[Hypereosinophilic syndrome in a myeloproliferative variety. Success after 18 month treatment with interferon alpha].
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Biomedical subjects
Publications and source records attributed to A Najman.
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The treatment of haemolytic anaemia related to primary cold agglutinin disease is often unsatisfactory. Corticosteroids are not useful in most cases and, beside protection against cold, treatment is frequently limited to transfusions. We report the good results obtained with long-term danazol therapy (600 mg per day initially, than 400 mg per day) in 3 cases of chronic cold agglutinin disease and 1 case of idiopathic haemolytic anaemia with cold agglutinin in serum. The only side-effect was a transient increase of transaminase level requiring reduction of a maintenance dose which could be given during 3 to 7 years.
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Although tumor necrosis factor alpha (TNF alpha) exerts a variety of activities on hematopoietic cells, suggesting it may have some potential therapeutic applications, its long-term effects on hematopoiesis are not well defined. Therefore, we took the advantage of long-term bone marrow cultures (LTBMCs) to evaluate the long-term role of TNF alpha on both the microenvironment and the hematopoietic progenitors. LTBMCs were inoculated with 100 U/ml of recombinant human TNF alpha (rhTNF alpha) either at the onset of the cultures (d0) or at day 21 (d21) when the adherent layer (AL) was already established. Then TNF alpha was added at each weekly medium change. The cellularity and the content of progenitors in both the nonadherent layer (NAL) and AL, the formation of the AL, and the presence of various cytokines in the supernatants were examined weekly. The data showed 1) a strong and durable inhibitory effect on total nonadherent cells; 2) a rapid and transient inhibition of NA progenitors, whereas adherent progenitors were lately affected; and 3) microenvironmental changes consisting of the disappearance of adipocytes and the secretion of high levels of interleukin 6. The results suggest that the inhibitory effects of TNF alpha on the NAL are in part counterbalanced by stromal modifications that in turn lead to a faster exhaustion of hematopoiesis.
The effects of acetyl-N-Ser-Asp-Lys-Pro (Ac-SDKP) in human long-term bone marrow cultures (LTBMCs) were assessed by measuring the number of progenitors and the development of stromal cells over a 6-week course. In a first set of experiments, AcSDKP was added weekly at each medium change. Under these conditions, no significant effect of the peptide was observed. In contrast, by adding AcSDKP daily at 10(-10) M, the growth of the progenitors of the non-adherent (NA) compartment was inhibited by about 35%. This inhibition was entirely reversible; after stopping the addition of the peptide at the fourth week, the number of progenitors returned to control level within 2 weeks. Conversely, AcSDKP did not significantly change the number of the progenitors present in the adherent layer. In addition, AcSDKP did not affect the formation of the stromal layer nor induce the secretion of cytokines, such as tumor necrosis factor alpha (TNF-alpha), interleukin 1 beta (IL-1 beta), granulocyte colony-stimulating factor (G-CSF), interleukin 3 (IL-3), or interleukin 6 (IL-6). Our results indicate that AcSDKP has inhibitory but reversible effects on NA progenitors and does not induce long-term modifications of the microenvironment, both of particular interest for its clinical application.
The tetrapeptide acetyl-N-Ser-Asp-Lys-Pro (AcSDKP) inhibits the entry into DNA synthesis of murine spleen colony-forming units (CFU-S) and protects these cells during chemotherapy. This synthetic peptide also inhibits the growth of normal human marrow progenitors granulocyte-macrophage colony-forming units (CFU-GM) and erythroid burst-forming units (BFU-E) and decreases their percentage in DNA synthesis at nanomolar concentration. In view of its clinical application as a marrow protector, we have investigated its effects on malignant cells. Studies were carried out on HL-60 cells and on fresh leukemic cells from patients with either chronic myeloid leukemia (CML) or acute myeloid leukemia (AML). Results showed that AcSDKP, whatever the doses used, did not modify the proliferation of both HL-60 cells and AML cells even when enhanced by stimulating factors such as interleukin 3 or granulocyte-macrophage colony-stimulating factor (GM-CSF). In addition, no change in the number and the percentage in S-phase of both HL-60 clonogenic cells and CML progenitors was observed. Our data clearly demonstrate that the tetrapeptide AcSDKP was ineffective on leukemic cells and therefore by acting selectively on normal progenitors represents a potent therapeutical agent for the protection of normal bone marrow progenitors during chemotherapy.
Five patients with resistant non-Hodgkin lymphoma (NHL) were given granulocyte-macrophage colony-stimulating factor (GM-CSF, 250 micrograms/m2 daily) after the BEAM pretransplant chemotherapy regimen (carmustine 300 mg/m2, etoposide 1.2 g/m2, cytarabine 800 mg/m2, melphalan 140 mg/m2) because persistent lymphoma cell infiltration of the bone marrow precluded autologous bone-marrow transplantation (BMT). In three patients full haemopoietic reconstitution occurred, with similar kinetics to that seen after autologous BMT. The other two patients died without sustained haemopoietic recovery. GM-CSF may replace autologous BMT in highly selected cases of NHL with progressive disease and bone-marrow involvement.
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Veno-occlusive disease (VOD) is a major cause of toxic death after autologous bone marrow transplantation (ABMT). We studied the potential role of continuous administration of low-dose heparin for VOD prevention in 234 consecutive patients who underwent ABMT in our institution. The population consisted of 98 patients autografted before October 1984 who did not receive heparin, and a series of 136 patients autografted from October 1984 to March 1989 containing 98 patients included in a randomized trial comparing heparin administration (n = 52) vs no heparin (n = 46), and an additional group of 38 patients who received non-randomized heparin in view of high-risk criteria to develop VOD (n = 31) or other reasons unrelated to VOD (n = 7). Overall, 90 patients (38%) received heparin and 144 (62%) did not. The global incidence of VOD was 13/234 (5-5%). Heparin did not reduce the risk of VOD in all subgroups studied. In particular, in the randomized trial, the incidence of VOD was 2.2% in the group without heparin vs 7-7% in the group receiving heparin. We analyzed in depth the 13 patients who developed VOD and we compared them to a control group of 13 patients pair-matched for age, sex, diagnosis and preparative regimen, who did not develop VOD. We found that abnormal LFT before ABMT predisposed patients to VOD; refractoriness to platelet transfusion was observed in 85% of the patients in the VOD group vs 15% in the control group (p less than 0.05). VOD patients had an increased requirement for red cells and platelet transfusions, a lower recovery (R less than 25%) after the second and third platelet transfusion, and shorter intervals separating the first four platelet transfusions. Further, the platelet reconstitution after ABMT in the VOD group was slower in comparison to the control group (p less than 0.01). Again, in this pair-matched analysis continuous infusion of low-dose heparin did not prevent VOD.
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In order to reduce, if not completely suppress, late complications of combined chemotherapy and radiotherapy in Hodgkin's disease (HD), MOPP regimen (mechlorethamine, vincristine, procarbazine and prednisone) was replaced by ABVD (doxorubicin, bleomycin, vinblastine and dacarbazine). Ninety-four patients with HD clinical stages I to IIIA with no staging laparotomy were treated by three courses of ABVD followed by radiotherapy. Irradiation was performed on extended fields in 41 cases and on involved fields in 53 others. Consolidation chemotherapy was planned in 67 cases with at least one unfavorable prognostic factor, but achieved only in 33 cases. Seventeen patients relapsed within 1 to 46 months after the beginning of treatment. Ten patients died, 7 of HD and 3 of intercurrent diseases or accident. Disease-free survival rate with a median follow-up of 60 months is 80%. This study showed, on the one hand, many digestive and general side-effects after ABVD and, on the other, a satisfactory hematological tolerance. Furthermore, mediastinitis or cardiovascular complications were not more frequent than with MOPP. These results point out the development and use of better tolerated regimens for initial chemotherapy in HD, without jeopardizing the good results of the treatment.
We have tested folinic acid (FA) for ability to increase peripheral blood stem cells (PBSC) after chemotherapeutic aplasia in acute leukaemia. Five adult patients (four AML, one ALL) entered the study, each patient underwent two series of three leukapheresis, the first following induction chemotherapy and the second following the first course of consolidation. The first leukapheresis of each series was done when the white blood cell count reached 10(9)/l with subsequent leukapheresis every other day. Folinic acid (Lederle Laboratories, France) was administered at a dose of 50 mg (i.v.) per day, 15 days from initiation of chemotherapy and continuing through the third leukapheresis of the series (days 25-30). PBSC were collected on a Haemonetics V50 cell separator. In these five cases we observed an increased yield of both colony-forming units, granulocyte macrophage (CFU-GM) and burst forming units-erythroid (BFU-E) expressed per ml of cytapheresis product: CFU-GM x 18, BFU-E x 3 and if expressed per 10(4)/kg of body weight: CFU-GM x 30, BFU-E x 3 (CFU-GM P less than 0.05, BFU-E less than 0.01). Long-term blood culture (LTSC) from FA stimulated leukapheresis, in an attempt to quantitate the most primitive stem cells, demonstrated that this expansion of the PBSC was sustained in time. We found by means of LTSC that FA did not stimulate CFU-L from patients with AML (two cases tested). Finally two AML patients were grafted with FA-PBSC after Cytotoxan and total body irradiation (TBI). Haematopoietic reconstitution was rapid complete and sustained in time in both patients. This indication for folinic acid should be further studied with or as an alternative to haematopoietic growth factors.
Forty-six patients with non-Hodgkin's lymphoma (NHL) were treated with autologous bone marrow transplantation (ABMT) in two different institutions. All patients were pretreated with conventional chemotherapy. Three different conditioning regimens were used, and 20 patients underwent bone marrow purging. Twelve patients were treated in first complete remission (CR); eight are in unmaintained CR 8 to 104 months after ABMT. Five patients were grafted in first partial remission (PR) after conventional therapy; all achieved CR, and all remain in prolonged CR (first CR for four patients, second CR for one patient). Of 21 patients with chemosensitive relapses, 13 patients are in prolonged unmaintained CR 8 to 94 months after ABMT. Eight patients with resistant disease remained uncured by ABMT; all eight died, six from progressive illness and two from toxicity. The current 3-year disease-free probability is 60% for all patients, 0% for refractory disease; 82% for first PR or CR, and 60% for sensitive relapses (SRs). These results confirm the efficacy of ABMT in the treatment of chemosensitive NHL with bad prognosis.
This report describes an 18-year-old man with disseminated malignant histiocytosis (MH). The patient initially attained complete remission (CR1) with conventional chemotherapy and then relapsed 14 months later. In second complete remission (CR2) 2 years and 8 months after initial diagnosis, an autologous bone marrow transplantation (ABMT) was undertaken following conditioning with the BEAM regimen. Bone marrow collected in CR2 was incubated with mafosfamide at a dose adjusted to the individual sensitivity of normal CFU-GM according to our current protocol. At the time of writing, 4 years post-transplant, this patient remains disease free. This is the first report of ABMT with marrow treated in vitro by mafosfamide in MH.