Search PubMed⌕ Search

Biomedical subjects

F Mitelman

Publications and source records attributed to F Mitelman.

At least 379 records · Page 21Linked to original sources

High resolution chromosome analysis of constitutional and acquired t(15;17) maps c-erbA to subband 17q11.2.

High resolution chromosome analysis was performed on bone marrow cells from four patients with acute promyelocytic leukemia and t(15;17), and in lymphocytes from two unrelated, phenotypically normal persons with an apparently identical constitutional translocation. Scrutiny of prophase-prometaphase chromosomes localized the breakpoints in all six cases to subbands 15q22.3 and 17q11.2. Molecular genetic studies have localized the oncogene c-erbA to chromosome #17 between the breakpoints of the constitutional and the acquired anomaly. The present results, therefore, map c-erbA to subband 17q11.2.

Chromosome Aberrations↗

Numerical chromosome aberrations in human neoplasia.

Cases with a simple gain or loss of one chromosome as the sole cytogenetic change were retrieved from a computerized registry of chromosome aberrations in human neoplasms. Of the total of 5345 cases in the data bank, 610 met the criteria. The distribution of both simple gains (349 cases) and simple losses (261 cases) throughout the genome was distinctly nonrandom. Chromosomes #8, #9, #12, and #21 were more often trisomic, whereas, chromosomes #7, #22, and Y were the ones most often lost. The frequency of simple aberrations varied widely in different diseases: 29.6% in chronic lymphocytic leukemia, 24.2% in meningioma, 16.9% in polycythemia vera, 8.1% in acute nonlymphocytic leukemia, 4.2% in acute lymphocytic leukemia, and 1.4% in non-Hodgkin non-Burkitt lymphoma. The numerical changes have been correlated and compared with the specific structural rearrangements in cancer, and tentative pathogenetic mechanisms whereby numerical aberrations might enhance neoplastic development are discussed.

Aneuploidy↗

Reciprocal translocation (11;19)(q23;p13) in congenital acute lymphoblastic leukemia.

The cytogenetic, clinical, and immunologic findings ina 4-month-old girl with acute lymphoblastic leukemia (ALL) are reported. The malignant lymphoblasts were characterized cytogenetically by the reciprocal translocation t(11;19)(q23;p13); immunologically by an immature pre-B-ALL phenotype. In spite of the high-risk nature of the leukemia, the patient attained complete remission relatively quickly and is still free of disease 3 years after diagnosis. Because the only two previously reported ALL patients with t(11;19) also seem to have responded well to therapy, this cytogenetic abnormality might turn out to be an indicator of favorable prognosis in ALL.

Chromosome Banding↗

Multiple cytogenetic abnormalities in a case of osteosarcoma.

Cytogenetic analysis of a highly malignant osteosarcoma in a 17-year-old girl revealed extremely complex karyotypic changes with several different clonal numerical and structural chromosome aberrations. The composite karyotype was interpreted as 39-41,X,t(X;9)(q11;p24), -1,der(1), -4, -4, -5,i(7q),-8,del(8)(q21),t(10;19)(p13;q13),del(11)(p11p13), t(12;18)(q24;q12), -13,13q+,-14,14p+,-15,15q+,17p+,19q+,-21,+22,+3-6 mar.

Adolescent↗

Cytogenetic analysis in 941 consecutive patients with haematologic disorders.

Clinical and cytogenetic findings were reevaluated in 941 consecutive patients with suspected neoplastic haematological conditions studied during 1973-1984. A total of 1652 attempts at cytogenetic analysis with banding technique were performed in 240 patients with acute nonlymphocytic leukaemia (ANLL), 177 with chronic myeloid leukaemia (CML), 157 with myelodysplasia (MDS), 82 with myeloproliferative disorders (MPD), 114 with acute lymphoblastic leukaemia (ALL), 42 with non-Hodgkin lymphoma or other lymphoproliferative disorders (NHL + LPD), and 120 patients with benign disorders. Only 1 patient with a benign disorder had an acquired clonal chromosomal abnormality (diagnostic specificity 0.99), whereas abnormalities were detected in 50.0% of patients with malignant haematologic disorders (diagnostic sensitivity 0.50). Success rate was 73-74.4% in ALL, MPD, and NHL + LPD, versus 87-94% in ANLL, MDS, CML, and benign disorders. The frequencies of detected abnormalities in diagnostic subgroups were within the limits of previous reports. Striking differences in cytogenetic pattern in relation to age were found in MDS and ANLL. Results from 1973-80 were compared to 1981-84. In spite of a marked reduction in failure rate of bone marrow (BM) analyses in the second time period, the fraction of patients with only inadequate cytogenetic analyses and the frequencies of detected chromosome abnormalities remained essentially unchanged. Peripheral blood samples had a high failure rate, and seldom provided additional information to BM analyses. Delay in transportation time of samples did not in general affect the outcome of cytogenetic analysis, with possible exceptions for a higher failure rate in ALL and lower frequency of detected abnormalities in ANLL.

Acute Disease↗

A twin study of structural chromosome aberrations in lymphocytes.

Structural chromosome aberrations were analyzed in peripheral lymphocytes of eight monozygotic (MZ) and seven dizygotic (DZ) pairs of male twins. There was no significant intrapair difference in the variance of aberration frequencies among the MZ and DZ twins. Thus, there was no evidence of a major genetic influence on the development of structural chromosome aberrations. Although a genetic component could not be excluded, it was concluded that any chromosome aberrations observed were probably due mainly to environmental influences.

Adult↗

Chromosome changes in cancer.

Immense amounts of data about cancer-associated chromosome aberrations have been collected during the last 10 years, and the systematic evaluation of these data has disclosed a number of correlations between chromosome change and neoplastic disease. These results are of practical clinical significance for the evaluation of diagnosis, treatment, and prognosis; they are also of theoretical interest in cancer research and cell biology. This paper reviews the nature, occurrence, and significance of nonrandom and specific chromosome aberrations and discusses briefly the theoretical implications of these changes.

Acute Disease↗

Cytogenetic pattern in leukemic cells of patients with constitutional chromosome anomalies.

Acquired karyotypic changes analyzed by banding techniques in 21 patients with a malignant hematologic disorder and a major constitutional chromosome anomaly, including ten patients with trisomy 21, five patients with a balanced translocation, and six patients with a sex chromosome anomaly. Detailed karyotypic findings were ascertained in 28 additional patients reported in the literature. Some striking differences were observed in the combined material of the present series and cases previously published as regards (a) distribution of morphological leukemia types among patients with different types of constitutional anomalies, and (b) incidence and type of acquired chromosomal abnormality among patients with different types of constitutional anomalies.

Adolescent↗

Telomeric association in a malignant fibrous histiocytoma.

In a malignant soft-tissue fibrous histiocytoma 50-56 chromosomes were found in the majority of the metaphases. The most frequent numerical aberrations were one or two extra copies of chromosomes 4, 5, 18, 20, 22, and a missing chromosome 15. Structural rearrangements encountered were 11p+ and 1-5 unidentifiable markers. The most conspicuous feature was pairs of chromosomes intimately associated or fused at their telomeres, observed in 20 out of 22 metaphases. Although the telomeres of 6p, 11p, 16q, 20q, and 21p were involved most frequently, no preferential pattern of associations was detectable. This peculiar chromosomal behavior is compared to similar observations recently reported in a case of a B-cell lymphoid leukemia.

Chromosome Aberrations↗

Constitutional C-band pattern in patients with adenomatosis of the colon and rectum.

The pattern of polymorphism in the C-band-positive constitutive heterochromatin of chromosomes #1, #9, and #16 was studied in fibroblasts from 23 unrelated patients with adenomatosis of the colon and rectum and in peripheral lymphocytes from 78 control persons. The parameters of the heterochromatic regions analyzed were relative size, symmetry-asymmetry within homologous chromosome pairs, and frequency of inversions. The polyposis coli patients had a significantly higher frequency (p less than 0.05) of partial and total heterochromatin inversion on chromosome #9 than the control group (37.0% compared with 21.8%). In the other parameters studied, no significant differences were found between patients and controls.

Chromosome Banding↗

C-band heteromorphism in breast cancer patients.

The pattern of heteromorphism in the C-band-positive constitutive heterochromatin of human chromosomes #1, #9, and #16 was studied in peripheral lymphocytes of 54 breast cancer patients and 78 control individuals. The parameters of the heterochromatic regions analyzed were relative size, symmetry-asymmetry within homologous pairs, and prevalence of inversions. Significant differences between the two groups were found in C-band size of chromosomes #1, #9, and #16 and in incidence of inversions on chromosomes #1 and #9. Significant differences were noted between premenopausal and postmenopausal cancer patients in regard to inversions on chromosome #9 and between familial and sporadic patients in regard to C-band size on chromosome #16.

Adult↗