In the present study we combined interferon (IFN) and hydroxyurea (HU) treatment, intensive chemotherapy and autologous stem cell transplantation (SCT) in newly diagnosed chronic myelogenous leukemia patients aged below 56 years, not eligible for allogeneic SCT. Patients who had an HLA-identical sibling donor and no contraindication went for an allogeneic SCT (related donor, RD). After diagnosis, patients not allotransplanted received HU and IFN to keep WBC and platelet counts low. After 6 months patients with Ph-positive cells still present in the bone marrow received 1–3 courses of intensive chemotherapy. Those who became Ph-negative after IFN + HU or after 1–3 chemotherapy courses underwent autologous SCT. Some patients with poor cytogenetic response were allotransplanted with an unrelated donor (URD). IFN + HU reduced the percentage of Ph-positive metaphases in 56% of patients, and 1 patient became Ph-negative. After one or two intensive cytotherapies 86 and 88% had a Ph reduction, and 34 and 40% became Ph-negative, respectively. In patients receiving a third intensive chemotherapy 92% achieved a Ph reduction and 8% became Ph-negative. The median survival after auto-SCT (n = 46) was 7.5 years. The chance of remaining Ph-negative for up to 10 years after autologous SCT was around 20%. The overall survival for allo-SCT RD (n = 91) and URD (n = 28) was almost the same, i.e. ≈60% at 10 years. The median survival for all 251 patients registered was 8 years (historical controls 3.5 years). The role of the treatment schedule presented in the imatinib era is discussed.
Summary. In this national study, we have evaluated a new intensive chemotherapy protocol for adult patients with untreated acute lymphoblastic leukaemia (ALL). One hundred and fifty‐three patients with median age 42 years received induction therapy with high‐dose cytarabine (Ara‐C), cyclophosphamide, daunorubicin, vincristine and betamethasone. A high complete remission (CR) rate (90%) was achieved in patients < 60 years compared with 70% in patients > 60 years (P = 0·004). The estimated 3 year overall survival for all patients was 29% (CI 21–36%) and the estimated continuous complete remission (CCR) at 3 years for the patients achieving CR according to the protocol was 36% (CI 27–45%). A favourable pretreatment characteristic was pre‐B phenotype, especially for patients < 40 years without any high‐risk factor, with an estimated CCR at 3 years of 62% (CI 41–82%). Stem cell transplantation (SCT) as post‐remission therapy, mainly for high‐risk patients, gave an estimated 3 year disease free survival (DFS) after SCT of 39% (CI 24–54%). No significant differences in DFS could be found between autologous, related or unrelated donor transplantation. We conclude that this intensive protocol resulted in a high CR rate combined with acceptable side‐effects and a favourable CCR for patients with pre‐B ALL.
In attempting to restore the chronic phase (CP) of chronic myelogenous leukaemia (CML), the Swedish CML group utilized an intensive chemotherapy protocol for 83 patients (aged 16-79 years) in accelerated (AP, n = 22) or blastic phase (BC, n = 61). Most patients received a combination of mitoxantrone (12 mg/m2/d) and etoposide (100 mg/m2/d) together with cytosine arabinoside (1 g/m2 b.i.d) for 4 d. Overall, 39 patients (47%) achieved a second CP (CP2)/partial remission (PR). Responding patients < 65 years were eligible for ablative chemotherapy followed by an allogeneic (SCT) or a double autologous stem cell transplant (ASCT). Seventeen of 34 responders < 65 years failed to proceed to transplantation as a result of early disease progression (n = 15) or disease-related complications (n = 2). The remaining 17 patients underwent SCT (n = 9; including four unrelated donor SCT) or ASCT (n = 8). Only one of the eight ASCT patients had a second ASCT; the remaining seven failed because of progression (n = 5) or hypoplasia (n = 2). The median duration of CP2/PR was 6 months (range 1-72 months). Five patients achieved a longer CP2/PR than CP1. The 1 year survival was 70% for SCT/ASCT patients (median survival 21 months), 50% for responding patients overall, but only 7% for non-responders (P < 0.001). Three SCT/ASCT patients are long-term survivors (65+, 66+ and 73+ months). In conclusion, approximately half of the patients achieved a CP2/PR after intensive chemotherapy, with a clear survival advantage for responders vs non-responders. Subsequent SCT/ASCT was feasible for half of the responders (< 65 years), and one individual underwent double ASCT. Novel therapeutic options for CML patients in AP/BP are needed.
Abstract: An estimation of the incidence of polycythaemia vera (PV), essential thrombocythaemia (ET) and chronic idiopathic myelofibrosis (CIM) in the city of Göteborg, Sweden during the period 1983–1992 was made from a retrospective case analysis of patients registered as chronic myeloproliferative disorders (CMPD) at the Departments of Medicine and the Department of Pathology of the two major hospitals in the city. A total of 125 cases of PV, 56 males and 69 females were identified. The number of cases as well as the age‐specific incidence increased with age. The over all annual gender‐specific incidence was 2.69 cases per 105 male inhabitants and 3.12 cases per 105 female inhabitants. The incidence of PV in relation to the European Standard Population was 2.02 cases per 105 inhabitants and year. There were 72 cases, 20 males and 52 females, with ET. The age‐specific incidence was in all ages higher for females than for males and increased with age. The annual gender‐specific incidence was 0.96 per 105 male inhabitants and 2.35 per 105 female inhabitants. The incidence of ET in relation to the European Standard Population was 1.28 per 105 persons and year. There were 20 cases of CIM, 11 males and 9 females. The annual gender‐specific incidence of CIM was 0.53/105 male inhabitants and 0.41/105 female inhabitants. The incidence of CIM in relation to the European Standard Population was 0.31 per 105 persons and year. Seven persons, 2 males and 5 females, had a CMPD that could not be included in any of the above‐mentioned groups, but were registered as CMPD, unclassified.
In 80 patients with polycythaemia vera (PV) a total of 108 venous blood samples were obtained and analysed for EDTA-plasma erythropoietin (EPO) concentration. At the time of study 21 of the PV patients were newly diagnosed and had prior to blood sampling neither received phlebotomy treatment nor therapy with myelosuppressive agents; these subjects had a mean plasma EPO concentration of 0.5+/-0.9 IU/L, Thirty-seven patients treated with phlebotomy only had a mean plasma EPO concentration of 2.5+/-2.9 IU/L, The mean plasma EPO concentrations for 26 patients treated with hydroxyurea, 13 patients treated with radiophosphorous and 11 patients given a combination of myelosuppressive agents were 8.9+/-8.0, 10.9+/-12.6 and 7.2+/-7.4 IU/L, respectively. Untreated patients and patients on phlebotomy only had significantly lower values for plasma EPO than patients on therapy with myelosuppressive drugs. This finding persisted also after a correction for differences in haemoglobin levels had been introduced. Thereby, the present results would suggest a difference in the EPO feedback system in untreated and phlebotomised PV patients compared to PV patients treated with myelosuppressive agents.
Abstract: It has been shown previously that measurement of the spleen size and plasma erythropoietin (EPO) concentration are valuable adjuncts in the diagnostic work‐up of patients with polycythaemia vera. The aim of the present work was to evaluate their value in the assessment of apparent polycythaemia (AP). Therefore, over a 24‐month period we routinely performed bone marrow biopsies, measurement of red cell mass (RCM) and plasma volume (PV), spleen size determination by gamma camera scintigraphy and determination of the plasma EPO concentration in consecutive patients referred to us because of elevated values for packed cell volume (>0.48 in females and >0.51 in males). After having excluded patients with clonal and secondary polycythaemias we were left with 38 patients (27 males and 11 females) with AP. In all of them the measured RCM was within normal range, i.e. <36 ml/kg for males and <32 ml/kg for females. The subjects were characterized by moderate increase in RCM and a concomitant moderate decrease in PV. Thus, as an average the measured RCM exceeded the predicted values by 14% in males and by 12% in females; conversely, as compared to the predicted values the average measured value for PV was reduced by 17% in males and by 8% in females. The average RCM for males was 29 ± 3 ml/kg; the corresponding figure for females was 23 ± 4 ml/kg. It was shown that 86% of the subjects had plasma EPO concentrations within the control range; the remaining had values slightly above or below the control range. The mean posterior spleen scan area was 57 ± 16 cm2 and mean left lateral area 57 ± 17 cm2; the reference value for spleen scan area (for both projections) is 57 ± 12 cm2. Of the patients 35/38 (92%) had a spleen scan area within the mean + 2SD for controls and 38 subjects (100%) had values within the mean + 3SD. It is concluded that measurement of plasma EPO and a careful assessment of the spleen size should always be considered in the evaluation of patients with elevated values for venous packed cell volume.
Abstract: By using an immunoradiometric method with a stated detection limit of ≤1 IU/l (stated normal reference limit in adults 3.7–16 IU/l) we determined EDTA‐plasma erythropoietin (EPO) in 58 patients with polycythaemia vera (PV) and 49 patients with essential thrombocythaemia (ET). At the time of blood sampling, 20 of the PV patients were newly diagnosed and untreated, 23 were treated by phlebotomy only, and 30 also received myelosuppressive treatment (with 32P, hydroxyurea or alpha‐interferon). Of the ET patients 24 were untreated and 28 received myelosuppressive therapy. For comparison plasma EPO was also determined in 10 patients with pseudopolycythaemia (PP). In this latter group the results for plasma EPO agreed well with the cited normal reference limits. The majority of untreated PV patients (12/20) had undetectable plasma EPO concentration, and the remainder all had values below the lower normal reference limit. Plasma EPO in PV was not significantly influenced by phlebotomy therapy. Twelve of the 24 untreated ET patients (50%) had plasma EPO values below the reference interval (undetectable in 2 patients). The mean EPO concentration was significantly lower in PV patients receiving phlebotomy therapy than in patients with untreated ET. In the total material of PV and ET treated with myelosuppressive agents the PV patients showed significantly lower values for EPO concentration than did patients with ET. The present results support the view that EPO measurements by high‐detectability methods are diagnostically useful and should be included in the panel of new criteria for the diagnosis of PV.
Abstract: By using the newly commercialized QuantikineTM human TPO immunoassay, plasma thrombopoietin (TPO) concentrations were measured in 12 patients with essential thrombocythaemia (ET), 13 patients with reactive thrombocytosis (RT) and 11 healthy volunteers. For the healthy volunteers the mean plasma TPO concentration was 21.1±11.0 pg/ml. The mean plasma TPO concentration in the group of RT was slightly lower (16.4±8.6 pg/ml) but did not differ significantly from the control group. The mean plasma TPO concentration in ET patients (44.1 ±45.2 pg/ml) was significantly (p<0.05) higher than the mean for RT patients, but did not differ statistically from the mean of healthy volunteers. These data suggest a defective clearance of plasma TPO in patients with ET.
Treatment with erythropoietin (epo) may improve the anemia of myelodysplastic syndromes (MDS) in approximately 20% of patients. Previous studies have suggested that treatment with the combination of granulocyte colony-stimulating factor (G-CSF) and epo may increase this response rate. In the present phase II study, patients with MDS and anemia were randomized to treatment with G-CSF + epo according to one of two alternatives; arm A starting with G-CSF for 4 weeks followed by the combination for 12 weeks, and arm B starting with epo for 8 weeks followed by the combination for 10 weeks. Fifty evaluable patients (10 refractory anemia [RA], 13 refractory anemia with ring sideroblasts [RARS], and 27 refractory anemia with excess blasts [RAEB]) were included in the study, three were evaluable only for epo as monotherapy and 47 for the combined treatment. The overall response rate to G-CSF + epo was 38%, which is identical to that in our previous study. The response rates for patients with RA, RARS, and RAEB were 20%, 46%, and 37%, respectively. Response rates were identical in the two treatment groups indicating that an initial treatment with G-CSF was not neccessary for a response to the combination. Nine patients in arm B showed a response to the combined treatment, but only three of these responded to epo alone. This suggests a synergistic effect in vivo by G-CSF + epo. A long-term follow-up was made on 71 evaluable patients from both the present and the preceding Scandinavian study on G-CSF + epo. Median survival was 26 months, and the overall risk of leukemic transformation during a median follow-up of 43 months was 28%. Twenty patients entered long-term maintenance treatment and showed a median duration of response of 24 months.The international prognostic scoring system (IPSS) was effective to predict survival, leukemic transformation, and to a lesser extent, duration of response, but had no impact on primary response rates.
With the rationale that a significant reduction of the malignant clone in CML might prolong time to metamorphosis, intensive treatment was given to patients less than or equal to 55 years. Six months of hydroxyurea and high dose interferon-alpha (IFN-alpha) was followed by one to three courses of intensive chemotherapy. Patients who had a donor were allotransplanted and patients who became Ph-negative in bone marrow were autotransplanted. On 1 May 1995, 160 patients were registered in the study. Fifty-one percent of the patients who received six months IFN-alpha and hydroxyurea had a significant Ph-reduction and 5% became Ph-negative. The corresponding figures after two intensive chemotherapy courses were 47 and 28%, respectively. Twenty-seven of 30 antotransplanted patients have been analysed for Ph. Seventeen have relapsed cytogenetically, while ten are Ph-negative 1-64 + months after ABMT. BMT was performed in 59 patients. The actuarial 6-year survival from diagnosis of all 160 registered patients is 68%, which seems to be better than for age-matched historical controls.
A novel strategy for enhancing the efficacy of immunotherapy with interleukin-2 (IL-2) and interferon-alpha (IFN-alpha) in human neoplasia is presented. IL-2 and IFN-alpha are potent activators of the antitumour activity of natural killer (NK) cells but only rarely reduce the tumour burden in treated patients. Recent studies suggest that a reason why these cytokines are insufficiently effective in human cancer is that phagocytes inhibit the tumour-killing activity of NK cells at the site of the tumour. Histamine prevents the phagocyte-induced, NK cell-inhibiting signal; thus, histamine and IL-2 or histamine and IFN-alpha synergize to induce NK cell-mediated killing of human tumour cells in vitro. Further, treatment of tumour-bearing mice with histamine enhances IL-2- and IFN-alpha-induced destruction of NK cell-sensitive tumour cells in vivo. More than 50 patients with neoplastic disease have been treated with histamine, given in subcutaneous injections, together with IL-2 or IFN-alpha. The results of two pilot trials in metastatic melanoma suggest that the addition of histamine to IL-2 and IFN-alpha prolongs survival time and induces regression of tumours, such as liver melanoma, which are otherwise considered refractory to immunotherapy. The results of a trial in acute myelogenous leukaemia (AML) suggest that histamine and IL-2 protects AML patients against relapse of leukaemic disease. Histamine is well tolerated: for example, AML patients in remission have treated themselves with histamine at home without supervision for a total of > 300 weeks with only a handful of therapy-related hospital contacts. Controlled trials in melanoma and AML are under way to further investigate the putative benefit of histamine in neoplastic disease.
Objective: To evaluate the addition of low-dose interferon-alpha 2b to standard melphalan-prednisone therapy in patients with multiple myeloma.Design: Randomized, multicenter, phase III study.Setting: 15 university hospitals and 92 county hospitals in Sweden, Norway, Denmark, Finland, and Iceland.Patients: 583 patients with symptomatic multiple myeloma.Intervention: All patients received melphalan-prednisone every 6 weeks. Melphalan-prednisone therapy was interrupted after at least 8 courses in responding patients who achieved a plateau phase, and it was reinstituted at time of relapse. Patients randomly assigned to receive melphalan-prednisone and interferon also received interferon, 5 MU three times weekly, from the start of treatment through response, plateau phase, and relapse, until definitive failure of melphalan-prednisone occurred.Measurements: Survival was the main outcome measure. Secondary measures were response rate, response and plateau phase duration, and toxicity. All analyses were done according to the principle of intention-to-treat.Results: 45% of patients receiving melphalan-prednisone and 44% of patients receiving melphalan-prednisone and interferon achieved at least a partial response. Response duration and plateau phase duration were longer for patients receiving melphalan-prednisone and interferon than for patients receiving melphalan-prednisone alone (P < 0.05); the difference in median duration was 5 to 6 months. Toxicity was higher with melphalan-prednisone and interferon, and this led to premature discontinuation of interferon therapy in one third of patients and to a reduced overall dose intensity for melphalan. The median survival time was 29 months for patients receiving melphalan-prednisone and 32 months for patients receiving melphalan-prednisone and interferon. The risk ratio for death for patients receiving melphalan-prednisone compared with patients receiving melphalan-prednisone and interferon was 1.02 (95% CI, 0.89 to 1.40).Conclusions: Adding continuous low-dose interferon to standard melphalan-prednisone therapy does not improve response rate or survival. However, response duration and plateau phase duration are prolonged by maintenance therapy with interferon.
By using gamma camera imaging the spleen size was assessed in 18 consecutive patients with essential thrombocythaemia (ET) and in 18 consecutive patients with polycythaemia vera (PV). All ET and PV patients were newly diagnosed and had not received any myelosuppressive therapy prior to study. The spleen areas in both posterior and left lateral projections were determined. Eighteen consecutive patients with idiopathic thrombocytopenic purpura (ITP) served as a control group since by definition they do not present with splenic enlargement; in these latter subjects the mean posterior and left lateral splenic areas were almost identical (48 +/- 15 and 47 +/- 17 cm(2), respectively). In comparison with this control group patients with ET and PV had significantly larger spleens. In both ET and in PV patients the left lateral spleen scan area exceeded the posterior one. Patients with PV had larger splenic areas in both projections than did patients with ET, but the differences were not statistically significant. Compared to the ITP patients it was found that at least 50% of the ET patients and at least 61% of the PV patients at diagnosis presented with splenomegaly.
Abstract: Megakaryocyte (MK) ploidy patterns were analysed by flow cytometry in 29 newly diagnosed and previously untreated patients with chronic myeloproliferative disorders (MPD) and concomitant thrombocytosis, in 9 patients with reactive thrombocytosis (RT) and in 12 healthy individuals. Unfractionated bone marrow from routine aspirates was used. MKs were identified with a fluorescein labelled monoclonal antibody specific for glycoprotein IIIa (GPIIIa) and DNA was stained with propidium iodide. For the 12 healthy volunteers the mean modal ploidy number was 16 N; the 9 patients with RT displayed an identical MK ploidy pattern. The frequency of MKs with a ploidy ≥32 N was 45% among the patients with essential thrombocythaemia (ET) compared to 32% among the healthy volunteers (p < 0.001). MKs with ploidy number ≥ 64 N, comprising approximately 13% of the total number of MKs, was a characteristic finding in the patients with ET. Similar findings were present in 8 patients with polycythaemia vera (PV). In patients with PV 34% and 6% of the MKs displayed ploidies ≥32 N and ≥64 N, respectively. In contrast, a distinct shift towards lower ploidy number, with 63% of MKs ≤ 8 N, was found among the 4 patients with chronic myeloid leukaemia (CML). The present results indicate that by using flow cytometric analysis of MK ploidy distribution in patients with thrombocytosis, those with a reactive cause are likely to be discriminated from patients with myeloproliferative thrombocytosis, i.e. PV and ET on one hand and CML on the other hand. The distinction between ET and PV, however, has to be made on other grounds.
With the rationale that a significant reduction of the malignant clone in CML might prolong time to metamorphosis, intensive treatment was given to patients < or = 55 years. Six months of hydroxyurea and high dose interferon-alpha (IFN-alpha) was followed by one to three courses of intensive chemotherapy. Patients who had a donor were allotransplanted and patients who became Ph-negative in bone marrow were autotransplanted. On 1 May 1995, 160 patients were registered in the study. Fifty-one percent of the patients who received six months IFN-alpha and hydroxyurea had a significant Ph-reduction and 5% became Ph-negative. The corresponding figures after two intensive chemotherapy courses were 47 and 28%, respectively. Twenty-seven of 30 autotransplanted patients have been analysed for Ph. Seventeen have relapsed cytogenetically, while ten are Ph-negative 1-64 + months after ABMT. BMT was performed in 59 patients. The actuarial 6-year survival from diagnosis of all 160 registered patients is 68%, which seems to be better than for age-matched historical controls.
Relapses after autologous transplantation are a serious clinical problem in patients with haematological diseases. The decision making for handling of such patients is difficult and the aim of this retrospective analysis of posttransplant relapses was 1) to obtain information of practical importance for the management of future relapses and 2) to evaluate the basis for clinical phase I-II trials of salvage therapy combined with biological modifiers. Included in the study were 283 patients with acute leukemia, multiple myeloma and malignant lymphoma who relapsed after autologous transplantations during a five year period from 1989 to 1994. Chemo- and radiotherapy was given to 229 patients after relapse or due to progressive disease and the response evaluated after 90 days. Fifty four patients (24%) obtained a complete remission and 44 patients (19%) partial responses. The overall median survival from relapse was 5 months. In the group given salvage treatment the median survival was 7 months and in the 54 patients who obtained remission the median survival was 15 months. So far 6 of 14 patients in continuous complete remission have a remission time after relapse longer than the time in remission after transplantation. Survival after relapse depended upon the time from transplantation to relapse, primary disease and if salvage therapy was given. In conclusion posttransplant relapses can be treated but the strategy has to be evaluated in future clinical trials.
L-Asparaginase treatment during induction therapy in acute lymphoblastic leukaemia (ALL) is known to be frequently complicated by thromboembolic events. It was recently suggested that L-asparaginase derived from Erwinia chrysanthemi alters the coagulation system less severely than does Escherichia coli asparaginase. In a series of 11 adult patients with ALL, we investigated some parameters of the coagulation system during treatment with Erwinia asparaginase. The doses employed were rather high; all patients below the age of 60 years received 15 000 U/m(2) daily over 14 days. In accordance with what is known from treatment with E. coli asparaginase, we observed significant lowering of antithrombin as well as of fibrinogen. However, as to fibrinogen indeed a significant decrease had occurred prior to the institution of Erwinia asparaginase treatment. The most striking observation in the present study was that the levels of prothrombin complex, reflecting the function of K-vitamin dependent coagulation factors II, VII and X, remained within normal ranges during treatment. This indicates that these coagulation factors were not affected by Erwinia asparaginase, an observation at variance with several reports where E. coli asparaginase was investigated. This latter observation was the only finding which could lend support to the view that Erwinia asparaginase affects the coagulation system less than E. coli asparaginase. Finally, one of our patients developed a sinus thrombosis, a severe thrombotic complication.