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S Slavin

Publications and source records attributed to S Slavin.

At least 181 records · Page 10Linked to original sources

Effect of various cytokine combinations on induction of non-MHC-restricted cytotoxicity.

Efforts were directed to achieve an increased lymphokine-activated non-MHC-restricted killing (LAK) activity greater than that induced by rIL-2 alone. Human peripheral blood (PB) and bone marrow (BM)-derived mononuclear cells (MC) were exposed in vitro to multiple cytokine combinations, including rIL-6, rIL-7, rIFN-alpha and rIFN-gamma in the presence of either suboptimal or optimal doses of rIL-2. Our results have shown that BMMC are a potential source for induction of increased LAK activity upon exposure to multiple cytokine combinations, whereas PBMC could not be successfully stimulated under the same conditions. Fifty-five to 62% of BM-derived samples stimulated with high dose rIL-2 + rIL-7 or rIL-2 + rIL-7 + rIL-6 + rIFN-gamma exhibited a higher degree of cytotoxicity than BM samples stimulated with rIL-2 alone. Exposure of PB-derived large granular lymphocytes (LGL) to various cytokine combinations led to increased proliferation after stimulation with suboptimal dose of rIL-2 in the presence of rIL-6 and rIL-7. This increase was not observed in induction of cytotoxicity. We suggest that BMMC activated by multiple cytokine combinations could play an active role in improving antitumor response in vivo by contributing to the control of minimal residual tumor cell growth, particularly post-BM transplantation.

Bone Marrow↗

Optimization of conditioning therapy for leukemia prior to BMT. I. Optimal synergism between cyclophosphamide and total body irradiation for eradication of murine B cell leukemia (BCL1).

The doses of chemotherapy and radiotherapy and the sequence-dependent influence of CY administration and total body irradiation (TBI) on the eradication of murine B cell leukemia (BCL1) were investigated. Tumor-bearing BALB/c mice were treated with either CY followed by TBI (CY/TBI) or in the reverse (TBI/CY) at different time intervals after injection of 10(6) BCL1 cells. The presence of residual tumor cells after cytoreduction was assessed in secondary BALB/c recipients by monitoring leukemia-free survival. The anti-leukemic effect of CY followed by TBI was significantly better than TBI followed by CY. The survival of secondary adoptive recipients inoculated with 10(5) spleen cells obtained from mice treated with CY/TBI was 54% (57 of 105) compared with 25% (25 of 98) of recipients inoculated with 10(5) spleen cells obtained from mice treated with TBI/CY (p = 0.0001).

Animals↗

Effect of bone marrow T lymphocytes treated with CAMPATH 1G on megakaryocyte colony formation.

Specific populations of lymphocytes play a significant role in the regulation of megakaryocyte (MK) development. CAMPATH 1G (C1G) and CAMPATH 1M (C1M) are T lymphocyte (TL)-specific monoclonal antibodies (MABs) that are routinely employed to reduce graft-vs.-host disease (GVHD) in allogeneic bone marrow transplantation (BMT). Following BMT, engraftment of the erythroid and myeloid lineages is prompt, but prolonged thrombocytopenia often prevails. We therefore studied the effect on MK colony formation of treating donor bone marrow (BM) with the CAMPATH MABs. MK colonies were grown in plasma clots using postirradiation aplastic canine serum (PICS-J) as MK colony-stimulating factor (MK-CSF). C1M, which causes TL destruction by complement-dependent lysis, had no effect on MK cloning efficiency. C1G is not lytic but causes the elimination of TL in the BMT recipients via antibody-dependent cell cytotoxicity (ADCC). Treatment of donor BM with C1G significantly enhanced the number of early burst-forming units (BFU-MK) and late colony-forming units (CFU-MK) and had no effect on granulocyte-macrophage (CFU-GM) or erythroid (BFU-E) colonies. Enhancement of MK cloning efficiency was concentration-dependent between 0.03 and 3 micrograms MAB/10(6) BM mononuclear cells (MNC). Similar results were observed when C1G-treated TL or purified CD4+ TL were co-cultured with untreated autologous BMMNC or peripheral blood (PB) MNC. Conditioned medium (CM) from C1G-treated TL and CD4+ TL contained soluble factors that, when combined with suboptimal doses of PICS-J, potentiated MK growth. C1G in combination with PICS-J also stimulated TL proliferation in a dose-dependent manner. The T cell CM did not contain elevated levels of interleukin-3 (IL-3), IL-6, IL-1 beta, or GM-CSF. Our data provide additional evidence for the involvement of activated TL, and perhaps novel soluble T cell products, in the immunomodulation of megakaryocytopoiesis.

Alemtuzumab↗

Effects of CAMPATH-1 antibodies on the functional activity of monocytes and polymorphonuclear neutrophils.

The rat antihuman lymphocyte monoclonal antibodies CAMPATH-1M and CAMPATH-1G (IgM kappa and IgG2b kappa, respectively) recognize cell surface antigens (CDW52) present on normal T and B lymphocytes as well as on monocytes, with weak expression on neutrophils. In previous studies, when peripheral blood mononuclear cells were treated with CAMPATH-1M and human complement, more than 99% of lymphocytes were killed. The present study indicates that both CAMPATH-1M and -1G bind to peripheral blood neutrophils and monocytes and do not affect the activity of the former cells but decrease the functional activity of monocytes. Decreased functional activity includes suppressed superoxide production by monocytes in response to phorbol myristate acetate (PMA), reduced activation of the cells as indicated by decreased ability to reduce 3-(4.5-dimethylthiazol-2-yl)-2.5 diphenyl-tetrazolium bromide (MTT), reduced tumoricidal activity, and reduced capability to kill Candida albicans. The ability of CAMPATH-1 to suppress the functional activity of monocytes in vitro suggests that in vivo administration of CAMPATH-1G may also affect the function of monocytes.

Alemtuzumab↗

Continuous intravenous administration of rmGM-CSF enhances immune as well as hematopoietic reconstitution following syngeneic bone marrow transplantation in mice.

Lethally irradiated Balb/c mice injected with syngeneic bone marrow cells received recombinant murine granulocyte/macrophage colony-stimulating factor (rmGM-CSF) by continuous intravenous infusion for 4 days. When transplanted with 10(5) marrow cells, treated mice showed higher survival (62% compared with 30% in the control group, p < 0.001) and significantly enhanced hematopoietic recovery manifested by 11-fold increase in the peripheral white blood cell (WBC) count. Day 7 marrow from rmGM-CSF-treated mice resulted in 70% survival in lethally irradiated secondary recipients, while marrow harvested under identical experimental conditions from saline-treated mice had no reconstituting capacity at all. When mice were injected with 10(4) marrow cells, 20% of rmGM-CSF treated mice survived as compared with none in the controls. In vitro preincubation of 10(5) and 5 x 10(5) fresh bone marrow cells with rmGM-CSF prior to transplant significantly improved survival of lethally irradiated mice in comparison with control (12% and 37.5% respectively, p < 0.001). Proliferative responses of lymphocytes obtained from rmGM-CSF-treated mice to mitogens and allogeneic C57BL6 splenocytes as well as non-MHC restricted cytotoxicity against tumor cells were significantly higher in rmGM-CSF-treated mice as compared with controls (p < 0.01). These data suggest that a short course of continuous intravenous infusion of rmGM-CSF following BMT or in vitro culturing of bone marrow cells with rmGM-CSF improves marrow reconstituting capacity. The mechanism may be by enhancing proliferation and function of committed and perhaps even the more primitive progenitor cell.

Animals↗

Low molecular weight heparin for Hickman catheter--induced thrombosis in thrombocytopenic patients undergoing bone marrow transplantation.

BACKGROUND: Patients with an indwelling central venous catheter are prone to development of thrombotic complications. Thrombocytopenia in patients undergoing bone marrow transplantation (BMT) generally is protracted. The management of thrombosis in thrombocytopenic patients is difficult because heparin and warfarin are relatively contraindicated because of the high risk of major bleeding. Low molecular weight heparin (LMWH) is a new class of antithrombotic drug. Enoxaparin (Rhone Poulenc Rorer, Antony, France) is an LMWH that has been shown to be effective in the treatment and prophylaxis of venous thrombosis. Enoxaparin, with its high antithrombotic to anticoagulant ratio, may be safer than standard heparin in patients at high risk of hemorrhagic complications. METHODS: The authors report the cases of five thrombocytopenic patients, undergoing autologous BMT, in whom venous thrombosis developed related to a Hickman catheter. RESULTS: All the patients were treated with Enoxaparin and recovered promptly without hemorrhagic complications. CONCLUSIONS: The authors suggest that Enoxaparin is an effective drug in treating thrombocytopenic patients in whom acute venous thrombosis develops.

Adult↗

Enhanced marrow recovery by short preincubation of marrow allografts with human recombinant interleukin-3 and granulocyte-macrophage colony-stimulating factor.

We studied an alternative method of using hematopoietic growth factors (HGFs) to enhance hematopoietic recovery in patients undergoing bone marrow transplantation (BMT), by short in vitro preincubation. Twenty consecutive patients with leukemia received T-cell-depleted allografts using Campath-1G. Two thirds of the marrow was infused on the scheduled day of transplant and one third of the marrow following preincubation with granulocyte-macrophage colony-stimulating factor (GM-CSF) and interleukin-3 (IL-3) on day 4. Engraftment parameters and duration of hospitalization were compared by actuarial analysis to those of 40 historical controls. Patients receiving the incubated boost had significantly faster platelet recovery (P = .017) and shorter hospitalization period (P = .001) when compared with the control subjects. Platelet count reached greater than 25 x 10(9)/L on day 17 (median) in the study group and on day 23 in the controls. The median duration of hospitalization was 20 and 36 days, respectively. In the early posttransplantation follow-up, two of four patients in the study group died as a result of graft rejection, while all 13 deaths in the control group resulted from complications associated with marrow suppression. We suggest that pretransplant in vitro activation of bone marrow cells with IL-3 and GM-CSF may prove to be an efficient method for enhancing marrow recovery after BMT.

Adult↗

Recombinant human granulocyte-macrophage colony-stimulating factor after high-dose chemotherapy and autologous bone marrow transplantation with unpurged and purged marrow in non-Hodgkin's lymphoma: a double-blind placebo-controlled trial.

The toxicity of autologous bone marrow transplantation (ABMT) is correlated to neutropenia. Although recombinant human granulocyte-macrophage colony-stimulating factor (rhu GM-CSF) seems to hold promise in accelerating neutrophil recovery, few analyses from randomized studies are presently available. Ninety-one patients with non-Hodgkin's lymphoma receiving high-dose ablative chemotherapy followed by ABMT with unpurged or purged marrow were included in a randomized, double-blind, placebo-controlled trial. Forty-four patients received 250 micrograms rhu GM-CSF (Escherichia coli)/m2 and 47 patients received placebo. Treatment was administered daily as continuous infusion from day of ABMT until the absolute neutrophil count (ANC) reached 0.5 x 10(9)/L for 7 days or until day 30, whichever was first. With rhu GM-CSF, 50% of the patients reached an ANC count greater than 0.5 x 10(9)/L at day 14 as opposed to day 21 with placebo (P less than .0001). Patients transplanted with marrow purged by mafosfamide also recovered earlier when treated with rhu GM-CSF (16 v 20.5 days, P = .013). The hospitalization duration was shorter in the rhu GM-CSF group (median, 23 v 28 days, P less than .05). No difference was observed in fever, number of infections, and antibiotic administration between the two groups. The major adverse event ascribed to rhu GM-CSF was a capillary leak syndrome in three patients graded as severe in two patients, moderate in one, and reversible in all three patients. In addition, one patient in the rhu GM-CSF group died suddenly with no explanation. In long term follow-up, the relapse rate was identical in both groups and there was no significant difference in the number of deaths at 1 year (12 with rhu GM-CSF v 9 with placebo), although deaths seemed to occur slightly earlier in the rhu GM-CSF group. We conclude that after ABMT with purged or unpurged marrow, rhu GM-CSF (E coli) significantly reduces neutropenia duration and hospitalization stay. A positive causative relation between the study drug and/or its mode of application with an increased toxicity as compared with GM-CSF from other sources and/or other modes of application cannot be deduced from the experiences in this study. Additional randomized trials would be necessary for an appropriate answer.

Adolescent↗

Antitumor effects of human recombinant interleukin-6 on acute myeloid leukemia in mice and in cell cultures.

Interleukin-6 (IL-6) has been shown to inhibit growth and induce differentiation of several myeloid leukemia cell lines. In this work, two in vivo models of acute myeloid leukemia (AML) in mice have been used to test the therapeutic potential of recombinant human IL-6. In mice inoculated by a transplantable AML tumor, IL-6 injections inhibited the development of leukemia and increased survival. The effect was related to dose and length of treatment. In a model of radiation-induced leukemogenesis in SJL/J mice, administration of low-dose IL-6 for 10 days, 4 months after irradiation, reduced the incidence of leukemia observed during 1 year, whereas granulocyte-macrophage colony-stimulating factor (GM-CSF) increased the incidence of leukemia. In vitro liquid cultures of leukemic blood cells obtained from AML patients showed that IL-6 slowed growth and decreased the proportion of blasts with an increase in more mature myeloid elements in 72% of M1, M2, M4 AML cases. In contrast, GM-CSF less often produced differentiation but stimulated leukemic cell growth in liquid cultures, without synergism by IL-6.

Animals↗

Prevention of experimental autoimmune encephalomyelitis and induction of tolerance with acute immunosuppression followed by syngeneic bone marrow transplantation.

Experimental autoimmune encephalomyelitis (EAE) is an inducible autoimmune disease widely used as a model of the acute/relapsing stage of multiple sclerosis. In the present study we examined the effect of acute immunosuppression induced by total body irradiation (TBI) (900 to 1100 centigray (cGy)) or by a single high dose of cyclophosphamide (CY) (300 mg/kg), followed by syngeneic bone marrow transplantation (SBMT), on the development of EAE in SJL/J mice. EAE was induced in SJL/J mice by immunization with spinal cord homogenate in adjuvant. Treatment with TBI (900 cGy) and SBMT on day 6 postimmunization caused a delayed onset and a marked reduction in the incidence and severity of EAE. A higher dose of irradiation (1100 cGy) or the administration of CY followed by SBMT completely abrogated the development of paralysis. None of the 21 mice treated with CY and SBMT, and only 1 of 7 mice treated with TBI (1100 cGy) and SBMT developed clinical signs of EAE during a period of 3 months. Furthermore, mice treated with CY and SBMT became resistant to rechallenge with the same encephalitogenic inoculum. In addition, the lymphocytes obtained from these mice did not proliferate in vitro in response to myelin basic protein or tuberculin-purified protein derivative, unlike lymphocytes from immunized but untreated animals. This absence of reactivity was not associated with alterations in the proportion of the L3T4 and Lyt-2 T-cell subsets nor with a loss in T cell competence as evidenced by the full response of lymphocytes to the T cell mitogen Con A and to a nonrelevant Ag (OVA). Our results indicate that the elimination of effector lymphocytes either by myeloablative doses of CY or ionizing irradiation followed by rescue with SBMT inhibits the development of the autoimmune process in EAE and leads to induction of tolerance to the immunizing Ag by newly developing lymphocytes. This approach of combining immunoablation and reconstitution with autologous bone marrow transplantation may be applicable in the treatment of life-threatening neurologic autoimmune diseases.

Animals↗

Superoxide dismutase inhibits radiation-induced lung injury in hamsters.

An animal model of pulmonary radiation-induced lung injury was established in the hamster and the effects of pretreatment with recombinant human CuZn superoxide dismutase (SOD) on the development of the lesion were evaluated. Hamsters exposed to a single irradiation dose of 2000 cGy delivered to the thorax were treated with 150 mg/kg body weight of SOD or an equivalent volume of saline intraperitoneally 75 min and subcutaneously 5 min before receiving irradiation. At 4, 8, and 16 weeks following irradiation, pulmonary injury was evaluated by the grading of morphologic changes semiquantitatively, measurement of lung hydroxyproline content, and analysis of bronchoalveolar lavage fluid for total and differential cell counts and total protein concentration. Radiation-induced lung injury in saline-pretreated animals was documented at 16 weeks by histologic morphology and increased protein in bronchoalveolar lavage fluid. SOD protected against radiation-induced pulmonary injury as indicated by the absence of severe histopathologic changes and prevention of elevation in bronchoalveolar lavage protein levels. The beneficial effects of SOD in preventing radiation-induced pulmonary toxicity suggests that this recombinant enzyme may play a role in protection against radiation-induced pulmonary injury in humans.

Animals↗

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↗

Effects of interleukin 2 on engraftment following autologous bone marrow transplantation (ABMT) in dogs.

Beagle dogs were treated with recombinant human interleukin 2 (IL-2) 6 x 10(6) International Units (IU)/day for 7 consecutive days following conditioning with sublethal (200 cGy) or lethal (400 cGy) doses of high-dose rate whole body irradiation (WBI) and reconstitution with 2 x 10(8)/kg autologous bone marrow cells, in order to assess the effect of IL-2 on engraftment. Engraftment of dogs conditioned by lethal doses of WBI was not impaired following treatment with IL-2 6 x 10(6) IU/day. At an RIL-2 dose of 6 x 10(6) and 9 x 10(4) IU/day, enhanced engraftment of autologous bone marrow cells was observed in dogs irradiated with a sublethal WBI dose in comparison with controls not treated by IL-2(p < 0.05). We conclude that therapeutic doses of IL-2 may be safely utilized during hematopoietic reconstitution. Under certain conditions IL-2 may even enhance hematopoietic reconstitution following ABMT.

Animals↗

Chronic-relapsing experimental autoimmune encephalomyelitis (CR-EAE): treatment and induction of tolerance, with high dose cyclophosphamide followed by syngeneic bone marrow transplantation.

We examined the effect of acute immunosuppression with high dose cyclophosphamide (CY), followed by syngeneic T-cell-depleted bone marrow transplantation (SBMT) on chronic-relapsing autoimmune encephalomyelitis (CR-EAE) induced in SJL/J mice by immunization with mouse spinal cord homogenate (MSCH) in adjuvant. Treatment of mice on day 9 post immunization, before the appearance of clinical signs of the disease, delayed the onset of paralysis, but did not affect its clinical course. Treatment on day 2-3 after the first clinical signs led to complete regression of the disease. During a period of 3 months, only one of the 15 mice treated after the the onset of CR-EAE relapsed, as compared to a total of 21 relapses in the 15 untreated animals. A rechallenge with MSCH in adjuvant on day 78 after immunization induced a severe relapse in all untreated mice, with 78% mortality; in contrast, only 25% of mice treated with CY and SBMT relapsed when similarly rechallenged. Lymphocytes from mice treated with CY and SBMT showed reduced in vitro proliferative responses to myelin basic protein (GMBP) and PPD, even after the rechallenge with MSCH. Our results show that high dose CY for elimination of immunocompetent lymphocytes, followed by SBMT rescue, suppresses CR-EAE and induces tolerance to the immunizing antigens. These results may encourage attempts to apply a similar therapeutic principle in life-threatening human neurological autoimmune diseases.

Animals↗