Methodology of evaluation in EORTC trials including BMT in acute myelogenous leukemia (AML) in first complete remission (CR). EORTC Leukemia Cooperative Group (LCG) and GIMEMA.
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Biomedical subjects
Publications and source records attributed to F Mandelli.
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Residual tumor masses are sometimes found in non Hodgkin's lymphoma (NHL) patients after chemo-radiotherapy treatment. Radiologic findings do not differentiate lymphoma from fibrosis necrotic tissue. Surgical and histology reevaluation is the most reliable method of evaluation the viability of tumor residual masses. Sixty-three consecutive high-grade NHL were treated with F-MACHOP regimen. After 3 courses of F-MACHOP the response was evaluated clinically: twenty two (36%) achieved a clinical complete remission, 32 a clinical partial remission, 7 were non responders and two were not evaluable. An early pathological response evaluation was performed in 23 clinical partial responders. Fifteen (65%) patients had no evidence of NHL after pathological restaging and were considered as pathologic complete response and completed treatment with 3 additional courses F-MACHOP. Eight (35%), histologically positive, were defined as pathologic partial response and were crossed to salvage regimens. The 1 year actuarial event-free survival differed significantly according to clinical response after 3 courses of F-MACHOP and the outcome of clinical partial responders was highly dependent on the result of pathological restaging (87% for negative and 23% for positive). Our experience suggests that a significant proportion of clinical partial responses are histologically confirmed at pathological restaging when this procedure is performed early during treatment.
One-hundred, twenty-eight patients with Hodgkin's disease in remission or who had failed a mechlorethamine, vincristine, procarbazine and prednisone (MOPP), a doxorubicin, bleomycin, vinblastine and dacarbazine (ABVD) and/or lomustine, etoposide and prednimustine (CEP) regimens have been treated with a high-dose therapy (HDT) containing cyclophosphamide, etoposide, carmustine (CVB) and autologous bone marrow transplantation (ABMT). Forty patients were treated while they were in resistant or progressive disease states using alternating MOPP/ABVD protocol; 15 patients received ABMT in first relapse; 51 patients had a complete remission (CR) with first-line therapy but later relapsed and then received conventional salvage therapy; 16 achieved no response or progression ("resistant relapse" patients) and 35 responded partially or completely ("sensitive-relapse" patients). The other 22 patients received ABMT in remission. Following HDT, 56 patients (52.8%) achieved CR and 23 patients (21.6%) achieved a partial remission for an overall response rate of 74.4%. Sixteen patients failed to respond and died in progressive disease 1 to 10 months (median 6 months) after ABMT. High-dose therapy produced severe toxicity including vomiting (100%), mucositis (75%) and liver enzymes and alkaline phosphatase elevations (51%). There were 10 treatment-related deaths. A multivariate analysis identified poor performance status and resistant-relapse patients as very important adverse risk factors for survival immediately after ABMT. These results, while validating this procedure for inducing remissions in advanced highly-treated patients, at the same time confirm the need of employing this approach in first relapse or in second complete remission after standard therapy and before ABMT or, in first complete remission in very high risk Hodgkin's disease patients. Our experience in 15 very poor prognosis Hodgkin's disease patients transplanted in first CR demonstrated to be much significant.
Serum interleukin-2 (IL-2), soluble IL-2 receptors (sIL-2R) and tumor necrosis factor-alfa (TNF-alpha) levels were determined in 66 previously untreated consecutive patients with acute myeloid leukemia (AML) and in 22 normal volunteers. The following mean (+/- SE) values were observed in patients and controls, respectively: 35 +/- 14.7 (range 0.5-500) and 0.7 +/- 0.02 (0.5-0.8 U/ml for IL-2 (p = 0.001); 1622 +/- 289 (110-10,600) and 422 +/- 30 (207-666) U/ml for sIL-2R (p = 0.0001); 1247 +/- 196 (218-4672) and 152 +/- 11 (75-308) pg/ml for TNF-alpha (p = 0.0001). With respect to the FAB classification system, we found a significantly different distribution of serum IL-2 mean values in distinct subcategories, i.e. 3.4 +/- 1.9 U/ml in M1-M2-M3 and 42.4 +/- 20.4 U/ml in M4-M5 subgroups, respectively (p = 0.01), whereas sIL-2R and TNF-alpha levels were 1144 +/- 322 U/ml and 1120 +/- 317 pg/ml in M1-M2-M3 patients and 1945 +/- 317 U/ml and 1270 +/- 259 pg/ml in the M4-M5 group. A significantly positive correlation between TNF-alpha and sIL-2R (r = 0.53; p = 0.002) was also detected in the M4-M5 group. Sixty-three out of 66 patients received an intensive chemotherapy program. Univariate analysis showed that age and sIL-2R greater than 2000 U/ml significantly affected both complete remission rate and overall survival, whereas by multivariate analysis, age was the only independent variable significantly influencing survival. These data confirm recent in vitro evidence suggesting the role of IL-2, sIL-2R, and TNF-alpha in the control of normal hematopoiesis and leukemogenesis. Since the availability of recombinant cytokines for clinical use in AML, it is crucial to understand their spectrum of interaction in order to select the appropriate combination for in vivo administration.
Interleukin-1 alpha (IL-1 alpha), interleukin-1 beta (IL-1 beta) and soluble IL-2 receptor (sIL-2R) serum levels were evaluated in 24 hairy cell leukemia (HCL) patients. Of these, three patients were studied at the time of diagnosis, 12 in relapse after interferon (IFN) therapy, eight with a partial response after IFN and one with a complete response after 2-deoxycoformycin (DCF) therapy. Statistically significant differences were observed in the serum levels of IL-1 beta and sIL-2R between HCL patients and controls. These were 400.3 pg per 0.1 ml (range 23.2-990) and 64.3 pg per 0.1 ml (20-115) for IL-1 beta and 4667.2 U/ml (488-7800) and 424.3 U/ml (188-666) for sIL-2R, respectively. In contrast, IL-1 alpha measurements showed no statistical differences between the two groups. A significant increase of sIL-2R (p = 0.01) and IL-1 beta (p = 0.03) serum levels was observed in patients studied at the time of diagnosis or in relapse compared to those in partial or complete remission. IL-1 beta serum levels directly correlated with sIL-2R (p less than 0.0001) and with hairy cell (HC) bone marrow infiltration, expressed by the HC index (p = 0.003). The comparison of IL-1 beta serum levels of HCL patients with those detected among 149 patients grouped according to diagnosis (Hodgkin's disease = 17, non-Hodgkin's lymphomas = 57, acute non-lymphoid leukemia = 46, and acute lymphoid leukemia = 29) indicate that HCL patients showed the highest IL-1 beta serum level increase, indicating that IL-1 beta could be used as a specific clinical marker of this disease.
Seventy-seven patients with relapsed or refractory acute leukemia and three with acute blastic chronic myeloid leukemia (CML) were treated in an open Phase II study using mitoxantrone 12 mg/m2 intravenously daily X 5 days. Complete remission (CR) was achieved in 32 of 80 (40%), including 23/45 (52%) with relapsed acute nonlymmphocytic leukemia (ANLL), four of 12 (33%) with relapsed acute lymphocytic leukemia ALL, four of 17 (24%) with ANLL refractory to daunorubicin + cytosine arabinoside, and one of three (33%) with refractory ALL. None of the patients with acute blastic CML achieved CR. Median survival time for all patients was 121 days. Median duration of complete response was 303 days with ten of 32 patients in continuing CR for periods varying from 44+ to 1210+ days. Apart from moderately prolonged hematologic suppression toxicity was mild and subjective side effects were tolerable. Mitoxantrone is an active agent in the treatment of acute leukemia and demonstrates incomplete cross resistance with duanorubicin. Mitoxantrone should be considered for first-line therapy in ANLL.
Twenty-one acute myelogenous leukemia (AML) patients were submitted in second remission (II CR) to BAVC conditioning regimen followed by unpurged ABMT. Transplant was done after a median of 2 months from II CR (range, 1 to 13). Median first remission (I CR) duration was 16 months (range, 1-35). Conditioning regimen was well tolerated, with no major extra-medullary toxicity. One patient died during aplasia from fungal sepsis. Of the 20 evaluable patients, nine relapsed after a median time of 6 months (range, 2 to 18). Eleven patients are in continuous complete remission (CCR) after a median follow-up of 40 months (range, 24 to 63). The duration of II CR has exceeded the duration of I CR in all patients in CCR. Projected probability of disease-free survival is 52% at 63 months.
The records of 268 consecutive patients with acute hypergranular promyelocytic leukemia, treated at 29 Italian centers between January 1984 and December 1987, have been reviewed to assess the incidence of early hemorrhagic deaths and the effectiveness of various antihemorrhagic treatments. Three separate groups were considered: 94 patients were treated with heparin, 67 with anti-fibrinolytics (tranexamic acid, epsilon-aminocaproic acid, or aprotinin), and 107 with supportive therapy alone. The overall incidence of early hemorrhagic death (within the first 10 days of treatment) was 9.4%, with no significant differences between the various groups. Similarly, there were no differences in complete remission rates or duration of survival. The consumption of packed red blood cells and platelet concentrates was similar for two of the groups, and there was a significantly greater use of platelet concentrates for heparin-treated patients. High blast cell counts on the day of admission were significantly associated with hemorrhagic death within the first 10 days. These counts, plus high blast cell counts and low platelet counts, were associated with death within 24 hours.
The use of interferon for the induction treatment of multiple myeloma has been shown to be effective in about 20 percent of patients. We studied its effects on long-term survival when it was used for maintenance treatment. Between April 1985 and May 1988, 101 patients with symptomatic multiple myeloma who had had a substantial objective response or a lesser objective response with disappearance of symptoms ("disease stabilization") after 12 courses of induction chemotherapy were randomly assigned to receive recombinant interferon alfa-2b as maintenance therapy (n = 50) or to receive no treatment (n = 51). As of December 1989, 66 of the 101 patients have relapsed (25 given interferon and 41 not treated). The median duration of response (from the time of randomization) was 26 months in the patients given interferon and 14 months in the untreated patients (P = 0.0002). A total of 37 patients have died (14 given interferon and 23 not treated). The median duration of survival (from randomization) was 52 months in the interferon group and 39 months in the control group (P = 0.0526). Among the patients who had had a substantial objective response to induction chemotherapy, the difference in survival time was statistically significant (P = 0.03526). Interferon had to be stopped because of toxic effects in 3 of 12 patients initially treated with 10 MU (megaunits) per square meter of body-surface area. After the dose was reduced to 3 MU per square meter, the only toxic effect was a mild influenza-like syndrome lasting two to three weeks. We conclude that maintenance treatment with interferon prolongs response and survival in patients with multiple myeloma who have responded to conventional induction chemotherapy.
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The effect of recombinant interleukin 2 (IL2) on the in vitro and in vivo proliferation and growth of human acute leukaemia cells of both myeloid and lymphoid origin was investigated. In none of the 25 primary samples tested could a continuously in vitro growing cell line be obtained by adding IL2 to the culture medium. Although IL2 induced a proliferative signal in three of the 31 acute leukaemias analysed, the overall 3H-thymidine uptake of the neoplastic cells was significantly reduced (P less than 0.05) in the presence of IL2. The unlikelihood of an important proliferative signal triggered by IL2 was confirmed in a semisolid clonogenic assay, which failed to document an increased colony growth in the 26 samples studied. Furthermore, using a colorimetric assay as a test for cell proliferation and survival, in seven of the 11 fresh acute leukaemia samples tested a 22-40% reduction in viability was observed in the presence of IL2, while in the remaining four, IL2 was ineffective. In order to investigate the effect of IL2 in an in vivo setting, an experimental model in heavily immunosuppressed nu/nu mice was established. In no case did IL2 promote the in vivo proliferation and growth of human myeloid and lymphoid acute leukaemia cells injected in the mice. On the contrary, with seven of the eight leukaemic cell lines which gave rise spontaneously to leukaemic masses, this could be prevented when the mice received locally 300 U of IL2 three times daily for 90 d. IL2 also blocked the growth in vivo of three fresh acute leukaemia samples (two myeloid and one lymphoid). Co-culture experiments using leukaemic cell lines and increasing numbers of normal lymphocytes suggest that the inhibitory effect of IL2 is probably exerted via an indirect mechanism. These findings, coupled to the well-documented ability of IL2 to generate lymphokine activated killer cells cytolytic against leukaemic blasts, further point to the potential role of immunotherapy with IL2 in the management of patients with haematological malignancies.
Because of the reported high sensitivity of acute promyelocytic leukemia to daunorubicin, we treated 27 consecutive, newly diagnosed, acute promyelocytic leukemia (APL) patients with the new anthracycline idarubicin (IDA) as induction therapy. IDA dosage ranged from 0.25 to 0.30 mg/kg/day and the drug was administered as single agent during a single induction course of 6 days. A total of 22/27 patients (81%) achieved complete remission, 4 (15%) died during induction and 1 patient was resistant to IDA. Extrahematological toxicity was acceptable. A total of 13/22 patients having achieved CR are still alive and in first CR after a median follow-up of 12 months. As for the treatment of the coagulopathy present in APL: 17/27 (63%) received tranexamic acid (6 g/daily) in continuous infusion for total of 7 d. None of the patients treated with tranexamic acid experienced thromboembolic complications. In conclusion, this multicentric pilot study confirms the antileukemic potency of IDA and the high sensitivity of APL to anthracycline derivatives.
Acute promyelocytic leukemia (FAB-M3) is a distinct entity among acute non-lymphoid leukemias (ANLL) with peculiar morphological, biological, clinical and prognostic features. An atypical form of M3 (M3v) could be confused with other FAB ANLL and therefore the diagnosis of this variant requires ultrastructural analysis and/or cytogenetic study and/or selective gene rearrangement studies. The immunological phenotype of blast cells in 39 APL patients was studied at diagnosis. The diagnosis of M3 FAB type was ascertained in 32 and the diagnosis of M3v in 7 cases. Using a large series of monoclonal antibodies (mAb), the APL blast cells were B and T cell antigens-negative, HLA-DR constantly negative, CD13- and/or CD33-positive, CD9-positive. Among ANLL this phenotype seems to be closely related to APL both in M3 type and M3v subtype. Because the diagnosis of APL (M3 or M3v) is important in order to establish the specific therapeutic approach, the discriminant capacity of the immunological typing to identify M3 and mainly M3v (hypogranular) could be determinant for a "quick" diagnosis.
In an ongoing phase II study we are evaluating the role of alpha-2b recombinant interferon in Hodgkin's disease; the study design includes patients with high-risk parameters who are treated by combination chemotherapy MOPP, ABVD, MOPP + ABVD or equivalent combinations. At the end of the therapeutic program which could include also radiotherapy, patients will be randomly assigned to receive alpha-2b interferon at 3 MU/day over 3 months and then 3 MU/three times/week over 9 months or no further treatment. Up to September 1989, 107 patients were randomized; evaluable patients with a minimum follow-up of 3 months are 95, 56 in the arm of interferon and 39 in the arm of no further treatment. The results are preliminary and differences could not be disclosed between the two arms concerning either the relapse rate or the incidence of infections. Tolerance and toxicity due to alpha-2b interferon in patients with Hodgkin's disease could be defined as acceptably good considering that mild and reversible hematological toxicity was experienced in 12 (21%) patients; objective clinical toxicity was recorded in 4 (7%) patients although 7 (12%) patients refused to continue the treatment. Definite conclusions will be drawn when 100 patients per arm become evaluable.