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H Joachim Deeg

Publications and source records attributed to H Joachim Deeg.

At least 19 recordsLinked to original sources

Primary myelofibrosis (PMF), post polycythemia vera myelofibrosis (post-PV MF), post essential thrombocythemia myelofibrosis (post-ET MF), blast phase PMF (PMF-BP): Consensus on terminology by the international working group for myelofibrosis research and treatment (IWG-MRT).

The International Working Group for Myelofibrosis Research and Treatment (IWG-MRT) is comprised of hematologists, hematopathologists, and laboratory scientists and its main goal is to provide a forum for scientific exchange and collaboration. During its first general meeting in April 2006, the IWG-MRT established uniform treatment response criteria for chronic idiopathic myelofibrosis (CIMF); also known as agnogenic myeloid metaplasia (AMM), myelofibrosis with myeloid metaplasia (MMM), and many other names in the hematologic literature. This document summarizes the proceedings from the second meeting of the IWG-MRT, in November 2006, where the group discussed and agreed to standardize the nomenclature referring to CIMF: (i) the term primary myelofibrosis (PMF) was chosen over several other designations including CIMF, AMM, and MMM, (ii) myelofibrosis that develops in the setting of either polycythemia vera (PV) or essential thrombocythemia (ET) will be referred to as post-PV MF and post-ET MF, respectively, and (iii) "leukemic" transformation will be recognized as blast phase disease (PMF-BP, post-PV/ET MF in blast phase).

Blast Crisis↗

Reduced expression of inducible gelatinase B/matrix metalloproteinase-9 in monocytes from patients with myelodysplastic syndrome: Correlation of inducible levels with the percentage of cytogenetically marked cells and with marrow cellularity.

Regulatory molecules produced by stromal cells are often membrane bound until cleaved by matrix metalloproteinases (MMPs); cleavage can either activate or inactivate regulatory functions. We report here that marrow stromal cells induce the expression of MMP-9 in monocytes. Induction was contact independent and could be reproduced with recombinant MCP-1/CCL2, whereas IL-6, M-CSF, G-CSF, GM-CSF, IL-8/CXCL8, SDF-1/CXCL12, and MGSA/CXCL1 did not have this effect. Stroma-induced levels of MMP-9 in the monocyte population from healthy donors were relatively consistent, whereas induced levels varied significantly (P < .001) in the CD14+ population from 27 patients with myelodysplastic syndrome (MDS). In patients with a clonal chromosomal marker, the level of inducible MMP-9 expression in the monocyte population was inversely correlated with the percentage of marker-positive cells (n = 11, P = .01), suggesting that the ability to induce MMP-9 may be compromised in clonally derived monocytes. The inducible levels of MMP-9 were also inversely correlated with marrow cellularity observed in biopsies from MDS patients (P < .001). We conclude that monocytes can express MMP-9 in response to stromal factors and that this response may be significantly decreased in MDS-derived monocytes.

Adult↗

Hematopoietic cell transplantation for chronic myeloproliferative disorders.

Myeloproliferative disorders, including chronic idiopathic myelofibrosis (CIMF), polycythemia vera (PV), essential thrombocythemia (ET), and chronic myelomonocytic leukemia (CMML), are clonal diseases of hematopoietic stem or precursor cells. They often show a protracted or chronic course; however, all have the potential of progressing to severe marrow failure, associated with myelofibrosis, or of transforming into acute leukemia. At that point, hematopoietic cell transplantation (HCT) is the only current treatment strategy with curative potential. If transplantation is being considered and a suitable donor is available, HCT should be carried out before leukemic transformation has occurred, as the success rate of HCT declines steeply in patients who have evolved to leukemia. As many as 75-80% of patients with the original diagnoses of PV or ET, about 65-70% with CIMF, and 45% of patients with CMML are surviving long term after allogeneic HCT using conventional transplant regimens, with follow-up now extending to 15 years. Results with HLA-identical related and unrelated donors are comparable. Major risk factors for the outcome after HCT are the disease stage, the presence of comorbid conditions, and patient age. The development of reduced-intensity conditioning regimens has allowed for successful HCT even for older patients and patients with comorbid conditions. Studies on disease mechanisms, including the recent characterization of an activating mutation in JAK2, may provide additional prognostic guidance and are likely to lead to the development of novel treatment strategies, which will require continuous reassessment as to the optimum timing of HCT.

Age Factors↗

A phase 2/3 multicenter randomized clinical trial of ABX-CBL versus ATG as secondary therapy for steroid-resistant acute graft-versus-host disease.

Treatment for steroid-resistant acute graft-versus-host disease (GVHD) has had limited success. ABX-CBL is a hybridoma-generated murine IgM monoclonal antibody against the CD147 antigen, weakly expressed on human leukocytes and up-regulated on activated lymphocytes. A prospective, multicenter, open-label, randomized clinical trial comparing ABX-CBL to antithymocyte globulin (ATG) for treatment of steroid-resistant acute GVHD was conducted in 95 patients at 21 centers. Forty-eight patients received ABX-CBL daily for 14 consecutive days followed by up to 6 weeks of ABX-CBL twice weekly. Forty-seven patients received equine ATG, 30 mg/kg every other day for a total of 6 doses with additional courses as needed. By day 180, overall improvement was similar in the patients receiving ABX-CBL and in those receiving ATG (56% versus 57%, P = .91). Patient survival at 18 months was less favorable on ABX-CBL than on ATG (35% versus 45%), with the 95% confidence interval ruling out that ABX-CBL provides at least a 10.4% improvement. Data from this trial suggest that ABX-CBL does not offer an improvement over ATG in the treatment of acute steroid-resistant GVHD. This prospective, multicenter, randomized clinical trial for steroid-resistant acute GVHD serves as a model for future evaluation of new agents.

Adolescent↗

Optimization of conditioning for marrow transplantation from unrelated donors for patients with aplastic anemia after failure of immunosuppressive therapy.

In 87 patients with aplastic anemia who failed to respond to immunosuppressive treatment, we determined the minimal dose of total body irradiation (TBI) required when added to antithymocyte globulin (ATG, 30 mg/kg x 3) plus cyclophosphamide (CY, 50 mg/kg x 4) to achieve engraftment of unrelated donor marrow. TBI was started at 3 x 200 cGy, to be escalated or deescalated in steps of 200 cGy depending on graft failure or toxicity. Patients were aged 1.3 to 53.5 years (median, 18.6 years). The interval from diagnosis to transplantation was 3 to 328 months (median, 14.6 months). Donors were HLA-A, -B, -C, -DR, and -DQ identical for 62 patients, and nonidentical for 1 to 3 HLA loci at the antigen or allele level for 25. The dose-limiting toxicity was diffuse pulmonary injury. The optimum TBI dose was 1 x 200 cGy. Nine patients did not tolerate ATG and were prepared with CY + TBI. Graft failure occurred in 5% of patients. With a median follow-up of 7 years, 38 (61%) of 62 HLA-identical, and 10 (40%) of 25 HLA-nonidentical transplant recipients are surviving. The highest survival rate with HLA-identical transplants was observed at 200 cGy TBI. Thus, low-dose TBI + CY + ATG conditioning resulted in excellent outcome of unrelated transplants in patients with aplastic anemia who had received multiple transfusions.

Adolescent↗

International Working Group (IWG) consensus criteria for treatment response in myelofibrosis with myeloid metaplasia, for the IWG for Myelofibrosis Research and Treatment (IWG-MRT).

Myelofibrosis with myeloid metaplasia (MMM) is a clinicopathologic entity characterized by stem cell-derived clonal myeloproliferation, ineffective erythropoiesis, extramedullary hematopoiesis, and bone marrow fibrosis and osteosclerosis. Patients with MMM have shortened survival and their quality of life is compromised by progressive anemia, marked hepatosplenomegaly, and severe constitutional symptoms including cachexia. After decades of frustration with ineffective therapy, patients are now being served by promising treatment approaches that include allogeneic hematopoietic stem cell transplantation and immunomodulatory drugs. Recent information regarding disease pathogenesis, including a contribution to the myeloproliferative disorder phenotype by a gain-of-function JAK2 mutation (JAK2(V617F)), has revived the prospect of targeted therapeutics as well as molecular monitoring of treatment response. Such progress calls for standardization of response criteria to accurately assess the value of new treatment modalities, to allow accurate comparison between studies, and to ensure that the definition of response reflects meaningful health outcome. Accordingly, an international panel of experts recently convened and delineated 3 response categories: complete remission (CR), partial remission (PR), and clinical improvement (CI). Bone marrow histologic and hematologic remissions characterize CR and CR/PR, respectively. The panel agreed that the CI response category is applicable only to patients with moderate to severe cytopenia or splenomegaly.

Disease Progression↗

Nonmelanoma skin and mucosal cancers after hematopoietic cell transplantation.

PURPOSE: To evaluate the incidence of and risk factors for basal cell carcinoma (BCC) and squamous cell carcinoma (SCC) in survivors of hematopoietic cell transplantation (HCT). PATIENTS AND METHODS: The impact of patient-, disease-, treatment-, and toxicity-related factors on risk of BCC and SCC was determined in a retrospective cohort study of 4,810 patients who received allogeneic HCT and who survived for at least 100 days. RESULTS: Among allogeneic HCT recipients, 237 developed at least one skin or mucosal cancer (BCC, n = 158; SCC, n = 95). Twenty-year cumulative incidences of BCC and SCC were 6.5% and 3.4%, respectively. Total-body irradiation was a significant risk factor for BCC (P = .003), most strongly among patients younger than 18 years old at HCT (P = .02, interaction). Light-skinned patients had an increased risk of BCC (P = .01). Acute graft-versus-host disease (GVHD) increased the risk of SCC (P = .02), whereas chronic GVHD increased the risk of both BCC (P = .01) and SCC (P < .001). CONCLUSION: This analysis suggests that immutable factors, such as age and complexion, have a significant impact on BCC and SCC. However, specific treatment (radiotherapy) and transplantation complications (GVHD) may modify that risk. These additional risk factors suggest the contribution of immunologic mechanism DNA and tissue repair in the development of BCC and SCC. We confirm previous reports that exposure to ionizing radiation increases the risk of BCC but not SCC. Survivors of HCT should be monitored for the development of BCC and SCC and use preventive strategies.

Acute Disease↗

Reduced incidence of acute and chronic graft-versus-host disease with the addition of thymoglobulin to a targeted busulfan/cyclophosphamide regimen.

To reduce the incidence of graft-versus-host disease (GVHD), we added Thymoglobulin (THY) to dose-adjusted oral busulfan plus cyclophosphamide (targeted BUCY). The starting dose of THY was 4.5 mg/kg given over days -3, -2, and -1, escalated in steps of 1.5 mg/kg in cohorts of 15 evaluable patients. Escalation was dependent on acute GVHD incidence and Epstein-Barr virus reactivation. Fifty-six patients with myelodysplastic syndrome and other myeloid disorders underwent transplantation with peripheral blood progenitor cells from related (n=30) or unrelated (n=26) donors. All but 2 patients achieved engraftment, and 56% survived in remission beyond 1 year. The incidence of acute GVHD was 50%, and that of chronic GVHD was 34%. The highest THY dose was 6.0 mg/kg, a dose at which 1 patient experienced Epstein-Barr virus reactivation. Nine patients did not receive the prescribed THY dose. Results were comparable for related and unrelated transplants and for patients given 4.5 or 6.0 mg/kg THY. Among 27 myelodysplastic syndrome patients (14 with related and 13 with unrelated donors) who underwent transplantation concurrently with targeted BUCY without THY, the incidence of acute and chronic GVHD was 82%. Thus, THY 4.5 to 6.0 mg/kg seemed beneficial for GVHD prevention in BUCY-conditioned patients who underwent transplantation with peripheral blood progenitor cells, although relapse-free survival did not differ significantly from that in comparable historical controls not given THY.

Acute Disease↗

Evidence of donor-derived hematologic malignancies after hematopoietic stem cell transplantation.

Increasing the upper age limit for recipients of hematopoietic stem cell transplantation (HCT) naturally has also increased the age of the corresponding related donor population. Because aging is a risk factor for malignancies, the risk of transferring preexisting malignant or premalignant hemopoietic clones in the process of HCT might be expected to increase as well. Anecdotal clinical cases of malignancies derived from donor cells in patients undergoing HCT have been published since 1971. In this article, we report 12 new cases that fit 2 different categories: (1) cases in which clones with characteristics of lymphohemopoietic malignancies were transferred from the donors to the recipients and (2) cases in which the malignant clone evolved from healthy donor cells once transplanted into the recipient. Donors in the first group were significantly older than donors in the second group. A more systematic examination of the prevalence and biology of donor malignancies would merit study.

Adult↗

Regression of myelofibrosis and osteosclerosis following hematopoietic cell transplantation assessed by magnetic resonance imaging and histologic grading.

Myelofibrosis is a reactive, often inhomogeneous process in the marrow cavity, and sampling errors on biopsies obtained to diagnose and monitor the course of myelofibrosis have been a constant problem in hematopathology. We investigated the potential utility of magnetic resonance imaging (MRI) of the lumbar spine, pelvis, and femora as a diagnostic and monitoring technique for assessment of myelofibrosis. Findings on serial marrow biopsies were correlated with T1-weighted spin-echo and short inversion time inversion recovery (STIR) images in patients with chronic idiopathic myelofibrosis or myelofibrosis developing from polycythemia vera or essential thrombocythemia who underwent hematopoietic cell transplantation (HCT). Thirty-five patients were studied before HCT; 11 were followed for 3 months and 10 patients for >/=1 year after HCT with sequential marrow biopsies and MRI studies. MRI allowed direct visualization of the biopsy sites and correlation of histologic and MRI findings. MRI also provided assessment of the extent and degree of myelofibrosis in a large volume of the skeletal marrow. There was good correlation between biopsy results and MRI findings at specific biopsy sites and between successful HCT and resolution of fibrosis and osteosclerosis as determined by MRI. We conclude that in patients with myelofibrosis, MRI of the skeleton provides a comprehensive assessment of the pattern and extent of fibrosis and allows for correlation with biopsy findings. In patients undergoing HCT, MRI accurately reflects response or progression of marrow disease.

Adult↗

Hemopoietic cell transplantation as curative therapy of myelodysplastic syndromes and myeloproliferative disorders.

Hemopoietic cell transplantation (HCT) is presently the only therapy with curative potential for myelodysplastic syndromes (MDS) and myeloproliferative disorders (MPD). Among patients with less advanced MDS, 3-year survival figures of 65-80% are achieved with human leukocyte antigen (HLA)-identical related and unrelated donors. The probability of relapse is less than 5%. Among patients with advanced MDS (> or = 5% marrow blasts), about 35-50% of patients transplanted from related donors, and 25-40% transplanted from unrelated donors are surviving in remission beyond 3 years. The incidence of post-transplant relapse is 10-35%. Criteria of the International Prognostic Scoring System (IPSS) predict relapse and survival following HCT. In patients with myelofibrosis, allogeneic transplantation is successful in 50-80%, if performed during the fibrosis stage. The success rate declines to 25-40%, if the transplant is performed after leukemic transformation has occurred. About 40% of patients with chronic myelomonocytic leukemia survive in remission after transplantation. Results obtained with low/reduced-intensity conditioning regimens are encouraging because of a low incidence of early mortality. However, retrospective analyses comparing low intensity and conventional conditioning regimens have yielded inconclusive results regarding long-term outcome. Co-morbid conditions present at the time of transplantation have a major negative effect on transplant outcome. Controlled prospective trials are needed.

Hematopoietic Stem Cell Transplantation↗

The clinical spectrum of acute graft-versus-host disease.

Acute graft-versus-host disease (GVHD), initiated by the reaction of donor T lymphocytes against nonshared recipient antigens, typically leads to a clinical syndrome characterized by cutaneous eruptions and intestinal and hepatic dysfunction. These three organ systems are considered in the clinical grading of acute GVHD. However, other targets may be involved. With conventional transplant conditioning regimens and in vivo prophylaxis, GVHD becomes clinically manifest within 2 to 4 weeks. With reduced-intensity conditioning, the onset of acute GVHD may be delayed until 2 to 3 months after transplantation. Hyperacute GVHD may occur within a week of transplantation after severely human leukocyte antigen (HLA)-mismatched transplants or transplants without GVHD prophylaxis. There is no reliable laboratory test for acute GVHD, and the diagnosis is based on clinical assessment.

Acute Disease↗

Transplant strategies for patients with myelodysplastic syndromes.

PURPOSE OF REVIEW: Hematopoietic cell transplantation offers potentially curative therapy for patients with myelodysplastic syndrome. The median patient age at diagnosis, however, is about 70 years, which has limited the application of conventional hematopoietic cell transplantation. In addition, the optimum timing of transplantation remains controversial. RECENT FINDINGS: The omission of high-dose total body irradiation, dose adjustments of busulfan to achieve defined target levels, the use of fludarabine instead of cyclophosphamide as an immune suppressive agent, the addition of melphalan, and the incorporation of antithymocyte globulin appear to have contributed to better tolerability of new transplant regimens. Reduced-intensity conditioning regimens are associated with a decrease in nonrelapse mortality and allow for successful hematopoietic cell transplantation even in patients 60-70 years of age. Among patients with less advanced/low-risk myelodysplastic syndrome (< 5% marrow myeloblasts), 3-year survivals of 65-75% are achievable with human leucocyte antigen-matched related and unrelated donors. Among patients with more advanced/high-risk disease, the probability of posttransplant relapse ranges from 10 to 40%, and, as a result, relapse-free survival is inferior. In addition to disease stage, comorbid conditions, pretransplant chemotherapy, conditioning regimen and source of stem cells, affect transplant outcome. SUMMARY: Modifications of transplant conditioning regimens have reduced transplant-related mortality, allowing successful hematopoietic cell transplantation in increasingly older patients. Graft versus host disease, both acute and chronic, and posttransplant relapse remain challenging problems.

Aged↗

NF-kappaB and FLIP in arsenic trioxide (ATO)-induced apoptosis in myelodysplastic syndromes (MDSs).

Tumor necrosis factor (TNF)-alpha, a potent stimulus of nuclear factor-kappaB (NF-kappaB), is up-regulated in myelodysplastic syndrome (MDS). Here, we show that bone marrow mononuclear cells (BMMCs) and purified CD34+ cells from patients with low-grade/early-stage MDS (refractory anemia/refractory anemia with ring sideroblasts [RA/RARS]) have low levels of NF-kappaB activity in nuclear extracts comparable with normal marrow, while patients with RA with excess blasts (RAEB) show significantly increased levels of activity (P = .008). Exogenous TNF-alpha enhanced NF-kappaB nuclear translocation in MDS BMMCs above baseline levels. Treatment with arsenic trioxide (ATO; 2-200 microM) inhibited NF-kappaB activity in normal marrow, primary MDS, and ML1 cells, even in the presence of exogenous TNF-alpha (20 ng/mL), and down-regulated NF-kappaB-dependent antiapoptotic proteins, B-cell leukemia XL (Bcl-XL), Bcl-2, X-linked inhibitor of apoptosis (XIAP), and Fas-associated death domain (FADD)-like interleukin-1beta-converting enzyme (FLICE) inhibitory protein (FLIP), leading to apoptosis. However, overexpression of FLIP resulted in increased NF-kappaB activity and rendered ML1 cells resistant to ATO-induced apoptosis. These data are consistent with the observed up-regulation of FLIP and resistance to apoptosis with advanced MDS, where ATO as a single agent may show only limited efficacy. However, the data also suggest that combinations of ATO with agents that interfere with other pathways, such as FLIP autoamplification via NF-kappaB, may have considerable therapeutic activity.

Anti-Inflammatory Agents, Non-Steroidal↗

Ablative allogeneic hematopoietic cell transplantation in adults 60 years of age and older.

PURPOSE: To evaluate outcomes of ablative allogeneic hematopoietic cell transplantation (HCT) in older patients with hematologic malignancies. PATIENTS AND METHODS: We treated 52 patients from 1979 to 2002 with a median age of 62.8 years (range, 60.1 to 67.8 years) using ablative preparative regimens followed by allogeneic HCT from sibling donors. Diagnoses included myelodysplastic syndrome (MDS; n = 35), chronic myeloid leukemia (CML; n = 8), acute myeloid leukemia (AML; n = 6), and other (n = 3). Conditioning regimens included cyclophosphamide (CY) and busulfan (BU) (67%), total-body irradiation and CY (21%), BU-fludarabine (10%), and CY (2%). RESULTS: Eighteen (35%) of 52 patients are alive at a median of 4.6 years (range, 0.8 to 9.1 years) after transplantation. Median overall survival (OS) and progression-free survival were 300 and 218 days, respectively. Three-year OS and relapse rates are estimated to be 34% and 24%, respectively. Nonrelapse mortality (NRM) rates at 100 days and 3 years are estimated to be 27% and 43%, respectively. Grade 3 to 4 acute graft-versus-host disease (GVHD) occurred in 20% of patients, and chronic extensive GVHD was described in 53% of patients. Fourteen (40%) of 35 patients with MDS are alive at a median of 2.8 years (range, 0.8 to 8.2 years). Four of six patients with CML in chronic or accelerated phase are alive at a median of 6.9 years (range, 4.1 to 9.1 years) after transplantation. None of the patients with AML, CML in blast crisis, or other diagnoses have survived. Patients who underwent transplantation after 1993 had improved survival. CONCLUSION: These data suggest that allogeneic HCT is feasible in selected patients > or = 60 years of age, although novel methods to reduce NRM while maintaining efficacy are needed.

Age Factors↗