[Rapid hematological reconstitution after combined reinjection of autologous bone marrow treated by Asta-Z and stem cells from peripheral blood in a patient with Ewing sarcoma].
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Biomedical subjects
Publications and source records attributed to L Douay.
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Circadian variations have been observed in peripheral blood lymphocyte counts in normal subjects; they usually reflect variations in absolute CD4-cell count. For this population, nadir occurs around 0800 h (basal value) and the peak value occurs at midnight (1.6 times the 0800-h value). This cycle is thought to be of major importance in the efficacy of the immune response because it expresses the migration of lymphocytes into lymphoid organs.
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Fourteen adult patients in first complete remission of acute leukemia (A.L.) [6 with acute lymphoblastic leukemia (ALL), 8 with acute non lymphoblastic leukemia (ANLL)] were consolidated with high dose cyclophosphamide and total body irradiation followed by autologous bone marrow transplantation (ABMT) with marrow cleansed in vitro by Asta Z 7557. According to our previously described protocol showing evidence for a wide range of sensitivity from patient to patient, the marrow of each individual patient was incubated with the highest tolerable dose of Asta Z 7557. This dose, individually determined, was defined as the dose sparing between 0 and 10% of CFU-GM (CFU-GM DL95). ABMT was not followed by maintenance therapy. Hematological reconstitution was significantly faster in ALL patients when compared to ANLL patients. Out of these 14 patients: 2 relapsed on months 5 and 15 respectively after ABMT, and 2 died in complete remission on months 3 and 16 respectively, of veno-occlusive disease and encephalitis. Ten patients (70%) remain in complete remission up to a median of 15 months +, with 4 patients over 24 months +.
Blood nucleated cells collected by leukapheresis and spleen cell suspension from patients with myelofibrosis with myeloid metaplasia (MMM) were studied for their haematopoietic capacity. Using committed progenitor cell assays (CFU-GM, BFU-e) and a one-stage long-term liquid stem cell system, we have shown: (1) a preferential expansion of the circulating committed progenitor cell pool above the more primitive stem cell compartment; (2) the absence of any development of a stromal adherent layer in long-term cultures of peripheral blood nucleated cells suggesting the self-sustaining capacity of the circulating primitive stem cells; (3) that the spleen is only a production site of committed progenitor cells but does not generate primitive stem cells; (4) the presence, in the spleen, of stromal progenitor cells. We conclude that the peripheral blood primitive stem cells in patients with MMM are not of splenic origin.
The kinetics of hematopoietic recovery after autologous bone marrow transplantation (ABMT) reflect the hematopoietic capacity of the infused marrow. In vitro treatment of marrow with high doses of mafosfamide (ASTA Z 7557) alters the hematopoietic regenerative capacity of the graft. Thirty-two patients with acute leukemia (12 acute lymphoblastic leukemia (ALL) and 20 acute non-lymphoblastic leukemia (ANLL] with 27 in complete remission and five in partial remission were consolidated with cyclophosphamide (60 mg/kg x 2) and total body irradiation (10 Gy), followed by reinfusion of autologous marrow treated in vitro with mafosfamide. The marrow of each patient had been incubated with the highest tolerable dose of mafosfamide, individually predetermined from a preincubation test. We report here that the kinetics of engraftment are strikingly different in ANLL and ALL patients. In the ANLL group recovery to 0.1% reticulocytes took a median of 20.5 days (range 14-32) versus 15 (11-28) in the ALL group; 33.5 days (18-45) versus 19 (15-30) for leukocytes to reach 1.0 x 10(9)/l; 35 (19-60) versus 20.5 (15-30) for neutrophils to reach 0.5 x 10(9)/l; 110+ (45-480+) versus 50 (23-90) for platelets to reach 50 x 10(9)/l (p less than 0.01 and p less than 0.05). Detection of granulocyte-macrophage progenitors (CFU-GM) regeneration in marrow aspirates post-ABMT was delayed in ANLL (p less than 0.05). Neither the nature of the previous induction therapy, nor the status of the blood or bone marrow at the time of collection (CFU-GM and erythroid burst-forming units/ml) nor the stem cell sensitivity to mafosfamide, nor the doses of progenitor cells infused could explain these differences. We interpreted these observations as suggesting that the engraftment potential has been more severely altered in ANLL than in ALL, which may reflect both the intensity of the in vitro treatment and the intrinsic fragility of the stem cell pool in ANLL.
Eighteen marrows from 16 patients with advanced neuroblastoma were submitted to a single or double immunomagnetic depletion procedure to purge them of tumor cells. Analysis of results showed that the CFU-GM recoveries were 59% +/- 16 (SE) and 33% +/- 16 after one or two cycles of incubation with microspheres. This led to yields of 7.8 x 10(4) and 4.1 x 10(4) CFU-GM available per kg body weight, respectively. Successful engraftment was demonstrated in all evaluable patients. However, some patients had delayed hematologic recoveries, particularly for platelets.
Peripheral blood cells collected by cytapheresis from patients with acute leukemia following induction therapy or with multiple myeloma off-therapy, were maintained in a one-stage long-term liquid culture system. The data indicate that: (1) blood-derived granulopoietic proliferation can be sustained for up to 8 weeks with generation of CFU-GM in a way similar to bone marrow cells; and (2) this normal hematopoiesis can be sustained in spite of the absence of any development of a substantial stromal adherent layer, which suggests that, unlike hematopoiesis from bone marrow, the blood-derived non-adherent cell population is a self-sustaining compartment. While autologous transplantation with peripheral progenitor cells is gaining importance as an alternative to autologous bone marrow transplantation, this study suggests that circulating progenitor cells may have a different behavior from marrow cells. This observation may be relevant to the understanding of cases of defective hematopoietic reconstitution.
Cardiac complications related to bone marrow grafting were investigated in a group of 63 patients undergoing bone marrow transplantation (57 autologous, 6 allogeneic) in the transplant unit of Hôpital Saint-Antoine (Paris, France) between February 1977 and October 1983. The pregraft regimen was cyclophosphamide, 6-thioguanine, cytosine arabinoside, and CCNU (TACC) in 39 cases, cyclophosphamide (CY) associated with whole-body irradiation in 16 cases, and multiple chemotherapeutic agents in 8 cases. The study was retrospective in 49 patients, and prospective in 14. The morbidity was 43% and the mortality 9%. There were 6 fatal cases of cardiomyopathies and/or pericarditis, 14 nonfatal cases of heart failure, 7 nonfatal cases of pure pericarditis, and 32 arythmias including 14 bradycardias, diversely associated on a total of 27 patients. Cyclophosphamide and/or TACC/cyclophosphamide, 6-thioguanine, cytosine arabinoside, and BCNU (BACT) were the factors basically responsible for the cardiac toxicity. The best-defined entity was an acute fatal cardiomyopathy with associated pericarditis of which we report three additional cases. The best predictors of CY toxicity were the daily weight (a gain of more than 2 kg for more than 48 hours) and the electrocardiogram (a decrease of more than 14% in the sum of the QRS complexes in the standard leads on the fourth day of chemotherapy). Routine echocardiography confirmed the high incidence of subclinical cardiac abnormalities and their reversibility. It would seem that radiotherapy and anthracyclines play a secondary role. Currently, we consider that cardiac toxicity is one of the most important limiting factors for bone marrow transplantation. We suggest, therefore, that the transplantation should be done as early as possible and preference should be given whenever possible to whole-body irradiation over high-dose chemotherapy combinations such as TACC.
Autologous bone marrow transplantation (ABMT) in chronic granulocytic leukemia (CGL) aims at reversing the acute or acceleration phases by injection of stem cells collected during the chronic phase. This study was designed to explain an unusual rate of delayed engraftment (50%) in our experience of ABMT in CGL patients. We investigated all the factors possibly responsible for abnormal perpetuation of aplasia following infusion of cryopreserved marrow stem cells. The study of CFU-gm recovery in 41 bags of frozen marrow from 25 patients revealed an overall deficiency with a mean CFU-gm recovery of 55 +/- 38% in CGL patients versus 73 +/- 15% in the control group (p less than 0.001). Our data also showed an inverse linear relation (r = -0.40, p less than 0.05) between CFU-gm concentration and recovery after freezing. A good CFU-gm recovery (greater than or equal to = 50%) was observed in 70% of cases when the concentration was less than 3700 CFU-gm/ml as compared to 30% of cases when the concentration was over 3700 CFU-gm/ml (p less than 0.001). The lack of improvement by diluting rich CFU-gm marrows to reduce CFU-gm concentration/ml, as well as the absence of relationship between CFU-gm recovery after freezing and nucleated cells concentration, suggest a particular fragility of CGL stem cells to freezing, probably related to their excessive amplification. At the present time, we strongly recommend that the highest possible dose of progenitor cells be cryopreserved, preferably at a low concentration, in patients with CGL, and particular attention devoted to the freezing procedure in each individual patient, with numerous appropriate efficiency tests.
Ampoule tests are commonly used as an index of the cryopreservation efficiency of marrow stem cells in bags. We have studied the recovery of hematopoietic progenitor cells (CFU-GM, BFUe) in 52 ampoules and compared it to the recovery in 83 standard bags. Our data showed significantly deficient CFU-GM and BFUe recoveries (respectively 47 +/- 31% and 31 +/- 30%) in ampoules when compared to bags (respectively 72 +/- 22% and 64 +/- 19%; P less than 0.001). Moreover, a good progenitor cell recovery (greater than or equal to 50%) was observed in only 46% of frozen ampoules versus 100% observed in frozen bags (P less than 0.05). We were able to relate this nonoptimal recovery to an excessively rapid freezing rate of -9 degrees C/min following the release of fusion heat which occurred in ampoules, while the freezing rate was constantly maintained at -2 degrees C/min in the corresponding bags. We therefore conclude that the cooling conditions have to be carefully controlled to ensure that the bags and ampoules are both cooled under the same conditions. Otherwise, ampoules would not be a reliable index of the true progenitor cells' cryopreservation efficiency in bags.
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The sensitivity of human myeloblastic leukemic (CFU-L) and normal hemopoietic stem cells (CFU-GM and BFU-e) to Asta Z 7557 (INN Mafosfamide) was studied with regard to autologous bone marrow transplantation (ABMT) with cleansed marrow for consolidation therapy in adult patients with acute leukemia (AL) in remission. Establishment of the dose-response curves for CFU-GM (n = 37), BFUe (n = 11), and myeloblastic CFU-L (n = 9) demonstrated a wide range of sensitivity from patient to patient for all three progenitors. Whereas CFU-L, CFU-GM, and BFU-e grown in semisolid cultures disclosed similar sensitivities to Asta Z 7557, long-term culture (LTC) studies (n = 41) indicated a higher resistance of early progenitors. In an effort to achieve a maximum tumor cell kill and yet spare a sufficient amount of normal stem cells to ensure consistent engraftment, we defined the optimal dose for marrow cleansing as the dose sparing 5% CFU-GM (LD95). This dose was established from a preincubation test (PIT) realized on a 10-mL marrow aspirate taken 15 days before marrow collection in each individual patient. Twenty-four adult patients while in remission of AL (20 in complete remission, four in partial remission) were consolidated by cyclophosphamide 60 mg/kg X 2 and total body irradiation at 10 Gy followed by ABMT with marrow cleansed by Asta Z 7557 according to the specification described above. Patients were divided in two groups: group 1, unfavorable prognosis (11 patients); group 2, standard prognosis [13 patients in first complete remission (CR)]. All patients engrafted on leukocytes (median day for recovery to 10(9)/L: day 30), patients with ALL recovered faster than patients with ANL (median day 19 v 34). Similarly, recovery of platelets to 50.10(9)/L occurred sooner in patients with ALL (median day 67, range day 23 through 90) whereas three patients with acute nonlymphoblastic leukemia (ANLL) in group 2 had to be supported with platelet transfusions for more than one year. In group 1, six patients had recurrent tumor within six months; three patients died from toxicity with no evidence of tumor. Two patients are still disease-free with a short follow-up (nine and ten months). In group 2, two patients died from toxicity with no evidence of leukemia three and 16 months post-ABMT. One patient with a M5 ANLL and one patient with ALL relapsed at six and 15 months, respectively. Nine patients have remained in CR or are disease-free with a median follow-up of 22 months.(ABSTRACT TRUNCATED AT 400 WORDS)
In 18 patients with non-Hodgkin's lymphomas or solid tumors treated with intensive chemotherapy and/or total-body irradiation followed by autologous bone marrow transplantation (ABMT), we assessed the value of granulocyte-macrophage progenitor cells (CFU-GM) monitoring to predict engraftment. We studied CFU-GM in cryopreserved marrow and attempted to settle whether detection of CFU-GM in vivo after ABMT has a predictive value on engraftment. Our data showed: The absence of linear correlation linking recovery of hematopoiesis to the dose of CFU-GM/kg infused. The existence of a CFU-GM threshold in respect to engraftment. Patients receiving doses of CFU-GM greater than 10(3)/kg had significantly faster recovery kinetics for hematopoiesis than did patients receiving doses below this threshold, with median recoveries to 0.5 and 1.0 X 10(9) neutrophils/liter, respectively, on days 14 and 15 versus days 29 and 31.5 (p less than 0.05 and p less than 0.02) and median recoveries to 1.0 and 2.5 X 10(9) leukocytes/liter respectively, on days 12.5 and 16 versus days 28 and 30.5 (p less than 0.05 and p less than 0.02). Considering the entire course of events during the first four weeks, we were able to show that white blood cell recovery was significantly faster in the group of patients receiving doses of CFU-GM greater than 10(3)/kg (p less than 0.001). Sequential studies of the reappearance of CFU-GM in marrow and peripheral blood indicated that the kinetics of CFU-GM recovery in vivo after ABMT predict engraftment. By day 7 after the graft, CFU-GM were already detectable in the marrow at a level of 10% of the dose infused for patients with optimal engraftment--median time to recovery to 1.0 and 2.5 X 10(9) leukocytes/liter and 1.0 X 10(9) neutrophils/liter on days 11, 15, and 14.5 versus days 18, 23, and 23 (p less than 0.02, less than 0.05, and less than 0.05), respectively after. On day 10 after ABMT, a 15% CFU-GM level in bone marrow confirmed engraftment, with a significant correlation of all parameters studied--1.0 and 2.5 X 10(9) leukocytes/liter (p less than 0.02 and less than 0.01), 0.5 and 1.0 X 10(9) neutrophils/liter (p less than 0.05), 50.0 and 100.0 X 10(9) platelets/liter (p less than 0.05). On day 14, a 50% CFU-GM level was reached in all patients with optimal engraftment; p less than 0.01 on 1.0, and 2.5 X 10(9) leukocytes on 0.5 and 1.0 X 10(9) neutrophils/liter. The detection of circulating CFU-GM in the blood by day 10 or 14 indicated engraftment.(ABSTRACT TRUNCATED AT 400 WORDS)
The lymphocyte subset reconstitution after high-dose chemotherapy and total body irradiation followed by autologous bone marrow transplantation (ABMT) has been studied in ten patients with acute leukemia (AL) (6 ALL and 4 ANLL) in complete remission (CR). Bone marrow was treated in vitro with high-dose ASTA Z 7557, individually determined according to CFU-GM sensitivity. The different peripheral blood lymphocyte subsets were characterized by means of monoclonal antibodies (indirect immunofluorescence assay) belonging to the following classes of differentiation: OKT11-T11 (CD2), OKT3-T3 (CD3), OKT4-T4 (CD4), OKT8-T8 (CD8), OKIal-I2 (HLA-DR), Leu7 (natural killer/killer) and by means of polyspecific antiimmunoglobulin sera (direct immunofluorescence assay). Data in these ten patients were compared with those of a control group of 21 normal donors and with a control group of 14 patients in CR without ABMT. Our results showed a marked depression of the T4:T8 ratio in patients with AL before ABMT, compared with normal donors who had respective values of 1.02 and 1.33 (p less than 0.01). This depression was increased and prolonged up to day 515 after ABMT, with a value of 0.32 (p less than 0.01 compared with the pregraft situation; p less than 0.001 compared with normal donors). This T4:T8 ratio imbalance was related to the depletion of the T4+ population and to the increase of the T8+ subset. This imbalance was emphasized after ABMT. The Leu 7+ population was also increased in grafted patients compared with normal donors (p less than 0.01). The B-cell population remained unchanged throughout the study. We conclude that patients autografted with marrow treated in vitro by high-dose ASTA Z 7557 may experience a long-term T-cell subset imbalance.
Between June 1979 and October 1983, 14 autografts were performed in 13 patients with CML (ten blast crisis, four accelerated phase). Results were disappointing: four patients died during aplasia; seven returned to chronic phase, but three died of hemorrhage, four relapsed, and three did not reverse. The main problem was the very low rate of successful engraftment. Both the collection of bone marrow after treatment with busulfan and a particular sensitivity of CFU-GM to cryoinjury were responsible for the infusion of very low doses of CFU-GM. However, we observed some promising results: In one patient in acute blast crisis, the Ph 1 chromosome disappeared, as well as the cytogenetic marker of transformation; in another patient with acute pure cytogenetic acceleration, the abnormal clone disappeared for 27 months; a third patient was maintained in a second chronic phase for 20 months. Thus we suggest that the results of autografting in chronic myeloid leukemia would be improved by infusing the largest possible dose of stem cells collected before or long after treatment by busulfan, and freezing them following a careful program.
The diagnostic value in polycythemia of the presence of endogenous erythroid colonies derived from bone marrow cells (EECs) was assessed in a prospective study on 108 patients referred for polycythemia (Hb greater than g/dL in men, greater than 16 g/dL in women) with normal plasma volume by comparison with the standard criteria, the bone marrow grade, and the serum erythropoietin (Epo) level. Total red cell volume (TRCV) was high (greater than 36 mL/kg in men, 32 mL/kg in women) in 87 cases (group A) and slightly increased in 21 cases (group B). Standard criteria were applicable in 63 of 108 cases (57%); 46 were PV and 17 were secondary polycythemia (SP). Standard criteria were nonapplicable in 45 cases. EECs were present in 65 cases (60%) with a ratio of EEC/Epo-stimulated colonies of 39.5% +/- 18% (extremes 10% to 80%). EECs were noted in 43 of 46 polycythemia vera (PV) and 0 of 17 SP. Among the 45 unclassified cases, EECs were noted in 22: 18 of 29 cases from group A (10 with 2 major and 1 minor criteria; 8 with 2 major criteria) and 4 of 16 cases from group B (with variable standard criteria, 2 belonging to a PV family). In group A, there was a positive significant correlation between EECs and the presence of two major and 1 minor criteria (P less than .0001). In group B, there was a positive significant correlation between EECs and the presence of at least 1 major criterion and 2 minor criteria or a family background (P less than .0001). The unclassified polycythemias with EECs in the bone marrow are characterized by a bone marrow grade and a mean serum Epo level not different from that of patients with PV and an active course of the disease. The unclassified polycythemias without EECs in the bone marrow are a heterogeneous group corresponding in some cases to SPs of unknown origin (slightly increased bone marrow grade and/or high serum Epo level), and in others cases to spurious polycythemias (normal bone marrow grade and/or normal Epo level). In conclusion, EECs were of great value in differentiating PV from SP (P less than .001), and in allowing the diagnosis of PV in the absence of all the standard criteria even when TRCV was slightly increased. In our study, EEC improved the classification of polycythemia by 22%. The recommended diagnostic steps for the evaluation of polycythemia must be reconsidered.