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M Beran

Publications and source records attributed to M Beran.

At least 73 records · Page 4Linked to original sources

Results of decitabine therapy in the accelerated and blastic phases of chronic myelogenous leukemia.

The aim of the study was to evaluate the activity of decitabine, a hypomethylating agent, in the treatment of patients with chronic myelogenous leukemia (CML) in transformation. Thirty-seven patients with CML in blastic (20 patients) or accelerated phases (17 patients) were treated. Their median age was 52 years; 36 had Philadelphia chromosome-positive disease. Decitabine was given at 100 mg/m2 over 6 h every 12 h x 10 doses (1000 mg/m2) to 13 patients, and at 75 mg/m2 over 6 h every 12 h x 10 doses (750 mg/m2) to 24 patients. In blastic phase, two patients (10%) achieved a complete hematologic response (one with Ph suppression), and three (15%) had a hematologic improvement (marrow CR, platelets <100 x 10[3]/microl), for an overall response rate of 25%. In accelerated phase, six patients (35%) returned to a second chronic phase (two with Ph suppression), one (6%) had a hematologic improvement, and two (12%) had a partial hematologic response, for an overall response rate of 53%. Prolonged myelosuppression was the most significant side-effect. The median time to recovery of granulocytes above 500/microl was 48 days, and to recovery of platelets above 30 x 10(3)/microl, 31 days. Febrile episodes occurred in 25 patients (68%) including documented infections in 17 patients (46%). Decitabine has promising activity in CML. The most significant side-effect is prolonged myelosuppression. Decitabine may show activity in other myeloid disorders such as acute myeloid leukemia and myelodysplastic syndrome, as well as in other hematologic malignancies, alone or with other drug combinations. Its value in the context of stem cell support should also be investigated.

Adult↗

Fludarabine and granulocyte colony-stimulating factor (G-CSF) in patients with chronic lymphocytic leukemia.

The study was designed to determine whether administration of granulocyte colony-stimulating factor (G-CSF) following fludarabine would reduce the incidences of myelosuppression and infections. Twenty-five previously treated patients with Rai stage III-IV chronic lymphocytic leukemia (CLL) received fludarabine 30 mg/m2 daily for 5 days each month. G-CSF was given at 5 microg/kg subcutaneously starting 1 day after chemotherapy (day 6) and continued until the next course unless the granulocyte count was > or =10000/microl. The incidences of myelosuppression and infection were compared with those seen in an historical control population of 145 previously treated patients with Rai stage III-IV CLL who were given the same schedule of fludarabine without growth factor. There was a significant decrease in myelosuppression; patients receiving G-CSF developed neutropenia at a neutrophil count <1000/microl or 500/microl in 45% and 15% of courses vs 79% (P=0.002) and 63% (P < 0.001) of historical controls. Twenty percent of G-CSF-treated patients had therapy delayed by >35 days per course, vs 50% of historical controls (P=0.005). The incidence of pneumonia was 8% with G-CSF and 37% without in historical controls. Other infection rates (sepsis, fever of undetermined origin, minor infections) were similar. This decrease in pneumonia was noted even in high-risk groups such as patients older than 60 years and patients with hypogammaglobulinemia. The use of G-CSF following fludarabine in high-risk patients with CLL resulted in a significant decrease in myelosuppression and pneumonia. Larger trials to verify these results and to compare costs are indicated.

Adult↗

Simplified Reverse Dot Blot Analyses for Detecting of ras Oncogene Mutations.

Background: Mutations in members of the ras gene family (H-ras, K-ras, and N-ras) have been identified in various human malignancies. A variety of techniques have been used to test for ras mutations. Methods and Results: A simplified reverse dot blot (RDB) assay was used in this study. Polymerase chain reaction products were hybridized to nitrocellulose membrane-fixed synthetic probes (20 nucleotides long) specific for codons 12, 13, and 61 of H-, K-, and N-ras mutations and their wild-type sequences. No special treatment or modification of the probes was necessary to obtain adequate results in overnight film exposure when the polymerase chain reaction was carried out using (32)P-end labeled primers. It was demonstrated that this simplified RDB assay can also be used with fluorescein-11-dUTP and a chemiluminescence detection system. The RDB assay is more reliable than the single-strand conformation polymorphism (SSCP) assay. By comparison, the SSCP assay is significantly less sensitive and less specific. It was confirmed with sequencing that 11 (12%) of 93 SSCP assays were false positive and 2 (2%) were false negative, whereas no false positive or false negative RDB assay was detected. The RDB assay also provides more additional detailed information about the specific point mutation and amino acid change, which may have clinical implications in some tumors. Conclusions: The RDB assay is very sensitive and able to detect mutations when the mutant allele is in 1% of the cells and can be used to detect minimal residual disease, particularly in some cases of leukemia and myelodysplasia.

Journal Article↗

Tallimustine, an effective antileukemic agent in a severe combined immunodeficient mouse model of adult myelogenous leukemia, induces remissions in a phase I study.

Despite progress in leukemia therapy, only 20-30% of patients with acute myelogenous leukemia (AML) are cured. 1-beta-D-arabinofuranosylcytosine- and topoisomerase II-reactive drugs are the primary therapeutic agents used. The aim of this study was to evaluate the potential activity of tallimustine in leukemia. In this study, we first investigated the efficacy and toxic effects of tallimustine, a distamycin-A derivative, in a human leukemia model in severe combined immunodeficient (SCID) mice. On the basis of its dramatic activity in this preclinical study, a Phase I study of tallimustine at a starting dose of 300 microgram/m2/day for 3 days every 3-4 weeks was conducted in patients with refractory or relapsed leukemia. In SCID mice grafted with a human myelomonocytic leukemia cell line, tallimustine resulted in complete remission of disease in most mice at tolerable dosages ranging from 0.86 to 3.0 mg/kg/day for 3 days and was combined effectively and safely with a 2-day schedule of high-dose ara-C. In the Phase I study, 26 patients with refractory or relapsed leukemia were treated. The maximum tolerated dose was 900 microgram/m2/day for 3 days every 3-4 weeks. This dose was 3 times higher than the maximum tolerated dose in solid tumors and was limited by severe mucositis. Magnesium and potassium wasting were also observed, but other side effects (fatigue and gastrointestinal) were minor. Two (8%) patients with AML achieved complete remission and two achieved hematological improvement with persistent thrombocytopenia. The results of this study indicate that tallimustine has promising activity in AML. Future studies may combine tallimustine with other agents known to be active against AML, and investigate its activity in other hematological malignancies. The recommended Phase II single-agent dose of tallimustine is 750-900 microgram/m2/day for 3 days, and combination studies may start at 50-66% of this dose schedule. The SCID mouse model of human leukemia may be promising in the preclinical evaluation and selection of potential antileukemic agents.

Adolescent↗

Topotecan, a topoisomerase I inhibitor, is active in the treatment of myelodysplastic syndrome and chronic myelomonocytic leukemia.

The aim of this study was to evaluate the activity of topotecan in patients with myelodysplastic syndrome (MDS) and chronic myelomonocytic leukemia (CMML). Forty-seven patients with a diagnosis of MDS (n = 22) or CMML (n = 25) were treated. The median age was 66 years. Chromosomal abnormalities were present in 70% and thrombocytopenia less than 50 x 10(3)/microL in 51%. Evaluation of outcome and of differences among subgroups was performed according to standard methods; the criteria for response were those used for acute leukemia. Topotecan was administered as 2 mg/ m2 by continuous infusion over 24 hours daily for 5 days (10 mg/m2 per course) every 3 to 4 weeks until remission, then once every month for a maximum of 12 courses. Thirteen patients (28%) achieved a complete response (CR) and six (13%) had hematologic improvement. A CR was achieved in six of 22 patients with MDS (27%) and in seven of 25 with CMML (28%). All eight patients who presented with cytogenetic abnormalities (five chromosome 5 or 7 abnormalities) who achieved CR were cytogenetically normal in CR. Characteristics for which there was evidence of association with a higher response rate were lack of prior chemotherapy, less than 10% marrow monocytes, and absence of RAS oncogene mutations. In contrast, CR rates were similar in patients with or without abnormal karyotypes. Mucositis occurred in 64% of patients (severe in 19%) and diarrhea in 32% (severe in 13%). Febrile episodes occurred in 85% of patients and documented infections in 47%. With a median follow-up duration of 8 months, the 12-month survival rate was 38%, median survival time 10.5 months, and median remission duration 7.5 months. We conclude that topotecan has significant activity in MDS and CMML, with acceptable side effects. Future studies will investigate topotecan combined with topoisomerase II reactive agents, cytarabine, or hypomethylating agents (azacytidine and decitabine).

Adult↗

Antisense RNA inhibition of phosphoprotein p18 expression abrogates the transformed phenotype of leukemic cells.

Phosphoprotein p18 was identified originally on the basis of its very high level of expression in leukemic cells of different lineages. Changes in the level of p18 accumulation and phosphorylation associated with induction of differentiation of leukemic cells suggested a potential role for this phosphoprotein in cellular proliferation and differentiation and possibly in malignant transformation. Recent studies have demonstrated that p18 plays an important role in cell cycle progression by serving as a substrate for p34(cdc2) kinase. These studies showed that inhibition of p18 expression in leukemic cells results in growth retardation and accumulation of cells in G(2)-M. In this study, we explore the potential role of p18 in cellular transformation by investigating the effects of inhibition of p18 expression on the malignant phenotype of K562 erythroleukemia cells. These studies show that antisense inhibition of p18 expression in leukemic cells results in growth arrest at a lower saturation density, loss of serum independence, and loss of anchorage-independent growth in vitro. In addition, inhibition of p18 expression results in a marked inhibition of tumorigenicity of leukemic cells in vivo in the severe combined immune deficiency mouse model. These studies demonstrate that the high level of p18 expression in leukemic cells is necessary for the maintenance of the transformed phenotype and suggest p18 as a potential target for antileukemic interventions.

Animals↗

[Experimental cross-bow injury].

A high of easily obtainable cross-bows was pointed out in an experiment. In the same time, an experience from foreign papers was verified that injuries caused by arrows with a head for target shooting can imitate the gun shot injuries. Because of their rate increasing in connection with accesibility of cross-bows these injuries need to be recognized and described more precisely. They are not mentioned in the Czech literature in spite of the fact that there were two recent cases of injuries in attempts of murder.

Adult↗

Engraftment of chronic prolymphocytic and T cell leukemia in SCID mice.

Engraftment of human acute leukemia cells in immunocompromised (SCID) mice has resulted in in vivo models for exploration of human tumor biology. Attempts at engraftment of chronic leukemia cells have been generally unsuccessful. We have engrafted cells from three human chronic leukemias in SCID mice. Cell populations were from two patients with chronic lymphocytic leukemia (CLL) and either increased proolymphocytes (CLL-Pro; patient 1), or prolymphocytic transformation (PLL; patient 2) and from a third patient with newly diagnosed T cell CLL. Both fresh and cryopreserved cells were used and were injected intravenously, intraperitoneally, or both, after conditioning with cyclophosphamide. In addition, cells derived from a mouse spleen engrafted with human leukemia were passaged into another mouse. The animals were observed daily for signs of disease or appearance of tumors and sacrificed when terminally ill. At intervals blood samples were obtained and analyzed for the presence of human cells or DNA. Human leukemic cells were demonstrated by polymerase chain reaction (PCR) analysis of the human DQalpha gene or positive staining for human leukocyte common antigen (LCA). The presence of Epstein-Barr virus (EBV)-positive cells was also investigated by PCR analysis. Disseminated tumors developed in most mice inoculated with cells from the first patient, and this was associated with shortened survival times. The methods of administration, use of fresh or frozen samples, or the size of the inoculum had no effect on the development of leukemia. Survival of the mouse receiving passaged cells was similar to mice inoculated with fresh cells. Extensive histologic, immunophenotypic, and DNA studies were performed on organs from mice engrafting with cells from patient 1. PCR analysis for EBV sequences was negative in the mice engrafting from all three cases. The successful engraftment of human CLL-Pro PLL and T cell CLL in SCID mice, and the reproducibility of this effect using frozen cells, will provide a model for exploration of disease biology and for investigations of new drugs or combinations that may be useful in the treatment of CLL.

Aged↗

Evaluation of CI-973, a platinum analogue, in refractory or relapsed acute leukemia.

The purpose of the study was to define the maximally tolerated dose (MTD), major toxicities, and possible antitumor activity of CI-973 a new platinum analogue, in patients with refractory or relapsed acute leukemia. CI-973 was given as a 5-day continuous infusion every 3 to 4 weeks to patients with refractory or relapsed acute leukemia, at doses ranging from 150 mg/m2 to 1350 mg/m2 per course. Thirty-six patients were treated including 18 patients with acute myelogenous leukemia (AML), four with acute lymphocytic leukemia (ALL) and 14 with chronic myelogenous leukemia in blastic phase (CML-BP). Severe gastrointestinal and renal side-effects were the dose-limiting toxicities occurring in four of five patients treated with CI-973 1200 to 1350 mg/m2 per course. At the MTD of 1000 mg/m2 per course, three of 13 patients treated (23%) had moderate to severe nausea and vomiting, three (23%) had moderate diarrhea and one had moderate mucositis. Among 21 patients treated at > or = 1000 mg/m2 (15 AML, 6 CML-BP) no objective complete or partial responses were observed. Twelve of 18 patients (66%) with evaluable marrows on day 14 showed significant suppression of marrow blasts percentage and marrow leukemic infiltrate percentage. Tests for measurement of DNA adduct formation in leukemic cells in vivo after CI-973 therapy, and in vitro following exposure of leukemic cells to CI-973 were developed. This study defined the MTD of CI-973 to be 1000 mg/m2 by continuous infusion over 5 days every 3 to 4 weeks in patients with refractory or relapsed acute leukemia. Gastrointestinal and renal side-effects were dose-limiting. No objective responses were noted in this heavily resistant population. Correlations between CI-973-induced DNA adduct formation and individual patient response to CI-973 will help to define its role in leukemia subsets.

Acute Disease↗

Acute lymphoblastic leukemias from relapse engraft more rapidly in SCID mice.

It is generally believed that relapse of acute leukemia heralds progression of the disease into a more aggressive stage. The biological behavior of leukemic cells collected from four patients with adult acute lymphoblastic leukemia (ALL) prior to treatment and at relapse was studied after engraftment into 28 unconditioned mice with severe combined immunodeficiency (SCID). Leukemic cells engrafted in all but one mouse, with major differences observed in the growth and aggressiveness of the leukemias. Recipient mice of cells derived from all patients at relapse died more rapidly in overt leukemia than those which were injected with cells obtained prior to induction treatment (P=0.0002). SCID mice that received cells from one patient at the time of diagnosis also died in terminal leukemia. Other SCID mice however, that received cells from the remaining three patients prior to treatment developed occult leukemia that was detectable in the blood or bone marrow with the use of polymerase chain reaction (PCR) or flow cytometry only. Leukemic cells recovered from mice with terminal leukemia exhibited a larger proliferating fraction than cells originally injected (P=0.004). Our results demonstrate, that during the evolution from initial presentation to relapse, ALL cells may acquire biological properties which render them more aggressive in SCID mice.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Clinical and laboratory studies of 2-chlorodeoxyadenosine +/- cytosine arabinoside for relapsed or refractory acute myelogenous leukemia in adults.

Previous studies in pediatric patients with acute myelogenous leukemia (AML) have suggested that 2-chlorodeoxyadenosine (2CdA) is an effective therapeutic agent. Santana et al (J Clin Oncol 1992; 10: 364-370) reported a CR rate of 8/17 (95% Cl 23-72%) in children with relapsed AML and a median first CR of 21 months. The activity of 2CdA in adults with relapsed or refractory leukemia was therefore investigated in a phase I study. In the phase II study, based on biochemical modulation rationale, 2CdA was combined with Ara-C for adults with relapsed AML to test the effectiveness of this combination therapy. In the phase I study 27 patients (25 AML and two MDS) with a median first CR duration of 21 weeks, received 2CdA at doses ranging from 5 to 13 mg/m2/day by continuous infusion (CI) for 7 days. In vitro and ex vivo pharmacologic studies performed to determine the effect of pretreatment with 2CdA on Ara-CTP accumulation in leukemic blasts demonstrated a 50-65% increase in the rate of Ara-CTP accumulation. Based on this biochemical modulation, 2CdA (12 mg/m2/day x 5 days by CI) was combined with Ara-C (1 g/m2/day over 2 h) in a phase II study. Seventeen patients (15 AML, two MDS) with relapsed AML (median 1st CR of 19 weeks) were treated. In the phase I study two patients died before the day 14 marrow (ED). Marrow hypoplasia developed in 16 of the remaining 25. Leukemic regrowth occurred in nine after a median hypoplastic period of 2 weeks (range 1-3 weeks). The other seven patients died with aplastic marrows, median duration of hypoplasia was 2 weeks, range 1-4 weeks. None achieved CR and the median survival was 10.5 weeks. Toxicity generally was mild except for three late occurring cases of grade III or IV renal dysfunction and two cases of tumor lysis syndrome. The MTD was 10.8 mg/m2/day x 7 days. In the phase II study two patients, both with AML, achieved CR (95% CI 1-33%). In both cases leukemia relapsed after 10 weeks and 17 weeks. There was one ED. Most (11/16) cleared their marrow although leukemic infiltrate regrew in six cases. Toxicity was generally mild, with two episodes of grade 2 GI bleeding, one episode of severe renal dysfunction and one case of grade 2 CNS toxicity. We conclude that as a single agent 2CdA at the MTD is a cytoreductive agent but is not sufficient to achieve CR in adults with relapsed AML. While combination of Ara-C with 2CdA increases the Ara-CTP uptake in these heavily treated patients this regimen does not appear to be an improvement over existing modalities.

Adult↗

Growth and biologic properties of karyotypically defined subcategories of adult acute lymphocytic leukemia in mice with severe combined immunodeficiency.

Modest progress has been achieved over the past two decades in the treatment of adult acute lymphocytic leukemia (ALL). With modern therapy, response rates are 70% to 80%, but cure rates only average 25% to 30%. Improved in vivo models are needed to investigate the biology of adult ALL and to test new treatment concepts. Fresh leukemia samples from children with ALL have been successfully transplanted into mice with severe combined immunodeficiency (SCID), but no experience exists for adult ALL. We treated SCID mice with 2 mg cyclophosphamide 24 hours before intravenously injecting 20 x 10(6) viable leukemia cells obtained from 13 patients with newly diagnosed adult ALL within five defined phenotype/karyotype subcategories. Ten (76%) of 13 injected leukemia specimens representing all five categories engrafted. The median survival duration of mice was 20 weeks from the time of leukemia cell injection. The rate of engraftment by ALL subset was as follows: two of two T-cell, two of three t(11q23), two of two hyperdiploid, two of three t(9;22), and two of three diploid ALL. The pattern of organ involvement by leukemia in the mice was similar to that of the human disease. Immunohistochemistry and flow cytometry documented the stability of each leukemic phenotype after passage through SCID mice. Cells transplanted from the spleen and bone marrow of mice engrafted with ALL into recipient mice resulted in consistent engraftment. The survival duration in passage groups was similar to that in groups injected with primary cells. The high frequency of engraftment, availability of frozen original specimens, and successful passages in SCID mice provide an in vivo model of adult ALL suitable for further studies of the disease biology and for design of drug studies for the different subtypes of previously untreated adult ALL.

Adolescent↗

Homoharringtonine therapy induces responses in patients with chronic myelogenous leukemia in late chronic phase.

Homoharringtonine (HHT) is a plant alkaloid with potent myelosuppressive activity and little toxicity when used in a continuous infusion schedule. The antileukemic efficacy of HHT has been shown in acute myeloid leukemia, but has not been investigated in chronic myelogenous leukemia (CML). Seventy-one patients with Philadelphia chromosome-positive (Ph+) CML in late chronic phase (time from diagnosis to therapy longer than 12 months) were treated with a continuous infusion of HHT at a daily dose of 2.5 mg/m2 for 14 days for remission induction and for 7 days every month for maintenance. The median number of courses given was 6 (range, 1 to 35) and 21 patients (30%) continue on treatment. Forty-two of 58 patients (72%) evaluable for hematologic response achieved a complete hematologic remission, and 9 (16%) had a partial hematologic remission. Twenty-two of 71 patients (31%) developed a cytogenetic response; it was major (Ph+ cells less than 35%) in 11 (15%) and complete (Ph+ cells 0%) in 5 (7%). Significant myelosuppression occurred in 39% of induction courses and 9% of maintenance courses. Fever or documented infection was present in 26% of induction courses and in only 8% of maintenance courses. Nonmyelosuppressive toxicity was minimal. Homoharringtonine produced hematologic remissions in the majority of patients with advanced chronic-phase CML. Cytogenetic response occurred in some patients without an association with myelosuppression, and these responses may be prolonged. Future studies investigating homoharringtonine in combination with other active agents in CML, such as interferon, are warranted.

Adult↗

Interferon maintenance therapy for patients with chronic lymphocytic leukemia in remission after fludarabine therapy.

Many patients with chronic lymphocytic leukemia (CLL) achieve remission after treatment with fludarabine chemotherapy. Most of these patients, however, later experience relapse. In addition, immunologic deficits may persist even in patients in complete remission; lymphopenia, predominantly involving the CD4 population, is universal after fludarabine therapy. We used recombinant alpha interferon (IFN-alpha) maintenance therapy in patients with CLL who achieved remission in response to fludarabine therapy to determine its effect on residual disease, assessed by either bone marrow biopsy or flow cytometry, and on immune restoration. Thirty-one patients were treated with IFN-alpha (3 x 10(6) U by subcutaneous injection three times weekly). Twenty-two patients (71%) were in complete remission (CR) and nine (29%) were in partial remission (PR). Of the 22 patients in CR, 21 (95%) had evidence of residual disease at the start of IFN-alpha therapy. Low CD4 levels were noted in 93% of patients, low IgG levels in 45%, and anergy or hypoergy in 52%. Only one patient in PR achieved a CR on IFN-alpha therapy: the only patient who had had no prior fludarabine but had been treated with chlorambucil and prednisone. All patients in CR with minimal residual disease had persistent disease after IFN-alpha treatment. There were no increases in CD4 counts or IgG levels; three patients with borderline responses to skin testing had an increase in the number of positive tests while on IFN-alpha. The time to progression was no different in patients treated with IFN-alpha than in a historical control group of patients who had received no further therapy after fludarabine. In summary, the use of IFN-alpha maintenance did not eradicate residual disease, restore immune function, or prolong remissions in patients with CLL responsive to fludarabine.

Adult↗

Prolonged survival in chronic myelogenous leukemia after cytogenetic response to interferon-alpha therapy. The Leukemia Service.

OBJECTIVE: To determine whether a cytogenetic response after interferon-alpha therapy in patients with chronic myelogenous leukemia is independently associated with improved survival. DESIGN: Retrospective analysis. PATIENTS: 274 patients with a diagnosis of Philadelphia chromosome-positive chronic myelogenous leukemia in early chronic phase who were treated with interferon-alpha-based programs between 1982 and 1990. INTERVENTION: Therapy with daily subcutaneous interferon-alpha given at 5 x 10(6) U/m2 body surface area (highest dose schedule allowed on studies) or the maximally tolerated lower-dose schedule. RESULTS: Overall, 219 (80%) patients achieved a complete hematologic response and 104 (38%) achieved a major cytogenetic response (< 35% Philadelphia chromosome-positive cells). Estimated median survival was 89 months. Several pretreatment factors were associated with failure to achieve a major cytogenetic response and with worse survival. The existing prognostic models were generally predictive of which patients were likely to achieve a major cytogenetic response (P < or = 0.01) and of survival outcomes (P < or = 0.01). Multivariate analysis identified bone marrow basophilia (P < 0.01) and splenomegaly (P < 0.01) as independent poor prognostic factors for survival. Achievement of a major cytogenetic response, entered as a time-dependent variable while accounting for the other independent factors, was associated with improved survival (P < 0.001). Comparison of survival (dated from 12 months into therapy) with cytogenetic response at 12 months showed that a cytogenetic response was associated with longer survival (P < 0.001). CONCLUSION: Achieving a cytogenetic response with interferon-alpha therapy in patients with chronic myelogenous leukemia was independently associated with improved survival when tested as a time-dependent variable in a multivariate analysis, and this association was confirmed by landmark analysis at 12 months.

Adolescent↗

Molecular characterization of 16p deletions associated with inversion 16 defines the critical fusion for leukemogenesis.

The inversion of chromosome 16 [inv(16)] in acute myeloid leukemia (AML) is associated with a p-arm deletion in a subset of patients. The inversion results in two fusion genes: 5'-CBFB/MYH11-3' on 16p and 5'-MYH11/CBFB-3' on 16q. We have studied cells from 42 patients with inv(16) (38 patients) or t(16;16) (four patients) to define the frequency and characteristics of the deletion further. Using fluorescence in situ hybridization (FISH) with probes from cosmids, cosmid contigs, and yeast artificial chromosomes (YACs), we found that six patients with inv(16) had a deletion of between 150 and 350 kb centromeric to the p-arm inversion breakpoint cluster region (p-ibc). This region was shown to contain the 5' portion of the myosin heavy chain (MYH11) gene. YACs containing the p-ibc, which had been useful as FISH probes in the diagnosis of inv(16), detected the inversion in deletion as well as nondeletion patient cells. Thus, the deleted region identified in patients is entirely contained within the human genomic content of the YACs. Southern blot experiments using probes flanking the p-ibc indicated that the deletion removes segments within 10 kb centromeric of the p-ibc. Reverse transcription-polymerase chain reaction (RT-PCR) using primers from the 5' region of CBFB and the 3' region of MYH11 (distal to the p-ibc) produced the 5'-CBFB/MYH11-3' chimeric transcript in inv(16)/del patients. These data confirm that the 5'-CBFB/MYH11-3' chimeric transcript, rather than the reciprocal 5'-MYH11/CBFB-3', is the critical product for chromosome 16-related leukemogenesis.

Acute Disease↗