Search PubMed⌕ Search

Biomedical subjects

F Mitelman

Publications and source records attributed to F Mitelman.

At least 163 records · Page 9Linked to original sources

Clonal karyotypic evolution in a pediatric neurofibrosarcoma.

A retroperitoneal neurofibrosarcoma infiltrating the spine of a 2-year-old boy was investigated cytogenetically three times over a 5-month period. The first sample, from a diagnostic fine-needle aspiration biopsy, had a supernumerary i(1)(q10) as the sole clonal aberration; two cells showed monosomy 18 in addition to the isochromosome. The second sample, obtained at tumor resection 3 weeks later, had the karyotype 47,XY, +i(1)(q10), -18, +21/45,XY, -18. After 5 months, a large local recurrence was resected. The chromosome analysis showed further clonal evolution: 45,XY, +1,der (1;11)dic(1;11)(q44;q13)i(1)(q10), inv(6)(p21q12), -17. The findings indicate that formation of i(1)(q10) and loss of chromosome 18 may be early genetic events in neurofibrosarcoma development.

Child, Preschool↗

Characterization of the 12q13-15 amplicon in soft tissue tumors.

Amplification of the genes MDM2, SAS, and CDK4, all located on the long arm of chromosome 12, has recently been demonstrated in human soft tissue tumors. To determine the extent of the amplification unit, we examined 16 soft tissue tumor samples, including pleomorphic liposarcoma, malignant fibrous histiocytoma (MFH), and atypical lipoma, by Southern blot analysis using 13 chromosome 12 probes. All tumors had previously been shown to have 3- to 20-fold amplification of MDM2. In five samples, all MFH, only MDM2 was amplified, whereas in the remaining 11 samples, two to five additional genes were amplified. The amplicon included markers both proximal and distal to MDM2, but was in all but one atypical lipoma confined to the chromosome region 12q13-15. Discontinuous amplicons were found in two of the tumors. This study indicates that MDM2, or possibly an as-yet-unidentified gene in its proximity, is the target gene of the 12q13-15 amplification in soft tissue tumors.

Chromosomes, Human, Pair 12↗

Immune-mediated complications in patients with myelodysplastic syndromes--clinical and cytogenetic features.

It has been recognized in recent years that some patients with myelodysplastic syndromes (MDS) develop immune-mediated complications (IMC), but little is known about the correlations to MDS-specific disease features. In a retrospective study of 82 MDS patients, we identified 10 (12%) with IMC (group A) and compared them to the remaining 72 cases (group B). Group A consisted of 5 patients with biopsy-verified skin vasculitis and 1 case each with temporal arteritis/polymyalgia rheumatica, necrotising panniculitis, Hashimoto's thyroiditis, autoimmune thrombocytopenia, and Sweet's syndrome. Survival times, sex ratio and distribution of MDS subtypes were similar in the two groups. The patients in group A were younger than those in group B (median 66 vs. 76 years, p < 0.01). Four patients (40%) in group A had a history of previous genotoxic therapy for malignant disorders. The bone marrow karyotype was evaluated in 62 patients. Clonal chromosomal abnormalities were found more frequently in Group A than in group B (8/9 vs. 26/53, p = 0.03), and complex karyotypes, i.e., three or more aberrations, were also observed to be more common in group A (3/9 vs. 8/53). The results indicate that IMC preferentially develop in patients with secondary MDS, in younger MDS cases, and in patients with cytogenetic abnormalities.

Adolescent↗

Trisomy 7 in nonneoplastic epithelial kidney cells.

Trisomy 7 has been found as the sole clonal chromosome aberration in a number of tumor types, including renal cell carcinomas (RCC), and also in non-neoplastic kidney tissue. It has recently been proposed that the cells harboring trisomy 7 in RCC and in the surrounding tissue may be tumor infiltrating T-helper lymphocytes. We performed cytogenetic analysis of metaphase cells and FISH of interphase nuclei in uncultured and cultured non-neoplastic kidney tissues from 13 patients with renal or urothelial carcinomas, and 4 patients with inflammatory kidney diseases. FISH analysis showed that the frequency of +7 varied between 1.0-8.9% (mean 3.3%) in uncultured cells and between 0.4-8.6% (mean 4.4%) after one week of cell culture. The frequency of +7 after one week of culture was 1.0-19.0% (mean 6.1%) as determined by cytogenetic analysis. Immunoenzymatic staining of both uncultured and cultured cells with the alkaline phosphatase reaction and monoclonal antibodies for CD3 showed that the frequency of T-cells in uncultured cells and in primary cultures varied between 2.9-10%. The number of T-cells decreased with time and number of in vitro passages to less than 1% after 7-8 weeks, but the frequency of +7 remained fairly constant. Combination of FISH with immunostaining using CD3 for T-lymphocytes and cytokeratins for epithelial cells showed that the cells with +7 were mainly epithelial cells whereas only 0-5% were T-lymphocytes. The results have obvious implications for the interpretation of the significance of trisomy 7 in neoplasia.

Adult↗

Isolation and characterization of radiation hybrids for human chromosome 12.

We have used an irradiation and fusion procedure to generate somatic cell hybrids that maintain fragments of human chromosome 12. To identify hybrids retaining human material we performed repeat element-mediated PCR (intra-ALU PCR) on DNA extracted from individual cell clones. Twenty-five of 38 hybrids tested were shown to contain human material at low passage. These were further characterized by inter-ALU and inter-LI PCR. FISH analysis, using human Cot1 DNA as a probe, revealed the presence of 1-2 fragments in 11 out of 12 hybrids. The majority of the hybrids, 8 out of 12, were found to be homogeneous. The hybrid panel was characterized by 18 markers with known locations covering the entire chromosome 12. Thirteen of the 25 hybrids were positive for at least one marker. The results indicated the following order of loci on 12q: Cen-WNTI-A2MR-RAP1B-D12S8-PTBR-ATP2B1++ +-D12S7-D12S52-IGF1-PAH-PLA2-IFNG-ALDH2-te r. Three hybrids studied in more detail were found to carry overlapping fragments from chromosome segment 12q12-->q14.

Animals↗

A human 12p-derived cosmid hybridizing to subsets of human and chimpanzee telomeres.

The chromosomal locations of a cosmid-linking clone, cLN12-43, isolated from band 12p13 in man and containing subtelomeric repeat sequences, were determined by FISH. The cosmid hybridized to the telomeres of 3q, 6p, 9p, 12p, 15q, 19p, 20p, and 20q at high frequency and showed variable hybridization to 1p, 6q, and 9q. Two interstitial loci were detected, one at bands 2q13-->q14 and the other at band 12q13. The former corresponds to the fusion point of chimpanzee chromosomes 12 and 13, resulting in the human chromosome 2, whereas the latter may represent a similar but more ancient fusion event. The cLN12-43 cosmid was also shown to hybridize to a set of chimpanzee telomeres.

Animals↗

Waldenström's macroglobulinemia with the AML/MDS-associated t(1;3)(p36;q21).

Two unusual, and perhaps causally related, clinical and cytogenetic features in a patient with Waldenström's macroglobulinemia are presented. Firstly, during the progression of the primary macroglobulinemia bone destruction and hypercalcemia occurred. Secondly, a t(1;3)(p36;q21) was found as the sole clonal chromosomal abnormality. This translocation is characteristic of acute myeloid leukemia (AML) and myelodysplastic syndromes with a high propensity for progressing to AML. The t(1;3) has previously never been reported in a lymphoproliferative disorder. Since the abnormality is associated with acute transformation of cells of the myelopoietic lineages, it is possible that the t(1;3), found in cells of lymphoid origin in the present case, not only induced the neoplastic process as such but also brought about the unusually malignant tumor progression.

Chromosomes, Human, Pair 1↗

Characterization of the CHOP breakpoints and fusion transcripts in myxoid liposarcomas with the 12;16 translocation.

Myxoid liposarcomas are cytogenetically characterized by t(12;16)(q13;p11). The translocation results in rearrangements of the CHOP gene in 12q13 and the FUS gene in 16p11, creating a fusion gene where the RNA-binding domain of FUS is replaced by the DNA-binding and leucine zipper dimerization domain of CHOP. In the present study, we have mapped 16 genomic breakpoints in the region of the CHOP gene and isolated and sequenced a new variant (type II) of the chimeric FUS/CHOP transcript. The genomic breakpoints were dispersed along a 7.50-kilobase pair region from a SstI cleavage site upstream of the promoter of CHOP to a PstI cleavage site within intron 1. Reverse transcriptase-polymerase chain reaction analysis of tumor samples demonstrated the presence of two variant fragments, 654 base pairs (type I) and 378 base pairs (type II) in size. Of the 13 samples analyzed, 7 showed the smaller, 3 showed the larger, and 3 showed both types of transcripts. We cloned and sequenced the two fragments and found in type II a novel fusion point in the FUS mRNA 275 base pairs upstream of that present in the type I transcript. In both types of transcripts the interrupted FUS is followed by the entire exon 2 of CHOP. As a consequence the normally nontranslated exon 2 is translated and in both types there is in the junction between FUS and CHOP a shift from a FUS glycine codon to a valine codon in the chimeric mRNA.

Base Sequence↗

Hibernomas are characterized by rearrangements of chromosome bands 11q13-21.

Cytogenetic analysis revealed structural rearrangements of 11q13-21 in 9 lipogenic tumors--4 hibernomas, 4 typical lipomas and 1 mixed myxoid and well-differentiated liposarcoma. Two hibernomas and all lipomas simultaneously showed aberrations attributable to previously recognized cytogenetic subgroups among benign adipose tissue tumors, i.e., supernumerary ring chromosomes or rearrangements of 6p, 12q13-15, or 13q. The sole anomaly in the liposarcoma was a 4-way translocation t(9;11;22;12)(q21;q13;q11;q13), an aberration that has not previously been detected in either myxoid or well-differentiated liposarcomas. Together with our 4 cases, a total of 7 cytogenetically aberrant hibernomas have been reported. Five tumors have shown rearrangements of 11q13 and 2 of 11q21, indicating that this segment of chromosome 11 harbors one or more genes of importance in hibernoma development. Rearrangements of 11q13-21 also appear to be frequent in typical lipomas; a total of 8 typical lipomas with 11q13-21 changes have been described, including those in our series. In all but 1 however, breakpoints were also found in 6p, 12q13-15, or 13q.

Adult↗

Karyotypic pattern of pancreatic adenocarcinomas correlates with survival and tumour grade.

The relationship between cytogenetic findings and clinicohistopathological parameters was assessed in 29 patients with pancreatic adenocarcinoma. Karyotypic analysis revealed normal karyotypes (N) in 8 carcinomas and abnormal karyotypes (A) in 21. Within the A group, 8 cases had simple chromosome abnormalities (As), i.e., only one numerical or structural aberration, whereas 13 had complex changes with multiple numerical and structural abnormalities (Ac). No significant differences between the N and A groups were detected in terms of tumour grade, clinical stage, type of surgery performed, tumour site or size or the patient's age and survival. A correlation analysis between groups As and Ac revealed a significant difference with regard to grade, poorly differentiated carcinomas being more frequent in the Ac group. Patients in the Ac group had also a significantly shorter survival time than those in the As group. None of the other potentially prognostic parameters, i.e., grade, tumour site, stage and type of surgery performed, correlated significantly with clinical outcome.

Adenocarcinoma↗

Cancer risk in humans predicted by increased levels of chromosomal aberrations in lymphocytes: Nordic study group on the health risk of chromosome damage.

Cytogenetic assays in peripheral blood lymphocytes (PBL) have been used extensively to survey the exposure of humans to genotoxic agents. The conceptual basis for this has been the hypothesis that the extent of genetic damage in PBL reflects critical events for carcinogenic processes in target tissues. Until now, no follow-up studies have been performed to assess the predictive value of these methods for subsequent cancer risk. In an ongoing Nordic cohort study of cancer incidence, 3182 subjects were examined between 1970 and 1988 for chromosomal aberrations (CA), sister chromatid exchange or micronuclei in PBL. In order to standardize for the interlaboratory variation, the results were trichotomized for each laboratory into three strata: low (1-33 percentile), medium (34-66 percentile), or high (67-100 percentile). In this second follow-up, a total of 85 cancers were diagnosed during the observation period (1970-1991). There was no significant trend in the standardized incidence ratio with the frequencies of sister chromatid exchange or micronuclei, but the data for these parameters are still too limited to allow firm conclusions. There was a statistically significant linear trend (P = 0.0009) in CA strata with regard to subsequent cancer risk. The point estimates of the standardized incidence ratio in the three CA strata were 0.9, 0.7, and 2.1, respectively. Thus, an increased level of chromosome breakage appears to be a relevant biomarker of future cancer risk.

Adult↗

Karyotypic characterization of bronchial large cell carcinomas.

Cytogenetic analysis of short-term cultures from 26 primary bronchial large cell carcinomas and 1 metastasis from a primary large cell carcinoma revealed clonal chromosome abnormalities in 20 tumors and a normal karyotype in 6. No outgrowth was obtained in 1 case. Simple aberrations were present in 3 tumors; in 1, the only change was a reciprocal translocation between chromosomes 1 and 6, in another the sole anomaly was a supernumerary marker ring chromosome and in a third loss of the Y chromosome was the only clonal change. The remaining 17 tumors had complex karyotypes. The chromosomes most frequently involved in structural rearrangements were chromosomes 1, 2, 3, 5, 6, 7, 8, 10, 11, 13, 14 and 17. The bands most frequently affected were 1q11-12, 1p13, 7q11, and 17p11-13. The rearrangements led to repeated losses of 1p, 1q, 3p, 6q, 7q and 17p and gains of 5q and 7p. The emerging karyotypic picture of large cell lung carcinomas indicates more similarities with adenocarcinomas than with other pathologic subgroups of lung cancer.

Aged↗

Loss of chromosome band 8q24 in sporadic osteocartilaginous exostoses.

We have karyotyped eight sporadic osteocartilaginous exostoses (OCE), a tumor type not characterized cytogenetically before. Five tumors had only normal karyotypes, whereas three displayed the following abnormal karyotypes: 46,XY,del(8)(q24.1); 46,XX,del(8)(q22), t(8;14)(q24.1;q32); and 46,XY,der(8)t(1;8)(q21;q24),inv(12)(p11q13). All three aberrant cases thus had structural rearrangements leading to loss of the distal part of 8q. This is of particular interest because multiple OCE are part of the disease phenotype in patients with the autosomal dominant tricho-rhino-phalangeal syndrome type II (TRP II), many of whom have constitutional loss of genetic material from 8q24.1. We hypothesis that band 8q24.1 harbors a tumor suppressor gene, the homozygous inactivation of which is important in the genesis of both inherited and sporadic OCE. In the familial form, i.e., in TRP II, loss or functional inactivation of one allele is inherited and only the second mutation is due to a somatic event, whereas both mutations are somatic in the sporadic forms. This hypothesis can be tested by analysis of sporadic and inherited OCE for homozygous loss of 8q24 material with molecular genetic techniques.

Adolescent↗

Cytogenetic aberrations in 188 benign and borderline adipose tissue tumors.

Chromosome studies of lipomas have revealed an extensive cytogenetic heterogeneity. To investigate the frequencies of previously recognized cytogenetic subgroups and to find out if more recurrent rearrangements can be identified, we have analyzed cytogenetically short-term tissue cultures of 237 samples from 188 adipose tissue tumors obtained from 142 patients. Only one of 58 tumors from 18 patients with multiple lipomas (more than two tumors) had karyotypic changes. Among the sporadic lipomas, 20 tumors had supernumerary ring chromosomes of unknown origin, 55 had different aberrations involving chromosome segment 12q13-15, 11 had changes of 6p or chromosome 13, but no rings or 12q13-15 changes, and 14 had various other aberrations. Ring chromosomes were found in all cytogenetically abnormal lipomas histologically classified as atypical and in nine tumors classified as typical lipoma or spindle cell lipoma. Recombinations between 12q13-15 and a few other bands or segments were seen more than once: 3q27-28 (15 tumors), 2p22-24 and 2q35 (four tumors), 1p32-34 and 13q12-14 (three tumors), and 5q33 (two tumors). Recombinations of 12q13-15 with 2q35 and 13q12-14 have not been described before. Of eight tumors with chromosome 13 aberrations, five had loss of 13q material. Aberrations of 12q13-15, 6p, and/or chromosome 13 were found simultaneously in nine tumors. Two to four samples from the same tumor were investigated in 29 tumors with clonal aberrations. Thirteen of these tumors displayed clonal evolution, also noted in another 17 tumors in which only one sample had been investigated. Thus clonal evolution occurred in 30% of the tumors and was particularly frequent in atypical lipomas.

Adolescent↗

Molecular analysis of simple variant translocations in acute promyelocytic leukemia.

The primary cytogenetic abnormality in acute promyelocytic leukemia (APL; FAB M3) is a reciprocal translocation, t(15;17)(q22;q12), which serves to fuse the PML gene on chromosome 15 to the retinoic acid receptor alpha (RARA) gene on chromosome 17. A PML-RARA fusion message transcribed from the der(15) is thought to mediate leukemogenesis. Two APL patients with simple variants of this translocation, t(3;15)(q21;q22) and t(X;15)(p11;q22), have previously been reported who lack cytogenetic involvement of chromosome 17, although their breakpoint positions on chromosome 15 still suggest the involvement of the PML gene. Here we report on a combined analysis by molecular genetics and in situ hybridization of these two patients, in which we wanted to determine whether the PML gene has alternative fusion partners or whether cryptic rearrangement of the RARA locus has occurred instead. A cryptic involvement of RARA was demonstrated in both patients by a combination of Southern analysis, reverse transcription coupled to PCR (RT-PCR), and fluorescence in situ hybridization. The results indicate an absolute requirement for the rearrangement of the RARA gene in the pathogenesis of APL and underline the importance of RARA during normal myeloid differentiation.

Adolescent↗

MDM2 gene amplification correlates with ring chromosome in soft tissue tumors.

The human homolog of the murine double minute type 2 gene (MDM2) has been cloned and mapped to 12q13-14. The gene presumably functions as a cellular regulator and mediator of TP53 function. Amplification of the MDM2 gene has recently been observed in soft tissue sarcoma and in osteosarcoma. We studied MDM2 amplification in a series of 94 mesenchymal tumors and found 3-20-fold amplification in 20 tumors: in 10 of 49 malignant fibrous histiocytomas (MFH), in 1 of 2 pleomorphic liposarcomas, in 6 of 7 atypical lipomas, and in 3 of 12 typical lipomas. Normal hybridization patterns were detected in all 16 myxoid liposarcomas, in all 3 leiomyosarcomas, and in all 5 leiomyomas studied. The MDM2 amplification correlated with the presence of marker ring chromosomes; of the 10 MFH with MDM2 amplification, 5 had ring chromosomes, compared to 4 of 39 without MDM2 amplification, and all 9 liposomas with MDM2 amplification had ring chromosomes, in 5 of the tumors as the sole karyotypic anomaly. The correlation between ring chromosomes and MDM2 gene amplification indicates that the marker rings of MFH and of atypical lipoma often harbor genetic material derived from chromosome 12.

Adult↗