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[Revascularization of peripheral nerve transplants. Stereomicroangiographic evaluation of revascularization in allogeneic transplants, allogeneic transplants with cyclosporin A therapy and autologous transplants].

Allogeneic nerve grafts of the sciatic nerve longer than 3 cm were transplanted between August- and Wistar rats. One group of animals were treated with 17 mg/kg body weight Cyclosporine A from day 1-28. Autologous nerves served as controls. At various postoperative days contact microangiography, stereoangiography, microdensitometry and histology were performed. Allogeneic untreated grafts were rejected at day 7. Undisturbed neovascularisation was only seen in autografts. In Cyclosporine A treated rats a gradually reduced revascularisation could be observed until day 90.

Angiography↗

Mobilization of peripheral blood progenitor cells for allogeneic transplantation.

Allogeneic transplantation of peripheral blood stem/progenitor cells (PBSC/PBPC) has been increasingly used as an alternative to allogeneic bone marrow transplantation. To mobilize and collect a sufficient number of PBSC/PBPC for engraftment after allotransplantation, granulocyte colony-stimulating factor (G-CSF) has been preferentially used. The mobilization protocol, however, has not been fully established. In this review, dose and schedule of G-CSF administration, characteristics of G-CSF-mobilized PBPC products, cytokines other than G-CSF for PBSC/PBPC mobilization, and safety of the PBSC/PBPC donors are discussed for clinical application of allogeneic PBSC/PBPC transplantation.

Antigens, CD34↗

Delayed effects of rhG-CSF mobilization treatment and apheresis on circulating CD34+ and CD34+ Thy-1dim CD38- progenitor cells, and lymphoid subsets in normal stem cell donors for allogeneic transplantation.

Allogeneic transplantation of peripheral blood progenitor cells (PBPC) is emerging as a new stem cell transplant modality. Rather than undergoing general anesthesia for bone marrow harvest, normal blood stem cell donors are subjected to rhG-CSF mobilization treatment followed by single or multiple apheresis. Whereas the effects of cytokine treatment and apheresis on stem cell peripheralization and collection have been described, little is known about delayed effects of rhG-CSF treatment and apheresis on a normal hematopoietic system, and there are no long-term data that address safety issues. Ten normal, patient-related donors underwent a 3 or 4 day rhG-CSF (filgrastim) treatment (12 micrograms/kg/day) followed by single or tandem apheresis. We monitored peripheral blood (PB) cellularity including CD34+ and lymphoid subsets at baseline, during cytokine treatment, prior to apheresis, and at days 2, 4, 7, 30 and 100 post-apheresis. The PB progenitor cell concentration peak prior to apheresis was followed by a nadir by day 7 and normalized by day 30, with the exception of the most primitive CD34+ Thy-1dim CD38- progenitor subset that reached a nadir by day 30. Lymphoid subsets such as CD3, 4, 8, suppressor cells (CD3+ 4- 8- TCR+ alpha beta), and B cells (CD19+) showed a similar pattern with a nadir concentration by day 7, followed, except for B cells, by a rebound by day 30 and subnormal counts at day 100. The PB concentrations of hemoglobin and platelets dropped mainly due to the apheresis procedure itself, and normalized by day 30. With cytokine treatment, the PB alkaline phosphatase and lactate dehydrogenase concentrations increased 2.2- and 2.8-fold, respectively, over baseline, and returned to normal range by day 30. Based on the preliminary nature of this study, the clinical relevance of these findings is still unclear.

ADP-ribosyl Cyclase↗

Standardization of the processing of human bone marrow for allogeneic transplantation.

Allogeneic bone marrow transplantation has been undertaken within this centre on 62 patients with acute or chronic leukaemia. Employing the standard separation protocol described, all bone marrows were processed on the 2991 Blood Cell Processor to isolate the 'buffy coat' cells and subsequently the mononuclear cell component using a density separation medium of Ficoll-metrizoate. Following the mononuclear cell separation, the cells were identified for their T lymphocyte component using a combination of two murine monoclonal antibodies, MBG6 reacting with a pan T cell antigen (CD6) and RFT8 detecting the 'cytotoxic/supressor' cell antigen (CD8). The numerical results for nucleated cells, red blood cells, T lymphocytes and colony forming units-granulocyte macrophage are presented.

Bone Marrow Transplantation↗

Multiple myeloma: role of allogeneic transplantation.

An estimated 14,600 new cases of multiple myeloma will be diagnosed in the United States in 2002. Multiple myeloma remains an incurable disease despite significant improvements in complete response rates and overall survival through the use of autologous stem cell transplantation. Allogeneic transplantation offers the advantage of a tumor-free graft and a graft-vs-myeloma effect but has been associated with a high mortality rate from transplant-related complications-primarily graft-vs-host disease (GVHD). As immunotherapy for patients with relapsed myeloma, donor lymphocyte infusion has resulted in response rates of over 50%, but many of these responses are not durable. In addition, donor lymphocyte infusion is associated with a significant risk of moderate-to-severe GVHD. In an attempt to decrease the high transplant-related mortality of conventional allogeneic transplants and to employ the proven efficacy of immunoreactive donor T lymphocytes, the use of nonmyeloablative transplants or "mini-transplants" is increasing. This approach has succeeded in significantly reducing transplant-related mortality but still may not be sufficient in producing long-term remissions or cures in myeloma patients. A combination of an autologous transplant (to achieve maximal cytoreduction) and a mini-transplant with donor lymphocyte infusion (for the immunoablative effect of alloreactive T lymphocytes) followed by maintenance therapy (thalidomide [Thalomid], steroids, cytokines, vaccines) for long-term immunomodulation is being investigated as a potential cure for this challenging disease.

Bone Marrow Transplantation↗

Bridging to transplant: allogeneic heart transplantation after xenografting.

Xenografting seems to be a solution to use to bridge time intervals when desperately needed allograft cannot be obtained. A following allograft was never ventured. Nine dogs (weight, 20 to 25 kg; age, 2 years) underwent right cervical heart transplantation. Donors were silver foxes (3 to 4 kg). The animals were treated by triple-drug therapy consisting of cyclosporine, methylprednisolone, and azathioprine in clinical dosages. For control, six recipients received only allogeneic hearts and the identical immunosuppression. After rejection of the xenograft, a second allogeneic heart was anastomosed subsequently to the same right cervical vessels. Routine histologic and immunohistologic examinations were performed. Thromboxane B2 and 6-keto-prostaglandin F1 alpha were determined daily in peripheral blood. After final rejection the sensitization of the recipient was controlled by hemagglutination test. Survival time of the xenografts was 9.6 +/- 1.2 days; the subsequent allogeneic hearts under the same therapy beat for 4.5 +/- 5.0 days. The average survival time of control hearts was 18 +/- 1.9 days. The five hyperacute second allografts showed signs of humoral rejection by absence of inflammation. The release of thromboxane B2 was different in hyperacute, accelerated, or cellular rejection. In contrast to the long-functioning grafts, thromboxane B2 persisted during hyperacute rejection at a high level. However, 6-keto-prostaglandin F1 alpha showed no significant differences between longtime survivors and hyperacute rejecting hearts. After xenogeneic transplantation, all recipients showed hemagglutinating titers between 1:4 and 1:16. Allogeneic grafts have a different kinetics of rejection after xenogeneic heart transplantation compared with control hearts. Thromboxane B2 seems to be an important mediator in hyperacute rejection.(ABSTRACT TRUNCATED AT 250 WORDS)

6-Ketoprostaglandin F1 alpha↗

The high integration and differentiation potential of autologous neural stem cell transplantation compared with allogeneic transplantation in adult rat hippocampus.

Cell therapy is thought to have a central role in restorative therapy, which aims to restore function to the damaged nervous system. The purpose of this study was to establish an autologous neural stem cell (NSC) transplantation model using adult rats and to compare survival, migration, and differentiation between this system and allogeneic NSC transplantation. Furthermore, we compared the immunologic response of the host tissue between autologous and allogeneic transplantation. NSCs were removed from the subventricular zone of adult Fischer 344 rats using stereotactic methods. NSCs were expanded and microinjected into normal hippocampus in the autologous brain. Allogeneic NSC (derived from adult Wistar rats) transplantation was performed using the same procedure, and hippocampal sections were analyzed immunohistologically 3 weeks post-transplantation. The cell survival and migration rate were higher for autologous transplantation than for allogeneic transplantation, and the neuronal differentiation rate in the autologous transplanted cells far exceeded that of allogeneic transplantation. Furthermore, there was less astrocyte and microglia reactivity in the host tissue of the autologous transplantation compared with allogeneic transplantation. These findings demonstrate that immunoreactivity of the host tissue strongly influences cell transplantation in the CNS as the autologous transplantation did not induce host tissue immunoreactivity; the microenvironment was essentially maintained in an optimal condition for the transplanted cells.

Animals↗

[Second allogeneic transplant for leukemia relapsed after first allogeneic transplantation].

OBJECTIVE: To evaluate the efficacy of second allogeneic hematopoietic stem cell transplantation (allo-HSCT) for treatment of leukemia relapsed after first allo-HSCT. METHODS: Nine patients with relapsed acute leukemia (5 AML, 4 ALL) and one with chronic myelogenous leukemia (CML) who showed cytogenetic relapse after first allo-HSCT received second allo-HSCT. The median relapse time from the first allo-HSCT was 141 days. Conditioning regimens for second allo-HSCT were combination chemotherapy based on moderate-dose Ara-C (n = 5), Bu (n = 3), conventional-dose Ara-C (n = 1) and Flud/Mel (n = 1). Prophylaxis for acute graft-versus-host disease (aGVHD) were CsA alone (n = 2), CsA/MTX (n = 1), FK506 (n = 1), and no prophylaxis in 6. The median number of peripheral blood mononuclear cells transfused was 6.1 x 10(8)/kg. RESULTS: Eight cases were evaluable. All of them were engrafted and 7 developed aGVHD (grade I 4, grade II 3). The median time for absolute neutrophil count (ANC) > 0.5 x 10(9)/L and platelets > 20 x 10(9)/L were 11 and 12 days, respectively. Five cases developed localized chronic GVHD. Of all the 10 cases received second allo-HSCT, 8 died from interstitial pneumonia (n = 2), multiple-organ failure (n = 1), sepsis (n = 1), fungous pneumonia (n = 1), and leukemia relapse (n = 3), and 2 survived without leukemia for +986 and +1913 days, respectively. The leukemia free survival, transplantation related mortality and relapse rate at 2 year were 20%, 50% and 30%, respectively. CONCLUSION: Second allo-HSCT is a therapeutic alternative for selected patients with relapsed leukemia after first allo-HSCT.

Adult↗

Allogeneic transplantation of CD34+-selected cells from peripheral blood in patients with myeloid malignancies in early phase: a case control comparison with unmodified peripheral blood transplantation.

An allogeneic transplantation of CD34(+)-selected cells from peripheral blood (allo-PBT/CD34(+)) from HLA-identical sibling donors was performed in 50 adult patients with acute myeloid leukemia in first complete remission (AML CR1) (n = 29), myelodysplastic syndrome (MDS) (n = 4), or chronic myeloid leukemia in first chronic phase (CML CP1) (n = 17). Clinical results were compared to a concurrent group of 50 patients transplanted with unmodified peripheral blood progenitor cells (allo-PBT), matched for age, diagnosis, and disease stage. The median follow-up period was 29 months (range 1-69). The actuarial probability of developing acute GVHD clinical grade II to IV was 16% (95%CI: 6-26) for the allo-PBT/CD34(+) group and 41% (95%CI: 29-57) for the allo-PBT group (P = 0.002). The actuarial probability of developing extensive chronic GVHD was 22% (95%CI: 8-36) for the allo-PBT/CD34(+) group and 47% (95%CI: 31-63) for the allo-PBT group (P = 0.02). Recipients of allo-PBT/CD34(+) had less toxicity associated with the transplant and better Karnofsky index at the last follow-up. For AML/MDS patients, the actuarial probability of disease-free survival (DFS) for recipients of allo-PBT/CD34(+) and allo-PBT was 65% (95%CI: 45-85) vs43% (95%CI: 28-58) (P = 0.05), respectively. These data provide a rationale for a randomised trial of allo-PBT/CD34(+) vs allo-PBT in AML/MDS patients in early stage of the disease.

Acute Disease↗

High rate of invasive fungal infections following nonmyeloablative allogeneic transplantation.

Nonmyeloablative allogeneic transplantation is an emerging therapy for hematologic and solid malignancies and potentially offers patients reduced transplant-related toxicity. Data regarding infectious complications of these protocols are limited, but early studies have demonstrated little infectious morbidity, particularly low rates of invasive fungal infections (IFIs). In the present study, 31 consecutive cases of nonmyeloablative transplantation were reviewed over a 2.5-year period, with a specific focus on infectious complications. Twenty-six patients (84%) had at least 1 significant infection during the year after transplantation, and infection-related mortality was 37%. Cytomegalovirus end-organ disease was diagnosed in 3 patients (10%). Ten patients (32%) were given the diagnosis of IFI; 7 (23%) met criteria for proven IFI. Fungal-related mortality was 80% within the group of patients with IFI and accounted for a significant portion of the overall mortality in the study. Severe graft-versus-host disease, high-dose corticosteroid use, recurrent neutropenia, and relapsed or refractory disease were factors associated with development of IFI.

Adult↗

Modern diagnostics in chronic myeloproliferative diseases (CMPDs).

According to the new WHO classification a group of chronic myeloproliferative diseases (CMPDs) were defined: chronic myeloid leukemia (CML), chronic neutrophilic leukemia (CNL), chronic eosinophilic leukemia and hypereosinophilic syndrome (CEL/HES), polycythemia vera (PV), chronic idiopathic myelofibrosis (with extramedullary hematopoiesis, CIMF), essential thrombocythemia (ET), and so called CMPD/unclassifiable. As clinical features and laboratory findings differ widely between these diseases several diagnostic approaches are mandatory at diagnosis for classification and are needed also for follow up studies, especially for the measurement of minimal residual disease (MRD). We here outline the laboratory set up at diagnosis and during follow up in CMPDs with specific focus on the respective therapeutical consequences. Only by using a comprehensive diagnostic panel including cytomorphology, cytogenetics, and molecular genetic methods establishing the correct diagnosis, optimizing treatment as well as evaluating treatment response is possible in CMPDs today.

Blood Cell Count↗

Low-dose total body irradiation, fludarabine, and antithymocyte globulin conditioning for nonmyeloablative allogeneic transplantation.

Nonmyeloablative allogeneic peripheral blood progenitor cell transplantation with low-dose total body irradiation (TBI; 200 cGy) plus fludarabine followed by cyclosporine and mycophenolate mofetil results in modest graft rejection rates. Acute and chronic graft-versus-host diseases (GVHD) are also seen and may not differ substantially from those that occur after fully ablative transplantation. Adding antithymocyte globulin (ATG) to pretransplant conditioning produces substantial immunosuppression. Because of its persistence in the circulation, ATG can achieve in vivo T-cell depletion. Twenty-five patients who were not eligible for conventional fully ablative allogeneic stem cell transplantation by virtue of age or comorbidities underwent nonmyeloablative allogeneic transplantation with ATG 15 mg/kg/d days -4 to -1, TBI 200 cGy on a single fraction on day -5, and fludarabine 30 mg/m(2)/d on days -4 to -2. Oral mycophenolate mofetil 15 mg/kg every 12 hours and cyclosporine 6 mg/kg every 12 hours were started on day -5. Grafts were unmanipulated peripheral blood progenitor cells mobilized with filgrastim 10 microg/kg/d and collected on day 5. The median age of the recipients was 57 years (range, 30-67 years); diagnoses were non-Hodgkin lymphoma (n = 11), acute myeloid leukemia (n = 6), multiple myeloma (n = 3), acute lymphoblastic leukemia (n = 2), severe aplastic anemia (n = 1), paroxysmal nocturnal hemoglobinuria (n = 1), and myelodysplastic syndrome (n = 1). The median CD34(+) and CD3(+) contents of the grafts were 7.6 x 10(6)/kg and 1.6 x 10(8)/kg, respectively. Five patients received voluntary unrelated donor grafts. Three patients, 2 with voluntary unrelated donor grafts and 1 with a sib donor, received a 1 antigen-mismatched graft. The rest were fully matched. Twenty-two of 25 patients were evaluable for chimerism. Sixteen had >/=95% donor chimerism. Four patients displayed 80% to 90% donor chimerism, 1 displayed 78%, and 1 displayed 64%. Eleven patients relapsed with their original disease. One patient rejected the graft at 180 days. The median hospital stay was 27 days. Complications included GVHD in 6 patients (3 patients had grade I or II GVHD of skin and liver, and 3 patients had grade III or IV GVHD of liver and gut). Two of the patients with GVHD had mismatched grafts. Transplant-related toxicity was seen in 4 patients and infection in 5 patients. The median length of follow-up was 162 days (range, 17-854 days). Complete remissions were seen in 10 patients. Four patients remained in complete response (CR) at 280 to 595 days. One patient relapsed with non-Hodgkin lymphoma after a CR of 728 days. Of the 25 patients, 16 died (6 of relapsed disease, 4 of GVHD, 3 of infection, and 3 of transplant-related toxicity) and 9 are alive (6 with CR-2 of them after donor leukocyte infusion-and 3 with relapsed disease). The addition of ATG to low-dose TBI and fludarabine nonmyeloablative conditioning was well tolerated and resulted in >80% donor engraftment in this small cohort. As in other series of truly nonmyeloablative transplantation, a high rate of relapse was observed. Donor engraftment may be facilitated by the addition of ATG to low-dose TBI and fludarabine conditioning.

Adult↗

Adult acute lymphocytic leukemia study testing chemotherapy and autologous and allogeneic transplantation. A follow-up report of the French protocol LALA 87.

The French protocol LALA 87 was designed to compare three different postinduction strategies in adult acute lymphocytic leukemia (ALL): chemotherapy, autologous transplantation, and allogeneic transplantation. This trial demonstrated a significant superiority of allogeneic bone marrow transplantation (BMT) in high-risk ALL patients. Similarly, there was a trend in favor of autologous BMT over chemotherapy in those same patients. Allogeneic BMT was not superior to autologous BMT or chemotherapy in less aggressive leukemia (standard-risk ALL). Further improvements are warranted in the treatment of adult ALL. The authors' current ongoing study is stratifying patients to allocate them to regimens with risk-adapted treatment intensity.

Adolescent↗

Reduced-intensity allogeneic transplantation for lymphoma.

Reduced-intensity allogeneic transplants are promising, increasingly used treatments for hematologic malignancies, exploiting graft-versus-tumor effects for eradicating malignancies. This article reviews approximately 40 published reports of reduced-intensity allogeneic transplants in lymphomas. Overall, reduced-intensity allogeneic transplants have been well tolerated and have produced encouraging results despite a diversity of transplant approaches used largely in heavily pretreated and older patients. Of 368 lymphoma patients who underwent reduced-intensity allogeneic transplants, 66.3% had responses, most of which were complete. Many had chemotherapy-refractory lymphomas, including some that relapsed after autologous transplants. Although the short follow-up periods of many studies do not permit assessments of response duration, protracted remissions were reported in some studies. Additionally, some patients entered molecular remissions, suggesting that graft-versus-tumor effects could, by themselves, cure some lymphomas. Graft-versus-host disease is the major risk of reduced-intensity allogeneic transplants, and treatment methods need refinement to reduce transplant risks while preserving graft-versus-tumor effects. Controlled trials involving patients with earlier-stage disease appear warranted to define better the role of reduced-intensity allogeneic transplants in treating lymphomas.

Antineoplastic Combined Chemotherapy Protocols↗

Primed marrow for autologous and allogeneic transplantation: a review comparing primed marrow to mobilized blood and steady-state marrow.

Mobilized peripheral blood collections, obtained following either chemotherapy (with or without granulocyte colony-stimulating factor (G-CSF)) or G-CSF administration alone, are rapidly replacing traditional bone marrow harvests as the source of cells for hematopoietic stem cell transplantation. According to the Autologous Blood and Marrow Transplant and the International Bone Marrow Transplant Registries, for the years 1998 through 2000, blood stem cell (BSC) transplants accounted for about 80% of autologous transplants in the pediatric age group and more than 90% of the autologous transplants among adults. In allogeneic transplantation, where the donor is a healthy family member or normal volunteer, G-CSF-mobilized BSC transplants are being used more and more frequently, accounting for about 20% of allogeneic transplants in the pediatric age range and more than 40% of allogeneic transplants among adults during the same time period. It is not, therefore, too great a stretch to imagine that BSC transplants will soon be, if not already, in the majority for allogeneic transplantation among adults. The principal reason why this is happening is the prevailing view that BSC engraft more rapidly than marrow stem cells (MSC). However, this view is based on comparisons between primed circulating blood cells (BSC) and unprimed resident marrow cells in the steady state (SS-MSC). If the reason why BSC engraft faster than SS-MSC were a consequence of G-CSF used for mobilization, then would priming of MSC by G-CSF (Prim-MSC) accelerate engraftment of marrow as well? We reviewed the literature of the last 10 years to see if there were enough data to answer this question.

Adult↗

[Allogeneic transplantation in malignant lymphoma].

INTRODUCTION: Allogeneic transplantation of bone marrow and peripheral blood stem cells is a frequently discussed therapeutic option in the treatment of malignant lymphoma. By analysing the results of our own transplant program in patients with advanced lymphoma we tried to evaluate indications for allogeneic transplantations. METHODS: Data from lymphoma patients treated at the Klinikum Grosshadern between 1985 and 2001 were analysed retrospectively. RESULTS: 56 patients were included. 24 patients had low grade Non-Hogdkin's lymphoma (NHL) (follicular lymphoma: n = 8, mantle cell lymphoma: n = 6) or chronic lymphocytic leukemia (CLL: n = 10), 16 patients had high grade NHL (immunoblastic/lymphoblastic: n = 5; large cell/diffuse: n = 5) and 8 patients suffered from Hodgkins's disease. Median age was 41 years, 34 patients were transplanted from an HLA-identical sibling, 19 from an HLA-id. unrelated donor and three from an HLA-mismatched related donor. 30 patients received bone marrow and 26 peripheral blood stem cells. 22 pat. were treated with an intensive 12 Gy TBI containing conditioning regimen, whereas 34 patients were treated with a dose-intensity reduced conditioning procedere. 25 patients are alive between 2 month and 15 years after transplantation. Overall survival after 2 years is 48 % for patients with low grade NHL (incl. CLL), 9.3 % for patients with high grade lymphoma and 25 % for patients with Hodgkin's disease. 1-year-transplant-related mortality (TRM) was 33.9 % in all patients. Dose-intensity-reduced conditioning was not able to reduce TRM. CONCLUSIONS: Allogeneic bone marrow or stem cell transplantation is able to induce long lasting complete remissions in patients with heavily pretreated malignant lymphoma. Results of allogeneic transplantation are encouraging in patients with follicular and other low grade lymphoma. However transplant-related toxicity is high. At present the impact of reducing the intensity of conditioning is not yet clear.

Adolescent↗

Adjuvant alpha-interferon improves complete remission rates following allogeneic transplantation for multiple myeloma.

Allogeneic transplantation may be curative in a proportion of patients with multiple myeloma (MM), but relapse is a major cause of treatment failure. We sought to improve complete remission (CR) rates by the use of alpha-interferon (alpha-IFN) in patients not in CR when evaluated 4 months post-transplant. We report five of 13 evaluable patients undergoing allogeneic sibling BM or PBSC transplantation for MM between 1990 and 1997 who met the criteria for adjuvant alpha-IFN therapy. A starting dose of 3 MU x 3/week was commenced at median time of day +126 (range day +112-224) post-transplant and was well-tolerated. In contrast to other reports we observed no increased toxicity in terms of GVHD compared to those patients not receiving alpha-IFN therapy and only one patient treated with alpha-IFN has developed chronic GVHD. Durable CRs were achieved in two patients within 8 weeks of starting therapy whilst two other patients required a longer course of alpha-IFN to achieve CR (36 weeks and 30 weeks, respectively). One patient whose paraprotein was rapidly rising at the time of alpha-IFN therapy clinically relapsed despite 6 months of treatment. None of the patients who achieved CR following alpha-IFN therapy have relapsed and we conclude that alpha-IFN is a safe and effective adjuvant treatment for some patients in the achievement of CR following allogeneic transplantation for myeloma.

Adult↗

Allogeneic transplantation with CD34+-selected cells.

We report the outcome of eight patients with different hematological malignancies who were transplanted with allogeneic CD34-selected mononuclear cells following myeloablative therapy. Four patients received G-CSF mobilized CD34-enriched peripheral blood progenitor cells (PBPC) together with CD34-enriched bone marrow (BM), two patients were transplanted with allogeneic G-CSF mobilized CD34-enriched PBPC alone, and two patients received only allogeneic CD34-enriched BM cells. On average, patients received 2.66 x 10(6) CD34+-cells/kg BW (range: 0.53-8.40 x 10(6) CD34+-cells/kg body weight) and 0.57 x 10(6) CD3+-cells/kg BW (range: 0.20-1.10 x 10(6) CD3+-cells/kg BW), respectively. Seven of the eight patients engrafted (ANC > 0.5 x 10(9)/L median: day +19 (range: 16-23 days); platelets > 20 x 10(9)/L median: day +34 (range: 21-47 days); one patient died on day +16 after transplantation and was not evaluable for engraftment. Three of seven patients evaluable for acute graft-versus-host disease (GvHD) developed acute GvHD grade II which resolved upon steroid treatment. Five of the eight patients are still alive and in remission with a median follow-up of 215 days (range: 80-420 days). Causes of death included fungal infection, cerebral bleeding and sepsis. These preliminary data suggest that CD34-enriched cells can be successfully given during for allogenic transplantation following myeloablative therapy in hematological malignancies. The impact of T-cell depletion by enrichment for CD34+-cells in an attempt to reducing the incidence and/or severity of acute and/or chronic GvHD still remains to be determined.

Adult↗