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R Storb

Publications and source records attributed to R Storb.

At least 37 records · Page 2Linked to original sources

Hematopoietic responses to stress conditions in young dogs compared with elderly dogs.

Clinical observations show that older patients do not tolerate high-dose chemoradiotherapy as well as younger patients. It is unclear whether this is due to age-related differences in their responses to hematopoietic injury or to differential toxicities to other organs. In the present study, 6 young (0.5 years) and 6 elderly (8 years) dogs were challenged with 7 repeated nonlethal doses of 50 or 100 cGy total body irradiation (TBI) each (total 550 cGy), and 21 days of recombinant canine granulocyte-colony stimulating factor (rcG-CSF) after the last TBI dose. Recoveries of absolute neutrophil, platelet, and lymphocyte counts after each TBI dose, responses to rcG-CSF treatment, and telomere lengths in neutrophils were compared before and after the study. No differences were found in recoveries of neutrophils, platelets, or in responses to rcG-CSF among young and old dogs. In contrast, recoveries were suggestively worse in younger dogs. After rcG-CSF, platelet recoveries were poor in both groups compared with previous platelet recoveries (P <.01). Consequently, 2 old and 3 young dogs were euthanized because of persistent thrombocytopenia and bleeding. At the study's completion, marrow cellularities and peripheral blood counts of the remaining young and elderly dogs were equivalent. The telomere lengths in both groups were significantly reduced after the study versus beforehand (P =.03), but the median attritions of telomeres were not different. It was concluded that aging does not appear to affect hematopoietic cell recoveries after repeated low-dose TBI, suggesting that poor tolerance of radiochemotherapy regimens in older patients may be due to nonhematopoietic organ toxicities rather than age-related changes in hematopoietic stem cells reserves.

Aging↗

Pharmacogenetics of methotrexate: toxicity among marrow transplantation patients varies with the methylenetetrahydrofolate reductase C677T polymorphism.

This study investigated whether a polymorphism in the 5,10-methylenetetrahydrofolate reductase (MTHFR) gene (C677T) modifies responses to methotrexate (MTX) in patients undergoing bone marrow transplantation. About 10% to 12% of the population carry the MTHFR TT genotype (enzyme activity, 30% of wild type [CC]). Patients (n = 220) with chronic myelogenous leukemia underwent marrow allografts and were given a short course of MTX. MTX toxicity measures included the oral mucositis index (OMI), speed of engraftment (platelet and granulocyte counts), and bilirubin. Patients with lower MTHFR activity (TT genotype) had 36% higher mean OMI during days 1 to 18 (+5.7, P =.046) and 20% higher OMI between days 6 and 12 (+3.8, P =.27). Platelet counts recovered more slowly among patients with the TT genotype compared to wild type (24% slower recovery to 10 000 platelets/microL, P =.23; 34% slower to 20 000/microL, P =.08). Patients with decreased MTHFR activity appear at risk of higher MTX toxicity. Because of the high prevalence of the TT genotype, these results may have implications for MTX dosage.

Adult↗

Immune reconstitution after allogeneic marrow transplantation compared with blood stem cell transplantation.

Allogeneic peripheral blood stem cell grafts contain about 10 times more T and B cells than marrow grafts. Because these cells may survive in transplant recipients for a long time, recipients of blood stem cells may be less immunocompromised than recipients of marrow. Immune reconstitution was studied in 115 patients randomly assigned to receive either allogeneic marrow or filgrastim-mobilized blood stem cell transplantation. Between day 30 and 365 after transplantation, counts of most lymphocyte subsets were higher in the blood stem cell recipients. The difference was most striking for CD4 T cells (about 4-fold higher counts for CD45RA(high) CD4 T cells and about 2-fold higher counts for CD45RA(low/-)CD4 T cells; P <.05). On assessment using phytohemagglutinin and herpesvirus antigen-stimulated proliferation, T cells in the 2 groups of patients appeared equally functional. Median serum IgG levels were similar in the 2 groups. The rate of definite infections after engraftment was 1.7-fold higher in marrow recipients (P =.001). The rate of severe (inpatient treatment required) definite infections after engraftment was 2.4-fold higher in marrow recipients (P =.002). The difference in the rates of definite infections was greatest for fungal infections, intermediate for bacterial infections, and lowest for viral infections. Death associated with a fungal or bacterial infection occurred between day 30 and day 365 after transplantation in 9 marrow recipients and no blood stem cell recipients (P =.008). In conclusion, blood stem cell recipients have higher lymphocyte-subset counts and this appears to result in fewer infections. (Blood. 2001;97:3380-3389)

Adult↗

Hematopoietic stem-cell transplantation for treatment-related leukemia or myelodysplasia.

PURPOSE: This report describes results of related or unrelated hematopoietic stem-cell transplants in 111 patients with treatment-related leukemia or myelodysplasia performed consecutively at the Fred Hutchinson Cancer Research Center between December 1971 and June 1998, and identifies patient and treatment characteristics associated with survival and relapse. PATIENTS AND METHODS: At transplantation, 56 patients had treatment-related secondary acute myeloid leukemia (AML), 15 had refractory anemia with excess blasts in transition (RAEB-T), 23 had refractory anemia with excess blasts (RAEB), 15 had refractory anemia (RA), and two had refractory anemia with ringed sideroblasts (RARS). Conditioning regimens were total-body irradiation (TBI) and chemotherapy for 60 patients, busulfan (BU) 14 to 16 mg/kg and cyclophosphamide (CY) 120 mg/kg (BUCY) for 27 patients, BU targeted to 600 to 900 ng/mL plasma steady-state concentration with 120 mg/kg CY (BUCY-t) for 22 patients, and miscellaneous chemotherapy for two patients. The donors were HLA-identical or partially identical family members for 69 patients and unrelated donors for 42 patients. RESULTS: The 5-year disease-free survival was 8% for TBI, 19% for BUCY, and 30% for BUCY-t (P =.006). The 5-year cumulative incidence of relapse was 40% for secondary AML, 40% for RAEB-T, 26% for RAEB, and 0% for RA or RARS (P =.0009). The 5-year cumulative incidence of nonrelapse mortality after TBI was 58%; after BUCY, 52%; and after BUCY-t, 42% (P =.02). CONCLUSION: Patients at risk for treatment-related leukemia or myelodysplasia should be followed closely and be considered for stem-cell transplantation early in the course of myelodysplasia using conditioning regimens such as BUCY-t designed to reduce nonrelapse mortality.

Adult↗

Transplantation of bone marrow as compared with peripheral-blood cells from HLA-identical relatives in patients with hematologic cancers.

BACKGROUND: In recipients of allogeneic hematopoietic-cell transplants, peripheral-blood cells mobilized with the use of filgrastim (recombinant granulocyte colony-stimulating factor) engraft more rapidly than bone marrow. However, the relative effects of these techniques on the rates of acute and chronic graft-versus-host disease, overall survival, and disease-free survival have not been determined in randomized studies. METHODS: Between March 1996 and July 1999, 172 patients (12 to 55 years of age) with hematologic cancer were randomly assigned to receive either bone marrow or filgrastim-mobilized peripheral-blood cells from HLA-identical relatives for hematopoietic rescue after the treatment of hematologic cancer with high doses of chemotherapy, with or without radiation. RESULTS: The recovery of both neutrophils and platelets was faster with peripheral-blood cells than with marrow (P<0.001 for both comparisons). The cumulative incidence of grade II, III, or IV acute graft-versus-host disease at 100 days was 64 percent with peripheral-blood cells and 57 percent with marrow (hazard ratio, 1.21; 95 percent confidence interval, 0.81 to 1.81; P=0.35). The cumulative incidence of chronic graft-versus-host disease was 46 percent with peripheral-blood cells and 35 percent with marrow (hazard ratio, 1.16; 95 percent confidence interval, 0.71 to 1.90; P=0.54). The estimated overall probability of survival at two years was 66 percent with peripheral-blood cells and 54 percent with marrow (hazard ratio for death, 0.62; 95 percent confidence interval, 0.38 to 1.02; P=0.06). The rate of disease-free survival at two years was 65 percent with peripheral-blood cells and 45 percent with marrow (hazard ratio for relapse or death, 0.60; 95 percent confidence interval, 0.38 to 0.95; P=0.03). CONCLUSIONS: In patients given high-dose chemotherapy, with or without radiation, for the treatment of hematologic cancer, allogeneic peripheral-blood cells used for hematopoietic rescue restore blood counts faster than allogeneic bone marrow, without increasing the risk of graft-versus-host disease.

Adolescent↗

Allogeneic hematopoietic cell transplantation for multiple myeloma.

Some patients with multiple myeloma (MM) who have undergone allogeneic hematopoietic stem cell transplants remain free of disease 5 to 13 years later-a major accomplishment for a malignancy that had been resistant to all investigational therapies. Although it will require longer follow-up to determine how many are truly cured, results for patients with MM transplanted from identical twins suggest that long-term progression-free survival is possible. While 3- to 5-year survival is similar after allogeneic or autologous stem cell transplant for MM, only allograft recipients appear to enjoy long-term disease-free survival, most likely due to an allogeneic graft-versus-myeloma (GVM) effect. The very high transplant-related mortality associated with standard allogeneic stem cell transplantation is currently the major limitation to wider use of this potentially curative treatment. The challenge for clinical investigators will be to reduce the incidence of posttransplant complications. Strategies include the use of nonablative conditioning for allografts, the administration of peripheral blood stem cells (PBSC) rather than bone marrow, and the application of more focused, targeted conditioning therapies such as bone-seeking radioisotopes.

Hematopoietic Stem Cell Transplantation↗

Purified canine CD34+Lin- marrow cells transduced with retroviral vectors give rise to long-term multi-lineage hematopoiesis.

Human CD34+ cells have been shown to retain long-term hematopoietic engrafting potential in preclinical and clinical studies. However, recent studies of human and murine CD34- stem cells suggest that these are functionally important early progenitors. Using autologous transplantation, we investigated whether canine CD34 and CD34- marrow cells could be transduced and give rise to long-term hematopoiesis. CD34+Lin- and CD34-Lin- cell populations purified by fluorescence-activated cell sorting were separately cocultivated with retroviral vectors LN (CD34+Lin-) and LNY (CD34-Lin-), which carry the neomycin (neo) gene. After myeloablative total body irradiation (920 cGy), 3 dogs received transplants of both CD34+Lin- cells and CD34-Lin- cells and 2 dogs received only CD34-Lin- cells. Untransduced autologous marrow cells were given to ensure hematopoietic recovery. Using CFU-C assays, transduction efficiencies of CD34+Lin- cells ranged from 6% to 18% with no CFU-C formation from CD34-Lin- cells. PCR-based detection of the neo gene from WBCs was used to detect transduced cells weekly after transplantation. Additional PCR studies in 3 dogs given both CD34+Lin- and CD34-Lin- cells were performed on monocytes, granulocytes, and T cells (2 dogs, one at 7.5 months and the other at 9 months) and granulocytes (1 dog at 12 months). LN was detected up to 12 months posttransplantation in WBCs and mono-myeloid and lymphoid populations from 3 dogs receiving transplants of transduced CD34+Lin- cells. LNY was not detected at any time after transplantation in 5 dogs that received transduced CD34-Lin- cells. Whereas canine CD34+Lin- marrow cells contributed to long-term multilineage hematopoiesis, progeny of CD34-Lin- progenitor cells were not detected after transplantation in these experiments.

Animals↗

Non-myeloablative hematopoietic stem cell transplantation.

Conventional approaches to allogeneic stem cell transplantation have used toxic high-dose conditioning therapy in attempts to eradicate underlying diseases and achieve allogeneic engraftment. Preclinical studies and clinical observations have shown that to achieve engraftment conditioning regimens could be markedly reduced in intensity with reduction in treatment toxicities. The use of potent pre- and postgrafting immunosuppression facilitated stable mixed hematopoietic chimerism in a preclinical canine model. The initial clinical experiences with attenuated conditioning regimens have shown promise as a modality to achieve human stem cell transplantation with an improved safety profile. This may allow offering potentially curative hematopoietic stem cell transplantation (HSCT) to a more representative patient population (older and sicker) who are currently not eligible for such therapy. Obtaining a state of mixed hematopoietic chimerism could prove curative of the disease phenotype of various nonmalignant disturbances of the hematopoietic and immune systems. On the other hand, patients with hematopoietic malignancy will likely require conversion to full donor hematopoeisis by virtue of graft-versus-host (GVH) reactions directed against both recipient hematopoiesis and underlying malignancy. The infusion of additional donor lymphocytes has been proposed by many groups to augment graft versus tumor responses, but most likely more specific strategies will need to be developed to improve efficacy and avoid nonspecific GVH reactions.

Animals↗

Haemopoietic stem cell transplantation for advanced polycythaemia vera or essential thrombocythaemia.

Ten patients with polycythaemia vera (PV) and nine with essential thrombocythaemia (ET) received a haemopoietic stem cell transplant (HSCT) at the Fred Hutchinson Cancer Research Center between May 1988 and March 2000. HSCT was performed because of progression to the spent phase of the disease with myelofibrosis and splenomegaly in 10 patients and evolution into a myelodysplastic syndrome (MDS) or acute myelogenous leukaemia (AML) in nine patients. Patients were 18-59 years old (median 43). The interval from diagnosis to HSCT was 77-300 months (median 170). Seven patients were splenectomized before transplantation, and all but five had been treated with cytotoxic agents. Eleven patients received a transplant from a related, and eight from an unrelated, donor following conditioning with chemotherapy only or chemotherapy plus total body irradiation regimens. All evaluable patients achieved sustained engraftment. Twelve patients are surviving 5-116 months (median 41) after transplant, 10 in continued complete remission, one in haematological remission with residual marrow fibrosis and one with mixed haemopoietic chimaerism currently receiving therapy with interferon. Seven patients (six with AML/MDS and one with myelofibrosis) died of transplant-related complications. These data show that HSCT can provide curative therapy for patients with PV and ET with advanced disease.

Adult↗

A proposed objective way to assess results of randomized prospective clinical trials with acute graft-versus-host disease as an outcome of interest.

The assessment of graft-versus-host disease (GVHD) as an end-point in clinical trials requires subjective judgement to distinguish morbidity caused by GVHD from morbidity caused by other complications. We developed a method based on ordinal regression for longitudinal assessment of morbidity involving the skin, liver and gut, regardless of cause as an objective end-point in randomized prospective phase III treatment or prevention trials for which GVHD is an outcome of interest. This method was validated for treatment studies by showing that morbidity was more severe among patients with grade II-IV GVHD than among those who did not have GVHD. We found no differences in morbidity involving the skin, liver and gut after the diagnosis of GVHD in a group of 30 patients who received peripheral blood stem cells and a group of 37 who received marrow in a randomized phase III clinical trial. These preliminary results suggest that objective end-points could be used in randomized clinical trials for treatment of GVHD. Further studies will be needed to determine if similar methods could be used in randomized clinical trials for prevention of GVHD.

Acute Disease↗

Allogeneic peripheral blood stem cell transplantation.

Granulocyte colony stimulating factor (G-CSF)-mobilized peripheral blood stem cells (PBSC) are now widely used instead of bone marrow for autologous transplantation due to earlier hematopoietic recovery after transplant. The low toxicity of G-CSF has prompted phase I and II studies to evaluate PBSC for allogeneic transplantation; these studies have demonstrated that engraftment of neutrophils, red blood cells and platelets is faster with peripheral blood cells compared to marrow. In randomized studies comparing mobilized PBSC and marrow for allogeneic transplantation, most trials have confirmed significantly earlier engraftment with PBSC and similar risks of acute graft-vs.-host disease (GVHD). In some trials, an increase of 10-15% in grade II-IV GVHD has been noted with PBSC. All studies showed a trend towards more chronic GVHD with PBSC. Some randomized studies have shown improved survival and disease-free survival with the use of PBSC due to lowered transplant-related mortality and fewer relapses in recipients of PBSC as a result of improved immune reconstitution and a graft-vs.-leukemia (GVL) effect. This survival benefit is most apparent in patients with more advanced hematologic malignancies, but further studies are needed to define the relative benefits of PBSC for patients with less advanced disease. The GVL effect of PBSC is currently being exploited with the use of non-ablative allografts.

Cell Separation↗

Severe canine hereditary hemolytic anemia treated by nonmyeloablative marrow transplantation.

Severe hemolytic anemia in Basenji dogs secondary to pyruvate kinase (PK) deficiency can be corrected by marrow allografts from healthy littermates after a conventional high-dose myeloablative conditioning regimen. The nonmyeloablative conditioning regimen used here, which consisted of a sublethal dose of 200 cGy total body irradiation before and immunosuppression with mycophenolate mofetil and cyclosporine after a dog leukocyte antigen (DLA)-identical littermate allograft, has been found to be effective in establishing stable mixed donor/host hematopoietic chimerism in normal dogs. We explored the feasibility of nonmyeloablative marrow allografts for the treatment of canine PK deficiency and studied the effect of stable allogeneic mixed hematopoietic chimerism on the natural course of the disease. Five affected dogs received transplants, of which 3 dogs had advanced liver cirrhosis and myelofibrosis. Both complications were presumed to be due to iron overload. All 5 dogs showed initial engraftment. Two rejected their grafts after 6 weeks but survived with completeautologous marrow recovery and return of the disease. One died from liver failure on day 27 with 60% donor engraftment. Two dogs have shown sustained mixed donor/host chimerism for more than a year with 85% and 12% donor hematopoietic cells, respectively. Overall clinical response correlated with the degree of donor chimerism. The dog with the low degree of chimerism achieved partial resolution of hemolysis, but the disease symptoms persisted as manifested by increasing iron overload resulting in progression of marrow and liver fibrosis. The dog with the high degree of donor chimerism achieved almost complete resolution of hemolysis with a decrease of marrow iron content and resolution of marrow fibrosis. These observations suggest that mixed hematopoietic chimerism can be relatively safely established in dogs with PK deficiency even in the presence of advanced liver cirrhosis. However, although effective in correcting or delaying the development of myelofibrosis, a low degree of mixed chimerism was not sufficient to prevent continued hemolysis of red blood cells of host origin. Complete donor chimerism appears necessary to achieve a long-term cure.

Anemia, Hemolytic, Congenital↗

Cyclophosphamide and antithymocyte globulin to condition patients with aplastic anemia for allogeneic marrow transplantations: the experience in four centers.

This report summarizes the experience with a conditioning regimen of cyclophosphamide and antithymocyte globulin in patients with severe aplastic anemia given HLA-matched related marrow grafts at 4 transplantation centers. Enrolled were 94 consecutive patients, of whom 87 had received multiple transfusions and 38 had failed immunosuppressive therapy. Their ages ranged from 2 to 59 years. After transplantation, 89 patients received a methotrexate/cyclosporine regimen for graft-versus-host disease (GVHD) prevention. Cyclosporine with or without prednisone was given in 4 patients, and no immunosuppression was given in 1 patient. Ninety-six percent of patients had sustained grafts, whereas 4% rejected grafts between 2 and 7 months after transplantation. Of the 4 rejecting patients, 3 are alive with successful second engraftments. Acute grade II GVHD was seen in 21% of patients, grade III in 7%, and grade IV in 1% of patients. Chronic GVHD was seen in 32% of patients, most of whom responded completely to immunosuppressive therapy. With a median follow-up of 6.0 years (range, 0.5-11.6 years), the survival rate was 88%. No unusual long-term side effects have been seen with the regimen. We conclude that the cyclophosphamide/antithymocyte globulin regimen combined with methotrexate/cyclosporine after transplantation is well tolerated and effective in heavily pretreated patients with aplastic anemia.

Adolescent↗

Secondary failure of platelet recovery after hematopoietic stem cell transplantation.

After primary recovery of platelet counts after transplantation, there can be a late persistent decline called secondary failure of platelet recovery (SFPR), which may occur although the counts of other cell lineages remain within the normal range. SFPR was defined as a decline of platelet counts below 20,000/microL for 7 consecutive days or requiring transfusion support after achieving sustained platelet counts > or = 50,000/microL without transfusions for 7 consecutive days after hematopoietic stem cell transplantation (HSCT). The study population consisted of 2871 consecutive patients receiving transplants from January 1990 to March 1997. After primary recovery of platelet counts, SFPR not due to relapse of the underlying disease was observed in 285 of 1401 (20%) patients undergoing allogeneic transplantation and 36 (8%) of 444 patients undergoing autologous transplantation, with a median time of onset after transplantation at day 63 (range, day 21-156) and day 44 (range, day 24-89), respectively. Concomitant neutropenia was seen in 57 (20%) of 285 patients undergoing allogeneic HSCT and 7 (19%) of 36 patients undergoing autologous HSCT with SFPR. By multivariable analysis, the following were factors significantly associated with SFPR after allogeneic HSCT: a transplant from an unrelated donor; a graft-versus-host disease (GVHD) prophylaxis other than methotrexate and cyclosporine; development of grade 2 through 4 acute GVHD; impaired renal or liver function; conditioning with the combination of busulfan, cyclophosphamide, and total body irradiation; stem cell dose; and infections. Cytomegalovirus infection after engraftment and source of stem cells were the only significant risk factors after autologous HSCT. The hazard rate of death was significantly higher in patients who experienced SFPR (hazard ratio = 2.6 for allogeneic HSCT; hazard ratio = 2.2 for autologous HSCT). SFPR was associated with serious complications and poor outcome after transplantation. The identification of the characteristics and risk factors for SFPR could improve patient counseling and management and lead to the design of effective treatment strategies.

Adolescent↗

Relapse after allogeneic bone marrow transplantation for refractory anemia is increased by shielding lungs and liver during total body irradiation.

Patients with the refractory anemia (RA) subtype of myelodysplastic syndrome who undergo allogeneic bone marrow transplantation (BMT) have a low risk of relapse, but they have a high risk of nonrelapse mortality when prepared with conventional preparative regimens. To try to reduce nonrelapse mortality, we treated 14 RA patients with a modified approach to total body irradiation (TBI) followed by cyclophosphamide (CY) and HLA-identical sibling BMT. Median patient age was 44 years (range, 28 to 65 years). Patients received TBI with shielding of the right lobe of the liver and both lungs followed by electron beam boosts to shielded ribs. Total radiation exposure in nonshielded areas was 12 Gy (n = 10), 10 Gy (n = 3), or 6 Gy (n = 1). After TBI, patients received CY at 120 mg/kg over 2 days, followed by transplantation of unmanipulated bone marrow. All patients initially achieved engraftment with donor cells, although 2 patients had subsequent reemergence of host hematopoiesis without evidence of disease relapse. Five patients died of transplantation-related causes between 22 and 1262 days post-BMT. Four patients relapsed between 157 and 1096 days post-BMT. These 14 patients were compared with 46 historical controls with RA who received conventional CY/TBI or busulfan/CY preparative regimens. Patients in the experimental group had a similar nonrelapse mortality rate compared with the historical control group (29% versus 37%, respectively; P = .8), but a higher relapse rate (34% versus 2%, P = .0004) and a lower disease-free survival (38% versus 61%, P = .16). We conclude that this modified TBI approach is associated with an unacceptably high risk of relapse for patients with RA undergoing BMT.

Adult↗