[Stem cell therapy in autoimmune diseases].
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Publications and source records attributed to A Gratwohl.
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BACKGROUND: Immunosuppressive therapy has been used for successful treatment of severe aplastic anemia, but little information is available on outcome in older patients. OBJECTIVE: To evaluate outcome in patients older than 50 years of age who received immunosuppressive therapy for aplastic anemia. DESIGN: Retrospective cohort study. SETTING: 56 centers of the European Group for Blood and Marrow Transplantation (EBMT). PATIENTS: 810 patients with aplastic anemia reported between 1974 and 1997. Patients were evaluated according to age group: 60 years of age or older (n = 127), 50 to 59 years of age (n = 115), and 20 to 49 years of age (n = 568; reference group). INTERVENTION: Antilymphocyte globulin, cyclosporine, or both. MEASUREMENTS: Survival, cause of death, response to treatment, relapse rate, and risk for late complications were analyzed in all patients and by age group. RESULTS: The 5-year survival rate was 57% (95% CI, 46% to 66%) in patients 50 to 59 years of age and 50% (CI, 39% to 60%) in patients 60 years of age or older compared with 72% (CI, 68% to 76%) in patients younger than 50 years of age (P < 0.001). Response to therapy, relapse rate, and risk for clonal complications were similar in all three age groups (P > 0.2). Age was significantly associated with an increased risk for death (relative risk compared with patients 20 to 49 years of age, 1.80 [CI, 1.29 to 2.52] for patients 50 to 59 years of age and 2.57 [CI, 1.87 to 3.53] for patients > or = 60 years of age), mainly because of bleeding or infection (P = 0.02). Response to immunosuppressive therapy in all patients at 12 months was 62% (CI, 58% to 66%); no difference was seen among the age groups in multivariate analysis (P > 0.2). Sixty-six of the 379 responding patients (17%) subsequently had relapse. The risk for clonal disorders at 10 years was 20% (CI, 15% to 27%). CONCLUSIONS: Response to immunosuppression in aplastic anemia is independent of age, but treatment is associated with increased mortality in older patients.
Complement receptor type 1 is expressed by erythrocytes and most leukocytes. A soluble form is shed from the leukocytes and found in plasma (sCR1). sCR1 is a powerful inhibitor of complement. We report an increased sCR1 in the plasma of leukemia patients, up to levels producing measurable complement inhibition. Half of the 180 patients with acute myeloid leukemia (AML), acute lymphoblastic leukemia (ALL), and chronic lymphocytic leukemia (CLL) had sCR1 levels above the normal range. The highest levels were observed in T-ALL (17 patients). The complement function of a T-ALL serum was improved by blocking sCR1 with a specific mAb (3D9). Measurements in 16 peripheral stein cell donors before and after granulocyte colony-stimulating factor (G-CSF) administration showed an increase in sCR1 (before, 43.8+/-15.4; at day 5, 118.3+/-44.7 ng/mL; P < 0.0001). This increase paralleled the increase in total leukocyte counts and was concomitant with de novo leukocyte mRNA CR1 expression in all three individuals tested. Whether pharmacological intervention may be used to up-regulate sCR1 so as to inhibit complement in vivo should be further investigated.
BACKGROUND: Morbidity and mortality of early resection of invasive pulmonary fungal disease in neutropenic patients are still considered prohibitive for surgical treatment. METHODS: We retrospectively analyzed results of 28 (16 men, 12 women; mean age, 38.9 years) consecutive neutropenic hematologic patients who had lung resections for suspicion of invasive pulmonary fungal disease. RESULTS: We did 28 lung resections (19 lobectomies, one bilobectomy, eight single or multiple wedge resections including three video-assisted wedge resections). The disease was proved histologically in 22 (78.6%) cases. Intraoperative difficulties, such as diffuse oozing or mycotic infiltration, and solid postinflammatory adhesions were encountered in 5 (17.8%) and 6 (21.4%) patients respectively. In one case (3.6%) it lead to a major intraoperative hemorrhage. There were no intraoperative deaths, overall 30-day mortality rate was two of 28 (7.1%), overall 90-day mortality rate was seven of 28 (25%), with one death (3.6%) possibly related to surgery. Minor surgery-related complications were seen in ten (35.7%) cases, major surgery-related complications occurred in three (10.7%) cases. Twelve of 22 patients (54.5%) with proven invasive fungal infection are currently alive (mean follow-up, 32.3 months). CONCLUSIONS: Surgery-related complications and mortality are acceptable for this high risk group of patients. Resection should be carried out early for diagnostic as well as therapeutic reasons.
Successful prenatal treatment of severe immunodeficiencies by allogeneic hematopoietic stem cell transplantation in utero has been reported. Though other diseases like hemoglobinopathies or storage diseases are potentially amenable to this novel therapeutic approach, no success has yet been achieved in recipients without severe immunodeficiency. Graft rejection by the developing fetus and/or lack of selective, competitive advantage of donor versus host stem cells preventing stable engraftment seem to be the major obstacles. Several strategies to overcome these hurdles are being explored in preclinical settings, including timing and repeated dosing of stem cell administration to the fetus, ex vivo modification of the transplant, using different fetal compartments as targets for early stem cell transfer, or inducing microchimerism for postnatal transplantation from the same donor. In addition, the exact definition of the basic concept of early fetal immunologic naivete and the understanding of the molecular basics of migration and homing in fetal hematopoiesis system seem mandatory for a successful approach. Gene therapy using ex vivo transduced autologous cord blood cells or direct gene targeting in utero are other potential means to correct hematopoietic and immunologic single gene disorders in utero, though this approach is still away from the stage of clinical trials.
The potential of recombinant human (rh)Flt3 ligand (FL), alone or in combination with other recombinant growth factors, to mobilize peripheral blood precursor cells (PBPCs) was examined in an animal model. Adult outbred New Zealand White rabbits received subcutaneous injections daily for 14 days in a standardized protocol; whole blood cell counts and colony-forming unit-granulocyte/macrophage (CFU-GM) colonies were measured 3 times weekly during the injection period and for an additional observation period of 14 days. Two animals in each group were treated as follows: 200 or 500 microg/kg FL, 10 microg/kg granulocyte colony-stimulating factor (G-CSF), 10 or 75 microg/kg stem cell factor (SCF), 10 microg/kg G-CSF + 500 microg/kg FL, 10 microg/kg G-CSF + 75 microg/kg SCF + 500 microg/kg FL. Both G-CSF and FL induced a sustained and dose-dependent increase in the leukocyte count to a maximum of 5-fold. They were additive in combination, leading to a tenfold increase in white blood cell counts. No consistent pattern was observed for platelet counts or red blood cells. No toxic side effects were seen. Both G-CSF and FL mobilized CFU-GM in a dose-dependent fashion to a 59-fold increase for G-CSF and 116-fold for FL. Maximum mobilization occurred on day 4 with G-CSF and on day 11 with FL. G-CSF + FL in combination acted synergistically, inducing a 503-fold increase of CFU-GM over baseline. The addition of SCF to this combination did not alter leukocyte counts or CFU-GM mobilization. Our results indicate that FL is a potent and safe agent for the mobilization of PB-PCs and is synergistic with G-CSF.
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This case describes a 16-year-old woman treated successfully by a bone marrow transplant from her HLA-identical brother for refractory acquired pure red cell aplasia. Conditioning was as for severe aplastic anaemia with cyclophosphamide 4 x 50 mg/kg and antithymocyte globulin. Complete donor type engraftment at 3 months reversed to full autologous reconstitution at 2 years with normal haemopoiesis. The potential implications on pathogenesis of the disease as well as on treatment of autoimmune disorders by stem cell transplantation are discussed.
The clinical use of autologous marrow transplantation in acute myeloid leukemia (AML) has been hampered by the inability to collect adequate numbers of cells after remission induction chemotherapy and the notably delayed hematopoietic regeneration following autograft reinfusion. Here we present a study in which the feasibility of mobilizing stem cells was investigated in newly diagnosed AML. Among 96 AML patients, 76 patients (79%) entered complete remission. Mobilization was undertaken with low dose and high dose schedules of G-CSF in 63 patients, and 54 patients (87%) were leukapheresed. A median of 2.0 x 10(6) CD34+ cells/kg (range 0.1-72.0) was obtained in a median of three leukaphereses following a low dose G-CSF schedule (150 microg/m2) during an average of 20 days. Higher dose regimens of G-CSF (450 microg/m2 and 600 microg/m2) given during an average of 11 days resulted in 28 patients in a yield of 3.6 x 10(6) CD34+ cells/kg (range 0-60.3) also obtained following three leukaphereses. The low dose and high dose schedules of G-CSF permitted the collection of 2 x 10(6) CD34-positive cells in 46% and 79% of cases respectively (P = 0.01). Twenty-eight patients were transplanted with a peripheral blood stem cell (PBSC) graft and hemopoietic repopulation was compared with the results of a previous study with autologous bone marrow. Recovery of granulocytes (>0.5 x 10(9)/l, 17 vs 37 days) and platelets (>20 x 10(9)/l; 26 vs 96 days) was significantly faster after peripheral stem cell transplantation compared to autologous bone marrow transplantation. These results demonstrate the feasibility of PBSCT in the majority of cases with AML and the potential advantage of this approach with respect to hemopoietic recovery.
Data from the annual survey on transplant activity 1997, collected from 457 transplant teams in 31 European countries by the European Group for Blood and Marrow Transplantation (EBMT) were used to describe current status and to assess relative and absolute changes in indication, donor type and stem cell source compared to 1991. A total of 16950 patients were reported to have a first blood or marrow transplant in 1997, a total of 18 923 procedures, including re- and double transplants were performed. Of the 16950 first transplants, 4751 (28%) were allogeneic, 12199 (72%) autologous transplants. Of the autologous transplants, 829 (7%) were bone marrow derived, 11370 (93%) from peripheral blood stem cells or combined bone marrow and peripheral blood stem cell transplants. Of the allogeneic transplants, 3311 (70%) were bone marrow, 1440 (30%) were peripheral blood stem cell transplants. In 1991, the respective figures were 2175 allogeneic (44%) and 2786 (56%) autologous transplants, more than 90% of the autologous, all allogeneic transplants bone marrow derived. Main indications in 1997 were leukemias with 5253 transplants (31%), 70% allogeneic; lymphomas with 6773 transplants (40%), 94% autologous; solid tumors with 4154 transplants (24%), 99% autologous; non-malignant disorders with 770 transplants (5 %), 85 % allogeneic. There was an absolute increase of 11971 transplants since 1991. An increase was observed in all disease categories. Marked differences were found, when the relative increase index (RII) for specific disease categories over time was analyzed. In allogeneic transplants, relatively more transplants were performed in 1997 for acute myeloid leukemia beyond 1st complete remission (RII 1.28), myelodysplastic syndromes (RII 1.58), chronic lymphocytic leukemia (RII 1.33) and non-Hodgkin's lymphoma (RII 1.58). For autologous transplant indications, a high relative increase index was observed in myelodysplastic syndromes (RII 3.77), in multiple myeloma (RII 2.12) and carcinoma of the breast (RII 6.37) with a relative decrease in leukemias (RII 0.39) and certain solid tumors such as glioma (RII 0.27) and neuroblastoma (RII 0.46). These data present the current status of blood and marrow transplantation in Europe. They show the change from bone marrow to blood as stem cell source and highlight shifts in indication. They provide a basis for patient counselling and health care planning.
Twenty-five patients with multiple myeloma received bone marrow grafts (n = 24) or peripheral blood stem cells (n = 1) from twin donors. The outcome was compared in a case-matched analysis to 125 patients who underwent autologous transplantation, and 125 who underwent allogeneic transplantation. Seventeen patients (68%) receiving twin transplants entered complete remission, which was not significantly different from that of autologous (48%) or allogeneic (58%) transplants. The median overall and progression-free survival for the twins was 73 and 72 months, respectively. The overall survival tended to be better (73 vs 44 months) and the progression-free survival was significantly better (72 vs 25 months) than with autologous transplantation and both were significantly better than with allogeneic transplantation. Three of 17 patients who entered complete remission following transplantation had relapsed at follow-up. This relapse rate was significantly lower than following autologous transplantation and similar to the relapse rate with allogeneic transplantation. Only two twins died of transplant-related toxicity. Six further patients died of progressive or relapsing disease. Syngeneic transplantation in multiple myeloma appears to be the treatment of choice if a twin donor is available. A lower relapse risk than in autotransplantation may be due to reinfusion of malignant cells in some patients treated with this modality or to the presence of a graft-versus-myeloma effect in some syngeneic transplants.
There is growing evidence for a graft-versus-myeloma effect following allogeneic stem cell transplantation. We add to this evidence by reporting complete remission achieved by withdrawal of immunosuppression in a patient with multiple myeloma progressing after HLA-identical sibling peripheral stem cell transplantation. De novo chronic graft-versus-host disease coincided with the anti-myeloma effect and responded to treatment. The patient remains in complete remission 3 years after transplant.
This ongoing multicentre prospective phase I/II trial enrolled 74 consecutive patients from 22 centres worldwide with severe autoimmune disease, 35 with rheumatological disorders, 31 with neurological, five with haematological and three with vasculitides. They were treated with autologous peripheral blood or bone marrow transplants according to predetermined criteria. Two patients died after mobilisation before transplant. Seventy-two patients were given 73 transplants, seven bone marrow, and 66 mobilised peripheral blood stem cell transplants. The graft was manipulated to remove T and/or B cells in 43 cases. All 73 transplants engrafted. Five patients died of transplant-related complications: two from bleeding, three from infections. Two patients died of progressive disease. The transplant-related mortality at 1 year of 9% (1-17%; 95% CI) is comparable to the transplant-related mortality of 6% (3-9%; 95% CI) in patients transplanted during the same period in Europe for non-Hodgkin's lymphoma in sensitive relapse (P = 0.39). Sixty patients are evaluable for response, 40 patients (65%) showed some improvement in their disease. Haematopoietic stem cell transplants are feasible for patients with severe refractory autoimmune disease. Transplant-related mortality is comparable to results in patients with non-Hodgkin's lymphoma in responsive relapse. Two-thirds of the patients show at least some response. These preliminary data are promising. Although associated with considerable risk, randomised trials comparing autologous stem cell transplants to conventional therapy are warranted.
Invasive pulmonary aspergillosis (IPA) is a life-threatening infectious complication in neutropenic patients after high-dose chemotherapy or hematopoietic stem cell transplantation. Its diagnosis is mainly based on clinical symptoms, and radiological signs on thoracic CT scan. The value of bronchoscopy is controversial. We analyzed the diagnostic yield of bronchoscopy in 23 consecutive patients with histologically proven invasive pulmonary aspergillosis. In seven patients (30%) bronchoscopically obtained specimens were diagnostic for pulmonary fungal infection. Typical hyphae were detected by cytology in six patients and fungal cultures were positive in four cases. Patients with a positive bronchoscopic result presented more often with multiple changes on thoracic CT scan (71%; 5/7), but had received a lower median cumulative dose of amphotericine B (300 mg; 168-3010 mg) compared to patients with non-diagnostic bronchoscopy (25% multiple lesions (4/16); amphotericine dose 1100 mg, 260-2860 mg). The diagnostic yield of bronchoscopy was not associated with clinical symptoms or duration of neutropenia. Bronchoscopy allows the diagnosis of IPA in about one third of patients. Fungal cultures and cytological examination of intrabronchial specimens obtained during bronchoscopy have a high specificity, but its sensitivity is low. It is advisable to perform diagnostic bronchoscopy before starting antifungal therapy. Better diagnostic tools are urgently needed.
Mobilization of peripheral blood stem cells was analysed in 10 consecutive healthy donors undergoing repeated stem cell mobilization for allogeneic transplantation. Donors received recombinant G-CSF at a dose of 10 microg/kg/d for both mobilizations. Collection of stem cells was started on day 5 of G-CSF administration. To compare the efficiency of first and second mobilization, we determined the leucocyte and CD34+ cell counts in peripheral blood, and the yield of nucleated cells and CD34+ cell counts in the apheresis product. CD34+ cell numbers in peripheral blood were (median) 81.2 x 10(6)/l during the first and 50.4 x 10(6)/l during the second mobilization (P = 0.007). Likewise, CD34+ cells in the apheresis product decreased from 319.8 x 10(6) to 275.7 x 10(6) (P = 0.02). Decrease in CD34+ cell counts in peripheral blood and in the apheresis product was associated with the time interval between first and second mobilization. In a regression analysis there was a correlation between the ratios of CD34+ cell counts of first and second mobilization and the inverse of time interval between procedures (r2 = 0.51 peripheral blood; r2 = 0.74 apheresis product). Thus, stem cell yield is reduced when healthy donors receive repeated mobilization within a short time. Nevertheless, an adequate number of stem cells may repeatedly be mobilized within 2 months.
Autologous hemopoietic stem cell transplantation (HSCT) for autoimmune disease has increased lately. Insights into response to immunoablation is found in animal experiments and reports on patients receiving HSCT for concomitant malignancy. Early phase II studies and case reports of HSCT in patients with multiple sclerosis, systemic sclerosis, lupus erythematosus, rheumatoid arthritis, juvenile chronic arthritis and idiopathic thrombocytopenic purpura have been published. Dramatic responses or disease stabilization have been observed in some, but failures and disease relapses, toxic and infectious complications have been observed in others. Whether this treatment can induce true peripheral immunologic tolerance, and which been observed if any patients will benefit long-term from HSCT, remains to be determined.
In a prospective long-term study on the incidence of paroxysmal nocturnal hemoglobinuria (PNH), 115 consecutive patients with severe aplastic anemia (SAA), 97 treated with antilymphocyte globulin (ALG) and 18 with bone marrow transplantation (BMT), were observed over a period of 4-18 years and tested for the presence of complement-sensitive hematopoietic precursor cells with the bone marrow (BM) sucrose test. Sixteen (14%) of the ALG-treated patients developed clinical signs of PNH between 0.5 and 8 years after treatment. Complement-sensitive BM precursors were found in 89% of the SAA patients at some time during their disease, but in none of 18 normal donors. At diagnosis, their proportion was significantly higher in patients who later developed PNH than in patients who later achieved disease-free complete remission (CR). After ALG, the abnormal population was found in both groups, but it was gradually replaced by normal precursors in remission patients. After BMT, the complement-sensitive population decreased to very low numbers in patients with a stable graft, but increased again in 3 patients upon graft rejection. Mimicking the PNH defect by enzymatic removal of glycosyl-phosphatidylinositol (GPI)-linked proteins from CD34+ cells resulted in their complement sensitivity, suggesting that the BM sucrose test identifies precursor cells carrying the PNH defect. In 66 patients, white blood cells (WBC) in peripheral blood (PB) were examined for GPI-deficient populations by flow cytometry (FACS). Ten patients with signs of clinical or laboratory PNH had over 25% complement-sensitive precursor cells in the BM and a GPI-deficient WBC population in the PB. Of 56 SAA patients without PNH, 8 had an abnormal population detectable with both tests, 26 only with the BM sucrose test, 4 only with PB FACS analysis, and in 18, no abnormal cells were detected with either test. In search for parameters which might explain why in some patients the abnormal population expands, while it regresses or disappears in others, we tested the release of IL-2 as a parameter of immune competence. At diagnosis, IL-2 release was approximately 50% of normal in patients who later developed PNH, while it was double the normal value in patients who later achieved CR. We conclude that the majority of SAA patients transiently harbor complement-sensitive precursor cells in the BM. Patients with more than 25% abnormal BM precursors and low endogenous IL-2 release are at risk of progression to clinical PNH.
To determine the incidence and outcome of hepatic veno-occlusive disease (VOD) after blood or marrow transplantation (BMT), we prospectively evaluated all consecutive patients receiving a BMT during a 6-month period in participating EBMT centers. All of them were evaluated for occurrence of VOD according to previously defined clinical criteria. The clinical course, outcome, value of prophylactic and therapeutic interventions, and the influence of previously described risk factors were analyzed. During the study period, 1,652 BMT were performed in 73 centers. VOD was diagnosed in 87 patients (5.3%; 95% confidence interval [CI], 4.2% to 6.4%). Fifty-six of 631 allogeneic BMT (8.9%) and 31 of 1,010 autologous BMT (3.1%) developed this complication (P <.0001). VOD was classified as mild in 7 (8%), moderate in 56 (64.4%), and severe in 24 (27.6%) cases. Sixteen patients died of VOD (corresponding to 1% of the whole series, 18.4% of VOD patients, and 66.7% of severe VOD). The use of unfractionated heparin did not significantly decrease the incidence of VOD. Independent variables associated with an increased risk of VOD were allogeneic BMT (relative risk [RR], 2.8; P <.001), pre-BMT elevation of serum aspartate aminotransferase (RR, 2.4; P =.001), high-dose cytoreductive therapy (RR, 2.3; P =.003), Karnofsky performance score less than 90% (RR, 2.7; P =.006), and prior abdominal radiation (RR, 2.9; P =.03). In conclusion, this prospective study shows that (1) the incidence of VOD is lower than that reported in smaller studies from single centers, (2) about one fourth of cases of VOD progress to severe disease, (3) main risk factors have a major impact on incidence of VOD, and (4) the use of prophylactic unfractionated heparin does not seem to reduce the incidence of VOD.