histamine content reached pretreatment levels. The subepidermal alcian blue staining MC not eliminated by the compound 48/80 treatment were formalin resistant (unlike alcian blue staining mucosal MC of the intestine) and apparently played no role in the PCA response. MC numbers, histamine levels, and rat MC serine protease I content of the tongue were similarly decreased by compound 48/80. In contrast, mucosal MC of the gut were unaffected by the secretagogue treatment.

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Rapid re-expression of CD45RC on rat CD4 T cells in vitro correlates with a change in function.

Rat CD4+ T cells are divided phenotypically by the anti-CD45RC monoclonal antibody OX22 into subsets with contrasting functions. Stimulation of T cells in vitro is known to induce a change in isoform from CD45RC+ to CD45RC-. We have investigated the in vitro conditions which promote a switch in isoform in the opposite direction. We observed that a majority of CD45RC- CD4 T cells (> 90%) spontaneously re-expressed CD45RC during the first 1-3 days of culture in both the presence and absence of alloantigen. The T cells remained CD45RC+ when cultured for 7 days in serum-free growth medium. However, alloantigen-activated lymphocytes, expressing the interleukin-2 receptor (IL-2R), downregulated CD45RC by day 4 and remained CD45RC- during the course of the experiment. Using mixtures of allotype-marked CD45RC+ and CD45RC- T cells, it was demonstrated that each subset showed comparable survival, IL-2R expression and time courses of activation in response to alloantigen. The repertoire of neither subset was, therefore, deficient in terms of allorecognition. The rapid re-expression of CD45RC in culture was accompanied by a change in function: CD45RC+ "converts", obtained by overnight culture of CD45RC- T cells, induced significantly higher graft-versus-host responses. Thus, the transition in culture from CD45RC- to CD45RC+ reflects a major functional reprogramming of the cell and not a trivial modulation of a surface antigen.

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CD4+ T cell-mediated rejection of major histocompatibility complex class I-disparate grafts: a role for alloantibody.

Experimental studies of the T cell requirement for rejection of class I major histocompatibility complex (MHC)-disparate grafts have generated controversy over both the autonomy of CD8+ T cells and the mechanism whereby CD4+ T cells are able to independently mediate rejection. In this study of rejection of RT1Aa class I MHC-disparate rat cardiac and skin allografts by high-responder PVG RT1u recipients, we show that elimination of CD8+ T cells [by anti-CD8 monoclonal antibody (mAb) administration in vivo] fails to prolong graft survival, whereas partial depletion of CD4+ T cells (by anti-CD4 mAb treatment) markedly delays rejection of class I-disparate heart grafts, and marginally prolongs survival of skin grafts. Anti-CD4-treated PVG-RT1u athymic nude rats reconstituted with CD8+ T cells failed to reject class I-disparate skin grafts for several weeks and eventual rejection correlated with re-emergence of a small number of donor derived CD4+ T cells. Conversely, anti-CD8-treated nude rats reconstituted with CD4+ T cells alone rapidly rejected class I-disparate skin grafts. Passive transfer of anti-class I immune serum to anti-CD4-treated euthymic recipients promptly restored their ability to specifically reject a class I-disparate heart graft. Similarly, passive transfer of immune serum to PVG-RT1u nude rats bearing skin allografts caused destruction of class I-disparate but not third-party grafts. These results demonstrate that CD4+ T cells are both necessary and sufficient to cause rejection of class I-disparate heart and skin grafts in this model and that CD4+ T cell-dependent alloantibody plays a decisive role in effecting rejection.

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Induction of an auto-anti-IgE response in rats. IV. Effects on mast cell degranulation.

Induction of an auto-anti-IgE (auto-aIgE) response in the rat inhibits both total and specific IgE production and alters the distribution of mast cell (MC) subpopulations identified by differential Alcian blue/safranin staining. We have extended these observations by characterizing the auto-aIgE antibodies and determining their effects on MC degranulation in vitro and in vivo. An auto-aIgE response was induced in bacillus Calmette-Guérin (BCG)-primed rats by injecting a conjugate of highly purified rat IgE myeloma (IR2) coupled to tuberculin-derived purified protein derivative (PPD). Anti-IgE autoantibodies were almost exclusively IgG2a. The intradermal injection of auto-aIgE into untreated rats induced local MC degranulation as shown by a strong immediate skin response. Histologically there was evidence of significant degranulation of safranin staining connective tissue MC (SMC) in the skin but not of the Alcian blue staining MC (ABMC) in the sub-epidermal region. The induced degranulation was epsilon-chain specific; immunopurified anti-idiotypic antibodies raised to the IgE IR2 myeloma had no MC degranulating activity. When administered locally, auto-aIgE inhibited a subsequent passive cutaneous anaphylaxis (PCA) response elicited by anti-ovalbumin IgE. In addition, the PCA response was significantly decreased in animals with an ongoing auto-aIgE response. Immunopurified auto-aIgE also induced histamine release in vitro from rat peritoneal MC. These results are discussed in the context of naturally occurring autoantibodies to IgE present in patients with allergic disease.

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Functional maturation of recent thymic emigrants in the periphery: development of alloreactivity correlates with the cyclic expression of CD45RC isoforms.

The transition from fully developed CD4+CD8- single-positive (SP) thymocytes into fully mature recirculating peripheral T cells is both poorly understood with regard to the expression of restricted isoforms (CD45R) of the leukocyte common antigen and in terms of T cell function. The present investigation monitored the extrathymic development of CD4+CD8- SP thymocytes in euthymic recipients using allotype-marked donor cells and monoclonal antibody OX22 which recognizes an epitope on the C exon of rat CD45R. We established that donor-derived cells in the blood 1 day later bore the phenotype of the injected SP thymocytes (CD4+ Thy-1+ CD45RC-). T cells with the identical phenotype were also present in the thoracic duct lymph of uninjected rats, suggesting that the Thy-1+ CD45RC- T cells represent recent thymic emigrants (RTE) which have migrated to the periphery of their own accord. During extrathymic maturation donor-derived peripheral RTE lost Thy-1 within 3 days and expressed the CD45RC+ high molecular weight isoform by day 7; between days 8 and 14 a proportion (25%-30%) of the donor cells once again lost the high molecular weight isoform (CD45RC-). The transition of SP (CD45RC-) thymocytes to fully mature CD45RC+ CD4 T cells via intermediate peripheral RTE was accompanied at each stage by an increased ability of the maturing T cells to induce skin allograft rejection. Unexpectedly, the subsequent loss of the high molecular weight isoform, following presumed antigen encounter, was associated with a significant reduction in the ability of this Thy-1-CD45RC- subpopulation to effect graft rejection. The cyclic expression of CD45RC isoforms on both immature and mature CD4 T cells and the fact that the low molecular weight isoform was found in the periphery on both RTE (unquestionably naive) and antigen-experienced CD4 T cells, makes it unlikely that this isoform uniquely identifies memory T cells, at least in the rat.

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Allograft rejection in CD4+ T cell-reconstituted athymic nude rats--the nonessential role of host-derived CD8+ cells.

PVG-rnu/rnu nude rats reject fully allogenic renal (DA) and skin (BN, AO) allografts after the adoptive transfer of naive CD4+ T cells alone, but rejection is accompanied by the accumulation of many nude-derived CD8+ leukocytes within the graft. In addition, mononuclear cells infiltrating the rejecting renal grafts in these animals display cytotoxic activity in vitro against specific and third-party alloantigens. In this investigation we have treated CD4+ T cell-restored nude rats bearing renal or skin allografts with the mAb MRC OX8 to deplete the host of CD8+ cells. In vivo treatment with OX8 completely eliminated CD8+ cells from rejecting grafts of both kidney and skin, but it did not prevent graft rejection, nor did OX8 treatment abolish the cytotoxic effector cells found in nude rat spleen or in graft-infiltrating cells (GIC) of rejecting renal allografts. The nature of the cytotoxic activity was examined with anti-CD3 mAb 1F4, which was shown to block conventional CD8+ Tc killing in vitro but did not inhibit allogeneic target cell lysis by spleen cells from nude rats. The cytotoxic activity found in GIC of rejecting allografts was not inhibited by anti-CD3 mAb, suggesting that these cytotoxic effector cells were CD3-CD8- and were of extrathymic origin. We conclude that non-thymus-derived CD8+ GIC are not essential for allograft rejection in CD4+ T cell-restored nude rats.

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Prolongation of rat corneal graft survival by treatment with anti-CD4 monoclonal antibody.

A rat model of orthotopic corneal graft rejection was used to investigate the effect of depletion of subpopulations of immune cells by treatment with monoclonal antibodies. Though CD4+ cells were not eliminated completely by anti-CD4 monoclonal antibodies there was a profound delay in the rejection times of orthotopic corneal allografts. Furthermore a third of the CD4+ depleted animals failed to reject corneal allografts by 100 days post grafting. Despite an almost complete depletion of circulating CD8+ cells, the anti-CD8 antibody treated animals rejected corneal allografts in a similar time course to allografted controls treated with a non-reactive control antibody OX21. These results demonstrate that CD8+ T-cells are not required for rejection of corneal allografts whereas CD4+ T-cells play a critical role in the rejection response. Treatment with anti-CD4 antibodies may have a useful clinical application.

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Function of CD4 T cell subsets in vivo: expression of CD45R isoforms.

Currently high (hi) and low (lo) molecular weight isoforms of CD45R are used to identify naive and memory T cells. However, CD45R isoforms were found to be expressed cyclically on CD4 T cells in vivo. A switch in isoform paralleled a change of function. During early post-thymic development, a switch from CD45Rlo to CD45Rhi occurred prior to antigen encounter. Naive CD45Rhi T cells when stimulated by antigen became CD45Rlo but reverted to CD45Rhi with time. It is argued that CD45Rlo T cells functionally resemble effector T cells and are at a pivotal stage of differentiation. Many are equipped to migrate into sites of inflammation. Removed from antigen, antigen-primed CD45Rlo T cells become CD45Rhi (memory) and thus adopt the same phenotype as naive T cells.

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Comparative evaluation of the immune status of congenitally athymic and euthymic rat strains bred and maintained at different institutes: 1. Euthymic rats.

We performed a comparative evaluation of the immune status, focused on the T-cell system, of euthymic rat strains in which the nude mutation had been introduced. From 10 institutes, we sampled 12 groups of euthymic rats at ages of 1 1/2-2 months and 1/2 year. We analyzed weight of body, spleen and thymus; antibody response and delayed-type hypersensitivity response to ovalbumin immunization; and (immuno)histopathology of spleen, lymph nodes, and lymphoid tissue along the gastrointestinal tract. In the spleen morphometric analysis was done of the periarteriolar lymphocyte sheath (using the antibody R73 recognizing the alpha beta-T-cell receptor) and of the red pulp (using the antibody ED2 recognizing red pulp macrophages). For almost all parameters tested, statistically significant differences between the groups (origin of the animals) were observed. A cluster analysis on the basis of body weight, spleen weight, and morphometric data of spleen did not yield clusters with a different composition among animals from individual groups. Based on the antibody response to ovalbumin, clustering revealed groups of "fast-and-high", "slow-and-low", and "intermediate" responders. The various groups differed in location within these clusters, i.e. the speed and extent of the immune response depends on the background euthymic strain. Considering the microbiological status assessed by serology, a variation was found both in post-infection state at entrance in the study, and in primo-infection associated with a rise in antibody concentrations during the study. These states showed no negative effect on anti-ovalbumin reactivity. Rather, the response in primo-infection to Rat Corona Virus, Sendai Virus, and Pneumonia Virus of Mice was the highest in animals clustered as "fast-and high" responders to ovalbumin.

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Comparative evaluation of the immune status of congenitally athymic and euthymic rat strains bred and maintained at different institutes: 2. Athymic rats.

We performed a comparative evaluation of the immune status, focused on the T-cell system, in congenitally athymic rat strains. From 11 institutes around the world, we sampled 15 groups of animals at ages of 1 1/2-2 months and 1/2 year. The analysis included weight of body and spleen; antibody response and delayed-type hypersensitivity response after immunization with ovalbumin; and (immuno)histology of spleen, lymph nodes and lymphoid tissue along the gastrointestinal tract. Morphometric analysis was done for alpha beta-T-cell receptor-bearing cells in spleen tissue as a measure of the periarteriolar lymphocyte sheath; it was also done for splenic red pulp using the antibody ED2 recognizing red pulp macrophages. For almost all variables analyzed, statistically significant differences between the groups were observed. The extent of alpha beta-T-cell receptor-bearing cells in the spleen increased with age. The functioning of these cells in immunological responses can be questioned, because an immune response to ovalbumin was invariably absent. But secondary follicles with germinal centers, reflecting T-cell-dependent B-cell reactivity, were observed in lymph nodes and Peyer's patches (up to 40% and 75%, respectively, depending on the group), with a higher prevalence in older animals. A cluster analysis on the basis of body and spleen weight and composition of spleen compartments did not yield clusters with a different profile in regard to the animals' group of origin. The data presented are useful when comparing studies performed with various athymic rat strains at different institutes.

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CD45R CD4 T cell subset-reconstituted nude rats: subset-dependent survival of recipients and bi-directional isoform switching.

High and low molecular weight variants (CD45R) of the leukocyte common antigen (CD45) divide CD4 T helper cells into subpopulations which display distinct characteristics. In vitro and in vivo evidence suggested that the presence of the high molecular weight splice variants CD45RA or CD45RB distinguished naive CD4 T cells from memory T cells which underwent an irreversible switch to the low molecular weight isoform as a consequence of antigen encounter. In the rat monoclonal antibody MRC OX22 identifies an epitope on the CD45RB molecule. We investigated this proposed differentiation pathway by reconstituting athymic nude rats with highly purified OX22+ or OX22- CD4 T lymphocyte subsets obtained from the thoracic duct (TDL) of euthymic, congenic, allotype-marked donors. Injection of CD4+CD45RB- (45R-) cells ensured long-term survival of nude recipients; recipients of CD4+CD45R+ (45R+) cells died within 2-3 months of injection. Early after transfer (3-4 weeks) the progeny of both 45R+ and 45R- TDL were uniformly 45R-. With time (by 2 months) progeny of both parental types expressed the high molecular weight CD45RB isoform. Nude recipients of 45R- TDL always generated progeny a proportion of which bore the 45R+ phenotype; 3 months to 2 years post-injection, 30%-50% of the donor-derived CD4 T cells were 45R+, 45R- progeny isolated from primary recipients of either 45R- or 45R+ cells transferred into secondary nude recipients induced skin allograft rejection with equal effectiveness and also generated 45R+ offspring. The results indicated that CD4 T cell subsets switched between CD45R isoforms and that the change between high and low molecular weight expression was bi-directional. The splice variants apparently are not lineage or maturation markers, but rather identify CD4 T cells that exist transiently in different functional states.

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Lymphocyte targeted ricin as a potential therapy for lymphoid malignancy. I. Targeting efficiency.

Lymphocytes were studied as vehicles to target the plant toxin ricin, to lymphoid tissue in rats. Ricin-loaded thoracic duct lymphocyte (TDL) migrated normally into lymph nodes (LN) at 0.5 h, but this process was arrested by 3 h after injection. Ricin was successfully targeted to lymphoid tissue as evidenced by a 4-fold increase in ricin-associated radioactivity in LN, a 10-fold increase in the Peyers patches, a doubling in the spleen and a 35% reduction of radioactivity in the liver compared with free ricin. Nevertheless this represented a considerable shortfall in the expected targeting efficiency. The main problem was found to be high in vivo elution of ricin from TDL (70% within 0.5 h of i.v injection). This and other aspects relevant to maximising targeting efficiency are discussed.

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