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Biomedical subjects

F Mitelman

Publications and source records attributed to F Mitelman.

At least 325 records · Page 18Linked to original sources

Bands involved in primary chromosome rearrangements in sarcomas are not constitutionally liable to breakage in sarcoma patients.

The localization of breakpoints in spontaneous chromosome aberrations, i.e., chromatid and chromosome gaps, breaks, and exchanges, has been studied in cultured skin fibroblasts from 34 untreated patients with musculoskeletal sarcoma and 38 controls. A total of 325 aberrations in the sarcoma group and 251 in the control group could be assigned to particular bands. The distribution was non-random (P less than 0.001) in both groups. Twenty-one bands in the sarcoma group and 20 in the control group appeared as hot spots, with 11 represented in both groups. Only three hot spots, all of which were present among both patients and controls, coincided with bands involved in primary sarcoma-associated chromosome rearrangements. The results indicate that the chromosome breakage pattern of non-malignant cells is similar in sarcoma patients and controls. Hence, the occurrence of primary structural rearrangements in sarcomas cannot be accounted for by any constitutional proneness to chromosome breakage at these bands.

Adult↗

Three major cytogenetic subgroups can be identified among chromosomally abnormal solitary lipomas.

We have investigated cytogenetically a total of 35 solitary lipomas, 10 of which have been reported previously. Of the 25 tumours presented herein for the first time, clonal chromosome aberrations were detected in 17. The remaining eight had normal karyotypes, although two of them had nonclonal aberrations in about one quarter of the cells. Based on the cytogenetic findings in all 35 lipomas, four major subgroups can be distinguished. These are characterized by: (I) hyperdiploid karyotypes including one or more supernumerary ring chromosomes (5 cases); (II) diploid karyotypes with mostly balanced rearrangements involving 12q13-14 (13 cases), including the rearrangement t(3;12) (q27-28;q13-14) in 4 cases; (III) hypodiploid or diploid karyotypes with other aberrations than ring chromosomes or rearrangements of 12q13-14 (8 cases); and (IV) normal karyotypes (9 cases).

Adult↗

Comparison among five mutagenicity assays in workers producing polyurethane foams.

Thirty-two male individuals exposed to isocyanates and amines during the production of plastic foams and 20 male referents were studied by cytogenetic methods (chromosomal aberrations, sister chromatid exchanges and micronuclei in lymphocytes) and by urinary mutagenic assays (thioether concentrations and mutagenic activity with Salmonella TA98 and E. Coli WP2 uvrA). The occupational exposure was monitored by measurements of toluene diisocyanate and N-methylmorpholine in work-room air. The levels were below the current Swedish hygienic standards. Although all parameters, except the sister chromatid exchanges, showed increased mean values for the exposed group compared to the referents, only the urinary thioether concentrations differed significantly. The study was, however, non-conclusive with regard to a genetic effect of the occupational exposure as measured by the cytogenetic parameters. This may be due to the low exposure level. In the micronuclei frequencies there was a significant effect of age. Smoking significantly affected the SCE frequencies, the thioether concentrations and the mutagenic activities in the Salmonella assay. There were statistically significant correlations between the urine specimens collected during one working day and the following morning with regard to the mutagenic activities in the Salmonella and E. coli assays, and in the thioether concentrations as well. The association between the different cytogenetic and urinary mutagenic assays were weak but there were several statistically significant correlation coefficients, indicating that the variables may have a common metabolic background.

Adult↗

Biological effects in a chemical factory with mutagenic exposure. I. Cytogenetic and haematological parameters.

Analysis in two independent laboratories demonstrated no significant differences in chromosome aberrations or micronuclei in lymphocytes from peripheral blood between workers in a chemical factory (exposed to a mixture of chemicals, such as piperazine, low levels of ethylene oxide and formaldehyde, aromatic nitrogen compounds, and other aromatic compounds) compared to unexposed control subjects. The chemical workers had significantly higher counts of lymphocytes (3.57 vs. 2.82 X 10(9)/l; P less than 0.001), eosinophils (0.27 vs. 0.20 X 10(9)/l; P = 0.005), and basophils (0.06 vs. 0.05 X 10(9)/l; P = 0.01) than the controls. Twenty workers exposed to piperazine had higher total numbers of B-lymphocytes than control subjects.

Adult↗

Cytogenetic evaluation of bone marrow involvement in Burkitt's lymphoma.

Twenty-six bone marrow samples from 21 patients with Burkitt's lymphoma were examined cytogenetically after short-term culture. Clonal chromosomal changes were detected in one of 18 samples from morphologically normal marrows, and in three out of six samples with verified tumor invasion. Three patients had the translocation (8;14)(q24;q32) and one had t(2;8)(p12;q24). Two samples with suspect tumor involvement (less than 5% putative tumor cells) showed no clonal abnormalities. In two samples without morphologic bone marrow infiltration and with only normal metaphases in short-term cultures, clones with t(8;14)(q24;q32) were revealed after a longer time (3-12 weeks) spent in vitro.

Adolescent↗

Rings, dicentrics, and telomeric association in histiocytomas.

We report clonal karyotypic abnormalities in six of 12 cytogenetically investigated malignant fibrous histiocytomas. Four of eight tumors of the pleomorphic subtype had complex clonal chromosome aberrations, including ring chromosomes, dicentric chromosomes, and/or telomeric associations. No common characteristic aberration could be distinguished. Two of four myxoid tumors had clonal changes: One had one to two ring chromosomes and an extra chromosome #2; another had a supernumerary ring chromosome as the sole abnormality.

Aged↗

Unique karyotypic abnormalities in a squamous cell carcinoma of the larynx.

We have cytogenetically examined short-term cultures from a squamous cell carcinoma of the larynx, a type of carcinoma in which chromosome aberrations have hitherto not been reported. The tumor karyotype was 46,XY,inv(2)(p22q24),t(9;13)(q34;q12),t(11;18)(q23;q21). None of these abnormalities have been described in carcinomas before.

Aged↗

Multiple unrelated clonal chromosome abnormalities in an in situ squamous cell carcinoma of the skin.

We have cytogenetically analyzed short-term cultures from an in situ squamous cell carcinoma of the skin (Bowen's disease). The following mosaic tumor karyotype was found: 46,XX, -1, +der(1)(pter----p22::q11----cen----p22:), -9, +der(9)t(1;9)(q11; p24)/46,XX,t(3;6) (q21;p21)/46,XX,t(5;14)(q13;q24),t(7;18)(q32;q11)/46,XX,t(8;11)(p22;q13) /46, XX,t(8;11) (p22;q13),t(15;17) (q13;q24)/46,XX,t(12;15)(q12;p11). None of the rearrangements correspond to previously known cancer-associated abnormalities. Two of the clones are obviously related, and it is reasonable to assume that the t(15;17) developed as an evolutionary change in a cell that already contained t(8;11)(p22;q13). Since five clones without cytogenetic similarities were found in this in situ skin carcinoma, we suggest that the tumor was of polyclonal origin. It is impossible to decide whether all, or indeed any, of the visible abnormalities constitute pathogenetically essential primary changes, or merely represent chromosomal markers of secondary importance in tumorigenesis.

Carcinoma in Situ↗

Trisomy 5 and t(5;14)(q11;q32) as the sole abnormalities in two different clones from a centroblastic non-Hodgkin's lymphoma.

A 62-year-old previously healthy woman presented with a centroblastic non-Hodgkin's lymphoma in the thyroid. Chromosome analysis revealed two unrelated clones, 47,XX,+5 and 46,XX,-14,+der(14)t(5;14)(q11;q32). The two clones may reflect a polyclonal origin, or they may be the descendants of the same neoplastically rearranged cell. In the latter case, the clonal aberrations are either secondary to an event detectable only at the molecular level, or one of them is a primary cytogenetic event while the other arose through clonal evolution with loss of the primary aberration. The best candidate for the primary change would be trisomy 5. Trisomy 5 has previously been associated with lymphomas with diffuse, large, noncleaved morphology, a group within the Working Formulation largely equivalent to centroblastic lymphomas in the Kiel classification. Our findings thus support the notion that trisomy 5 may be associated with centroblastic/diffuse, large, noncleaved lymphomas.

Chromosome Banding↗

Ring formation and structural rearrangements of chromosome 1 as secondary changes in uterine leiomyomas with t(12;14)(q14-15;q23-24).

Cytogenetic analysis of short-term cultures from two uterine leiomyomas revealed, in addition to the primary abnormality, the reciprocal translocation t(12;14)(q14-15;q23-24), secondary structural changes that in both cases included ring chromosomes and rearrangements of chromosome 1. One tumor had the karyotype 46,XX,r(1)(p34q32),ins(8;9)(q13;q13q22),t(12;14)(q14-15;q23- 24). Massive numerical rearrangements were found in the second leiomyoma, with chromosome numbers ranging from 47 to 92. In spite of this variability, two main cell populations could be discerned, one near-diploid, the other hypotetraploid, with most mitoses having chromosome numbers between 80 and 88. These findings were corroborated by flow cytometry, which revealed two peaks corresponding to DNA indexes of 0.97 and 1.77. The structural abnormalities t(1;1)(p31;q44) and t(12;14)(q14-15;q23-24) were present in all karyotypically abnormal cells, and one or more unidentified ring chromosomes were observed in most of the hypotetraploid mitoses. In no cells were double copies of the t(1;1) and t(12;14) rearrangements detected. The similarity between the secondary changes in the cases reported here suggests that clonal evolution in uterine leiomyoma is nonrandom.

Adult↗

Multiple karyotypic rearrangements, including t(X;18)(p11;q11), in a fibrosarcoma.

The tumor stem line of a soft tissue fibrosarcoma, histologic malignancy grade III, had 43 chromosomes with several clonal chromosome aberrations, including the three balanced translocations t(X;18)(p11;q11), t(2;15)(p23;q26), and t(7;22)(q11;q13), two partly identifiable marker chromosomes, der(3)dic(3;?)(p11;?) and der(5), one small marker of unknown origin, and loss of one chromosome #11, #18, #19, and #21.

Adult↗

Chromosome abnormalities in leiomyosarcomas.

Short-term cultures from seven soft tissue leiomyosarcomas were investigated cytogenetically. Sufficient mitoses for chromosome analysis were obtained in six cases, four of which had only normal karyotypes. In one tumor, an intramuscular leiomyosarcoma of the lower arm, a variety of nonclonal structural and numerical aberrations were found in two thirds of the metaphases. Another tumor, a subcutaneous leiomyosarcoma of the knee, had clonal abnormalities resulting in the karyotype 46,X,der(X)t(X;4)(:Xq26----cen----Xp22::4q23----4qter) , del(4)(q23)/47,X,der(X)t(X;4),del(4)(q23), + 20. Flow cytofluorometric measurements of the DNA content in the six leiomyosarcomas successfully karyotyped revealed diploid values in five tumors. The leiomyosarcoma displaying numerous nonclonal changes had two cytofluorometric peaks, 1.01 and 1.39, indicating that the metaphases available for cytogenetic study cannot have been fully representative of the tumor stemline.

Adult↗

Complex chromosome rearrangements in an extraabdominal desmoid tumor.

Cytogenetic studies of an extraabdominal desmoid tumor revealed karyotypic abnormalities in 20 of 50 analyzed metaphases, with no less than 13 clonal marker chromosomes, 11 of which could be at least partially identified. The hypodiploid stemline karyotype was interpreted as: 43-45,XX,-1,-1, + der(1)(?::1p36----1q21::?) + der(1)t(1;?)(p11;?), + der(1) (1pter----1p31::1p11----1cen----1q32::?),- 3,del(3)(p12), + der(3)t[del(3)(p12);?](q25;?), + der(6) t(6;?)(q15;?),-8,-9,-9,-10, + der(10)t(10;?)(p13;?),-12, + der(12)(?::12q14----12q23::?), -13, -13,-15,-19,dic(21;22)(p13;q13),-21, + der(21)t(21;?)(p13;?),-22, + der(22)t(22;?)(q13;?), + 1-3mar/46,XX. This finding of clonal chromosome rearrangements strongly suggests that extraabdominal desmoid tumor is a neoplastic disease.

Adult↗

A specific translocation, t(12;14)(q14-15;q23-24), characterizes a subgroup of uterine leiomyomas.

We have cytogenetically investigated short-term cultures initiated from 34 uterine leiomyomas, all of which were histologically completely benign. Clonal chromosome abnormalities were detected in five cases, a normal female complement in 22, whereas, in the remaining seven tumors no karyotype could be established. Apparently identical reciprocal translocations, t(12;14)(q14-15;q23-24), were found as the sole abnormality in four tumors. The fifth abnormal case contained a t(2;14)(p11;p11). We conclude that chromosome aberrations may be found in myomas of the uterus, and that t(12;14)(q14-15;q23-24) characterizes a subset of these tumors.

Chromosome Banding↗

Multiple apparently unrelated clonal chromosome abnormalities in a squamous cell carcinoma of the tongue.

We have cytogenetically examined short-term cultures from a squamous cell carcinoma of the tongue, a tumor type in which chromosome aberrations hitherto have not been reported. No less than 12 pseudodiploid clones were detected, giving the tumor karyotype 46,X,der(X)t(X;1)(q26;p32),der(1)(Xqter----Xq26::1p32 ----cen----1q42:), del(13)(q11q21),t(15;?) (q26;?)/46,XX,t(1;?)(p34;?),inv(2)(p21q11)/46,XX,t(1;10)(p32;q24)/ 46,XX, + der(1)(12pter----12p11::1p11----cen----1q32:: 11q13----11q22::1q32----1q42:), del(11)(q13q22), -12, der(17)t(1;17) (q42;p13)/46,XX,inv(1)(p22q44)/47,XX,del(1)(q32),der(17)t(1; 17)(p22;q25), der(1)inv(1) (q25q44)t(1;17)(p22;q25),ins(14;7)(q11;q22q36), + 14/46,XX,t(1;4)(q23;q35)/46, XX,t(1;21) (q25;q22),t(2;10)(q31;q26),t(22;?)(q12;?)/46,XX,del(1)(q32)/46,XX, t(1;8)(q44;q21)/46,XX, t(2;21)(q11;p11)/46,XX,t(9;11)(q34;q13). The large number of apparently unrelated abnormalities leads us to suggest that the carcinoma may have been of multiclonal origin.

Aged↗