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Biomedical subjects

F Mitelman

Publications and source records attributed to F Mitelman.

At least 289 records · Page 16Linked to original sources

Clinical-cytogenetic correlations in myelodysplasia (preleukemia).

Cytogenetic studies detected abnormalities in 107 (43%) of the 247 patients in this series. Some degree of overt clinical progression occurred in 55 patients (22%), this being 29% of those patients with cytogenetic abnormalities and 17% of those with normal chromosomes. The presence and complexity of a clonal cytogenetic abnormality correlated with shorter survival. In each clone category of a complexity classification (simple, complex, very complex), patients with some normal cells appeared to have better survival than those with none. In multiple regression analyses, the prognostic value of chromosomes was independent of (and second in importance to) the FAB type of myelodysplastic syndrome (MDS) whichever chromosome classification was used. Patients with refractory anemia (RA) had the lowest incidence of chromosome abnormalities and no cases were found to have only abnormal cells (AA). A greater proportion of patients with refractory anemia with an excess of blasts (RAEB) and RAEB in transformation (RAEB-t) had clonal abnormalities. Morphology alone is not at present able to distinguish between RA or refractory anemia with ringed sideroblasts and similar disorders that may not be MDS in the strict sense. Demonstration of a clonal cytogenetic abnormality remains a positive indication of the presence of the neoplastic nature of the disease.

Adult↗

Characteristic karyotypic anomalies identify subtypes of malignant fibrous histiocytoma.

Cytogenetic analysis of short-term cultures from 25 malignant fibrous histiocytomas (MFH) revealed clonal chromosome abnormalities in 17 tumors: ten storiform-pleomorphic and seven myxoid MFH. Telomeric associations, rings, and dicentric chromosomes were present in 11 tumors and cytogenetic signs of gene amplification (homogeneously staining regions and double minute chromosomes) in four. The breakpoint distribution of the numerous structural rearrangements was nonrandom. The chromosome bands most frequently affected were 19p13 (in eight tumors; eight rearrangements gave rise to 19p+ markers, some of which looked similar, and an r(19) was found in one case), 11p11 (in seven tumors; three translocations and four deletions), 1q11 (in seven tumors; one translocation and six deletions), and 3p12 (in six tumors; all deletions). Other bands involved at least four times were 1p36, 5p15, and 20q13. Of particular clinical interest was the observation that tumors with 19p+ seemed to have a pronounced tendency to recur locally (local recurrence in five of eight tumors with 19p+ compared to one of nine in tumors without this aberration; observation period 4-16 months).

Aged↗

Complex karyotypic anomalies in a bizarre leiomyoma of the uterus.

Cytogenetic investigation of short-term cultures from a bizarre leiomyoma of the uterus, a tumor type not hitherto karyotypically characterized, revealed two abnormal clones with multiple complex rearrangements. Three-fourths of the aberrant cells were hypodiploid with the composite karyotype 38-44,XX,-6,-7,-10, -11,+20,-22,r(1),der(2)(:2p23----cen----2q13::1q21---- 1qter),der(2)t(2; 9)(p21;q13),t(5;?)(q35;?), t(5;?),(q35;?),+der(5)t(5;15)(q11;q15), der(8)t(8;11)(q24;q13),t(15;?)(p12;?),der(16)t(12;16)(q13;p13),+r,+mar. The remaining abnormal mitoses were hypotetraploid, with chromosome numbers ranging from 74 to 86. These massively rearranged cells showed the same markers that were found in the hypodiploid clone, but in duplicate, indicating that this clone had arisen through polyploidization of hypodiploid cells. Flow cytometry revealed a DNA index of 1.03.

Female↗

Consistent occurrence of a 19p+ marker chromosome and loss of 11p material in ovarian seropapillary cystadenocarcinomas.

Cytogenetic analysis of short-term cultures from 11 moderately to poorly differentiated ovarian seropapillary cystadenocarcinomas revealed clonal chromosomal abnormalities in nine tumors. Two bands were involved in structural rearrangements in more than half of the tumors. The band most frequently affected was 19p13; rearrangements giving rise to a 19p+ marker chromosome were found in seven tumors, and in four of them the 19p+ markers appeared to be identical. Structural rearrangements resulting in loss of 11p13-11pter material were found in six tumors.

Cell Differentiation↗

In situ hybridization localizes the human putative oncogene GLI to chromosome subbands 12q13.3-14.1.

Using in situ hybridization, we have localized the human putative oncogene GLI to chromosome subbands 12q13.3-14.1. The precise genomic site is of interest since the region 12q13-15 has been found to be consistently rearranged in neoplasia-associated chromosome abnormalities in lipomas, myxoid liposarcomas, uterine leiomyomas, and pleomorphic adenomas of the salivary gland.

Chromosome Banding↗

Basosquamous papilloma. A benign epithelial skin tumor with multiple cytogenetic clones.

Cytogenetic analysis of short-term cultures from a basosquamous papilloma revealed the following mosaic karyotype: 46,XX,t(2;5)(q31;q31),t(8;15)(p21;q21)/46,XX,t(7;17)(p13;p13)/47,XX, t(3;20)(q12;p13),+7/46,XX,t(1:12)(p12;q13). The finding of four abnormal, cytogenetically unrelated clones suggests a multicellular origin of this benign skin tumor. None of the structural rearrangements encountered have previously been associated with neoplasia.

Aged↗

Cytogenetic abnormalities in an angioleiomyoma.

We have cytogenetically investigated short-term cultures from an angioleiomyoma. Monosomy for chromosome 13, and one to two small markers were observed in the tumor cells, resulting in the karyotype 46-47,XY,-13,+1-2 mar.

Aged↗

Multiple clonal chromosome aberrations in two thymomas.

Cytogenetic investigations of two thymomas of different histopathology revealed unrelated clonal karyotypic changes: 44,XY,+X,inv(2)(p25q13),del(6)(q15),-8,-16,-17 in a cortical thymoma, and 48-49,XX,+del(X)(q24),+i(5p),+?del(7)(q22),der(11)t(1;11)(q23;q25),t(11; ?)(p15;?),-18,+r in a mixed-type thymoma. These are the first thymic tumors of epithelial origin that have been investigated with banding technique.

Aged↗

No amplification or rearrangement of INT1, GLI, or COL2A1 in uterine leiomyomas with t(12;14)(q14-15;q23-24).

We have studied three uterine leiomyoma tumors, all previously cytogenetically analyzed and shown to have the clonal abnormality t(12:14)(q14-15;q23-24), with the purpose of detecting amplification or rearrangement of three genes that are localized close to the 12q breakpoint region. The genes studied were the two putative oncogenes INT1 and GLI, and the collagen type II alpha 1 gene, COL2A1. No rearrangement or amplification could be detected for any of the three gene sequences.

Chromosomes, Human, Pair 12↗

Clonal chromosome aberrations in a keratoacanthoma and a basal cell papilloma.

Clonal chromosome abnormalities were found in short-term cultures from two epithelial skin tumors, a basal cell papilloma and a keratoacanthoma. The three-way translocation t(2;6;11)(q21;q27;p13) was the sole clonal rearrangement in the basal cell papilloma. The karyotype of the keratoacanthoma was more complex: 46,XX,der(2)(2pter----2p13::2p11----cen----2q37: :5q33----5qter),der(2) (:2p13----cen----2q37::6q23----6qter),der(5)t(2; 7;5)(q37;q11;q33),der(6) (6pter----cen----6q23::2p13----2pter),der(7)t(2; 7;5)(q37;q11;q33), del(13)(q11q14). In addition, several nonclonal structural changes were seen in both tumors.

Aged↗

Diverse chromosome abnormalities in squamous cell carcinomas of the skin.

Short-term cultures from three invasive squamous cell carcinomas of the skin were cytogenetically analyzed. Clonal chromosome aberrations were found in all tumors. In the first case, two of three abnormal clones were related, and in the second case, two of five clones demonstrated cytogenetic similarities. Both clones detected in case 3 had a structural rearrangement in common. Several nonclonal changes were seen in all three cases in addition to the clonal aberrations. None of the rearrangements detected, clonal or nonclonal, corresponds to any of the consistently cancer-associated aberrations known from other neoplasms. The remarkably diverse karyotypic picture of the three squamous cell carcinomas, in particular the finding of unrelated clones in two of them, hints that these neoplasms may be poly-rather than monoclonal. The lack of a common cytogenetic denominator argues that if chromosomal changes are of pathogenetic importance in this tumor type, a wide variety of apparently dissimilar changes exist that are roughly equal in their capacity to malignantly transform skin epithelium.

Aged↗

The gene for the human putative apoE receptor is on chromosome 12 in the segment q13-14.

We have previously described the cDNA coding for a new lipoprotein receptor that contains domains closely related to the ligand-binding domain of the LDL receptor. We have now investigated the localization of the gene for this new receptor by hybridization of the cDNA to panels of rodent cells containing subsets of human chromosomes and by in situ hybridization of the cDNA to chromosomes. The gene maps to 12q13-14, a known hot spot for chromosomal rearrangements in human neoplasia. Of particular interest is the frequent involvement of the 12q13-14 segment in clonal abnormalities in lipomas and myxoid liposarcomas, and it is possible that LRP may play a role in the pathogenesis of such tumors.

Animals↗