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A Clode

Publications and source records attributed to A Clode.

8 recordsLinked to original sources

Significance of trisomy 7 and 12 in thyroid lesions with follicular differentiation: a cytogenetic and in situ hybridization study.

In a group of benign and malignant follicular thyroid lesions, previously analyzed by conventional cytogenetics, single- and double-target fluorescence in situ hybridization studies with pericentromeric probes specific for chromosomes 7 and 12 were performed, by using isolated nuclei from paraffin-embedded specimens of: 11 goiters, 21 adenomas, 9 follicular carcinomas, and adjacent normal thyroid tissue. Nonisotopic in situ hybridization with the same probes was used in 4-microm histologic sections of four follicular carcinomas. By fluorescence in situ hybridization analysis, the percentage of goiters, adenomas, and follicular carcinomas with gains of No. 7 was 18.2%, 52.4%, and 66.0%, respectively, and with gains of No. 12 was 9.0%, 42.9%, and 66.0%, respectively. The percentage of the same lesions (goiters, adenomas, carcinomas) exhibiting polysomies of No. 7 and No. 12, as assessed by cytogenetic analysis, was 5.0% and 0.0%, 20.0% and 20.0%, and 15.8% and 10.5%, respectively. Numerical alterations of these chromosomes were not observed in normal tissue. These findings reveal that gain of chromosomes 7 and 12 is a characteristic of the morphologically altered thyroid tissue; polysomies of chromosomes 7 and 12 are more frequent in thyroid lesions than it can be detected by conventional cytogenetic studies; the increasing frequency of polysomies of chromosomes 7 and 12 from hyperplastic lesions to benign and malignant tumors seem to substantiate the existence of a multistep pathway, ie, normal thyroid --> goiter --> adenoma --> follicular carcinoma in the pathogenesis of some thyroid neoplasms.

Adenocarcinoma, Follicular↗

Cytogenetic investigations of 340 thyroid hyperplasias and adenomas revealing correlations between cytogenetic findings and histology.

Cytogenetic analyses were performed on 340 follicular thyroid adenomas and goiters after short-term culture. Clonal chromosomal changes were found in 67 cases. Trisomy 7 as the sole abnormality or along with other trisomies was the most frequent type of aberration (19 cases). Other recurrent numerical changes were loss of chromosome 22 (4 cases) and the second X or the Y chromosome (5 cases). Translocations involving 19q13 (12 cases) were frequent structural chromosomal changes. Dicentric chromosomes or telomeric associations were frequent in goiters (12 cases). After a histopathologic classification of all cases, we have correlated the cytogenetic findings with the histology of the tumors. Only 8.4% of the goiters showed clonal abnormalities, whereas 44.9% of the adenomas revealed clonal abnormalities. Furthermore, simple clonal changes were predominantly found in goiters and complex changes in adenomas. The most impressive correlation was found in the group of lesions with trisomy 7. Although all but one lesion with one or two additional trisomies were goiters, those having three or more additional trisomies were all adenomas or adenomatous goiters.

Adenoma↗

Follicular thyroid carcinoma: chromosome analysis of 19 cases.

Short-term cultures of 19 follicular thyroid carcinomas were examined cytogenetically. Clonal chromosomal changes were detected in 12 tumors. Two follicular carcinomas had only numerical alterations: one with a hyperdiploid karyotype with trisomies/polysomies of chromosomes 7 and 12, similar to the karyotypes previously identified in a sub-group of benign thyroid lesions, and the other with monosomy 20. In the remaining ten cases several structural chromosome anomalies were found. Loss of the short arm of chromosome 3 was observed in one tumor. In two widely invasive and metastasizing follicular carcinomas there was a t(7;8)(p15;q24) as the sole abnormality in one case and a der(8)t(7;8)(p15;q24) together with other cytogenetic alterations in the other case. This finding suggests that t(7;8)(p15;q24) may be related to an aggressive behavior of follicular thyroid carcinomas.

Adenocarcinoma, Follicular↗

[Cytogenetic changes in benign thyroid gland hyperplasias and adenomas correlated with histology].

In order to elucidate cytogenetic changes associated with the development of benign growth of follicular epithelial cells of the thyroid, cytogenetic analyses were performed on 340 follicular thyroid adenomas and goiters after short-term culture. Clonal chromosome changes were found in 67 cases. Trisomy 7 as the sole abnormality or along with other trisomies was the most frequent type of aberration (19 cases). Other recurrent numerical changes were loss of chromosome 22 (4 cases) and the second X or the Y chromosome (5 cases). Translocations involving 19q13 (12 cases) were frequent structural chromosome changes. After a histopathological classification of all cases, we have correlated the cytogenetic findings with the histology of the tumors. Only 8.4% of the goiters showed clonal abnormalities whereas 44.9% of the adenomas revealed clonal abnormalities. Furthermore, simple clonal changes were predominantly found in goiters and complex changes in adenomas. The most impressive correlation was found in the group of lesions with trisomy 7: Whereas all but one lesion with one or two additional trisomies were goiters, those having three or more additional trisomies were all adenomas or adenomatous goiters.

Adenoma↗

Deletion of 3p25-->pter in a primary follicular thyroid carcinoma and its metastasis.

We report the cytogenetic analysis of a follicular thyroid carcinoma and its bone metastasis. Both lesions had identical chromosomal abnormalities, with a der(3)t(2;3)(q13;p25) as the most likely primary clonal alteration. Our findings corroborate previous observations of frequent 3p deletions in thyroid follicular carcinomas and suggest that the minimal chromosomal region of loss in these tumors is 3p25-->pter.

Adenocarcinoma, Follicular↗

Cytogenetic findings in 18 follicular thyroid adenomas.

Cytogenetic study of 18 follicular thyroid adenomas showed clonal chromosome changes in 12 tumors. These results suggest the existence of at least three cytogenetically distinct subgroups: a hyperploid group characterized by the presence of a cluster of numerical changes including +5, +7, and +12 as the most frequent anomalies and, less frequently, +4, +9, +14, +16, and +17; a pseudo- or near-diploid group characterized by simple karyotypic aberrations; and a cytogenetically normal group.

Adenoma↗

Microgibbosities in hydatidiform mole.

Ultrastructural analysis of the surface of the syncytial absorptive epithelium of the aberrant form of human placenta known as hydatidiform mole reveals modifications of the microvillous apical surface. We have described these features as microgibbosities. They are apparently groups or rings of microvilli greater than the usual length in the surrounding cytoplasm. The existence of such microvilli and the probable consequences for the control of the dynamics of microvillar cytoskeletal elements should be accommodated by future theories of microvillar biogenesis.

Female↗