Allogeneic peripheral blood progenitor cell transplantation--the Australian experience.
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Biomedical subjects
Publications and source records attributed to J Szer.
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Veno-occlusive disease continues to be a significant cause of morbidity and early mortality following bone marrow transplantation. This study retrospectively analyzes the incidence and risk factors for severe VOD in 350 patients treated with 4 days of busulfan (total 16 mg/kg) and 2 days of cyclophosphamide (120 mg/kg) at four marrow transplant centers. Using the criteria defined by McDonald et al (Hepatology 1984; 4: 116-122), 93/350 (27%) developed VOD (11% mild, 5% moderate and 11% severe). Multivariate analysis revealed the following risk factors to be significantly associated with severe VOD: pretransplant transaminase and alkaline phosphatase elevation, ciprofloxacin antibiotic prophylaxis, use of estrogen/progestins or vancomycin during the peritransplant period and methotrexate for GVHD prophylaxis. Mild to moderate grades of VOD were not associated with significantly increased mortality but mortality was higher in patients with severe VOD (31%, P = 0.0013). These data suggest that risk factors for VOD may depend on the preparative regimen used and suggest that use of these risk factors may identify a subgroup of patients that can be targetted for studies of prevention of VOD.
A 47-year-old man relapsed with accelerated phase CML 19 months after a T cell-replete unrelated BMT. Three donor leukocyte infusions (DLI) from the original donor resulted in durable complete hematological and cytogenetic remission. Moderate GVHD developed but was steroid responsive. This report suggests that DLI can be administered safely to patients relapsing after unmodified unrelated allografts. In the patient described, DLI exerted an antileukemic effect sufficiently potent to reverse accelerated phase disease.
Three patients developed abdominal pain and abnormal liver enzymes without hyperbilirubinemia, early after autografting for lymphoma. Two had received conditioning therapy with busulfan, cyclophosphamide and continuous infusion etoposide; the other had received busulfan and melphalan. Doppler ultrasound in all cases demonstrated thrombosis of the main portal vein and its branches. In the two patients tested, transient deficiencies in protein C (both cases) and protein S (one case) were observed. One case was chronologically related to anti-fibrinolytic therapy and resolved spontaneously. The other two cases resolved after treatment with low molecular weight heparin. Portal vein thrombosis should be considered in the differential diagnosis of abdominal pain and liver dysfunction after BMT.
Chromosomal in situ hybridization (ISH) has extended the scope of cytogenetic analysis to nondividing cells by the use of chromosome-specific probes detected by nonisotopic techniques. This provides a rapid and sensitive method for identifying chromosomes in interphase cells, and is useful in gauging engraftment following bone marrow transplantation, particularly when the number of cells obtained is minimal. We have performed ISH using a Y-heterochromatin-specific probe to monitor patients with malignant hematological disease who have received a sex-mismatched transplant. The results have been compared with those obtained from concurrently performed standard cytogenetic analysis. Host cells were detected by interphase cytogenetics in all patients posttransplant, at times varying from 28-1,825 days, whereas routine analysis detected host cells in only 4 patients, 3 of whom were found to be in relapse. The significance of the persistence of host cells is unknown, but it does not appear to indicate impending relapse.
Granulocyte transfusions may be beneficial in neutropenic patients with progressive infections despite appropriate antibiotics. In order to evaluate both the feasibility of granulocyte collection in normal donors receiving granulocyte colony-stimulating factor (G-CSF) and the efficacy of infusing these cells into neutropenic patients with progressive sepsis, four donors received between 5-10 micrograms/kg G-CSF per day and underwent leucapheresis within a day of the first dose. Different red cell sedimenting agents and interface settings were evaluated to determine the optimal method of granulocyte collection. The number of granulocytes collected, the peripheral blood granulocyte level in the recipient at various time points after infusion, and the clinical response were evaluated. Results showed that G-CSF and the leucaphereses caused mild to moderate fatigue in two donors and profound fatigue and a brief episode of hypoxia in one donor. Efficient granulocyte collections were only obtained using dextran 40 or dextran 70 as the sedimenting agent and a deep interface setting which extended sampling into the upper red cell layer. Infusion of granulocytes obtained with this technique resulted in a sustained increase in circulating granulocyte numbers in three recipients, one of whom gained significant clinical benefit. In conclusion, granulocyte transfusions from donors given G-CSF are feasible and may be clinically beneficial, particularly if given early in the course of infection in neutropenic patients.
A two-stage long-term bone marrow culture (LTBMC) has been used to assess haemopoietic supporting ability from patients following allogeneic bone marrow transplantation (BMT). Irradiated confluent LTBMCs derived from recipients following BMT were recharged with flow cytometry sorted CD34+/CD38- cells from normal BM donors. The output of granulocyte/macrophage colony-forming cells (GM-CFC) in the non-adherent fraction of the cultures was monitored weekly until output ceased. Patient stromal cell function was determined by comparing the percentage of the total cumulative GM-CFC output to the output from normal control stroma. Neutrophil recovery was rapid and complete early in the post-transplant period. However, in contrast, GM-CFC recovery was significantly reduced in all patients up to 5 years after BMT. In 58% of patients studied following BMT the BM stroma is considerably compromised in its ability to support early uncommitted haemopoietic cells contained within the CD34+/CD38- cell fraction of normal BM. Bone marrow stroma from BMT recipients exhibited severe deficits in their abilities to support primitive haemopoietic cells and in some patients this effect lasted for several years. While the growth of stroma from patients following BMT was severely delayed and often incomplete, characterisation of cells types using APAAP techniques did not show significant differences in proportion when compared with normal cultures.(ABSTRACT TRUNCATED AT 250 WORDS)
Prospective pulmonary function tests (PFTs) of 49 long-term survivors of identical sibling bone marrow transplants (BMT) were analysed. Eight (16%) developed a persistent pulmonary syndrome characterised by a late onset, cough and dyspnoea, hyperinflation or patchy infiltrates on plain radiography and episodic bacterial infections. The predominant PFT pattern was obstructive (reduced forced expiratory ratio, FER) with a variable restrictive component (reduced vital capacity, VC). When compared with the other 41 patients (controls), mean FER (53% absolute) and VC (73% predicted) were significantly lower at 12 months (P = 0.005). Graft-versus-host disease (GVHD) was the only identifiable risk factor (odds ration 7.1). Five of 7 patients compared with 4 of 31 controls tested at 3 months had an abnormal FER or maximum mid-expiratory flow rate (MMFR), but not VC, prior to the onset of symptoms (P = 0.015). Patients with mild to moderate disease (FER 50-70%) had stable pulmonary function while severe cases progressed despite immunosuppressive agents. Earlier recognition of this syndrome by a reduced FER or MMFR may allow the initiation of therapy at a potentially reversible stage.
Ninety one patients between the ages of 17 and 58 years undergoing histocompatible allogeneic transplants from sibling donors were entered into a double-blind randomised trial to evaluate the effect of human erythropoietin (rhu EPO) at a dose of 300 units per kg/day given thrice weekly by intravenous injection on erythropoiesis and on erythrocyte and platelet transfusion requirements. Dose was ceased when the haemoglobin exceeded 12g/dL and recommenced if the haemoglobin fell below 12 g/dL, at 150 units/kg/day. If the haemoglobin exceeded 12 g/dL on a further occasion, the dose of rhu EPO was not given. Patients received two units of erythrocytes when the haemoglobin dropped below 8.5g/dL and received platelet transfusions when the count dropped below 20 x 10(9)/L. Univariate analysis revealed a significantly higher reticulocyte count, haemoglobin concentration and bone marrow erythropoiesis after day 14 in the group receiving rhu EPO but this was not reflected in decreased erythrocyte transfusion (7 +/- 5 in controls versus 6 +/- 5 in rhu EPO group) or in platelet transfusions (11 +/- 7 in controls versus 11 +/- 9 in rhu EPO group). Hospitalisation in each group was the same (29 +/- 8 in the control group and 28 +/- 8 in the rhu EPO group). However, in the multivariate analysis, the administration of rhu EPO was associated with an 18% reduction in erythrocyte transfusion requirement when other variables were taken into account. No side-effects due to rhu EPO were detected in this study.(ABSTRACT TRUNCATED AT 250 WORDS)
The successful use of granulocyte transfusions in a patient undergoing volunteer unrelated donor BMT for very severe aplastic anemia complicated by presumed fungal infection is described. Granulocytes were obtained by leukapheresis of normal volunteer donors stimulated by granulocyte colony-stimulating factor. The yields of granulocytes obtained by this method were sufficient to produce sustained neutrophil increments in the recipient throughout the transplant course. In vitro studies indicated that granulocytes were functionally normal, a finding which was supported clinically by the rapid resolution of infection, even in the setting of immunosuppression post-transplantation. This demonstrated the potential value of granulocyte transfusions in high-risk BMT.
Women with primary breast cancer associated with extensive axillary node involvement or large primary tumors have a very poor prognosis despite treatment with standard-dose adjuvant chemotherapy. In an attempt to improve the outlook of these patients, we investigated the safety and feasibility of delivering three cycles of high-dose epirubicin and cyclophosphamide supported with filgrastim-mobilized peripheral blood progenitor cells (PBPC). Fifteen previously untreated women, median age 50 (range, 30-58) years, with poor prognosis early stage breast cancer received filgrastim (12 microgram/kg daily for 6 days) prior to chemotherapy to mobilize progenitor cells. Patients were then given three cycles of epirubicin (200 mg/m2) and cyclophosphamide (4 g/m2) at planned 28-day intervals, each followed by infusion of one third of the PBPC collected and daily administration of filgrastim (5 microgram/kg s.c.). Three leukaphereses collected a median of 114.9 (range, 22.7-273.5) x 10(4) granulocyte-macrophage-colony-forming cells/kg body weight. Hemopoietic recovery was rapid after each cycle, and there was no correlation between the rate of recovery and the number of granulocyte-macrophage-colony-forming cells infused. There was a small but significant progressive delay in recovery from hematological and nonhematological toxicities across the three cycles. Left ventricular ejection fraction fell to below 50% in eight (53%) patients, but none developed congestive cardiac failure. Two patients did not complete three cycles because of insufficient PBPC for a third cycle (n = 1) and 2-mercaptoethane sodium sulfonate- related drug reaction during the second cycle (n = 1). There were no deaths during the study or during the follow-up period (median, 70 weeks; range, 50-85 weeks), and no late toxicities occurred. Therefore, we concluded that the delivery of multiple cycles of nonmyeloablative, dose-intensive chemotherapy supported by PBPC and filgrastim is safe, and may be widely applicable to a variety of common chemosensitive cancers with a poor prognosis. The efficacy of three cycles of high-dose epirubicin and cyclophosphamide is to be compared with standard-dose chemotherapy in a randomized trial in patients with high-risk, operable stage II and III breast cancer.
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The aim of this study was to assess the influence of dose and dose intensity (DI) of induction and consolidation chemotherapy on relapse rates in 264 de novo patients with acute nonlymphocytic leukemia (ANLL). Patients were randomised to receive cytosine arabinoside (ARAC) 100 mg/m2 continuous infusion for 7 days and daunorubicin (DNR) 50 mg/m2 IV day 1-3 (7-3) or the same drugs with the addition of etoposide 75 mg/m2 IV days 1-7 (7-3-7). Cox proportional hazards regression models were used throughout to identify prognostic factors, including dose delivery parameters, influencing the rate of relapse. Of 152 patients who achieved a complete remission (CR), 104 have relapsed with a median duration of CR of 15.8 months. Actual dose delivered was prospectively documented. Cox regression analysis identified the most significant prognostic factors jointly influencing duration of CR as performance status groups (p < 0.0001), percentage peripheral blasts (p = 0.0015), 7-3-7 arm (p = 0.0075), age < 40 years (p = 0.022) and induction dose ARA-C plus DNR (p = 0.029). In this analysis patients randomized to the 7-3-7 arm had an estimated 43% reduction in the relapse rate and each 10% reduction of doses ARA-C and DNR was associated with an estimated 45% increase in the relapse rate. The number of induction courses, delays in treatment and induction dose intensity did not significantly influence the duration of CR nor did any of the consolidation treatment parameters.(ABSTRACT TRUNCATED AT 250 WORDS)
The aim of this study was to examine the effect of G-CSF given after salvage chemotherapy on the mobilisation of peripheral blood progenitor cells (PBPC) in pretreated patients. Seven patients with relapsed or refractory non-Hodgkin's lymphoma (NHL) were treated with methotrexate, cyclophosphamide, cytarabine, etoposide and dexamethasone. G-CSF was given at a dose of 3.8-7.2 micrograms/kg (1-2 ampoules) daily by subcutaneous injection from the onset of neutropenia (< 1.0 x 10(9)/L). A median of 3 leukaphereses was performed when the white cell count was recovering. The median number of granulocyte-macrophage colony-forming cells (GM-CFC) collected was 99 x 10(4)/kg per leucapheresis (range 19-800) or 260 x 10(4)/kg in total per patient (110-1800). Six patients underwent myeloablative chemotherapy with PBPC rescue. No autologous bone marrow or growth factors post-PBPC infusion were administered. The median duration of severe neutropenia (< 0.5 x 10(9)/L) was 8.5 days (range 5-10) and to recovery of neutrophils post-PBPC infusion was 11.5 days (10-15). Severe thrombocytopenia (< 20 x 10(9)/L) was present for 4 days (range 1-5) and the median number of days post-infusion to platelet-transfusion independence was 9 (6-12). In conclusion, G-CSF combined with chemotherapy mobilised large numbers of PBPC for subsequent autotransplantation in pretreated patients with NHL. A single leukapheresis procedure may be sufficient following this protocol.
The hemopoietic growth factor filgrastim (r-metHu G-CSF) stimulates granulopoiesis after autologous BMT and can also be used as a peripheral blood progenitor cell (PBPC)-mobilizing agent. Rapid platelet recovery follows the addition of filgrastim-mobilized PBPC to autologous BMT. We have now studied 29 adults with malignant lymphoma, Hodgkin's disease or ALL to assess the ability of filgrastim-mobilized PBPC to rapidly and durably restore hemopoiesis without bone marrow (BM) infusion. Patients with a high yield of PBPC from three leukaphereses, defined as > 30 x 10(4)/kg GM-CFC, were eligible for PBPC transplant without BM. Patients with a low yield of GM-CFC received both PBPC and BM infusion. After filgrastim therapy 12 or 24 micrograms/kg/day by continuous sc infusion for 6 or 7 days, a high yield was obtained in 11 of 29 patients. Kinetics of recovery of both the platelet and neutrophil counts were more rapid in the high yield group than in the low yield group. The platelet count recovered to > 20 x 10(9)/l at a median of 9 days, to > 50 x 10(9)/l at 11 days and the neutrophil count to > 0.5 x 10(9)/l at 9 days in the high yield group compared with 12 days, 37 days and 10 days, respectively, in the low yield group (p = 0.028, p < 0.001 and p = 0.027). Fewer platelet transfusions were required in the high yield group (median 11 vs 29.5 units, p = 0.021).(ABSTRACT TRUNCATED AT 250 WORDS)
The leukaemias are a diverse group of bone marrow malignancies. In general, the acute leukaemias are potentially curable with standard combination chemotherapy but the chronic leukaemias, despite a more prolonged, indolent course, are incurable. Newer antimetabolite agents offer the promise of improved survival in the chronic leukaemias of lymphocytic origin. Although it may not be indicated for all types and is generally suitable only for younger patients, bone marrow transplantation provides improved prospects for cure for most types of leukaemia and the only chance of cure for some.
Nucleoside transporter expression has been linked to proliferation in a variety of haemopoietic cell types. Granulocyte-macrophage colony-stimulating factor (GM-CSF) was given for 72 h before commencing chemotherapy in 15 patients with relapsed or refractory acute myeloid leukaemia (AML) and in 11 patients serial bone marrows were taken for measurement of [3H]thymidine labelling index, Ki-67 positivity and maximal binding of 5-(SAENTA-x8)-fluorescein, a flow cytometry ligand which enumerates nucleoside transporter sites. GM-CSF caused proliferation of marrow myeloblasts in eight of 11 patients, while in three patients there was no change in proliferative indices. The expression of nucleoside transporters increased up to 4-fold in the myeloblasts from the patients showing a proliferative response to GM-CSF but there was no increase in transporters on the myeloblasts from the three non-responding patients. A close correlation was found between the fold increase in nucleoside transporter expression and the fold increase in labelling index of marrow myeloblasts (r = 0.86, n = 9, p < 0.01). In one patient with acute megakaryoblastic leukemia, GM-CSF caused parallel increases in labelling index, Ki-67 positivity and numbers of nucleoside transporters on peripheral blood blast cells. Thus induction of proliferation by cytokine increases the expression of nucleoside transporters on leukaemic myeloblasts studied in serial samples from the same source (bone marrow or blood). The suitability of 5-(SAENTA-x8)-fluorescein for two colour flow cytometric analysis allows the rapid enumeration of nucleoside transporters in the myeloblast compartment of heterogeneous marrow samples.
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