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Biomedical subjects

R A Larson

Publications and source records attributed to R A Larson.

At least 73 records · Page 4Linked to original sources

Myeloid leukemia after hematotoxins.

One of the most serious consequences of cancer therapy is the development of a second cancer, especially leukemia. Several distinct subsets of therapy-related leukemia can now be distinguished. Classic therapy-related myeloid leukemia typically occurs 5 to 7 years after exposure to alkylating agents and/or irradiation, has a myelodysplastic phase with trilineage involvement, and is characterized by abnormalities of the long arms of chromosomes 5 and/or 7. Response to treatment is poor, and allogenic bone marrow transplantation is recommended. Leukemia following treatment with agents that inhibit topoisomerase II, however, has a shorter latency, no preleukemic phase, a monoblastic, myelomonocytic, or myeloblastic phenotype, and balanced translocations, most commonly involving chromosome bands 11q23 or 21q22. The MLL gene at 11q23 or the AML1 gene at 21q22 are almost uniformly rearranged. MLL is involved with many fusion gene partners. Therapy-related acute lymphoblastic leukemia also occurs with 11q23 rearrangements. Therapy-related leukemias with 11q23 or 21q22 rearrangements, inv(16) or t(15;17), have a more favorable response to treatment and a clinical course similar to their de novo counterparts.

Antineoplastic Agents, Alkylating↗

Familial myeloid leukemia associated with loss of the long arm of chromosome 5.

A 24-member kindred is described in which four cases of acute myeloid leukemia (AML), and one case of myelodysplastic syndrome (MDS) occurred over three generations. The proband was diagnosed with AML at age 47; within 6 months, her sister, age 41, was diagnosed with MDS. The proband's father, grandfather and a paternal uncle all died of AML, preceded by a pre-leukemic phase. The five cases had several clinical features in common. In the two sisters and their paternal uncle, cytogenetic analyses of bone marrow cells revealed a common abnormality characterized by loss of the long arm of chromosome 5, del(5q). No constitutional cytogenetic abnormality was detected in mitogen-stimulated peripheral blood lymphocytes from the proband. In addition, there was no history of common environmental or occupational exposure in the family. The occurrence of AML and MDS in three generations of this family most likely resulted from a single gene defect with an autosomal dominant pattern of inheritance. The association with the somatic loss of 5q material in the leukemia cells of affected members suggests that a germline mutation of a leukemia suppressor gene located on 5q might be the primary event responsible for hereditary susceptibility to leukemia in this family.

Acute Disease↗

Treatment of acute myeloid leukemia with antecedent myelodysplastic syndrome.

Primary myelodysplastic syndrome (MDS) and acute myeloid leukemia (AML) are both age-related, with increasing prevalence over age 60. The poor outcome of treatment for elderly AML patients is due both to host-related and intrinsic biologic factors. Some elderly patients have documented MDS for months or years before presenting with AML. Many more, though, have dysplastic morphology in bone marrow and blood cells that suggests an occult preleukemic phase. Cytotoxic chemotherapy in elderly patients has a high morbidity and mortality due to comorbid diseases, diminished tolerance to prolonged pancytopenia, and decreased drug metabolism and excretion; doses, therefore, are often attenuated. The low response rates to conventional remission-induction chemotherapy regimens suggest both intrinsic drug resistance and diminished normal hematopoietic precursors to regenerate following therapy. Less intensive chemotherapy has the potential for less organ toxicity, less hospitalization, and less expense. However, attenuated chemotherapy has the major disadvantage of less antileukemic activity and, as yet, the survival benefit for this approach remains unproven. Nevertheless, low-dose ara-C (cytarabine) therapy for 2 to 3 weeks may be beneficial for some patients. The standard response criteria used with acute leukemia to measure disease eradication may not be appropriate for patients with MDS evolving to AML.

Acute Disease↗

Lineage involvement by BCR/ABL in Ph+ lymphoblastic leukemias: chronic myelogenous leukemia presenting in lymphoid blast vs Ph+ acute lymphoblastic leukemia.

Chronic myelogenous leukemia (CML) can sometimes present in lymphoid blast phase (L-BP), and can be difficult to distinguish from Philadelphia chromosome-positive (Ph+) acute lymphoblastic leukemia (ALL). Some have suggested that the determination of cell lineages involved by the Ph chromosome may be used for distinguishing CML presenting in L-BP (presumably multilineage disease) from Ph+ ALL (presumably lymphoid-restricted), although others have suggested the term 'stem cell ALL' for the multilineage process. Because it has been difficult to perform lineage studies of the Ph chromosome, we investigated the use of fluorescence in situ hybridization (FISH) with probes for BCR (on chromosome 22) and ABL (on chromosome 9) to study lineage involvement in Ph+ lymphoblastic malignancies. We analyzed routine blood and marrow specimens from eight patients who presented with Ph+ lymphoblastic leukemia and found that FISH recognized the 9;22 translocation, distinguished between the two common molecular variants, and readily identified multilineage vs lymphoblast-restricted disease. In our series, four patients had multilineage and four had lymphoblast-restricted disease. Multilineage disease was associated with morphologic features of CML at diagnosis and/or reversion to chronic phase CML after treatment leading us to consider it as CML presenting in L-BP. Patients with lymphoid-restricted disease lacked such findings. The survival of three of our four patients with multilineage disease was prolonged, at 25, 28+, and 126+ months, and when data from our entire series are added to those of 18 previously reported cases that were studied for lineage involvement (reviewed in Leukemia 1993; 7: 147), the difference in overall survival between patients with multilineage and lymphoblast-restricted disease is significant (median overall survival of 47 months vs 8 months, respectively; P=0.013, log rank). Our findings illustrate that FISH analysis can be used to recognize lineage involvement in patients presenting with Ph+ lymphoblastic malignancies, and they provide further support to the notion that multilineage and lymphoblast-restricted disease are distinct clinically as well as biologically.

Adolescent↗

A five-drug remission induction regimen with intensive consolidation for adults with acute lymphoblastic leukemia: cancer and leukemia group B study 8811.

The goal of this phase II multicenter clinical trial was to evaluate a new intensive chemotherapy program for adults with untreated acute lymphoblastic leukemia (ALL) and to examine prospectively the impact of clinical and biologic characteristics on the outcome. One hundred ninety-seven eligible and evaluable patients (16 to 80 years of age; median, 32 years of age) received cyclophosphamide, daunorubicin, vincristine, prednisone, and L-asparaginase; 167 patients (85%) achieved a complete remission (CR), 13 (7%) had refractory disease, and 17 (9%) died during induction. A higher CR rate was observed in younger patients (94% for those < 30 years old, 85% for those 30 to 59 years old, and 39% for those > or = 60 years old, P < .001) and in those who had a mediastinal mass (100%) or blasts with a T-cell immunophenotype. Eighty percent of B-lineage and 97% of T-cell ALL patients achieved a CR (P = .01). The coexpression of myeloid antigens did not affect the response rate or duration. Seventy percent of those with cytogenetic or molecular evidence of the Philadelphia (Ph) chromosome and 84% of those without such evidence achieved a CR (P = .11). Patients in remission received multiagent consolidation treatment, central nervous system prophylaxis, late intensification, and maintenance chemotherapy for a total of 24 months. After a median follow-up time of 43 months, the median survival for all 197 patients is 36 months; the median remission duration for the 167 CR patients is 29 months. Favorable pretreatment characteristics relative to remission duration or survival are younger age, the presence of a mediastinal mass or lymphadenopathy, a white blood cell count (WBC) less than 30,000/microL, L1 morphology, T or TMy immunophenotype, and the absence of the Ph chromosome. The estimates of the proportion surviving at 3 years are 69% for patients less than 30 years old, 39% for those 30 to 59 years old, 89% for those who had a mediastinal mass, 59% with WBC less than 30,000/microL, 63% with L1 morphology, 69% for T or TMy antigen expression, and 62% for those who lack the Ph chromosome. Fifteen patients (8%) had no unfavorable prognostic factors and have an estimated probability of survival at 5 years of 100% (95% confidence interval, 77% to 100%). This intensive chemotherapy regimen produces a high remission rate and a high proportion of durable remissions in adults with ALL.

Adolescent↗

Acute myelomonocytic leukemia with abnormal eosinophils presenting as an ovarian mass: a report of two cases and a review of the literature.

Acute myelomonocytic leukemia is a neoplastic blood disease that can occur as an extramedullary tumor called a granulocytic sarcoma. Granulocytic sarcoma can be the presenting feature of acute leukemia and can occur as an abdominal or pelvic mass. Two cases of granulocytic sarcomas presenting as ovarian masses in patients with acute myelomonocytic leukemia with a characteristic inversion of chromosome 16 are described and the current literature regarding treatment and prognosis is reviewed.

Adolescent↗

Encephalopathy is the dose-limiting toxicity of intravenous hepsulfam: results of a phase I trial in patients with advanced hematological malignancies.

Hepsulfam is a bisulfamic ester which is similar in structure to busulfan and is believed to act as a bifunctional alkylator inducing both DNA-DNA and DNA-protein crosslinks. Prior studies in patients with refractory solid tumors have identified the dose-limiting toxicity of hepsulfam to be cumulative myelosuppression resulting in prolonged leukopenia and thrombocytopenia. This phase I trial was designed to determine the maximally tolerated dose of hepsulfam administered intravenously in patients with refractory leukemias and other advanced hematologic malignancies. Hepsulfam was administered as a 30-min or 2-h intravenous infusion to 21 patients with advanced leukemia or multiple myeloma. All patients had been extensively treated and had progressive disease. Cycles were repeated every 5 weeks. Cohorts of patients were treated at 360, 480, 640, and 800 mg/m2. The dose-limiting toxicity of intravenous hepsulfam was severe encephalopathy. The single patient treated at 800 mg/m2 became comatose within 48 h and required 3 weeks for his mental status to return to baseline. There were, however, no irreversible neurological sequelae. Several patients treated at 640 mg/m2 had clinical evidence of toxic deliriums and slowing of alpha rhythm waves on electroencephalograms indicative of a gray-matter encephalopathy. When hepsulfam was infused over 30 min, patients complained of uncomfortable parasthesias, but when the drug was administered over 2 h, these acute symptoms were less common. Myelosuppression was observed in most patients. Among those patients who had some suppression of their leukemia, peripheral blood counts recovered to pretreatment levels after 3-5 weeks. Apart from CNS toxicity, non-hematologic toxicity was minimal. Pharmacokinetic studies demonstrated rapid clearance of hepsulfam so that the drug was not reliably detected in the plasma after 24 h. The recommended phase II dose of hepsulfam as a single 2-h intravenous infusion is 480 mg/m2, but this dose provided relatively little clinical benefit for patients with refractory leukemia. The dose-limiting toxicity is CNS toxicity with increasingly severe encephalopathy at doses > or = 640 mg/m2. It would be reasonable to investigate further dose escalation of hepsulfam in a divided dose schedule to minimize the peak concentrations which may be related to the encephalopathy. EEG monitoring is recommended for early detection of slowing of alpha rhythm waves. Hematopoietic stem cell support will probably be required at total doses exceeding 800 mg/m2.

Adult↗

Reimmunization after allogeneic bone marrow transplantation.

Allogeneic bone marrow transplant patients are severely immunocompromised during the immediate posttransplant period, and the risk for common and opportunistic infections may persist for many months. The role of reimmunization for these patients, however, remains unsettled. We briefly review current concepts regarding the recapitulation of immunity from the totipotential hematopoietic stem cells in the donor marrow. The fact that various components of the new immune system mature at different rates can have clinical consequences with regard to specific infections. Most previously immunized patients become antibody seronegative within a few months after allogeneic marrow transplantation. Adoptive transfer of specific antibody-producing cells from the donor to the recipient has been demonstrated in small clinical trials, and is augmented when both donor and recipient are vaccinated. Passive transfer of immunity is more easily achieved to recall antigens than to neoantigens. Primary immunization requires prolonged antigenic stimulation and mature T-cell function or help from natural killer cells. Most healthy patients generate adequate antibody titers to vaccinations that are given 12 months after transplantation, but the presence of chronic graft-versus-host disease can diminish the response. Currently available vaccines have been evaluated in marrow transplant patients. Protein antigens such as tetanus and diphtheria toxoids are more immunogenic than polysaccharide antigens such as pneumococcal vaccine. The new polysaccharide-protein conjugate vaccines, such as the Hemophilus influenzae type b vaccine, also appear more immunogenic. Inactivated poliovirus vaccine has been used successfully. Relatively few data are available about hepatitis B or influenza vaccines. The literature supports the use of standard vaccines in allogeneic bone marrow transplant patients. However, more data on the optimal methods and timing of immunization are needed. We present guidelines for a reimmunization schedule.

Bone Marrow Transplantation↗

Current management of acute lymphoblastic leukemia in adults.

Intensive remission chemotherapy followed by post-remission consolidation and maintenance therapies has achieved complete remission rates of 75% to 90% and 3-year survival rates of 25% to 50% in adults with acute lymphoblastic leukemia (ALL). These results, although promising, are still less favorable than those achieved in childhood ALL. However, various novel experimental and clinical approaches show promise for improving cure rates. Also, specific therapies directed at high-risk subgroups with ALL are beginning to emerge. Detection of specific chromosomal abnormalities at diagnosis identifies patients who are at risk of failing to achieve remission, as well as those who are likely to have short, intermediate, or prolonged disease-free intervals after successful remission induction. Such prognostic information may, ultimately, be used to assign risk categories and to individualize post-remission therapy.

Adult↗

The relationship between secondary chromosomal abnormalities and blast transformation in chronic myelogenous leukemia.

Chronic myelogenous leukemia (CML) is a stem cell disorder which progresses from a chronic phase (CP) to an accelerated phase (AP), and/or a blast phase (BP) of myeloid (M) or lymphoid (L) phenotype. This progression is frequently preceded or accompanied by recurring secondary chromosomal abnormalities which are believed to play a role in the transformation. In order to investigate the relationship between the secondary change and the development of BP, we undertook a study using fluorescence in situ hybridization to determine in which cells the secondary abnormalities were present. We observed that in one case of L-BP, the secondary change (trisomy 8) appeared to be in a subclone that was different from the blast cells, as it was absent from the lymphoblasts but present in differentiating erythroid, monocytic and granulocytic cells. In two cases, the secondary change (trisomy 8, extra Ph) probably occurred prior to an acute transforming event as it was present in CP or AP predominantly in differentiated granulocytic or monocytic cells. In one case of M-BP, the secondary change (trisomy 8) probably occurred after the acute transformation, as it appeared in only a subset of the blasts. Lastly, in four cases of L-BP, the secondary change (monosomy 7, extra Ph or hyperdiploidy) was closely associated with the BP as it was present in all of the blasts. The findings indicate that some secondary abnormalities may be directly related to the development of BP and may provide clues to the identity of genes responsible for the acute phase transition. Other abnormalities occurring before, or after the acute transformation or in a different subclone from the acute phase blasts, may be more important for denoting genomic instability than for helping to understand the mechanism of blast transformation.

Adolescent↗

Clinical and prognostic significance of chromosomal abnormalities in childhood acute myeloid leukemia de novo.

We report on the chromosomal pattern of 120 patients with childhood AML de novo. One hundred and fifteen patients (96%) had adequate samples for analysis; 98 (85%) of these showed clonal karyotypic abnormalities. They were classified into cytogenetic subgroups which were closely correlated with FAB subtypes: t(8;21) and M2 (n = 9); t(15;17) and M3 (n = 12); inv(16) and M4Eo (n = 9); t(9;11) and M5a (n = 10); t(11q23) other than t(9;11) and M4-M5 (n = 11); and t(1;22) and M7 (n = 4). In patients with -7/del(7q) (n = 6), leukemia was preceded by MDS in half of the cases, although they had diverse FAB subtypes. Thirty-seven patients had miscellaneous abnormalities. Despite a high CR rate, patients with t(8;21) had a very poor survival: only one child was event-free at 3 years from diagnosis. One third of patients with t(15;17) died during induction. Those eight who achieved CR fared well: only two relapsed, and six were event-free survivors. Patients with inv(16) had a high remission rate and a long survival: five children were in CR 20 to 136 months. Both groups with t(9;11) and t(11q23) had a high remission rate: however, outcome was superior for the t(9;11) group when compared to either the t(11q23) group (EFS at 3 years +/- SE, 56 +/- 17% vs. 11 +/- 10%, p = 0.07) or to the remaining patients (p = 0.06). Both -7/del(7q) and t(1;22) groups had low CR rates (50%) and poor survival. Cytogenetic analysis identifies clinically distinct subsets of childhood AML and is useful in tailoring treatment for these patients. Favorable cytogenetic groups (t(15;17), inv(16), and t(9;11)) may do well with current therapy protocols, whereas unfavorable groups (t(11q23), t(8;21), -7/del(7q), and t(1;22)) require more effective therapies.

Child↗

Certain HLA antigens are associated with specific morphologic and cytogenetic subsets of acute myeloid leukemia.

Although many associations have been found between specific HLA antigens and an increased susceptibility to various diseases, previous attempts to associate class I and II antigens with acute myeloid leukemia (AML) have been inconclusive, probably due in part to the heterogeneity of AML. We subdivided 165 consecutive adults with AML de novo into distinct clinical, morphological, and cytogenetic subsets and then tested for statistically significant associations with specific HLA antigens. Both morphology and cytogenetic pattern identified subsets of patients with important clinical features and different outcomes. Ten statistically significant (P < 0.05) HLA cytogenetic associations were observed: HLA-A11 with t(8;21), A26 with t(15;17), B7 with 11q23 abnormalities, B44 with +8, Cw2 with -20/del(20q), DR3 with t(15;17) and FAB-M3, DR4 with inv(16) and FAB-M4Eo, DQ2 with +8, and DQ6 with +22. HLA-DQ1 had a negative association with -5/del(5q), which was present in 13% of the 165 AML patients overall but in none of the 27 with DQ1. Certain HLA antigens were significantly correlated with more favorable remission rates, remission duration and survival. Possible mechanisms for the association of HLA antigens with particular subtypes of AML include the linkage or co-inheritance of an oncogene, the facilitation of binding of a transforming virus, toxin, or cytokine, or a permissive role involving impaired immune recognition of an emerging neoplasm. Given the heterogeneity of both the HLA system of immune recognition genes and the cytogenetic subtypes of AML, however, larger numbers of patients must be studied to have confidence that biologically important relationships truly exist.

Acute Disease↗

Establishment of a leukemia cell line with i(12p) from a patient with a mediastinal germ cell tumor and acute lymphoblastic leukemia.

We report the establishment of a leukemia cell line (UoC-B10) from a patient who developed leukemia several months after the diagnosis of a mediastinal yolk sac tumor. The patient's yolk sac tumor responded to combination chemotherapy, and a mature teratoma with focal areas of hematopoiesis was subsequently resected. However, 5 months after the initial diagnosis, the patient developed an acute lymphoblastic leukemia with a precursor B-cell phenotype. Cytogenetic analysis showed an i(12p) abnormality in the patient's leukemia cells and in the UoC-B10 cell line. The i(12p) was also identified retrospectively in the mediastinal tumor cells by fluorescent in situ hybridization analysis. The UoC-B10 cell line, which has been growing continuously for > 24 months in culture, was Epstein-Barr virus negative and was generally concordant with the patient's leukemia cells by analysis of immunophenotype, karyotype, and genotype. The UoC-B10 cell line possesses receptors for granulocyte-colony-stimulating factor, a cytokine which the patient received as part of his treatment protocol. This cell line may be useful in studying the relationship between i(12p) and hematological differentiation of human mediastinal germ cell tumors.

Adult↗

Phase I trial of a genetically engineered interleukin-2 fusion toxin (DAB486IL-2) as a 6 hour intravenous infusion in patients with hematologic malignancies.

DAB486IL-2 is a recombinant fusion toxin, created by replacement of the receptor binding domain sequences of the diphtheria toxin gene with the sequences for human interleukin-2 (IL-2). It selectively binds to and intoxicates cells expressing the high-affinity IL-2 receptor. A total of 17 patients with refractory hematologic malignancies were entered in a phase I study of DAB486IL-2, administered as a 6 hour continuous intravenous infusion on days 1, 2, 8, 9, 15, and 16 of each 28 day cycle. Cohorts of 3 to 6 patients were treated with escalating doses. The starting dose was 0.1 mg/kg/day with increments of 0.1 mg/kg/day per dose level up to 0.3 mg/kg/day. Significant adverse effects included transient asymptomatic elevation of liver transaminases, hypersensitivity, anemia, thrombocytopenia, fever, and creatinine elevation. A partial response of approximately nine months duration was observed in a patient with small cell lymphocytic non-Hodgkin's lymphoma, previously refractory to high-dose chemotherapy and autologous bone marrow transplantation. The observance of antitumor activity in a patient highly refractory to chemotherapy suggests that DAB486IL-2 may have efficacy in selected patients whose malignant cells express the IL-2 receptor.

Adult↗

Detection of MLL gene rearrangements in adult acute lymphoblastic leukemia. A Cancer and Leukemia Group B study.

Specific structural rearrangements involving chromosome band 11q23 occur in a variety of hematologic malignancies, including an estimated 2-7% of patients with acute lymphoblastic leukemia (ALL). Translocations involving chromosome band 11q23 have been associated with a poor prognosis in patients with ALL. Recently, a gene known as MLL has been identified which is involved in acute lymphoid and myeloid leukemias with rearrangements at 11q23. A 0.74-kilobase (kb) cDNA probe from the MLL gene can detect both common and uncommon rearrangements involving MLL on conventional Southern blots. We studied 86 newly diagnosed adults entered on an ALL clinical trial to investigate the incidence of MLL gene rearrangements and to determine clinical, morphologic, immunologic and cytogenetic characteristics of such patients. Two of 86 patients had MLL gene rearrangements detected by Southern blot analysis. One of these 86 patients had an 11q23 translocation by cytogenetic analysis whereas the second patient was unevaluable by standard cytogenetic analysis. Southern blot identification of rearrangements involving MLL, especially in patients with limited material for cytogenetic analysis, can provide critical diagnostic and prognostic information which may be useful in the clinical management of patients with these abnormalities.

Adolescent↗

Rearrangements of the MLL gene in therapy-related acute myeloid leukemia in patients previously treated with agents targeting DNA-topoisomerase II.

Chromosome band 11q23 is frequently involved in acute myeloid leukemia (AML) and acute lymphoblastic leukemia (ALL) de novo, as well as in myelodysplastic syndromes (MDS) and lymphoma. Five percent to 15% of patients treated with chemotherapy for a primary neoplasm develop therapy-related AML (t-AML) that may show rearrangements, usually translocations involving band 11q23 or, less often, 21q22. These leukemias develop after a relatively short latent period and often follow the use of drugs that inhibit the activity of DNA-topoisomerase II (topo II). We previously identified a gene, MLL (myeloid-lymphoid leukemia or mixed-lineage leukemia), at 11q23 that is involved in the de novo leukemias. We have studied 17 patients with t-MDS/t-AML, 12 of whom had cytogenetically detectable 11q23 rearrangements. Ten of the 12 t-AML patients had received topo II inhibitors and 9 of these, all with balanced translocations of 11q23, had MLL rearrangements on Southern blot analysis. None of the patients who had not received topo II inhibitors showed an MLL rearrangement. Of the 5 patients lacking 11q23 rearrangements, some of whom had monoblastic features, none had an MLL rearrangement, although 4 had received topo II inhibitors. Our study indicates that the MLL gene rearrangements are similar both in AML that develops de novo and in t-AML. The association of exposure to topo II-reactive chemotherapy with 11q23 rearrangements involving the MLL gene in t-AML suggests that topo II may play a role in the aberrant recombination events that occur in this region both in AML de novo and in t-AML.

Adult↗

Persistence of the 8;21 translocation in patients with acute myeloid leukemia type M2 in long-term remission.

The translocation between chromosomes 8 and 21, t(8;21) (q22;q22), is the most frequent abnormality in acute myeloid leukemia (AML) with French-American-British type M2 (FAB-M2) morphology. The breakpoints in this translocation have been characterized at the molecular level, and the genes involved are AML1 on chromosome 21 and ETO on chromosome 8. The rearrangement of the two chromosomes results in a fusion gene and in the production of a consistent fusion transcript on the der(8) chromosome. We have used oligonucleotide primers derived from both sides of the fusion cDNA junction and reverse transcription-polymerase chain reaction (RT-PCR) to analyze six AML-M2 patients with a t(8;21) during various stages of their disease. Two patients studied at diagnosis and one studied at first relapse are alive off therapy and in continuous complete remission for 83 to 94 months. We have detected the AML/ETO fusion transcript in recent peripheral blood samples from each of them. Three other patients also had a fusion transcript detected after 1 to 4 months in remission. Two of these patients subsequently relapsed and died whereas the third patient is alive and in continuous complete remission 70 months later. Thus, our preliminary data suggest that cells with the translocation are still circulating in t(8;21) patients in long-term remission. This finding raises serious questions regarding the interpretation of positive results obtained only with this technique that may not be suitable to decide appropriate further treatment for patients in clinical remission.

Chromosomes, Human, Pair 21↗