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R Storb

Publications and source records attributed to R Storb.

At least 127 records · Page 7Linked to original sources

Characterization of monoclonal antibodies that recognize canine CD34.

Using a polyclonal antiserum against canine CD34, we previously found that CD34 is expressed on canine bone marrow progenitor cells in a manner analogous to that found in humans. To further characterize CD34+ cells and to facilitate preclinical canine stem cell transplant studies, monoclonal antibodies (MoAbs) were raised to CD34. A panel of 10 MoAbs was generated that reacted with recombinant CD34 and with CD34+ cell lines and failed to react with CD34- cell lines. Binding properties of five purified MoAbs were determined by BIAcore analysis and flow cytometric staining, and several MoAbs showed high affinity for CD34. Two antibodies, 1H6 and 2E9, were further characterized, and in flow cytometry studies typically 1% to 3% of stained bone marrow cells were CD34+. Purified CD34+ bone marrow cells were 1.8- to 55-fold enriched for colony-forming unit-granulocyte-macrophage and for long-term culture initiating cells as compared with bone marrow mononuclear cells, whereas CD34- cells were depleted of progenitors. Three autologous transplants were performed with CD34+ cell fractions enriched by immunomagnetic separation. After marrow ablative total body irradiation (920 cGy), prompt hematopoietic recovery was seen with transplanted cell doses of </=1.1 x 10(7) /kg that were 29% to 70% CD34+. Engraftment kinetics were similar to those of dogs previously transplanted with approximately 10- to 100-fold more unmodified autologous marrow cells. This suggests that CD34+ is a marker not only of canine bone marrow progenitors but also for cells with radioprotective or marrow repopulating function in vivo. MoAbs to CD34 will be valuable for future studies of canine hematopoiesis and preclinical studies concerning stem cell transplantation, gene therapy, and ex vivo progenitor cell expansion.

Animals↗

Dose rate-dependent sparing of the gastrointestinal tract by fractionated total body irradiation in dogs given marrow autografts.

PURPOSE: We compared gastrointestinal toxicity of single vs. fractionated total body irradiation (TBI) administered at dose rates ranging from 0.021 to 0.75 Gy/min in a canine model of marrow transplantation. METHODS AND MATERIALS: Dogs were given otherwise marrow-lethal single or fractionated TBI from dual 60Co sources at total doses ranging from 8-18 Gy and delivered at dose rates of 0.021, 0.05, 0.10, 0.20, 0.40, and 0.75 Gy/min, respectively. They were protected from marrow death by infusion of previously stored autologous marrow cells and they were given intensive supportive care posttransplant. The study endpoint was 10-day mortality from gastrointestinal toxicity. Logistic regression analyses were used to jointly evaluate the effects of dose rate, total dose, and delivery regimen on toxicity. RESULTS AND CONCLUSION: With increasing dose rates, mortality increased for either mode of delivery of TBI. With dose rates through 0.10 Gy/min, mortality among dogs given single vs. fractionated TBI appeared comparable. Beginning at 0.20 Gy/min, fractionation appeared protective for the gastrointestinal tract. Results in dogs given TBI at 0.40 and 0.75 Gy/min, respectively, were comparable, and dose fractionation permitted the administration of considerably higher total doses of TBI than were possible after single doses, an increment that was on the order of 4.00 Gy. The data indicate that the impact of fractionating the total dose at high dose rates differs from the effect of fractionation at low dose rates.

Animals↗

Intravenous immunoglobulin and the risk of hepatic veno-occlusive disease after bone marrow transplantation.

Recent reports using historical controls or registry cohorts suggest, respectively, either an increase in the mortality or a decrease in the incidence of hepatic veno-occlusive disease (VOD) with the administration of intravenous immunoglobulin (i.v.Ig) after bone marrow transplantation. These divergent results prompted us to conduct a retrospective analysis of two randomized clinical trials conducted at our center to determine the effect of i.v.Ig infusions on the development and severity of VOD. Patients were randomized to receive (n=318) or not to receive (n=315) i.v.Ig prophylaxis after human leukocyte antigen-identical sibling (n=414), mismatched or unrelated (n=178), or autologous or syngeneic (n=41) marrow transplantation. To determine the relationship of i.v.Ig to the development and severity of VOD, a single observer reviewed data displays created for each patient for grading VOD without knowledge of patient i.v.Ig use. In this analysis, VOD was defined as hyperbilirubinemia > or =2.0 mg/dL before day 20 and abrupt weight gain > or =2% before day 14 posttransplant in the absence of other causes of liver disease. Hepatic VOD developed in 235 (37%) of the 633 randomized patients. No evidence for VOD was found in 230 (36%) patients. The remaining 168 (27%) patients were classified as having liver disease of uncertain etiology. Hepatic VOD was judged to be severe in 63 (10%) and mild or moderate in 172 (27%) patients. The number of patients developing any VOD or severe VOD was similar between those randomized to i.v.Ig prophylaxis and untreated controls (115 vs. 120 and 32 vs. 31, respectively). Logistic regression models identified several covariates as significant (p < 0.01) factors associated with the development of severe VOD. Increased risk occurred with elevated pretransplant serum aspartate aminotransferase (odds ratio [OR] = 2.64) and earlier year of transplant (OR = 3.73); decreased risk occurred with autologous or twin donors (OR = 0.09) and acute myeloid leukemia (OR = 0.39). The development of any VOD was associated with an elevated pretransplant alkaline phosphatase (OR = 4.1), pretransplant use of vancomycin (OR = 1.6) or amphotericin (OR = 3.0), posttransplant use of cyclosporine (OR = 2.5), older patient age (OR = 1.03), and obesity (OR = 0.78). We concluded from the controlled trials of 633 patients that the administration of i.v.Ig did not influence the development or severity of VOD after bone marrow transplantation.

Bone Marrow Transplantation↗

Reproducibility in retrospective grading of acute graft-versus-host disease after allogeneic marrow transplantation.

We have undertaken a formal study to evaluate the reproducibility of retrospective assessments for grading the severity of acute GVHD. Using criteria previously established by the Seattle group, three reviewers independently assigned GVHD severity grades for a set of 100 marrow transplant patients. Significant differences were found in the distribution of GVHD grades assigned by one of the reviewers as compared to the other two reviewers. In only 40% of cases did all three reviewers assign the same GVHD grade, and in only 68-71% of cases did all three reviewers assign the same grade within 0-I vs II-IV or 0-II vs III-IV categories. Despite the high rate of disagreement between any two reviewers, at least two reviewers assigned the same overall GVHD grade in 93% of cases. These results suggest that current criteria for assessing the severity of GVHD by a single reviewer are not sufficiently reliable for rigorous clinical studies. As an alternative to the original criteria, we have developed and tested simplified criteria that summarize the clinical course of GVHD as reflected by the progression of disease and the amount of immunosuppressive treatment used to control the disease. Our results suggest that the revised criteria might yield more reproducible retrospective grading than the original criteria. Although the original criteria and the revised criteria might produce different results for individual patients, the overall distributions of grades with the two systems were similar. The proposed revised criteria could be implemented without disrupting the continuity and consistency with previous grading assigned by the original criteria.

Bone Marrow Transplantation↗

The development of chronic graft-versus-host disease: an analysis of screening studies and the impact of corticosteroid use at 100 days after transplantation.

The value of routine chronic graft-versus-host disease (GVHD) screening studies performed between 70 and 120 days after allogeneic marrow transplantation was retrospectively evaluated among 241 patients. All patients received methotrexate and cyclosporine for GVHD prophylaxis and survived without relapse more than 4 months after transplant. Ninety-one patients (38%) developed clinical extensive chronic GVHD requiring systemic therapy. Data on patients who developed clinical extensive chronic GVHD were compared with those on patients without chronic GVHD to determine which of the following screening tests predicted the subsequent development of clinical extensive chronic GVHD: skin biopsy, oral exam, lip biopsy, Schirmer's test, serum alkaline phosphatase, aspartate transaminase, immunoglobulin level and platelet count. In a univariable analysis, a positive oral examination and a low platelet count were predictive of chronic extensive GVHD development. In a multivariable analysis which adjusted for the contribution of other chronic GVHD risk factors, such as age and a history of acute GVHD none of the screening tests were predictive of chronic GVHD development. The risk factors in this multivariable analysis which had the strongest association with the development of chronic GVHD was a history of acute GVHD and use of corticosteroids at day 100 (RR = 3.9, P = 0.001). The use of corticosteroids for acute GVHD at day 100 had a predictive effect on chronic GVHD development independent of the grade of acute GVHD (RR = 2.1, P = 0.004). Based on these study results, the use of chronic GVHD screening tests may not be of value in predicting who will develop this complication. Patients on corticosteroids at day 100 should be considered for clinical trials to determine the efficacy of new immunosuppressive agents in preventing chronic GVHD.

Adrenal Cortex Hormones↗

Polymorphism analysis of four canine MHC class I genes.

We have studied the variability of four structurally complete dog leukocyte antigen (DLA) class I genes, termed DLA-12, -88, -79 and -64, in a population of mixed breed, unrelated dogs. The human HLA and canine DLA loci share a high degree of similarity in terms of gene structure. This analysis focused on the first three exons of each of four complete canine genes. Exons two and three are the major source of polymorphism in the corresponding human genes. In this analysis, DLA-88 was found to be significantly more polymorphic than the other three genes, with 44 distinct alleles observed among 63 mixed breed, unrelated dogs. The remaining genes had between one and four alleles when examined in 25 dogs. This work was carried out as part of an effort to develop an MHC typing system for the dog, which is critical to the further development of preclinical studies of hematopoietic stem cell and solid organ transplantation in the canine model.

Amino Acid Sequence↗

Molecular analysis and polymorphism of the DLA-DQB genes.

Partial-length cDNA clones and full-length genomic clones corresponding to a complete canine DQB class II gene were isolated. Southern analyses suggested the presence of two DQB genes--one of which appeared to be a pseudogene lacking exon 2 called DQB2. The other DQB gene, called DQB1, was isolated from a genomic phage clone and contained six exons. The DQB1 clone was restriction mapped, and exon 2 was sequenced from 70 dogs. Twenty alleles were found. Most of the amino acid substitutions occurred at putative positions in the peptide binding site. Inheritance of these sequences showed Mendelian segregation with one or two alleles per dog. Cluster analysis of the nucleotide and predicted amino acid sequences subdivided the canine DQB1 alleles into four major allelic groups. The number of nonsynonymous changes was higher than the number of synonymous changes in the putative antigen recognition sites suggestive of positive selection.

Amino Acid Sequence↗

DLA-DRB1 and DLA-DQB1 histocompatibility typing by PCR-SSCP and sequencing.

The dog has been an important model for solid organ and hematopoietic stem cell transplantation for over 30 years. Fundamental to the continuing usage of the model is the development of molecular-based histocompatibility typing of donors and recipients. Previous histocompatibility typing methods used in the dog have not been precise enough to identify dog leukocyte antigen (DLA)-matched unrelated dogs. This study was undertaken to begin the process of identifying DLA-matched unrelated dogs. In this study polymerase chain reaction-single-stranded conformational polymorphism is used to separate alleles thereby allowing sequenced-based typing of the two most polymorphic class II genes described to date in the dog DLA-DRB1 and DLA-DQB1.

Alleles↗

Allogeneic peripheral blood stem cell transplantation may be associated with a high risk of chronic graft-versus-host disease.

Chronic graft-versus-host disease (GVHD) is likely caused by donor T lymphocytes. Because unmodified blood stem cell grafts contain one log more T lymphocytes than unmodified marrow grafts, we evaluated the incidence of chronic GVHD in previously reported 37 blood stem cell recipients and 37 computer-matched historical control marrow recipients (Bensinger et al, Blood 88:2794, 1996). All patients have been followed until death, relapse, or occurrence of chronic GVHD or for a minimum of 2 years. In a univariable proportional hazards regression model, the relative risk of developing clinical chronic GVHD (includes clinical limited and clinical extensive disease) by 2 years posttransplant among the peripheral blood stem cell recipients compared with the marrow recipients was 2.22 (95% confidence interval, 1.04 to 4.74; P = .039). For clinical extensive chronic GVHD, the relative risk was 2.37 (95% confidence interval, 1.07 to 5. 29; P = .035). In multivariable analyses, considering also the covariables of patient age, patient cytomegalovirus serostatus, and donor cytomegalovirus serostatus, the relative risks of clinical chronic GVHD and clinical extensive chronic GVHD were also greater than 2 (P < .05). We conclude that the transplantation of unmanipulated filgrastim-mobilized blood stem cells may result in a relatively high incidence of chronic GVHD.

Chronic Disease↗

Efficient gene transfer in primitive CD34+/CD38lo human bone marrow cells reselected after long-term exposure to GALV-pseudotyped retroviral vector.

Successful retroviral gene transfer into human hematopoietic stem cells was demonstrated in preliminary clinical trials at low efficiency. We have shown previously that gene transfer into committed hematopoietic progenitor cells is more efficient using a gibbon ape leukemia virus (GALV)-pseudotyped retroviral vector instead of an amphotropic retroviral vector. Here, we have conducted a systematic study of human hematopoietic progenitor cells after extended transduction with a GALV-pseudotyped retroviral vector. CD34+/CD38lo Cells were transduced for 5 days and reselected according to phenotype after culture and analyzed for cell cycle status, long-term culture-initiating cell (LTC-IC) activity, and gene transfer. Reselection of rare, very primitive progenitor cells was successful. Equal to fresh CD34+/CD38lo cells, >90% of reselected CD34+/CD38lo cells were in G0/G1. CD34+/CD38lo reselection enriched for LTC-IC (10-fold), as compared to freshly isolated CD34+/CD38lo cells with excellent specificity (82.7% of total LTC-IC were recovered in the reselected CD34+/CD38lo population) and recovery (62% of initial LTC-IC number in CD34+/CD38lo cells were recovered in the reselected fraction after transduction). Gene transfer into primitive progenitor cells was efficient with 50.5% G418-resistant LTC-IC colonies and more than 40 copies of vector provirus detectable per 100 nuclei of CD34+/CD38lo cells. To our knowledge, this is the first systematic analysis of phenotype, function, and cell cycle demonstrating retroviral gene transfer into rare, very primitive human hematopoietic progenitor cells. The chosen strategy should be of considerable value for analyzing and improving gene therapy of the hematopoietic system.

ADP-ribosyl Cyclase↗

Marrow transplants from unrelated donors for treatment of Philadelphia chromosome-positive acute lymphoblastic leukemia.

Transplantation of marrow from unrelated donors was investigated in patients with Philadelphia chromosome-positive (Ph1+) acute lymphoblastic leukemia (ALL) who lacked a suitable family donor. Eighteen patients underwent transplantation at our center between 1988 and 1995. The median patient age was 25 years (range, 1.7 to 51 years). Seven patients were in first complete remission, 1 in second remission, 3 in first relapse, and the remaining 7 had more advanced or chemotherapy refractory leukemia at transplant. All patients were conditioned with cyclophosphamide and total body irradiation followed by marrow transplants from closely HLA-matched, unrelated volunteers. Posttransplant graft-versus-host disease (GVHD) prophylaxis included methotrexate with either cyclosporine or FK506. Graft failure was not observed. Severe (grades III-IV) GVHD appeared in 6 of 17 evaluable patients and chronic extensive GVHD in 7 of 13 patients at risk. Five patients had recurrent ALL after transplantation and another 4 died from causes other than leukemia. Six patients transplanted in first remission, 2 in first relapse, and 1 in second remission remain alive and leukemia-free at a median follow-up of 17 months (range, 9 to 73 months). The probability of leukemia-free survival at 2 years is 49% +/- 12%. These data indicate that unrelated donor marrow transplantation is an effective treatment option for patients with early stage Ph1+ ALL without a family match and suggest that in such patients an unrelated donor search should be initiated as soon as possible after diagnosis.

Adolescent↗

Transplantation of marrow cells from unrelated donors for treatment of high-risk acute leukemia: the effect of leukemic burden, donor HLA-matching, and marrow cell dose.

Transplantation of hematopoietic stem cells from an HLA-compatible unrelated volunteer is an option for patients with acute leukemia lacking a family match. However, criteria for patient and donor selection and the most effective transplant procedures, including the number of hematopoietic cells, remain to be defined. We tested factors influencing outcome of 174 patients with primary acute leukemia receiving non-T-cell depleted marrow from unrelated donors. Median patient age was 20 years (range, 0.5 to 54 years). A multivariable analysis found that leukemia in remission at the time of transplantation was associated with improved leukemia-free survival (relative risk [RR] of treatment failure: 0.5, confidence interval [CI]: 0.3 to 0.7), and presence of blasts in the peripheral blood, as opposed to marrow involvement only or isolated extramedullary relapse, was associated with impaired outcome (RR of treatment failure: 2.5, CI: 1.7 to 5.0). The use of donors with a limited HLA-mismatch was associated with decreased leukemic relapse (RR: 0.5, CI: 0.3 to 0.9) but no improvement in leukemia-free survival compared with HLA-matched unrelated donors. Transplantation of a marrow cell dose above the median value of 3.65 x 10(8)/kg was associated with faster neutrophil (RR: 1.5, CI: 1.1 to 2.0) and platelet (RR: 4.5, CI: 2.7 to 7.5) engraftment, and decreased incidence of severe acute graft-versus-host disease (RR: 0.6, CI: 0.4 to 0.9). In patients transplanted in remission, the use of a marrow cell dose above the median translated into less nonleukemic death (RR: 0.2, CI: 0.1 to 0.4) and better leukemia-free survival (RR of treatment failure: 0.3, CI: 0.2 to 0.6). Transplant in remission with a high dose of marrow cells was associated with the best outcome in both children and adults.

Acute Disease↗

Cyclosporine or cyclosporine plus methylprednisolone for prophylaxis of graft-versus-host disease: a prospective, randomized trial.

Patients with a lymphohematopoietic malignancy considered to be at high risk for posttransplant relapse were enrolled in a study to compare the use of cyclosporine (CSP) as a single agent with a combination of methylprednisolone (MP) and CSP for graft-versus-host disease (GVHD) prophylaxis after marrow transplantation from an HLA-identical sibling donor. Sixty patients were randomized to receive CSP only and 62 were randomized to receive CSP plus MP. Daily CSP was started on day -1 (5 mg/kg/d intravenously) and administered at gradually reduced doses until day 180. MP was started on day 7 at 0.5 mg/kg/d, increased to 1.0 mg/kg/d on day 15, started on a taper schedule on day 29, and discontinued on day 72. All 104 evaluable patients (surviving > or =28 days) had sustained engraftment. The incidence rates of grades II-IV acute GVHD were 73% and 60% for patients receiving CSP and CSP plus MP, respectively (P = .01). No difference was seen for grades III-IV GVHD. However, chronic GVHD occurred somewhat more frequently in patients receiving CSP plus MP (44%) than in patients receiving only CSP (21%; P = .02). The incidence of de novo chronic GVHD was marginally higher in patients receiving CSP plus MP (P = .08). No significant differences in the risk of infections were observed. There was a suggestion that the risk of relapse was lower in patients receiving CSP plus MP (P = .10) and, although the overall survival in the two groups was not different (P = .44), there was a slight advantage in favor of CSP plus MP-treated patients for relapse-free survival (P = .07). These results suggest that prophylactic MP, when combined with CSP, has only limited efficacy in acute GVHD prevention and may increase the probability of chronic GVHD.

Adolescent↗