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Biomedical subjects

A Ackerstein

Publications and source records attributed to A Ackerstein.

51 records · Page 3Linked to original sources

Development of antibodies to hepatitis B virus surface antigen in bone marrow transplant recipient following treatment with peripheral blood lymphocytes from immunized donors.

Bone marrow transplantation (BMT) recipients are immunosuppressed and are at risk for contracting severe infections. Recently, adoptive transfer of immunity against hepatitis B virus (HBV) was documented in BMT recipients receiving bone marrow from 'naturally' HBV-infected individuals who recovered spontaneously, or those transplanted with bone marrow cells obtained from actively immunized donors. Furthermore, reconstitution of the immune system in a BMT recipient who was a hepatitis surface antigen (HBsAg)+/HBV DNA+ carrier with HBV immune bone marrow cells led to clearance of the replicating virus, presumably through adoptive cell-mediated immunotherapy. We report three cases of induction of immunity to HBV by selective adoptive transfer by i.v. injection of peripheral blood lymphocytes (PBL) obtained from BMT donors who were actively immunized against HBV after harvesting of bone marrow. All three BMT recipients developed anti-HBs antibodies. In one BMT case in whom antibodies to HBsAg developed following adoptive transfer of immune PBL, a mild booster effect was documented in the BMT recipient upon immunization with a recombinant hepatitis B vaccine. The two remaining patients lost their antibodies to HBsAg in association with relapse of leukaemia. This immune manipulation may open the door to evaluation of adoptive transfer of immunity to HBV through selective transplantation of HBV immune lymphocytes in selected patients such as those with persistent HBV infection, as well as liver transplant recipients who require protection of the graft against HBV re-infection.

Adolescent↗

Eosinophils activation in post-autologous bone marrow transplanted patients treated with subcutaneous interleukin-2 and interferon-alpha 2A immunotherapy.

We evaluated eosinophils morphology, physical properties and antileukemic activity in autologous bone marrow transplanted (ABMT) patients treated with subcutaneous recombinant interleukin 2 (rIL-2) and recombinant human interferon alpha 2a (IFN alpha) given as outpatient immunotherapy. All patients receiving rIL-2/IFN alpha therapy developed peripheral blood eosinophilia of 20-40% peaking at 2-4 weeks of therapy. While on rIL-2/IFN alpha therapy the eosinophils became hypodense and hypersegmented. The antibody dependent cell-mediated cytotoxic activity (ADCC) of the eosinophils against the human B-cell lymphoma cell line (Raji) was depressed post-ABMT. Prolonged (28 days) in vivo rIL-2/IFN alpha immunotherapy enhanced ADCC activity of the eosinophils and brought them to normal levels. Similarly, rIL-2/IFN alpha immunotherapy enhanced the depressed cytotoxic activity of neutrophils post-ABMT to normal levels. Thus, eosinophils and neutrophils from rIL-2/IFN alpha-treated ABMT recipients may be targeted toward tumor cells by antibody, and express tumoricidal activity. No effect of rIL-2/IFN alpha was observed on monocyte-dependent ADCC activity which remained normal post-ABMT. We conclude that in addition to their effect on lymphocytes, cytokine-mediated immunotherapy consisting of subcutaneous low doses of riL-2 and IFN alpha may mediate their therapeutic effects in cancer therapy by increasing the number of eosinophils and enhancing the antitumor activity of eosinophils and neutrophils, provided that tumor-specific or tumor-associated antibodies are present.

Adolescent↗

Prevention and treatment of relapse by bone marrow transplantation.

High, myeloablative doses of chemoradiotherapy represent the treatment of choice for a large number of malignant hematological diseases that cannot be successfully treated with conventional chemotherapy. Residual tumor cells following high dose chemotherapy represent the most common treatment failure, resulting in frequent relapse following autologous bone marrow transplantation (ABMT) and even allogeneic bone marrow transplantation (BMT). Graft vs leukemia (GVL) effects mediated by immunocompetent donor lymphocytes represent a major therapeutic potential of allogeneic BMT which results in reduced rate of relapse, especially when immune interactions between immunocompetent donor's T lymphocytes and host allogantigens is apparent, a reaction which might result in graft vs host disease (GVHD). Recent experiments in animal models of murine leukemias suggest that post-transplant immunotherapy may be successfully accomplished by lymphokine-mediated immunotherapy (LMI) and cell-mediated immunotherapy (CMI). Following allogeneic BMT, provided GVHD can be prevented by T-cell depletion, CMI may be amplified by repeated administration of immunocompetent donor's lymphocytes in graded increments following successful induction of chimerism and sustained hematopoiesis. GVL effects induced by CMI may be further potentiated by in-vivo administration of a short course of recombinant human interleukin-2 (rhIL2). Taken together, our data suggest that post-transplant immunotherapy by cytokines and adoptive cell therapy may successfully prevent relapse in patients at high-risk and even result in complete elimination of tumor cells following overt relapse. Thus, immunotherapy may represent an optimal approach for prevention and treatment of minimal residual disease.

Animals↗

Cutaneous hypersensitivity to co-trimoxazole after autologus bone marrow transplantation and immunotherapy with interferon alpha-2A and interleukin-2.

Typical cutaneous hypersensitivity reaction to co-trimoxazole was seen in a woman after autologous bone marrow transplantation and immunotherapy. She had developed no such reaction during chemotherapy prior to the transplant or immediately after the transplant. The immunoperturbed state that exists for a period of time after bone marrow transplantation, especially in the presence of immunomodulation caused by combined therapy with recombinant human interferon alpha and interleukin-2, with exposure to potentially reaginic agents may have contributed to the development of the hypersensitivity reaction in this patient.

Adult↗

Local cutaneous reaction induced by subcutaneous interleukin-2 and interferon alpha-2a immunotherapy following ABMT.

Immunotherapy using subcutaneous injections of recombinant interleukin-2 (IL-2) and recombinant interferon alpha-2a (IFN-alpha) for advanced hematologic and solid tumors is rapidly developing. We report five patients with Hodgkin's and non-Hodgkin's lymphoma who developed a local cutaneous reaction consisting of inflammatory painful nodules with a central multiloculated vesicle at the site of sc injections of IL-2 and IFN-alpha immunotherapy following ABMT. This is the first report of a local cutaneous adverse reaction induced by IL-2 and IFN-alpha immunotherapy following ABMT.

Administration, Cutaneous↗

Immunological evaluation of patients with hematological malignancies receiving ambulatory cytokine-mediated immunotherapy with recombinant human interferon-alpha 2a and interleukin-2.

Immunological parameters were evaluated in patients treated with cytokine-mediated immunotherapy (CMI) consisting of low doses of recombinant human interferon alpha 2a (rIFN alpha) and recombinant human interleukin-2 (rIL-2) administered either concomitantly or sequentially by subcutaneous self-injections in an outpatient setting. Twenty-six patients with hematological malignancies and 2 metastatic melanoma patients in a progressive stage were enrolled in this clinical trial. Of the 26 patients, 24 were at a stage of minimal residual disease, including 14 patients who had received autologous bone marrow transplantation (ABMT) 2-5 months previously, 7 chronic myelogenous leukemia (CML) and 3 acute myeloid leukemia (AML) patients. Two patients (1 CML and 1 mult. myeloma) were treated at a stage of progressive disease. Non-MHC-restricted cytotoxicity directed against natural-killer(NK)-resistant (Daudi) and NK-sensitive (K562) target cells was assessed before, during and after CMI, either in fresh peripheral blood samples (spontaneous activity) or after in vitro rIL-2 activation (induced activity). Spontaneous killing activity was low prior to treatment, but increased upon termination of treatment in 10/15 evaluated cycels. rIL-2-activated cytotoxicity in vitro was markedly elevated in 8/12 and 6/8 patients after one and two cycles, respectively, of sequential treatment, as well as in 3/8 CML and 5/6 patients after one and two cycles, respectively, of concomitant treatment. Activation of the T cell mitogenic response was demonstrated in 6/9 patients after concomitant CMI, while no such effect was observed throughout a sequential treatment in lymphoma and leukemia patients after ABMT. Although a direct correlation between immune stimulation and the in vivo antitumor response cannot yet be determined, our clinical observations support a beneficial therapeutic effect in a substantial number of patients. These results indicated that the ambulatory CMI protocol of rIL-2 and rIFN alpha could stimulate the host defense immune system and may be helpful in mediating the in vivo antitumor response in patients with minimal residual disease.

Adolescent↗

Recombinant interleukin-2 and interferon alpha immunotherapy following autologous bone marrow transplantation. A case report of cardiovascular toxicity with serial echocardiographic evaluation.

The most serious side effects of recombinant interleukin-2 (rIL-2) and recombinant interferon-alpha (rIFN alpha) immunotherapy are cardiovascular disturbances, including systemic hypotension, left-ventricular dysfunction and pulmonary edema. We present a 25-year-old female who developed reversible cardiogenic shock during intermediate dose rIL-2 and low dose rIFN alpha therapy. Rapid clinical improvement occurred after intravenous fluid and dopamine support. A serial echocardiographic evaluation, which has not been described previously in this setting, is reported.

Adult↗

Immunotherapy of minimal residual disease by immunocompetent lymphocytes and their activation by cytokines.

A murine model of minimal residual disease (MRD) was established utilizing the murine B-cell leukemia (BCL1). BALB/c mice inoculated with up to 10(4) BCL1 were cured (greater than 1 year disease-free survival) following administration of intraperitoneal injections of recombinant human IL-2 (10(5) Cetus units x 3/day intraperitoneally x 5 days). Lethally irradiated BALB/c or (BALB/c x C57BL/6)F1 recipients were reconstituted with syngeneic bone marrow cells or T-cell-depleted C57BL/6 bone marrow cells contaminated with 10(4), 10(5), or 10(6) BCL1 to simulate quantitative MRD. Untreated mice died of typical leukemia without exception, whereas a substantial anti-leukemia effect was noted in mice treated by allogeneic spleen cells, IL-2, or particularly a combination of allogeneic spleen cells and IL-2 given concomitantly. Increments of donor-type spleen cells (10(6), 10(7), and 5 x 10(7)) or IL-2 (10(4) U x 2/day x 3 days) were given alone or in combination on days +1, +5, and +9 following Thy 1.2-depleted allogeneic BMT. All adoptive recipients of 10(5) spleen cells obtained from mice inoculated with 10(4) and 10(5) BCL1 treated by a combination of allogeneic spleen cells and IL-2 showed no evidence of disease greater than 100 days. The antitumor effects of allogeneic spleen cells alone and IL-2 alone were also highly significant, although not totally curative in all mice. Allogeneic spleen cells seemed more effective as compared with low dose IL-2 (3 courses of 2 x 10(4) U x 2/day x 3 days). None of the recipients of 10(6) BCL1 could be completely cured under the experimental conditions described without additional chemotherapy, although significant antitumor effects could again be documented following concomitant administration of allogeneic spleen cells and IL-2. Using an experimental model of autologous BMT, recipients of 10(3) tumor cells could also be cured following transplantation of syngeneic spleen cells by high-dose IL-2 (10(5) U x 3/day x 5 days) given at the time lymphocytes were present, optimally at 3 weeks following BMT. Based on encouraging results from experiments using our animal model of MRD, in conjunction with autologous and allogeneic BMT, pilot clinical trials are currently underway, investigating the effect of cytokine-mediated immunotherapy (CMI) in MRD following conventional and high-dose cytoreductive anticancer therapy in conjunction with ABMT. In addition, we are attempting induction of cell-mediated cytokine-activated immunotherapy (CCI) in conjunction with autologous and allogeneic BMT. Prospective randomized clinical trials and longer observation periods are required to assess the full efficacy of these new therapeutic modalities.

Animals↗

Immunotherapy of minimal residual disease in conjunction with autologous and allogeneic bone marrow transplantation (BMT).

Recent investigations in animal models of human lymphoid and myeloid leukemia suggest that induction of immune-mediated antitumor effects is feasible at the stage of minimal residual disease (MRD) using allogeneic immunocompetent lymphocytes following initial reconstitution with T cell depletion and/or activation of reconstituting syngeneic or allogeneic immune cells by recombinant interleukin-2 (rIL2). Pilot clinical trials in patients with leukemias and lymphomas at high risk to relapse following autologous bone marrow transplantation (BMT) suggest that beneficial antitumor effects may be achieved at the stage of MRD by home immunotherapy as soon as hematopoietic reconstitution occurs using rIL2 (Cetus) and alpha interferon (Roferon A) (Hoffmann LaRoche). Although results obtained from our open trial seem encouraging, prospective randomized trials and longer observation periods are needed in order to confirm immune-mediated antitumor effects in conjunction with autologous BMT in patients with malignant hematological disorders at high risk to relapse. Likewise, it seems that amplification of anti-leukemia effects following allogeneic BMT is feasible by post-transplant infusion of donor's peripheral blood lymphocytes for prevention and/or treatment of relapse.

Adolescent↗

Use of recombinant human interleukin-2 in conjunction with syngeneic bone marrow transplantation in mice as a model for control of minimal residual disease in malignant hematologic disorders.

Unlike allogeneic bone marrow transplantation (BMT), autologous BMT is not accompanied by immune-mediated graft-versus-leukemia (GVL) effects; hence, the relapse rate observed after autologous BMT in malignant hematologic disorders is higher than that observed after allogeneic BMT. Autologous BMT represents a much safer medical procedure available for many patients in need in situations where allogeneic BMT is not feasible or risky. The present experiments were designed to investigate whether it might be possible to combine the therapeutic benefits of autologous BMT with additional immunotherapy after BMT. The tumor model used for investigating GVL effects was the murine B-cell leukemia (BCL1), a spontaneous, nonimmunogenic, highly lethal leukemia of BALB/c origin. BALB/c mice inoculated with 10(3) BCL1 leukemia cells were treated on day-1 with cyclophosphamide 100 mg/kg and transplanted with normal syngeneic BM cells on day 0. High-dose recombinant interleukin-2 (rIL-2) (100,000 Cetus units x 3/day intraperitoneally x 5 consecutive days) was initiated on day +1, +7, or +21 after BMT. Kinetics of lymphocyte reconstitution after syngeneic BMT indicated a steep increase in the absolute number of peripheral blood lymphocytes on days 17 through 24. All experimental groups were observed for relapse. Mice receiving no rIL-2 therapy relapsed and died within 50 days after BMT, whereas mice receiving rIL-2 showed long-term disease-free survival. Optimal time for administration of rIL-2 was noted at 3 weeks post-BMT, with 90% of the mice surviving with no evidence of disease for more than 1 year. Similarly, when 10(4) BCL1 cells were given 1 day after syngeneic BMT to simulate minimal residual disease after syngeneic BMT, rIL-2 therapy administered at 14 days post-BMT seemed effective in prolonging disease-free survival in contrast to the same regimen given at 1 day after BMT. Our data suggest that immunotherapy with rIL-2 should be further investigated as a new immunotherapeutic tool for decreasing the relapse rate after BMT for hematologic malignancies.

Animals↗

Control of relapse due to minimal residual disease (MRD) by cell-mediated cytokine-activated immunotherapy in conjunction with bone marrow transplantation.

In conclusion, lessons from the animal model of lymphoid leukaemia suggest that in the setting of allogeneic BMT, under certain conditions GVL effects may be separable from GVHD; more specifically, GVL effects may be induced despite development of tolerance of donor cells against allogeneic host alloantigens. The latter phenomenon suggests that either curative GVL effects may be inducible despite subclinical GVHD or alternatively that effector cells of GVL may recognize different tumour-associated targets different from cell surface determinants of 'normal' alloantigens. Alternatively, effector cells of GVL may be distinguished from effector cells of GVHD. It is tempting to suggest that NK and IL2-aspirated NK cells may play a major role as effector cells of GVL in an MHC non-restricted fashion, different from classical CD8+ cytotoxic cells that certainly play a major role in GVHD and GVL. Once proven, the latter hypothesis may help develop new and safer therapeutic approaches since NK cells and products of the NK cell family are unlikely to play a major role, if any, in GVHD. The feasibility of induction of GVL-like effects by MHC non-restricted effector cells, such as that observed by CMI, most likely through cytokine-activated NK cells, seems promising because such effector mechanisms may be utilized clinically through either adoptive transfer of in vitro-activated lymphocytes or activation of lymphocytes in vivo by administration of cytokines such as IL2 and alpha IFN. Similarly, induction of CCI following ABMT may permit establishment of GVL-like effects with no major risk of GVHD. Our animal models suggest that both approaches may be beneficial and perhaps even combined. From a practical standpoint, activation of antitumour effector cells in vivo is much more feasible, in comparison with the cumbersome and expensive technologies for large-scale in vitro manipulation of IL2-activated 'LAK' cells or tumour-infiltrating lymphocytes ('TIL') at dose ranges required for obtaining clinically meaningful responses. No less important is the fact that more potent immunotherapy may be inducible by cytokine combinations (such as IL2 and alpha IFN). We are currently investigating additional cytokine combinations in order to attempt to optimize antitumour effects inducible by allogeneic and syngeneic lymphocytes since it appears logical that amplifying in vivo antitumour responses by multiple cytokine combinations may yield better antitumour effects.

Animals↗

The effect of in vitro T lymphocyte depletion on generation of IL2-activated cytotoxic cells.

The effect of immunocompetent lymphocyte depletion on precursors and effector cells of IL2 activated non-MHC restricted cytotoxic cells (LAK) generated from bone marrow (BM) or peripheral blood was investigated. Lymphocyte depletion was carried out by using Campath-1, a monoclonal rat anti-human lymphocyte antibody recognizing CDW52, that binds human complement and is used routinely in clinical bone marrow transplantation (BMT). The results indicate that LAK precursors derived from BM cells are sensitive to Campath-1 treatment, while a variable degree of sensitivity was demonstrated in LAK precursor cells derived from peripheral blood. In contrast, effector LAK cells generated in vitro were shown to be resistant to treatment with Campath-1 and complement. We hypothesize that if indeed IL2-dependent non-MHC restricted cytotoxic cells play a role in vivo in the immediate post-BMT period, a T lymphocyte depletion procedure such as the Campath-1 may have the capacity to reduce, at least temporarily, the graft-versus leukemia effects mediated by such anti-tumor effector mechanisms.

Animals↗

The graft-versus-leukemia (GVL) phenomenon: is GVL separable from GVHD?

Graft-versus-leukemia (GVL) is a major component of the overall beneficial effects of allogeneic bone marrow transplantation (BMT) in the treatment of leukemia. Although several clinical trials have suggested a direct relationship between GVL effects and acute and chronic graft-versus-host disease (GVHD), it is not yet known whether GVL can be separated from GVHD. However, several investigations in murine models of human leukemia indicate that the two may be at least partially separable. Moreover, analysis of clinical data from the International Bone Marrow Transplant Registry suggest that allogeneic BMT may be more advantageous than syngeneic BMT, regardless of the GVHD. Likewise, T lymphocyte depletion is associated with an increased incidence of relapse, independently of GVHD. Recent investigations in murine leukemia suggest that GVL-like effects may be inducible following syngeneic BMT by recombinant cytokines with no overt GVHD. Taken together, current data in experimental animals and man suggest that GVL may be at least partially separable from GVHD. Hence, further understanding of effector and target cells of GVL as well as our ability to induce antitumor effector cells, especially those that are MHC nonrestricted, may lead to new approaches for potentiating anti-tumor effector mechanisms without inducing severe, clinically overt GVHD. Successful attempts in these directions may also lead to improved results following autologous BMT as a result of activation of GVL-like effects by recombinant cytokines that are capable of activating effector cells with anti-leukemic activity in vivo, such as recombinant human IL2, alpha interferon or perhaps a synergistic combination of factors.

Animals↗

IL-2 activated cell-mediated immunotherapy: control of minimal residual disease in malignant disorders by allogeneic lymphocytes and IL-2.

The present experiments were designed to investigate whether it might be possible to combine their therapeutic benefits of autologous BMT and allogeneic BMT following administration of T-lymphocyte depleted marrow allografts with additional immunotherapy following BMT. The tumor model used for investigating graft vs leukemia (GVL) effects was the murine B-cell leukemia (BCL1), a spontaneous, nonimmunogenic, highly lethal leukemia of BALB/c origin. Immunotherapy with high dose recombinant human interleukin-2 (IL2) (10(5) Cetus units x 3/day intraperitoneally (IP) for 5 days) produced significant anti-tumor effects in BCL1-bearing mice. BALB/c mice inoculated with 10(3) BCL1 leukemia cells received were treated on day -1 with cyclophosphamide 100 mg/kg and transplanted with normal syngenic BM cells on day 0. High-dose IL2 (100,000 Cetus Units x 3/day IP x 5 consecutive days) was initiated on day +1, +7, or +21 following BMT. Optimal time for administration of IL2 was noted at 3 weeks post-BMT with 90% of the mice surviving with no evidence of disease greater than 1 year. An experimental model designed to study GVL effects in a state of minimal residual disease following T-cell depleted allogeneic BMT indicated that mice receiving low dose of BCL1 challenge (10(4] were successfully treated by either IL2 (2 x 10(4) Cetus units x 2/day IP x 3 days), allogeneic spleen cells (10(6) on day +1, 10(7) on day +5 and 5 x 10(7) on day +9) alone and certainly following a combination of both.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗