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N L Tilney

Publications and source records attributed to N L Tilney.

At least 19 recordsLinked to original sources

Evidence that therapeutic strategies targeted at CD4+ cells modulate accelerated rejection of cardiac allografts in sensitized rats by different mechanisms.

(LEW x BN)F1 cardiac allografts are rejected within 36 hr in LEW rats presensitized with BN skin grafts 7 days earlier (acute rejection occurs within 8 days). We have previously described the effects of individual CD4 (BWH-4), CD25 (IL-2R, ART-18) mAbs, and CsA therapeutic regimens upon cardiac allograft survival in sensitized hosts. The present studies were designed to probe an adjunctive use of ART-18 or CsA upon BWH-4-mediated suppression of accelerated graft injury. Sequential therapy with BWH-4 and ART-18 in the sensitization phase (days -7 to -1) and effector phase (from day 0, the day of cardiac transplant), respectively, prolonged graft survival additively to c. 22 days. Treatment with BWH-4 markedly diminished host humoral response against ART-18 preparation. BWH-4 given in concert with subtherapeutic dose of CsA produced graft survival comparable to that induced by mAb alone (c. 13 days) with concomitant decreased host anti-BWH-4 response. None of the combined regimens affected the frequency of circulating CD4+ cells, as compared with that exerted by BWH-4 monotherapy. Thus this study defines principles and some mechanistic aspects of optimal immunosuppressive strategies potentiating the effects of CD4-targeted therapy.

Animals

Maturing thymocytes in accelerated rejection of cardiac allografts in presensitized rats.

LBNF1 cardiac allografts are rejected within 36 hr in LEW rats sensitized with BN skin grafts 7 days earlier (acute rejection in unmodified hosts = 8 days). We have studied and compared the function and migration patterns of thymocytes one day after engraftment in sensitized recipients, unmodified hosts, and normal naive rats. Thymocytes from animals experiencing accelerated rejection were more mature and functionally active, as shown by a significant elevation in percentage of OX-44+ (CD37+) cells, increased alloreactivity to BN and WF antigens, and proliferative responses to Con A and exogenous IL-2. However, the cells could neither lyse BN targets in vitro nor trigger rejection of otherwise indefinitely functioning test cardiac allografts in immunologically unresponsive T cell-deficient (B) rats after adoptive transfer. The traffic of 111In-labeled thymocytes was then evaluated. The migration index increased significantly during accelerated graft rejection, with thymocytes preferentially circulating in the blood, penetrating peripheral lymph nodes--and, interestingly, migrating back to the thymus. Thus, immunoresponsive and functionally active thymocytes, which lack the ability to recognize primed specific antigen, appear during accelerated rejection of cardiac allografts in sensitized rats. These cells migrate to the periphery, and then return in large numbers to their site of origin, the thymus. Hence, this study describes a novel behavior of thymocytes in the state of host alloreactivity that is distinct from the physiological one in otherwise normal thymus.

Animals

Progressive albuminuria and glomerulosclerosis in a rat model of chronic renal allograft rejection.

A significant proportion of renal allografts fail within several months or years after transplantation, primarily because of chronic rejection. The etiology and pathophysiology of this condition remain unclear. We studied the renal function, morphology, and immunohistology, in parallel, among F344-to-Lewis allografts (n = 23) and isografts (n = 13) over the course of 24 weeks. Only an initial 10-day course of CsA (5 mg/kg/day) was given to both groups to prevent acute rejection. Hypertension did not develop, although awake systolic blood pressure was significantly higher in allografts at the end of the study. Significant differences in urine albumin excretion (UalbV) between isografts and allografts were evident as early as 4 weeks after engraftment but rose dramatically by 20 weeks (3.3 +/- 0.7 vs. 21.2 +/- 3.7 mg/day, respectively, P < .001). This pattern continued until the conclusion of the study (5.0 +/- 1.1 vs. 53.5 +/- 7.6 mg/day, P < .001). Serum creatinine values were only significantly elevated in allografts at 16 weeks, which temporally corresponded to the dramatic increase in UalbV. However, renal blood flow and glomerular filtration rate, measured by paraaminohippurate and inulin clearances, respectively, were significantly lower in allografted organs, at 24 weeks. The frequency of glomerulosclerosis lesions was significantly increased in allografted kidneys at 24 weeks and correlated with UalbV values. Glomerular localization of mononuclear leukocyte subsets were equivalent between allografts and isografts; however, the numbers of interstitial macrophages, CD8+, and pan-T-cells were all significantly greater in allografts at 24 weeks. The infiltration of significantly greater numbers of macrophages and lymphocytes into the tubulointerstitium of the allograft group suggests a mononuclear leukocyte effector cell mediation of the progressive glomerular abnormalities in this model of chronic renal allograft rejection in the rat.

Albuminuria

Experimental graft arteriosclerosis. I. The Lewis-to-F-344 allograft model.

Progressive graft arteriosclerosis is responsible for the majority of late deaths occurring in cardiac transplant recipients. In order to define a model of this disease in the rat, we exchanged heterotopic cardiac allografts between MHC-compatible inbred strains. Lewis rats served as donors and F-344 rats as recipients. Twenty allografts were followed by daily palpation and removed at the time of terminal rejection or on the 120th postoperative day for pathologic study. Sixteen allografts (80%) survived at least three weeks, and five allografts (25%) survived indefinitely. The majority of arteries (greater than 90%) examined demonstrated significant intimal disease; histologic findings in lesions in allografts rejecting at early time points included intense mononuclear cell infiltration of the intima, while lesions in long-term-surviving allografts demonstrated fibrous intimal thickening, which is characteristic of graft arteriosclerosis seen clinically. A limited course of cyclosporine therapy in F-344 recipients increased the incidence of indefinite allograft survival from 25% to 86%, and was associated with a modest reduction in the amount of intimal disease observed. These results suggest that this model should be useful in future studies regarding the pathogenesis and therapy of cardiac graft arteriosclerosis.

Animals

The biology of acute transplant rejection.

An intriguing and increasingly understood facet of immune responses is the ability of a recipient to destroy a foreign tissue or organ graft. The phenomenon of acute rejection of an allograft involves a series of complex and inter-related cellular and humoral events, culminating in graft death. Some of the current thinking surrounding this phenomenon is reviewed.

Animals

A randomized prospective trial of anti-Tac monoclonal antibody in human renal transplantation.

Patient entry is now complete in a prospective trial of anti-Tac, a murine IgG2a monoclonal antibody directed against the p55 chain of the human IL-2 receptor, for the prevention of renal allograft rejection. Recipients of primary cadaver allografts were randomized to receive either anti-Tac (20 mg q.d. x 10 days beginning POD 1) plus low-dose CsA (4 mg/kg/day), azathioprine (2 mg/kg/day), and prednisone (30 mg q.d.), or conventional triple therapy with CsA (8 mg/kg/day), azathioprine, and prednisone. Forty patients were entered in each group, with current followup from 6 to 26 months. The results show a significant reduction in early rejection episodes in the anti-Tac-treated patients. During the 10-day treatment, 5 of 40 anti-Tac patients had rejection episodes, compared with 21 of 40 control patients (P less than 0.001). Anti-Tac significantly delayed the time to the first rejection (12.5 +/- 6.3 vs. 7.6 +/- 6.7 days) (P less than 0.05). Despite these effects, there were no differences in either actual or actuarial graft or patient survival between the two groups. Pneumonia, primarily CMV, developed in 5 treated and 4 control patients. In patients with functioning grafts mean serum creatinine at 3 months was 1.8 +/- 0.7 in the anti-Tac group and 2.0 +/- 0.8 in the control group (P = NS); at 12 months the values were 2.3 +/- 1.5 and 1.8 +/- 0.5, respectively (P = NS). The peak expression of IL-2 receptors on circulating T-cells was significantly lower in anti-Tac patients (15.1 +/- 3.6%) than in controls (21.9 +/- 4.5%) (P less than 0.05). Seven of 10 patients tested to date developed antimouse immunoglobulin antibodies, with antiidiotype shown in 6. These antibodies do not preclude subsequent treatment with OKT3. Five patients in this and previous anti-Tac protocols have received OKT3 for acute rejection despite known pretreatment antimouse antibodies, with resolution of rejection in all cases.

Adolescent

Differential role of CD4+ cells in the sensitization and effector phases of accelerated graft rejection.

Although CD4-targeted therapy markedly prolongs survival of organ allografts in naive rodents, its effects in primed hosts have not been studied. In our model of accelerated rejection (ACCR) of cardiac Tx in rats, treatment with BWH-4, a CD4 mAb (IgG2a), in the sensitization (between skin and heart Tx) but not in the effector (after cardiac Tx) phase, abrogated fulminant less than 36 hr rejection response and prolonged Tx survival to ca. 11 days. This effect correlated with decreased frequency of circulating CD4+ cells, but it did not depend upon their total depletion. It was also related to BWH-4 mAb-mediated elimination/depression of strong anti-donor humoral responses and cellular responses as determined by lymphocyte-mediated cytotoxicity and mixed lymphocyte reaction and mounted otherwise at the time of engraftment by untreated sensitized hosts. Immunoperoxidase studies of cardiac Tx from BWH-4-conditioned recipients revealed reduced T and B cell activities, reflected in abolition/reduction in deposition of humoral mediators, infiltrating cells, intra-Tx elaboration of interleukin-2 and interferon-gamma, and cell activation. This first report of the successful use of CD4 mAb in sensitized recipients of vascularized organ Tx, stresses the role of CD4+ cells as potential targets for immunosuppression in the sensitization phase of accelerated Tx injury. The beneficial therapeutic effect, probably due to both depletion and functional inhibition of CD4+ T cells, has been achieved by using relatively low doses of BWH-4 mAb.

Animals

Effects of BWH-4 anti-CD4 monoclonal antibody on rat vascularized cardiac allografts before and after engraftment.

We studied the effects and mechanism of action of BWH-4, an IgG2a mouse antirat CD4 monoclonal antibody that recognizes a distinct epitope on the CD4 molecule, in LEW recipients of (LEW x BN)F1 vascularized heterotopic cardiac allografts. Ten animals received daily injections of 700 micrograms BWH-4 for ten days after engraftment. Median actuarial allograft survival was 37 days for the treated animals compared with 7.5 days for controls (n = 6). There was depletion of peripheral blood CD4+ lymphocytes to 4 +/- 1% one week posttransplant (normal = 48 +/- 4%, n = 6). Six additional animals were treated with a lower dose (100 micrograms) of BWH-4 daily for ten days. Median actuarial allograft survival was 10 days and the circulating CD4+ cells decreased to 30 +/- 6% at one week posttransplant. All six low-dose-treated animals mounted an anti-BN alloantibody response by 3 weeks, while only one of the ten high-dose-treated animals had positive alloantibodies two weeks posttransplant. Lymphocyte-mediated cytotoxicity against donor lymphoblasts was completely abolished in the high-dose-treated animals when compared with acutely rejecting controls. We also used low-dose (100 micrograms) BWH-4 to pretreat eleven experimental animals for 7 days prior to engraftment. The circulating CD4+ cells decreased to only 12 +/- 2% on the day of transplantation and 26 +/- 9% one week posttransplant. However, six (55%) pretreated animals survived more than 55 days. There was a 66% decrease in lymphocyte-mediated cytotoxicity against donor lymphoblasts when compared with acutely rejecting controls. We conclude that the anti-CD4 mAb, BWH-4, prevents acute rejection of vascularized heterotopic rat cardiac allografts; this effect is mediated by depletion of the CD4+ T cell subset, suppression of alloantibody production, and inhibition of lymphocyte-mediated cytotoxicity.

Animals

Modulation of accelerated rejection of cardiac allografts in sensitized rats by anti-interleukin 2 receptor monoclonal antibody and cyclosporine therapy.

UNLABELLED: LBNF1 cardiac allografts (Tx) are rejected within 36 hr in LEW rats sensitized with BN skin Tx 7 days earlier, compared to 8-day rejection in unmodified hosts. Treatment with cyclosporine or ART-18, an anti-interleukin 2 receptor (IL-2[R]) mAb monoclonal antibody, abrogates accelerated rejection and prolongs mean Tx survival to 42 days and 16 days, respectively. ART-18 given in concert with subtherapeutic dose of CsA extends survival to 25 days. These studies were designed to dissect the early mechanisms leading to ART-18 and/or CsA-mediated abrogation of accelerated Tx injury. No effect of concomitant mAb administration upon CsA through levels was noted in Tx recipients conditioned with both modalities. The beneficial effect of ART-18+CsA treatment was also unrelated to CsA-induced diminished host responses to mAb, as shown by ELISA. In the biodistribution studies 125I-labeled ART-18 accumulated preferentially into host lymphoid tissues and Tx itself and away from the blood. In animals that were concomitantly given "cold" CsA, the clearance of labeled ART-18 from the blood increased further, as did mAb sequestration into the Tx. The sensitized hosts developed high titers of complement-dependent cytotoxic (CDC) antibodies, which peaked at the time of actual Tx loss. ART-18 or CsA alone inhibited CDC, whereas combined therapy decreased further the humoral effects of sensitization. The cell-mediated lymphocytotoxicity assay revealed a similar pattern. CsA, ART-18, and combination therapy each modulated the deposition of IgG, IgM, and C3 in Tx, as shown by immunohistology. However, only CsA or ART-18+CsA therapy abolished or markedly decreased elaboration of IL-2, interferon gamma, and tissue necrosis factor alpha. IN CONCLUSION: (1) the adjunctive low dose of CsA potentiates the inhibitory effects of ART-18 upon humoral and cellular responses, leading to accelerated rejection of cardiac Tx in presensitized rats; (2) the synergistic interaction between both modalities that results in the inhibition of lymphokine production is critical and correlates with long-term Tx survival; (3) the biodistribution patterns of mAb are important--an increased blood level of mAb does not necessarily translate into its higher therapeutic efficacy.

Animals

Synergy between cyclosporine and anti-IL-2 receptor monoclonal antibodies in rats. Functional studies of heart and kidney allografts.

Although cyclosporine has improved results of organ transplantation, treatment regimens using multiple agents are being evaluated both experimentally and clinically in attempts to diminish its often profound nephrotoxicity; some therapies act synergistically by differential inhibition of distinct steps of the rejection cascade. The effects on graft function of a full dose or a subclinical dose of CsA, ART-18, a monoclonal antibody (mAb) directed against the IL-2 receptor expressed on activated host cells, and a combination of low-dose CsA and ART-18, have been tested in rat recipients of both heart and kidney allografts. Renal graft function was assessed by several classic techniques; heart function by isolated perfusion methods. Full-dose CsA and combination treatment were most effective in both organ graft systems, with at least one-third of grafts surviving indefinitely. At seven days after transplantation, glomerular filtration rates and renal plasma flow of all grafted recipients were decreased as compared with normal; at 14 days, function in the best treatment groups had improved toward that of isografts. Similarly, cardiac output and stroke work index of best treatment groups were comparable to that of isografts. These functional studies complement previously reported immunological and immunohistological findings stressing that synergy occurs between subclinical doses of CsA and anti-IL-2-R mAb in two rat organ graft systems.

Animals

Transfer of specific unresponsiveness to organ allografts by thymocytes. Specific unresponsiveness by thymocyte transfer.

Prolonged survival of vascularized organ allografts has been produced in unmodified inbred rats by transfer of thymocytes from enhanced, engrafted, syngeneic animals. For these thymocytes to increase significantly the survival of test allografts they must be harvested 6-9 d after transplantation. Thymectomy of the enhanced, engrafted animals during the same critical period causes acute rejection of othewise long surviving grafts. For optimal effect, the enhanced thymocyte donor must be actively and passively immunized and receive a cardiac allograft. The necessity for erythrocytes in the initial active immunization regimen is noted. Additionally, the antigenic specificity of the suppressor effect has been established with two histoincompatible donor rat strains. Cellular and humoral host responses mounted by test graft recipients after thymocyte transfer from enhanced, engrafted donors are different from those mounted either by unmodifed animals acutely rejecting their grafts or by enhanced rats bearing well-functioning grafts. Numbers of T lymphocytes are reduced in the grafted hearts and in the spleens of test graft recipients, a finding paralleled by the complete absence of specific direct lymphocyte-mediated cytotoxicity. In contrast, cytotoxic antibody production, although delayed, is increased in magnitude, peaking around the time of graft rejection. These studies provide evidence that different biological manipulations can modify separate pathways in the complex cellular and humoral responses towards organ allografts. They demonstrate that cellular immunity is critically involved in immunological enhancement of vascularized organ allografts, a phenomenon hitherto considered primarily humoral. It seems clear that cells with suppressor activity are present within the thymus during the early phases of immunological enhancement.

Animals

Immune responses to organ allografts. II. Decreased B cell responses to cardiac allografts in rats pretreated with enhancing, suppressor cell, or T lymphocyte depletion protocols.

Primarily vascularized LBN cardiac allografts transplanted to LEW rats are rejected 6 to 8 days after transplantation. Immunoperoxidase stains for cells producing immunoglobulin (Ig) demonstrate a proliferation of Ig-containing immunoblasts in the splenic red pulp (RP) and peripheral periarterial sheath (PAS) within 2 days after transplantation. These immunoblasts differentiate into plasma cells that triple the RP volume by the time of rejection. By 14 days, the plasma cells are replaced by mitotically active large and small lymphocytes with no demonstrable cytoplasmic Ig. Splenic Ig production is followed by a venous vasculitis in the graft and by the appearance of circulating cytotoxic antibodies 5 days after grafting. Three biological methods of prolonging cardiac graft survival were found to derange this sequence of immunological reactions at different stages. Enhancement by antigen and antibody pretreatment of the recipient elicited a premature production of Ig that subsided and was not reinitiated by cardiac transplantation. Transfer of suppression with thymocytes from enhanced cardiac recipients temporarily inhibited differentiation of splenic B cells into immunoblasts and plasma cells. T cell depletion by thymectomy, irradiation, and bone marrow reconstitution also decreased the plasma cell response, possibly by removing helper cells required to switch IgM production to IgG. These studies reemphasize the importance of Ig production in the complex interaction of immune reactions leading to acute rejection of organ transplants.

Animals