Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UMLS:C0023473 (chronic myeloid leukemia)
18,916 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

We have identified an identical reciprocal translocation between the long arms of chromosomes 3 and 21 with breakpoints at bands 3q26 and 21q22, [t(3;21)(q26;q22)], in the malignant cells from five adult patients with therapy-related myelodysplastic syndrome (t-MDS) or acute myeloid leukemia (t-AML). Primary diagnoses were Hodgkin's disease in two patients and ovarian carcinoma, breast cancer, and polycythemia vera in one patient each. Patients had been treated with chemotherapy including an alkylating agent for their primary disease 1 to 18 years before the development of t-MDS or t-AML. We have not observed the t(3;21) in over 1,500 patients with a myelodysplastic syndrome or acute myeloid leukemia arising de novo or in over 1,000 patients with lymphoid malignancies. We have previously reported that the t(3;21) occurs in Philadelphia chromosome-positive chronic myelogenous leukemia (CML). Thus, the t(3;21) appears to be limited to t-MDS/t-AML and CML, both of which represent malignant disorders of an early hematopoietic precursor cell. These results provide a new focus for the study of therapy-related leukemia at the molecular level.
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PMID:t(3;21)(q26;q22): a recurring chromosomal abnormality in therapy-related myelodysplastic syndrome and acute myeloid leukemia. 226 51

The diagnosis and classification of leukaemia started with simple morphological examination and now embraces use of special stains, cytochemistry and immunophenotyping. Genetic studies have progressed from karyotyping to detection of genetic changes within genes. The methods described in this chapter are still at an early stage of development and, so far, have provided relatively little in the way of an extension of available diagnostic information. Sometimes the methods provide extensions to existing techniques, for example by the detection of bcr rearrangements in patients who have CML or ALL but do not have a detectable Philadelphia chromosome. Another example is retrospective diagnosis of gene rearrangements using DNA from slide preparations. However, it should be noted that it has only very recently been shown that there is likely to be a causal relationship between the Ph chromosome and leukaemia. Daley et al (1990) induced CML in mice by bone marrow transplantation of cells infected with a retrovirus encoding P210bcr/abl and Heisterkamp et al (1990) produced mice transgenic for a BCR/ABL P190 DNA construct and showed that the progeny died of acute leukaemia (mostly ALL). We have not summarized studies of the incidence of activated oncogenes such as RAS in leukaemia and myelodysplasia. Such oncogenes appear to be involved in many tumours and may well indicate either a predisposition to cancer or a particular stage of malignancy, but their analysis does not at present help in making a diagnosis. It is likely that, as we understand more about the nature of the malignant process, we shall be able to use genetic techniques to enhance considerably both diagnostic and prognostic precision.
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PMID:Molecular biology and leukaemia diagnosis. 227 97

The efficacy and safety of a combination regimen using cefmetazole (CMZ) and netilmicin (NTL) were evaluated in the treatment of infections complicated with hematological disorders. Primary diseases in 31 patients included in the evaluation were acute myelocytic leukemia (3 cases), acute lymphocytic leukemia (2 cases), malignant lymphoma (14 cases), chronic myelocytic leukemia (2 cases), chronic myelocytic leukemia blast crisis (4 cases), myelodysplastic syndrome (2 cases), aplastic anemia (3 cases), and malignant histiocytosis (1 case). Complicated infections included 29 cases of suspected septicemia, 1 case of septicemia and 1 case of pneumonia. Clinical responses were excellent in 6 (19.4%), good in 12 (38.7%), fair in 1 (3.2%) and poor in 12 (38.7%). The total clinical efficacy rate was 58.1%. No significant effect of initial neutrophil counts was observed on response rates. Patients who showed increasing neutrophil counts during therapy had higher response rates than those in whom the neutrophil count decreased or remained unchanged at levels less than 500/mm3 in after neutrophil counts. No side effects were observed in any of the 31 patients. In conclusion, this combination therapy of CMZ and NTL thus appears to be useful and safe in therapies for infections complicated with hematological disorders.
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PMID:[Therapeutic effects of a combination treatment with cefmetazole and netilmicin against infections complicated with hematological disorders]. 228 53

Cytogenetic analyses were performed on 12 adult patients with abnormal megakaryoblastic proliferation which was detected by ultrastructural cytochemical study (platelet peroxidase) and platelet-megakaryocytes-specific monoclonal antibodies (TP-80, Plt1, AN51, and KOR-77). The patients consisted of two patients with myelodysplastic syndromes (MDS), three with acute megakaryoblastic leukemia (AMKL), six with megakaryoblastic transformation in Philadelphia-positive chronic myelogenous leukemia (CML-meg-BC), and one case of chronic myeloproliferative disorder (CMPD). Among them, an inversion of the long arm of chromosome 3 [inv(3)(q21q26)] was found in one AMKL patient with a normal platelet count. Chromosome change at band 3q26 was also found in one MDS patient without thrombocythemia. Furthermore, the long arm of chromosome 13, where rearrangements in myelofibrosis are clustered (13q12----q22) was seen in one MDS patient. Trisomoy of chromosome 19 was found in one AMKL patient and three CML-meg-BC patients. These findings indicate that cytogenetic abnormalities involving 3q26, 13q, and trisomy 19 are associated with hematologic neoplasia with megakaryocytic lineage in adult patients, although these abnormalities were not related to the survival of the patients. During the period of this study, two acute myelogenous leukemia patients (AML-M2 and AML-M5b) with chromosome rearrangements at band 3q21 and thrombocythemia were found, indicating that chromosome abnormality at band 3q21 is related to quantitative platelet dysfunction, whereas that at 3q26 is related to hematologic malignancies with a proliferation of megakaryocytic lineage.
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PMID:Cytogenetic findings in adult acute leukemia and myeloproliferative disorders with an involvement of megakaryocyte lineage. 229 63

Fourteen children with a primary myelodysplastic syndrome (MDS) were seen at this center over a 10-year period. Six of the patients, including two pairs of siblings, had a monosomy 7 population in their bone marrow. Seven patients had the clinical and laboratory features of "juvenile chronic myeloid leukemia." Three patients could be considered to have either the monosomy 7 syndrome or "juvenile chronic myeloid leukemia," indicating that these two entities are not mutually exclusive. All patients fulfilled the French-American-British (FAB) criteria for a myelodysplastic syndrome. Clonal chromosomal abnormalities were detected in 13 of the 14 patients, and consistently involved either monosomy 7, multiple abnormalities, and/or multiple clones. Hematopoietic progenitor assays of blood and marrow samples obtained from most patients showed abnormal progenitor frequencies, or differentiation patterns in culture (or both), often affecting the erythroid as well as the granulopoietic lineages. In particular, granulopoietic progenitors from four to six patients in the "juvenile chronic myeloid leukemia" category generated predominantly abnormal appearing macrophage colonies. Clinical outcomes were poor with rapid transformation to acute myeloid leukemia in most patients. All treated patients responded poorly to conventional chemotherapy, although in two cases remission was achieved with intensive therapy and allogeneic bone marrow transplantation. Childhood myelodysplasia includes a group of diseases that are clinically heterogeneous, and current terminology is confused and inconsistent. Until a better understanding of the biologic and molecular basis of these diseases is obtained, it is proposed that the use of the FAB categories developed for adult MDS might help to improve diagnostic precision and therapeutic comparisons.
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PMID:Childhood myelodysplasia: suggested classification as myelodysplastic syndromes based on laboratory and clinical findings. 230 81

Chronic myeloid leukemia consists of Philadelphia chromosome positive disease in 90% of cases, and a further 5%, although Philadelphia chromosome negative, exhibit bcr gene rearrangements consistent with the disease. The remaining 5% of cases have a heterogeneous clinical picture with a course unlike that of classical chronic myeloid leukemia, and may belong to different pathologic entities. We report five cases belonging to the latter group, initially identified as Philadelphia chromosome negative, bcr non-rearranged chronic myeloid leukemia, that developed progressive leucocytosis, absolute monocytosis, myelodysplasia, extramedullary hematopoiesis, and had evidence of myelofibrosis. These cases may represent a distinct clinical entity characterized by neutrophilic myelofibrosis, which can be identified prospectively by clinical and pathologic criteria. Standard therapy for treating chronic myeloid leukemia or idiopathic myelofibrosis may not be appropriate for this group.
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PMID:Neutrophilic myelofibrosis presenting as Philadelphia chromosome negative BCR non-rearranged chronic myeloid leukemia. 232 6

We report on eight patients who were 35 to 77 years old with an isochromosome 17q as the sole structural chromosomal anomaly. Additional numerical chromosomal changes were a trisomy 8 or 17 in two cases each and a trisomy 19 in one case. Five patients had myelodysplastic syndrome (MDS) diagnosed according to the FAB nomenclature as chronic myelomonocytic leukemia (CMML) in two cases, refractory anemia with excess of blasts in transformation (RAEBt) in two cases, and refractory anemia with excess of blasts (RAEB) in one case. One patient suffered from a myeloproliferative disorder (MPS). All cases progressed to acute nonlymphocytic leukemia (ANLL) type M1, M2, or M4 in a period of 2 to 30 months after initial diagnosis, except one patient with RAEBt who died within 2 months. Two patients presented with ANLL-M2 at time of diagnosis. Treatment during the chronic phase of disease consisted of mild cytoreduction and/or substitution of platelets or red blood cells. One patient with CMML received an allogeneic bone marrow graft and relapsed after 33 months with ANLL-M1. Treatment results for overt leukemia were poor, and survival was short, lasting from 1 to 4 months. Overall survival was 1 to 37 months (median duration, 6.5 months). Molecular studies in two cases revealed neither a BCR rearrangement nor a translocation of the ABL protooncogene, as observed in Ph1-positive chronic myeloid leukemia (CML). Thus, an i(17q) anomaly seems to identify a distinct subgroup of mostly myelodysplastic and, less frequently, myeloproliferative disorders that progress rapidly to ANLL, respond poorly to chemotherapy, and are associated with short survival after transformation.
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PMID:Isochromosome 17q in Ph1-negative leukemia: a clinical, cytogenetic, and molecular study. 222 38

We examined the intracellular alkaline phosphatase (NIAP) activities in peripheral neutrophils in 15 normal controls, 4 patients with myelodysplastic syndrome, and 4 with chronic myeloid leukemia. NIAP activities were decreased in myelodysplastic syndrome in comparing to normal controls (p less than 0.01). These data suggest that measurement of NIAP activity is useful for supporting a diagnosis of myelodysplastic syndrome.
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PMID:[Intracellular alkaline phosphatase activities in myelodysplastic syndrome]. 234 69

Seven cases of miliary tuberculosis in patients with hematologic disease were analyzed clinicopathologically. Mean age of the patients was 65 years, and the hematologic diseases were CML, AML, ALL, MDS and malignant lymphoma. Diabetes mellitus was present as a complication in three patients. Miliary tuberculosis was found in 5 cases during the first admission to our hospital owing to hematologic problems. In 4 of 6 cases, fever had started more than two months before admission, consequently, the tuberculosis probably began about that time. After admission, chemotherapy was administered in 5 cases, and steroid in 6 cases for hematologic disease. The mean total quantity of steroid administered was 2,134 mg of prednisolone and average treatment duration was 69 days. The chest roentgenographic shadow was so atypical that miliary tuberculosis was suspected in only one case. The initial chest roentgenogram showed hilar and mediastinal lymph node swelling as well as the shadow of pulmonary tuberculosis in two cases. It was thought that the hilar and mediastinal lymph node swelling could be explained by primary complex, although the patients were of advanced age, or by "secondary complex" reported by Terplan, K in 1940. The diagnosis of tuberculosis was made in two patients before their death by smear of aspirated fluid of cervical lymph node and by bone marrow cell block in one patients, and by pathological examination of mediastinal lymph node biopsy in the other patients. Tubercles were found from bone marrow cell block in 2 out of 5 patients and from bone marrow biopsy in 1 out of 3 patients, but the positive results were reported in 2 patients following death. Smears of sputum, gastric juice, urine, spinal fluid and pleural effusion were negative in all cases. One patient diagnosed as miliary tuberculosis also had pneumocystis carinii pneumonia. This case was treated with antituberculosis drugs for 20 days without improvement. Another patient diagnosed as miliary tuberculosis improved under treatment with antituberculosis drugs, but died of cytomegalovirus pneumonia. Autopsy in 5 cases revealed non-reactive miliary tuberculosis, and pulmonary hemorrhage probably due to DIC was present as a complication in two cases. In these cases, severe immunosuppression, which is a major precipitating factor of miliary tuberculosis, is thought to be induced by hematologic disease itself, chemotherapy, steroid or other underlying disease such as diabetes mellitus. Miliary tuberculosis in such compromised host is cryptic and progresses rapidly. Consequently, early diagnosis is very important. Retrospectively, the unexplained pyrexia was most important to suspect tuberculosis.(ABSTRACT TRUNCATED AT 400 WORDS)
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PMID:[Clinicopathological study of miliary tuberculosis in patients with hematologic disease]. 237 32

Using the megakaryocytic leukemia cell lines, K-562 and CMK established from a Down's patient with acute megakaryoblastic leukemia, we studied the changes of antigen expression, cytosolic Ca2+ mobilization, thromboxane (TX) A2 formation and gene expression during megakaryocyte differentiation. We found that thrombospondin synthesis and platelet factor (PF)-4 gene expression were specific for mature megakaryoblasts, whereas collagen unresponsiveness and prostaglandin E1-induced Ca2+ mobilization were noted in immature megakaryoblasts alone. This experiment shows that functional and genetic analysis are useful for characterizing the leukemic megakaryoblastic cells. We analyzed the clinical, hematologic and genetic features of 4 patients with M7, and acute megakaryoblastic transformation of CML, MDS and essential thrombocythemia. In two patients, prednisolone and 6-MP were effective in cytoreduction. In 3 patients with increased platelet counts, normal CFU-Meg formation, the megakaryoblasts with platelet production, or the coexistence of immature megakaryoblasts with mature megakaryocytes were observed, thus indicating that some megakaryoblastic leukemia cells still have the capacity of differentiation. One patient had megakaryoblastic cells with PF-4 gene expression. These clinical findings suggest that the megakaryoblastic leukemia could not be characterized as usual leukemia and a more sensitive marker is required to differentiate leukemic megakaryoblasts from normal megakaryoblasts.
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PMID:[Megakaryocytic leukemia cell lines and megakaryocytic leukemia]. 238 Oct 77


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