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T Büchner

Publications and source records attributed to T Büchner.

At least 73 records · Page 4Linked to original sources

[Oral manifestations of acute leukemia].

It is well known that non-specific mucosal alterations can occur during diseases of the leukopoetic system. In most cases they are an early sign and therefore provide the opportunity for timely diagnosis of the disease. In this clinical study type and frequency of oral lesions, gingival and periodontal indices, and hematologic status were examined at the time of diagnosis of the different types of acute leukemia. The results showed a significant difference in the frequency of oral lesions between acute myelogenous and acute lymphoblastic forms, irrespective of age and sex of the patient. There was no correlation between type and frequency of lesions and hematologic status.

Adult↗

S-HAM induction chemotherapy with or without GM-CSF in patients with high-risk myelodysplastic syndromes.

Thirty-one adult patients with high-risk myelodysplastic syndromes (MDS) were enrolled in a prospective randomized double-blind placebo-controlled trial evaluating the efficacy of sequential high-dose Ara C/mitoxantrone chemotherapy with or without GM-CSF. GM-CSF or placebo was given subcutaneously once daily at a dose of 250 micrograms/m2 starting 48 h prior to chemotherapy and continued until neutrophil recovery. This design allowed us to investigate the role of GM-CSF as a priming factor for the leukemic clone, as well as its effect on the recovery of normal hematopoiesis. Twenty-eight patients are currently evaluable for response. The patients reached a complete remission (36%), eight patients had persistent MDS (29%), and ten patients died within 6 weeks after the onset of treatment (early death). Infectious complications during cytopenia were the major cause of death (8/10). Median time to complete hematologic recovery (neutrophils > 500/microliter and platelets 20,000/microliter) and time to neutrophil recovery above 1500/microliter was 29 and 35 days, respectively. Median remission duration was 190 days (6.4 months). Analysis of prognostic subgroups showed a low CR rate (25%) and a high early-death rate (44%) in patients > 55 years of age, suggesting that the intensified treatment approach should be limited to younger patients. No data concerning the influence of GM-CSF on response to chemotherapy or duration of neutropenia are presently available.

Adult↗

Differential effect of GM-CSF pretreatment on intracellular Ara-C metabolism in normal bone marrow mononuclear cells vs acute myeloid leukemia (AML) blasts.

The effect of recombinant human granulocyte-macrophage colony-stimulating factor (GM-CSF) on the intracellular metabolism of cytosine arabinoside (Ara-C) was comparatively analyzed in normal bone marrow mononuclear cells (NBMMC) from eight healthy volunteers and in leukemic blasts from 50 patients with acute myeloid leukemia (AML). Pretreatment with GM-CSF (100 U/ml) for 48 h resulted in a significant enhancement of DNA synthesis in both cell types: 21 of 35 AML specimens were found to be responsive to GM-CSF as defined by an increase of 3H-TdR incorporation into the DNA > 1.5-fold while NBMMC from normal donors were responsive in all cases. In GM-CSF responsive AML blasts, overall DNA polymerase and DNA polymerase alpha activity increased from a median of 84.4 to 96.1 and from 3.45 to 5.2 pmol/min x mg as compared to a median of 96.7 to 189.9 and 1.2 to 2.2 pmol/min x mg in NBMMC (P < 0.05). Median Ara-C-mediated inhibition of DNA synthesis was significantly more effective in AML blasts as compared to NBMMC (76.5 vs 55.0% at 0.05 microM and 99.0 vs 96.0% at 5.0 microM Ara-C, P < 0.01) but was not influenced by GM-CSF pretreatment. Similarly, intracellular Ara-CTP levels were higher in AML blasts as compared to NBMMC (median of 46.9 vs 18.7 at 1 microM, 167.8 vs 48.0 at 10 microM and 337.5 vs 59.5 ng/10(7) cells at 100 microM extracellular Ara-C, P < 0.01) but showed no enhancement in the presence of GM-CSF. Median deoxycytidine (DCK) and thymidine kinase (TK) activity were only slightly increased in AML blasts after GM-CSF priming. In contrast, NBMMC revealed a significant increase in TK activity after GM-CSF pretreatment (from a median of 1.9 to 3.6 pmol/min x mg, P = 0.039). At low; intermediate and high extracellular Ara-C concentrations GM-CSF pretreatment resulted in a significant enhancement of the 3H-Ara-C incorporation into the DNA in both GM-CSF responsive AML blasts and NBMMC (median of 1.3 to 2.1- and 1.4 to 1.6-fold, P < 0.05). GM-CSF non-responsive AML blasts showed no change in 3H-Ara-C incorporation into the DNA in response to GM-CSF at low Ara-C concentrations but significant increases at intermediate and high extracellular Ara-C concentrations (median increases of 1.63-fold at 1.06 microM with P = 0.01 and 1.37-fold at 10 microM extracellular Ara-C with P = 0.0+005). NBMMC revealed significantly lower GM-CSF-induced increases of the 3H-Ara-C incorporation into the DNA as compared to the effect of GM-CSF priming on DNA synthesis (median increases of 1.4 to 1.7-fold vs 2.6-fold, P < 0.05). These data reveal a different effect of GM-CSF priming on the metabolism of Ara-C in normal vs leukemic cells which may cause a preferential increase in the antileukemic cytotoxicity of Ara-C in the presence of GM-CSF.

Adult↗

The significance of trisomy 8 in de novo acute myeloid leukaemia: the accompanying chromosome aberrations determine the prognosis. German AML Cooperative Study Group.

Trisomy 8 is the most frequent numerical chromosome aberration in acute myeloid leukaemia (AML). It occurs either as the sole anomaly or together with other clonal chromosome aberrations. We investigated whether accompanying chromosome anomalies influence the clinical outcome in patients with trisomy 8 and de novo AML. Since 1986, in 713 AML cases treated according to the protocols of the German AMLCG trials, chromosome analyses have been successfully performed. The overall incidence of trisomy 8 was 7.6%. Complete clinical follow-up data were available for 51 patients who were divided into three different categories: group 1: trisomy 8 as the sole cytogenetic anomaly (n = 20); group 2: trisomy 8 in addition to favourable chromosome aberrations (t(8;21)(q22;q22), t(15;17)(q22;q21), inv(16)(p13q22)) (n = 10); and group 3: trisomy 8 accompanied by other anomalies, in most cases of complex type (n = 21). Complete remission (CR) rates were 70%, 90% and 67% for groups 1, 2 and 3, respectively. Event-free survival (EFS) at 3 years differed significantly between patients with trisomy 8 only (37.5%), patients with trisomy 8 in combination with favourable aberrations (55.0%) and patients with trisomy 8 and other accompanying anomalies, mostly complex chromosome aberrations (9.0%) (group 1 v group 2: P=0.12; group 1 v group 3: P=0.005; group 2 v group 3: P=0.05). In this study patients with +8 as the sole cytogenetic anomaly had an intermediate prognosis, patients with +8 in addition to favourable chromosome aberrations maintained a good clinical outcome, and patients with +8 in combination with other abnormalities showed the worst prognosis.

Acute Disease↗

International Conference for the Development of a Consensus on the Management and Prevention of Severe Candidal Infections.

Because of the rapidly increasing incidence of serious candidal infections, a consensus conference of 22 investigators from the United States, Europe, and Japan was held to discuss strategies for the prevention and treatment of deep-organ infections caused by Candida species. Commonly asked questions concerning the management of candidal infections were selected for discussion by the participating investigators. Possible answers to the questions were developed by the investigators, who then voted anonymously for their preferences. In certain instances, unanimity or a strong consensus was the result. In all cases, the full spectrum of responses was recorded and is presented in this report. The forms of candidal infection addressed included candidemia, candiduria, hepatosplenic candidiasis (chronic systemic candidiasis), candidal endophthalmitis, and candidal peritonitis. Prevention and treatment strategies were considered for patients who have undergone surgery, for neutropenic and nonneutropenic patients, and for patients who have undergone bone marrow and solid organ transplantation. The therapeutic roles of amphotericin B (standard and lipid formulations) and the azoles were considered.

Animals↗

Treatment of adult acute leukemia.

In 1996 progress has been made toward a better understanding of acute leukemias, their biology, the effects of different intensity or subtype-specific chemotherapy, and the contribution of bone marrow transplantation. In acute lymphoblastic leukemia, high-dose cytarabine in induction and in postremission treatment improves the cure rate, whereas dose reduction of daunorubicin in older patients worsens response and increases mortality. After acute promyelocytic leukemia has been successfully treated by retinoids, another subtype-specific chemotherapy containing high-dose methotrexate has overcome the primarily poor prognosis of B-cell acute lymphoblastic leukemia. The leukemic stem cell of acute myeloid leukemia representing minimal residual disease, producing disease progression in the patients, and initiating long-term growth in cultures or immunodeficient mice appears as a primitive multipotent cell. Leukemic transformation is reflected either by the specific balanced chromosome translocations or by chromosome deletions or losses. They are associated with histories of cytotoxic drugs such as epipodophylotoxins and anthracyclines or alkylating agents. Alternatively, both kinds of aberrations develop spontaneously with ethnic differences in special subtypes. Cytogenetics also determine favorable and unfavorable prognosis both for chemotherapy and bone marrow transplantation. In acute lymphoblastic leukemia high-risk and nonstandard-risk patients seem to benefit from allogeneic transplantation, whereas in acute myeloid leukemia there is no adequate basis for risk-adapted stratification between treatment modalities. New prospects lie in a more successful use of the effects of treatment intensification possibly supported by autologous blood stem cell transplantation. On the basis of standardized treatment, future clinical research can address the role of biologic features of the individual leukemia such as specific chromosome aberrations, fusion genes, expression of oncogenes, and monitoring of minimal residual disease.

Acute Disease↗

Decrease in arterial oxygen partial pressure within the first 24 h of rhGM-CSF administration in AML patients.

GM-CSF may induce pulmonary complications, such as dyspnea with temporary decreases in oxygen saturation described as first dose effect for higher dosages of intravenous rhGM-CSF. This study investigated possible pulmonary disturbances in adult de novo AML patients receiving yeast rhGM-CSF 24 h prior to chemotherapy under phase II/III conditions. Eighteen patients were monitored for 22 treatment episodes. GM-CSF was given s.c. 1 q.d., 2 q.d. or continuously i.v. at 250 micrograms/m2/d 24 h prior to induction chemotherapy (TAD9, n = 18) and consolidation (TAD9, n = 4). Spirometry, bodyplethysmography, single breath-diffusion capacity (DLCO) and arterial blood gas analyses were obtained prior to GM-CSF, and repeated after 24 h. Pulse oxymetric oxygen saturation (saO2) was registered continuously for the first 16 h within day 1 of rhGM-CSF treatment. Patients were aged 21-75 years. The saO2 monitoring did not reveal any first dose effect. PaO2 values decreased from 78.9 mmHg before GM-CSF to 72.8 mmHg after 24 h (p < 0.01, maximum shift 15 mmHg). PaO2 shifts occurred mainly with pre-existing lowered paO2, but otherwise were independent of age, the route of GM-CSF administration, leukocyte levels, or increase of leukocytes with GM-CSF. Increases in AaDO2 reflected the paO2 shifts (p < 0.05). No dyspnea corresponded to these changes. DLCO values did not decrease significantly after 24 h. Summarily, contemporary dosage of yeast rhGM-CSF avoids short-term oxygen desaturations, but leads to clinically benign impairment in oxygen tension, based on ventilation/perfusion mismatches. This should be taken into account for patients starting at subnormal paO2.

Adult↗

Hematopoietic growth factors in acute myeloid leukemia: supportive and priming effects.

Hematopoietic growth factors (GFs) are administered to patients who have acute myeloid leukemia (AML) in order to overcome two limitations of chemotherapy: (I) myelotoxicity, and (2) the chemoresistance of minimal residual disease. GFs have been used after chemotherapy in 11 clinical studies, 8 on older age or otherwise high-risk AML. The GFs used were granulocyte-macrophage colony-stimulating factor (GM-CSF) in 7, G-CSF in three and macrophage-CSF in one of the studies. Beneficial effects could be shown on the duration of neutropenia in 8 studies, frequency of infections or fever in 4 studies, mortality or survival in 2 studies and remission rate in 1 study. The benefits in remissions and survival were all found among high-risk patients. One study in younger patients found disadvantages in the remission rate and event-free survival, whereas there was no adverse effect of GF on therapy resistance, leukemic regrowth, or disease-free survival in the other studies. GF priming strategies are based on their stimulation of AML blasts in vitro, their modulation of cellular cytarabine (ARA-C) metabolism and enhancement of clonogenic cell kill by ARA-C. Protective effects of GF against clonogenic cell kill or apoptosis were also described. There are data from 10 clinical studies using GFs before or simultaneously with chemotherapy. One study showed significance, two others a tendency to longer disease-free survival, and two studies showed a trend toward more remissions. A disadvantage in the remission rate and survival was found in one study and prolonged thrombocytopenia in two studies. Nine of ten studies did not find evidence for an adverse effect of GF priming on the course of the disease. In most studies, GF priming was only administered in one or two chemotherapy courses. One study giving four to five courses found a reduction in relapses during the first 6 months. In conclusion, a supportive use of GF may have a place in high-risk, but not standard-risk AML. GF priming approaches may not have been adequately investigated and an extension of this strategy to more treatment courses now appears more promising. Based on the clinical data available, all administration of GF in AML should be regarded as investigational.

Acute Disease↗

Improved outcome in adult B-cell acute lymphoblastic leukemia.

A total of 68 adult patients with B-cell acute lymphoblastic leukemia (B-ALL) were treated in three consecutive adult multicenter ALL studies. The diagnosis of B-ALL was confirmed by L3 morphology and/or by surface immunoglobulin (Slg) expression with > 25% blast cell infiltration in the bone marrow (BM). They were characterized by male predominance (78%) and a median age of 34 years (15 to 65 y) with only 9% adolescents (15 to 20 y), but 28% elderly patients (50 to 65 y). The patients received either a conventional (N = 9) ALL treatment regimen (ALL study 01/81) or protocols adapted from childhood B-ALL with six short, intensive 5-day cycles, alternately A and B. In study B-NHL83 (N = 24) cycle A consisted of fractionated doses of cyclophosphamide 200 mg/m2 for 5 days, intermediate-dose methotrexate (IdM) 500 mg/m2 (24 hours), in addition to cytarabine (AraC), teniposide (VM26) and prednisone. Cycle B was similar except that AraC and VM26 were replaced by doxorubicin. Major changes in study B-NHL86 (N = 35) were replacement of cyclophosphamide by ifosphamide 800 mg/m2 for 5 days, an increase of IdM to high-dose, 1,500 mg/m2 (HdM) and the addition of vincristine. A cytoreductive pretreatment with cyclophosphamide 200 mg/m2, and prednisone 60 mg/m2, each for 5 days was recommended in study B-NHL83 for patients with high white blood cell (WBC) count (> 2,500/m2) or large tumor burden and was obligatory for all patients in study B-NHL86. Central nervous system (CNS) prophylaxis/treatment consisted of intrathecal methotrexate (MTX) therapy, later extended to the triple combination of MTX, AraC, and dexamethasone, and a CNS irradiation (24 Gy) after the second cycle. Compared with the ALL 01/81 study where all the patients died, results obtained with the pediatric protocols B-NHL83 and B-NHL86 were greatly improved. The complete remission (CR) rates increased from 44% to 63% and 74%, the probability of leukemia free survival (LFS) from 0% to 50% and 71% (P = .04), and the overall survival rates from 0% to 49% and 51% (P = .001). Toxicity, mostly hematotoxicity and mucositis, was severe but manageable. In both studies B-NHL83 and B-NHL86, almost all relapses occurred within 1 year. The time to relapse was different for BM, 92 days, and for isolated CNS and combined BM and CNS relapses, 190 days (P = .08). The overall CNS relapses changed from 50% to 57% and 17%, most probably attributable to the high-dose MTX and the triple intrathecal therapy. LFS in studies B-NHL83 and B-NHL86 was significantly influenced by the initial WBC count < or > 50,000/microL, LFS 71% versus 29% (P = .003) and hemoglobin value > or < 8 g/dL, LFS 67% versus 27% (P = .02). Initial CNS involvement had no adverse impact on the outcome. Elderly B-ALL patients (> 50 years) also benefited from this treatment with a CR rate of 56% and a LFS of 56%. It is concluded that this short intensive therapy with six cycles is effective in adult B-ALL. HdM and fractionated higher doses of cyclophosphamide or ifosphamide seem the two major components of treatment.

Adolescent↗

Rapid quantitative analysis of protein tyrosine residue phosphorylation in defined cell populations in whole blood and bone marrow aspirates.

We developed a rapid method for quantification of tyrosine phosphorylation in immunophenotypically defined cell populations in specimens of whole blood and unprocessed bone marrow. Samples were formaldehyde-fixed and cells were permeabilized. Phosphotyrosine residues and surface antigens were simultaneously stained by monoclonal antibodies and visualized by flow cytometry. The accuracy of the method was confirmed by demonstration of an increase of phosphotyrosine levels in pp60v-src transformed fibroblasts. In blood of healthy donors, monocytes and granulocytes showed higher levels of phosphotyrosine than lymphocytes. CD34+ peripheral blood stem cells showed slightly increased tyrosine phosphorylation compared to autologous lymphocytes. Significantly elevated levels of phosphotyrosine were demonstrated in leukaemic blasts compared to lymphocytes (P = 0.01).

Acute Disease↗

Incidence and implication of additional chromosome aberrations in acute promyelocytic leukaemia with translocation t(15;17)(q22;q21): a report on 50 patients.

Acute promyelocytic leukaemia (APL) is characterized by the translocation t(15;17)(q22;q21). Usually t(15;17) is the sole cytogenetic abnormality, but some patients show other chromosome aberrations in addition to t(15;17). The influence of additional chromosome aberrations on the clinical outcome of patients with t(15;17) is unclear. We have analysed 50 cases of APL carrying the translocation t(15;17). Additional chromosome aberrations were observed in 17/47 patients (36%) studied at initial diagnosis and in all three patients studied at relapse. In nine cases (18%) an additional chromosome 8 and in six cases (12%) an isochromosome of the long arm of the derivative chromosome 17 was observed. Various structural rearrangements in addition to t(15;17) were detected in nine patients (18%). Clinical follow-up data were available for 44 patients studied at diagnosis. A complete remission (CR) was achieved in 34 patients (77%). 10 patients (23%) died within 1 month after diagnosis due to infection or bleeding, eight (24%) relapsed within 10-18 months after initial diagnosis. 28 patients are alive 2-93 months after diagnosis (25 in first CR, two in second and one in third CR) (median follow-up 18.5 months). Bone marrow transplantation was performed in six patients (three in first CR, two in second CR, one in third CR), all are alive and in CR. An influence of secondary chromosome anomalies on prognosis was not observed. However, if a higher rate of long-term remission can be reached, specific secondary chromosome aberrations might turn out to be of prognostic value.

Adolescent↗

Optimizing therapy for acute myeloid leukemia based on differences in intracellular metabolism of cytosine arabinoside between leukemic blasts and normal mononuclear blood cells.

The increasing insights into the pharmacokinetics and the metabolism of arabinoside C (AraC) have improved the rationale for its application in leukemia therapy and have led to a pharmacologically directed design of antileukemic treatment. The current study aims at adding to this approach by detecting differences in the intracellular metabolism of AraC 5'-triphosphate (AraCTP) between leukemic and normal mononuclear blood cells. Measurements of intracellular AraCTP levels were complemented by determinations of plasma AraC and arabinoside uridine (AraU) concentrations and were performed in 26 patients with acute myeloid leukemia (AML) who were undergoing combination therapy, including high-dose (1.0 or 3.0 g/m2 x 2/day) AraC. Plasma AraC concentrations showed a linear relationship to the applied AraC dose but did not correlate with intracellular AraCTP levels. Substantial differences in AraCTP retention times were revealed, during 3-h infusions of either 1.0 or 3.0 g/m2 AraC in leukemic blasts from 10 patients with t1/2 values of 1.60-7.63 h (median, 2.42 h). In addition, AraCTP levels declined in only one patient by > 10% within the first hour after the end of therapy and remained constant or even increased up to 1.5-fold during a posttreatment period of 1-2.5 h in the other nine cases. In contrast, AraCTP retention times were relatively uniform in normal mononuclear blood cells from 11 patients, with t1/2 values of 3.34-5.29 h (median, 3.85 h). More importantly, AraCTP levels dropped by > 10% within the first hour after the end of the high-dose AraC infusion in eight of 11 cases. A posttherapeutic increase of > 10% was not observed in any patient. These differences in AraCTP pharmacokinetics between leukemic and normal blood cells provided the basis for a modified timing of AraC administration with the aim of selectively maintaining cytotoxic AraCTP levels in leukemic blasts while allowing an intermittent drop of AraCTP levels in normal cells. This modification may result in higher antileukemic activity without increasing the damaging effect on normal cells and may, thus, improve the therapeutic index for AraC.

Acute Disease↗

Acute myeloid leukemia with translocation (8;21). Cytomorphology, dysplasia and prognostic factors in 41 cases. AML Cooperative Group and ECOG.

The translocation t(8;21) is one of the most common structural aberrations in acute myeloid leukemia (AML). Excellent response rates and a better relapse-free survival have been described. We analyzed specific morphologic and cytochemical features including dysplasia and other prognostic factors in 41 patients with AML and t(8;21) who underwent aggressive chemotherapy in two national cooperative group studies. Five patients were classified as AML M1 and 36 as AML M2 according to the FAB criteria. Auer rods were detected in 28 patients (68%), however in only 16 patients were they "thin and elongated" as has been described as typical for t(8;21). The presence or absence of Auer rods did not appear to be associated with disease-free survival in this sample. Dysgranulopoiesis was detected in 31/41 patients (90%); five of these patients additionally had dyserythropoiesis (12%). In six cases (15%), dysmegakaryopoiesis was seen in combination with dysgranulopoiesis. Only one patient had trilineage dysplasia. Dysplastic features had no influence on prognosis. Additional cytogenetic abnormalities were detected in 24/41 patients. Twelve male (48%) and four female (25%) had a loss of a sex chromosome. This was correlated with a better disease-free survival (p = 0.039). The complete remission rate (CR) to chemotherapy was 90%. The early death rate was 10%. Disease-free survival of the complete responders was 60% at two years with no relapses observed in ten patients with 2-6 years of follow up. This favorable disease-free survival was observed with a variety of post-induction regimens and t(8;21) had been detected as an independent factor for good prognosis. The need for very intensive therapy, such as bone marrow transplantation, is unanswered at this time.

Adult↗

The role of prognostic factors in acute myeloid leukemia.

The Acute Myelogenous Leukemia Cooperative Group in Germany studied the role of different intensities of induction therapy, all followed by similar postremission treatment. Of the 1,034 patients aged 16 to 83, 33 percent were over age 60, 63 percent attained a complete remission, and the overall relapse-free survival rate was 30 percent after 5 years. A significantly higher relapse-free survival was predicted by M3 morphology, a favorable karyotype, including t(8;21), t(15;17), and inv(16), and the absence of dysmyelopoiesis. In contrast, dysmyelopoiesis, high serum lactic dehydrogenase, age over 64, and unfavorable karyotype, including abnormalities of chromosomes 5 or 7 and complex abnormalities, all predicted a low relapse-free survival rate. No comparable impact on relapse-free survival was found from the two randomized different intensities of induction treatment in each age-group. Age, LDH, M3, and karyotype contributed to a prognostic index that identified good, intermediate, and poor prognostic groups. Patients older than age 60 showed significantly less frequent favorable and more frequent unfavorable karyotypes, and received generally less-intensive induction treatment than what younger patients were given. We conclude from this that, unlike some biologic disease characteristics, treatment variables are weak prognostic factors and high age per se may not be an independent factor of overall relapse-free survival.

Aged↗

De novo AML with dysplastic hematopoiesis: cytogenetic and prognostic significance.

Dysplastic hematopoiesis is the morphological hallmark of myelodysplastic syndromes. Dysplastic features in one or more lineages are also found frequently in bone marrow aspirates from patients with de novo AML and have been associated with an unfavorable prognosis. We asked whether dyshematopoiesis is an independent prognostic factor or an indicator of unrecognized secondary leukemia, identified by characteristic chromosomal abnormalities. Bone marrow aspirates from 102 patients with newly diagnosed AML were analyzed. Morphological analysis was obtained in all patients, flow cytometric analysis in 96 and successful cytogenetic analysis in 65 bone marrow aspirates. Dysgranulopoiesis (DysG) was found in 55, dysmegakaryopoiesis (DysM) in 32 and dyserythropoiesis (DysE) in 23 patients. Decreased side scatter signals of neutrophils in the flow cytometric analysis (DysS) were detected in 32 patients. DysG and DysS showed a highly significant correlation (P = 0.0005). DysG was an adverse negative prognostic factor for remission rate and event-free survival (P = 0.04, P = 0.02). An unfavorable karyotype was associated with a significantly lower chance for event-free survival (P = 0.002). The incidence of an unfavorable karyotype was significantly higher in patients with DysG (P = 0.01), DysM (P = 0.02) and DysS (P = 0.01). In patients with an unfavorable karyotype, dysplasia had no additional prognostic influence, however, in patients with a normal, favorable or prognostically uncertain karyotype DysG remained a predictor of lower remission rate (P = 0.03). We conclude that dysgranulopoiesis, dysmegakaryopoiesis and decreased side scatter signals of neutrophils are indicators of secondary leukemias in bone marrow aspirates from patients with de novo AML.

Bone Marrow↗

Fifty-one patients with acute myeloid leukemia and translocation t(8;21)(q22;q22): an additional deletion in 9q is an adverse prognostic factor.

The translocation t(8;21)(q22;q22) occurs in 6 to 12 percent of patients with AML, and usually predicts a good response to chemotherapy with a high remission rate and a relatively long median survival. The influence of additional chromosome aberrations on the clinical outcome of patients with t(8;21) is unclear. We analyzed 51 cases of acute myeloid leukemia carrying a translocation t(8;21)(q22;q22); 23 female and 28 male patients. The complete remission rate was 92 percent and median overall survival was 52.4 months. The median overall survival of female patients was significantly worse than of male patients (37.2 months vs not reached, P = 0.025). Additional chromosome aberrations were detected in 41 patients at diagnosis (80 percent), 31 (61 percent) had lost a sex chromosome, seven (14 percent) showed a partial deletion of the long arm of chromosome 9 and in three patients (6 percent) a gain of chromosome 8 was observed. Whereas the loss of a sex chromosome had no influence on prognosis, a partial deletion of the long arm of chromosome 9 was an unfavorable prognostic factor. The median overall survival of the seven patients with del(9q) was only 12.5 months and thus significantly shorter than in patients with only t(8;21) or with t(8;21) and additional sex chromosome loss (median survival not reached: P = 0.0010).

Acute Disease↗

HLA-identical sibling bone marrow transplants vs chemotherapy for acute myelogenous leukemia in first remission.

There is controversy whether adults with acute myelogenous leukemia (AML) in first remission are best treated with chemotherapy or an HLA-identical sibling bone marrow transplant. We studied 1097 adults, 16-50 years old, with AML in first remission. Results of transplants from HLA-identical siblings reported to the International Bone Marrow Transplant Registry (IBMTR; n = 901) were compared with results of chemotherapy in comparable persons treated by the German AML Cooperative Group (GAMLCG; n = 196). Preliminary analyses identified subject- and disease-related variables differing between the cohorts and associated with treatment outcome within each cohort. We adjusted for these variables and differences in time-to-treatment in subsequent comparisons of treatment-related mortality, relapse, survival and leukemia-free survival (LFS). Five-year probability of treatment-related mortality was greater for transplants than chemotherapy (43% (95% confidence interval, 37-49%) vs 7% (3-11%); P< 0.0001). Five-year relapse probability was less for transplants than chemotherapy (24% (20-28%) vs 63% (55-71%); P< 0.0001). Five-year probability of survival was similar with transplants and chemotherapy (48% (43-53%) vs 42% (33-51%); P = 0.24). Five-year LFS probability was higher for transplants than chemotherapy (46% (42-50%) vs 35% (28-41%); P= 0.01). These data indicate that bone marrow transplants from HLA-identical siblings result in comparable survival but greater LFS than chemotherapy in adults with AML in first remission.

Adolescent↗