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R Storb

Publications and source records attributed to R Storb.

At least 271 records · Page 15Linked to original sources

Transplantation of retrovirus-transduced canine keratinocytes expressing the beta-galactosidase gene.

We studied transplantation of retrovirus vector transduced canine keratinocytes to determine whether keratinocytes could persist and express the transferred gene after superficial transplantation to full-thickness wounds of dogs, a large random-bred model for gene transfer studies. Canine keratinocytes were transduced by co-cultivation with PA317 retrovirus packaging cells which produced helper-free amphotropic retroviral vectors (LZSN and LNPOZ) encoding the genes for beta-galactosidase (beta-gal) and neomycin phosphotransferase (neo). Efficient transfer and expression of the two genes could be demonstrated in confluent keratinocyte cultures for both vectors. When transduced keratinocytes were grown in organotypic cultures on a collagen matrix containing autologous dermal fibroblasts at the air-liquid interface, the cultures showed well-organized and defined epidermal cell layers and several markers of terminal differentiation, including the presence of keratohyalin granules and a multilayered stratum corneum. To determine whether the transferred beta-gal gene was also expressed in vivo, we performed autologous transplantation of transduced keratinocytes onto full-thickness wounds of dogs. beta-Gal expressing keratinocytes could be demonstrated in situ in the regenerating epidermis 2 weeks after transplantation. We conclude that keratinocytes can be efficiently transduced by retroviral vectors, that retroviral transduction does not interfere with proliferation or differentiation, and that transduced keratinocytes express the transferred gene after transplantation to full-thickness skin wounds of dogs. Keratinocytes thus seem to be good target cells for gene therapy.

Animals↗

Effect of graft-versus-host disease prophylaxis on relapse in patients transplanted for acute myeloid leukemia.

Between November 1978 and September 1988, 184 patients with acute myeloid leukemia in first remission received marrow transplants from HLA-identical siblings after conditioning with 120 mg/kg of cyclophosphamide and 12.0 Gy fractionated total body irradiation. Patients received either cyclosporine (CYA, n = 59), methotrexate (MTX, n = 82), or MTX + CYA (n = 43 as graft-versus-host disease (GVHD) prophylaxis. The probabilities of grades II-IV acute GVHD after CYA, MTX or MTX+CYA were 0.43, 0.48 and 0.28, respectively (p = 0.06). The probability of non-relapse mortality was 0.53, 0.50 and 0.42 at 4 years in patients treated with CYA, MTX, or MTX + CYA, respectively. The probability of relapse was 0.24 in patients receiving CYA, 0.24 in patients receiving MTX and 0.44 in patients receiving MTX + CYA (p = 0.02). The probability of survival at 4 years was 0.54 with CYA, 0.51 with MTX and 0.45 with MTX + CYA. A multivariate analysis of risk factors for relapse examined age, WBC at diagnosis, blast count at diagnosis, percentage of marrow blasts, FAB subtype, the number of remission induction courses to achieve a remission, maintenance therapy, consolidation therapy, marrow cell dose, donor-recipient sex, GVHD prophylaxis regimen and isolation and decontamination in laminar airflow rooms. GVHD prophylaxis with MTX + CYA was independently significantly associated with an increased risk of relapse (relative risk 2.25, p = 0.01). Acute GVHD was associated with increased non-relapse mortality (RR = 3.58, p < 0.0001). The administration of MTX + CYA did not adversely affect survival because patients receiving this regimen experienced less mortality from causes other than relapse when compared with patients receiving either CYA or MTX alone.

Adolescent↗

Preparative regimens for patients with leukemias and severe aplastic anemia (overview): biological basis, experimental animal studies and clinical trials at the Fred Hutchinson Cancer Research Center.

Two purposes are served by conditioning regimens for allogeneic BMT. One is to suppress the patient's immune system so the foreign graft can take. The other purpose is to eliminate the underlying disease for which the patient is transplanted. This report reviews the recent developments in areas of conditioning programs for patients with aplastic anemia and hematological malignancies.

Anemia, Aplastic↗

Hematopoietic growth factors after allogeneic marrow transplantation in animal studies and clinical trials.

The use of hematopoietic growth factors after allogeneic bone marrow transplantation (BMT) was investigated either in a preclinical canine model or in patients. G-CSF administration in dogs after high-dose total body irradiation (TBI) and transplantation of DLA-identical littermate marrow significantly accelerated recovery of peripheral blood neutrophils, monocytes and lymphocytes, but not of platelet counts, without significantly increasing the risks of graft failure or graft-versus-host disease (GVHD). GM-CSF given to patients after HLA-identical sibling BMT was well tolerated at doses < or = 250 micrograms/m2/day and resulted in significantly faster neutrophil recovery compared with matched historical controls. Risks of graft failure, GVHD or relapse were not increased. When GM-CSF was given after matched or 1-antigen mismatched unrelated BMTs, the number of febrile days and septic episodes within the first 28 days was reduced even though neutrophil recovery was not accelerated. Incidences of graft failure, GVHD or relapse were not increased. In recipients of BMT with invasive fungal infections, M-CSF in combination with conventional anti-fungal therapy may have a beneficial effect on survival. Treatment with GM-CSF in patients with graft failure appears to result in improved survival without increasing the risks of GVHD or relapse.

Adult↗

Secondary malignancies after marrow transplantation for leukemia or aplastic anemia.

We conclude that the most common secondary cancers which develop after marrow transplantation are lympho-proliferative disorders and solid tumors. The consequences of the secondary malignancies are serious, with more than 90% of the patients with non-Hodgkin lymphomas associated with EBV infection and more than 75% of the patients with solid tumors dying despite treatment. Secondary leukemia developing in donor T-s is rare, but was fatal in all cases. EBV infection plays a major role in leading to the non-Hodgkin lymphomas in a setting of immune dysregulation from ATG or anti-T-cell monoclonal antibody treatment of acute GVHD. Other factors are also important for development of non-Hodgkin lymphoma and include T-cell depletion of donor marrow and HLA-mismatching between donor and recipient, known to lead to dysregulation of T-lymphocyte function. These factors set up an environment of proliferative stimuli which cannot be controlled by the recovering immune system, setting the stage for a secondary cancer. The role of irradiation is becoming more prominent in association with solid tumors, particularly in aplastic anemia patients conditioned with irradiation. The final event of tumor expression is most likely the result of a cascade of events, perhaps initiated with the conditioning regimen or with stimuli to proliferation, which, after later signals, leads to malignant transformation. For lymphoproliferative disorders, the time of latency is shorter than for solid tumors, suggesting a different molecular mechanism. The incidence of oncogene expression or mutation in tumor suppressor genes in these solid tumor patients has not been investigated.(ABSTRACT TRUNCATED AT 250 WORDS)

Anemia, Aplastic↗

'Resistance' to unrelated, DLA-nonidentical canine marrow grafts is unrestricted by the major histocompatibility complex.

Dogs undergoing rejection of unrelated, dog leukocyte antigen (DLA)-nonidentical marrow grafts show an increase in mononuclear cell counts in the peripheral blood at 1 week after transplant. Cells are of host origin and express phenotypic and morphologic characteristics of large granular lymphocytes (LGLs). LGLs from rejecting dogs suppress in vitro growth of donor marrow colony-forming units-granulocyte/macrophage (CFU-GM) and have natural killer (NK) cell activity. The current study tested whether the marrow-suppressive activity of LGLs obtained at the time of marrow graft rejection was major histocompatibility complex (MHC)-restricted. Five dogs were in the process of rejecting their DLA-nonidentical unrelated marrow grafts after conditioning with 9.2 Gy total-body irradiation (TBI). At the time of rejection, peripheral blood mononuclear cells (PBMC) were harvested. PBMC were co-cultured with marrow obtained from the original marrow transplant donor and from other unrelated dogs that were either DLA-identical or -nonidentical with the marrow donor. A statistically significant reduction of marrow donor CFU-GM was seen when compared to results with autologous effector PBMC from the marrow donor. The number of colonies with recipient effector PBMC ranged from 8 to 75% (median 29%). No suppression was seen with PBMC effectors from unrelated DLA-identical or DLA-nonidentical dogs. Similarly, significant reductions in the number of CFU-GM compared to autologous controls were seen with effector PBMC from marrow recipients and marrow target cells, both from unrelated dogs that were phenotypically DLA-identical or -nonidentical with the marrow donor. The number of colonies ranged from 6 to 68% (median 29%) and 1 to 102% (median 20%), respectively. NK activity was present at low levels in all recipients, while specific alloantigen-primed cytotoxic T cell killing by cells obtained from the five recipients yielded cytolysis of donor PBMC in only one case, suggesting that the marrow-suppressive activity was NK cell-mediated. In conclusion, PBMC from canine marrow transplant recipients undergoing rejection of DLA-nonidentical marrow grafts suppress in vitro CFU-GM growth of marrow donor cells, and this suppression is not MHC-restricted.

Animals↗

Recipient-specific donor cytotoxic T lymphocytes enhance engraftment of unrelated, DLA non-identical canine marrow.

Resistance to canine marrow grafts from unrelated DLA non-identical donors can be overcome by infusion of viable donor peripheral blood leukocytes or thoracic duct cells in addition to the marrow. The mechanisms by which these cells enhance engraftment are unknown but are likely to include a graft-versus-host reaction. The current study investigated whether recipient-specific, donor alloreactive cytotoxic lymphocytes mediating a graft-versus-host reaction could abrogate resistance to canine marrow grafts. To this purpose, cytotoxic donor lymphocytes (CTL) specific for recipient DLA antigens were generated in vitro and expanded in culture by exogenous interleukin-2 (IL-2). Two groups of dogs were studied. All were given 9.2 Gy total body irradiation followed by 3.7 x 10(8) marrow cells/kg from an unrelated DLA non-identical donor on day 0 and 1.2 x 10(8) host-specific CTL/kg on days 1 and 2. Dogs in group 2 were given, in addition, subcutaneous injections of recombinant human IL-2, 10,000 U/kg twice daily on days 1 through 10 post-grafting. Ten of 16 dogs in the two groups showed hematopoietic engraftment regardless of whether they received in vivo IL-2. Engraftment in current dogs was significantly better than that in 47 controls given marrow alone (p = 0.001), although it was worse than that in 64 dogs given marrow and an order of magnitude higher number of viable mononuclear cells obtained from the peripheral blood (p = 0.007).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Marrow transplant experience for children with severe aplastic anemia.

PURPOSE: The two major factors associated with lack of survival after allogeneic marrow transplant for severe aplastic anemia have been graft rejection and acute graft versus host disease (GVHD). As a result, survival for patients transplanted in the 1970s was approximately 68%. Improved survival during the 1980s was primarily related to the decrease in the incidence of acute GVHD with the use of combination methotrexate and cyclosporine for GVHD prophylaxis. Although the incidence of graft rejection has not changed, the time to graft rejection has been delayed. PATIENTS AND METHODS: One hundred forty children < 18 years of age received a marrow transplant for severe aplastic anemia at the Fred Hutchinson Cancer Research Center between May, 1971 and June, 1991. Four recipients of syngeneic marrow received a simple marrow infusion, 119 recipients of HLA-identical family member marrow received cyclophosphamide (CY), 200 mg/kg; most recipients of alternative donor marrow received CY plus 12.0 Gy fractionated total body irradiation. GVHD prophylaxis was MTX only for 91 recipients of HLA-identical family member marrow, and was MTX plus CSP for all other allogeneic marrow patients. Estimates of graft rejection, acute and chronic GVHD, survival and event-free survival (EFS) were determined by the Kaplan-Meier method. RESULTS: Two recipients of syngeneic marrow achieved engraftment with donor marrow infusion only and two required immunosuppression with CY. Among the 119 recipients of HLA-identical family member marrow the type of GVHD prophylaxis did not influence graft rejection but non-transfused patients had 10% incidence of rejection compared to 22% for transfused patients (p = 0.1). All patients with late graft rejection survive whereas those with early rejection usually do not. The incidence of acute GVHD was 27% and 11% for MTX recipients and MTX plus CSP recipients, respectively (p = 0.11), and the probability of chronic GVHD was 30% and 26%, respectively. Survival is 64% for recipients of MTX and 96% for recipients of MTX plus CSP (p = 0.007), but EFS was 60% and 71%, respectively (p = 0.48). Recipients of partially matched family member or unrelated marrow donor grafts have transplants complicated by infections and GVHD. Growth and development of CY only recipients is normal and several children have been born to these former patients. CONCLUSIONS: High dose CY is usually an effective preparative regimen for children with severe aplastic anemia and an HLA-identical family member marrow donor. Additional immunosuppression with anti-thymocyte globulin may result in a further decrease in graft rejection and improved EFS. Identification of a group of children who are unlikely to respond to immunosuppressive treatment could permit earlier transplantation for patients without HLA-identical family member donors available. Children who receive CY only have normal growth and development.

Anemia, Aplastic↗

Syngeneic transplantation with peripheral blood mononuclear cells collected after the administration of recombinant human granulocyte colony-stimulating factor.

Five syngeneic transplants were performed in four patients following myeloablative therapy using unmodified peripheral blood mononuclear cells (PBMCs) collected after the administration of recombinant human granulocyte colony stimulating factor (rhG-CSF) to normal donors. The only toxicity experienced by the four normal donors was bone pain. Four patients received two collections of PBMCs, and a second transplant was performed in one patient with one collection. The patients received a median of 20.53 x 10(8) total nucleated cells/kg (range 20 to 25.5), 11.3 x 10(8) total mononuclear cells/kg (range 6.52 to 17.2), 113.1 x 10(4)/kg CFU-GM (range 46.7 to 211.8) and 9.6 x 10(6) CD34+ cells/kg (range 1.6 to 12.6) Post-transplant growth factors were not administered. The median time to an absolute neutrophil count greater than 0.5 x 10(9)/L was 14 days (range 10 to 18). The median time to platelet transfusion independence was 11 days (range 10 to 13). Two patients had the number of CD3+ T lymphocytes determined in the pheresis product. An average of 3.04 x 10(10) CD3+ cells were collected per pheresis. This represents an approximate 1 log increase over the number of T lymphocytes in a typical bone marrow transplant. Rh-GCSF can be used to mobilize peripheral blood progenitor cells from normal donors with minimal toxicity. Studies of allogeneic transplants using PBMCs collected after rhG-CSF administration to determine permanent grafting ability and the incidence and severity of graft-versus-host disease are warranted.

Adult↗

Marrow toxicity of fractionated vs. single dose total body irradiation is identical in a canine model.

PURPOSE: We explored in dogs the marrow toxicity of single dose total body irradiation delivered from two opposing 60Co sources at a rate of 10 cGy/min and compared results to those seen with total body irradiation administered in 100 cGy fractions with minimum interfraction intervals of 6 hr. Dogs were not given marrow transplants. RESULTS: We found that 200 cGy single dose total body irradiation was sublethal, with 12 of 13 dogs showing hematopoietic recovery and survival. Seven of 21 dogs given 300 cGy single dose total body irradiation survived compared to 6 of 10 dogs given 300 cGy fractionated total body irradiation (p = .18). One of 28 dogs given 400 cGy single dose total body irradiation survived compared to none of six given fractionated radiation (p > .20). With granulocyte colony stimulating factor administered from day 0-21 after 400 cGy total body irradiation, most dogs survived with hematological recovery. Because of the almost uniform success with granulocyte colony stimulating factor after 400 cGy single dose total body irradiation, a study of granulocyte colony stimulating factor after 400 cGy fractionated total body irradiation was deemed not to be informative and, thus, not carried out. Additional comparisons between single dose and fractionated total body irradiation were carried out with granulocyte colony stimulating factor administered after 500 and 600 cGy of total body irradiation. As with lower doses of total body irradiation, no significant survival differences were seen between the two modes of total body irradiation, and only 3 of 26 dogs studied survived with complete hematological recovery. Overall, therefore, survival among dogs given single dose total body irradiation was not different from that of dogs given fractionated total body irradiation (p = .67). Similarly, the slopes of the postirradiation declines of granulocyte and platelet counts and the rates of their recovery in surviving dogs given equal total doses of single versus fractionated total body irradiation were indistinguishable. CONCLUSION: Within the limitations of the experimental design, we conclude that single-dose and fractionated total body irradiation have comparable marrow toxicity in dogs.

Animals↗

The effects of daily recombinant human granulocyte colony-stimulating factor administration on normal granulocyte donors undergoing leukapheresis.

The effects of daily administration of recombinant human granulocyte colony-stimulating factor (rhG-CSF) to eight normal volunteers donating granulocytes for neutropenic relatives undergoing marrow transplantation were studied. Granulocyte donors consisted of seven marrow donors (5 syngeneic, 2 HLA identical) and one haploidentical son who had not donated marrow. All donors were administered daily rhG-CSF at a mean dose of 5 micrograms/kg/d (range 3.5 to 6.0) for a mean of 11.75 days (range 9 to 14 days), and granulocytes were collected a mean of 7.6 times (range 4 to 12). RhG-CSF was well tolerated and only minor side effects were observed. All donors became anemic from marrow donation and the removal of red blood cells during the collection procedures. Red blood cell transfusions were not given. All donors had a decrease in platelet counts and the magnitude of the decrement appeared to be greater than in historical donors. This was due in part to increased removal of platelets with the collection product, but a direct effect of rhG-CSF on platelet production cannot be excluded. The mean precollection granulocyte level was 29.6 x 10(9)/L (range 11.8 to 79.8), which was a 10-fold increase over baseline. The mean number of granulocytes collected was 41.6 x 10(9) (range 1.3 to 144.1), which was a six-fold increase over historical donors not receiving rhG-CSF. The mean granulocyte level 24 hours after transfusion into neutropenic recipients was 0.95 x 10(9)/L (median 0.57 and range .06 to 9.47). This study indicates that rhG-CSF is safe to administer to normal individuals, significantly improves the quantity of granulocytes collected, and results in significant circulating levels of granulocytes in neutropenic recipients. Further studies to evaluate rhG-CSF in normal granulocyte donors are warranted.

Adult↗

Effects of recombinant canine stem cell factor, a c-kit ligand, and recombinant granulocyte colony-stimulating factor on hematopoietic recovery after otherwise lethal total body irradiation.

The effects of recombinant canine stem cell factor (rcSCF) on hematopoiesis were studied in normal dogs and in dogs given otherwise lethal total body irradiation (TBI) without marrow transplant. Results were compared with previous and concurrent data with recombinant granulocyte colony-stimulating factor (rG-CSF). Four normal dogs received 200 micrograms rcSCF per kilogram body weight daily either by continuous intravenous infusion for 28 days (n = 2) or by subcutaneous (SC) injection in two divided doses for 20 days (n = 2). All dogs showed at least a twofold increase in peripheral blood neutrophil counts starting approximately 7 days after the initiation of treatment. Hematocrit level and monocyte, lymphocyte, eosinophil, reticulocyte, and platelet counts were not elevated. Marrow sections after rcSCF treatment showed panhyperplasia. The only toxicity was facial edema during the first few days of rcSCF administration, presumably caused by mast cell stimulation. Ten dogs were given 400 cGy TBI at 10 cGy/min from two opposing 60Co sources. They were given no marrow infusion and received 200 micrograms/kg/d rcSCF SC in two divided doses for 21 days starting within 2 hours of TBI. Five of the 10 dogs showed complete and sustained hematopoietic recovery and survived as compared with 1 of 28 control dogs not receiving growth factor (P < .005). RcSCF treatment allowed for hematopoietic recovery in two of seven dogs administered 500 cGy of TBI but in none of five dogs given 600 cGy of TBI. Results with rcSCF are similar to those obtained with rG-CSF. The rate of neutrophil recovery in rcSCF-treated dogs after 400 cGy TBI was not different from that of rG-CSF-treated dogs (P = .65), but the rate of platelet recovery was faster (P = .06) in the rcSCF-treated animals. Combined treatment with rcSCF and rcG-CSF after 500 cGy TBI did not result in strongly improved survival as compared with results obtained with either factor alone.

Animals↗

High-level human adenosine deaminase expression in dog skin fibroblasts is not sustained following transplantation.

Primary skin fibroblasts are an attractive target tissue for retroviral-mediated gene therapy; however, transient expression of therapeutic genes has been a recurrent problem in several rodent models. The gradual decrease in gene expression could be tissue or species specific. To investigate the phenomenon further, human adenosine deaminase (ADA) expression was monitored in genetically modified skin fibroblasts transplanted in beagle dogs. In culture, transduced canine fibroblasts expressed high levels of human ADA activity (33.6 mumoles adenosine metabolized per hour per milligram of soluble protein) in comparison to canine ADA in untreated control cells (1.3 mumol/hr.mg protein) and for 2 weeks following transplantation, the graft contained up to four-fold more enzyme activity from human ADA than the endogenous canine enzyme. However, by 10 weeks, human ADA expression was undetectable. At the time when human ADA expression was greatly reduced, DNA analysis showed the presence of vector sequences. These results directly parallel those observed in rodent models and suggest retroviral vector inactivation is a tissue-specific rather than species-specific mechanism.

Adenosine Deaminase↗

Studies of the use of L-leucyl-L-leucine methyl ester in canine allogeneic marrow transplantation.

L-leucyl-L-leucine methyl ester (Leu-Leu-OMe) is a lysosomotropic agent that selectively kills cytotoxic T cells and their precursors, natural killer cells, and monocytes but not helper T cells or other cells of hematopoietic origin. In this study, the effects of treatment of bone marrow and peripheral blood buffy coat with Leu-Leu-OMe on the outcome of allogeneic marrow transplantation were studied in several canine models. Whereas incubation of autologous marrow with Leu-Leu-OMe had no adverse effects on subsequent engraftment, incubation of marrow from dog leukocyte antigen (DLA)-identical littermates resulted in a high rate of graft failure. Previous studies have demonstrated that the addition of peripheral blood buffy coat allows engraftment of unrelated DLA-nonidentical marrow, and in this study we found that incubation of buffy coat with Leu-Leu-OMe did not alter this graft promoting effect. In a final experiment it was demonstrated that incubation of both marrow and peripheral blood buffy coat did not prevent the development of graft-versus-host disease in recipients of marrow from DLA-haploidentical littermates. In considering the eventual application of Leu-Leu-OMe in the clinic, these results are less encouraging than those previously reported using murine models.

Animals↗

FK-506 and methotrexate prevent graft-versus-host disease in dogs given 9.2 Gy total body irradiation and marrow grafts from unrelated dog leukocyte antigen-nonidentical donors.

FK-506 was evaluated either alone or combined with methotrexate (MTX) for prevention of graft-versus-host disease (GVHD) in dogs given 9.2 Gy total body irradiation and dog leukocyte antigen-nonidentical unrelated marrow grafts. Studies with marrow autografts showed gut toxicity and weight loss to be major side effects of FK-506. There was no hematopoietic toxicity with FK-506. In an initial allograft study, 5 dogs were given FK-506 intramuscularly at 0.3 mg/kg/day from days 0 to 8 and then orally at 0.5 mg/kg/day. All 5 died, 3 with intussusception most likely due to FK-506 toxicity, 1 with graft failure, and 1 with GVHD. Subsequently, the FK-506 dose was reduced and these drug schedules were used: FK-506 days 0-8 at 0.15 mg/kg/day i.m. and then orally at 0.5 mg/kg/day until day 90, with or without MTX intravenously at 0.4 mg/kg days 1, 3, 6, and 11. Twenty allografts were done, 10 with FK-506 alone, and 10 with MTX/FK-506. Results were compared with those in concurrent and historical controls given either no immunosuppression (n = 64), MTX (n = 114), CsA (n = 15), or MTX/CsA (n = 17). Five of 20 current dogs died with intussusception, too early to be evaluated for GVHD. The 10 dogs given FK-506 alone survived significantly better than those not given immunosuppression but not differently from those given short-term MTX or CsA alone. Three died from toxicity, 2 with graft failure, and 4 with GVHD. Only 1 dog became a long-term survivor, and this dog inadvertently received a single dose of MTX on day 7. Two of 10 dogs given MTX/FK-506 died from toxicity, 1 died with graft failure, 2 died with GVHD, and 5 became long-term survivors, a result that is significantly better than seen with either drug alone and similar to that seen with MTX/CsA. Four of the 5 survivors had no clinical GVHD. FK-506 blood levels were 15-35 ng/ml between days 8 and 15, when gut toxicity was most severe. Thereafter, levels were approximately 5 ng/ml. In conclusion, FK-506 prolonged survival of recipients of dog leukocyte antigen-nonidentical unrelated marrow grafts. When FK-506 was combined with MTX, graft-host tolerance was induced in 50% of dogs, even though FK-506 was stopped on day 90.

Animals↗

Long-term survival and cure after marrow transplantation for congenital hypoplastic anaemia (Diamond-Blackfan syndrome).

Four patients with Diamond-Blackfan syndrome (congenital hypoplastic anaemia) whose disease was resistant to corticosteroid treatment and who were red blood cell transfusion-dependent, were given marrow grafts from allogeneic human-leucocyte-antigen (HLA)-identical siblings. The patients were conditioned with regimens including cyclophosphamide and busulfan. Three of four patients had sustained and complete marrow engraftment. One patient showed early signs of haematopoietic recovery but died on day 35 of pulmonary toxicity. The three surviving patients are well with normal haematopoiesis and Karnofsky performance scores of 100%, 3.0, 7.4 and 10.6 years after transplantation. Congenital hypoplastic anaemia can be treated successfully by allogeneic marrow grafts.

Acute Disease↗