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Biomedical subjects

N Mandahl

Publications and source records attributed to N Mandahl.

At least 19 recordsLinked to original sources

Pseudodiploid karyotypes in adenosquamous carcinomas of the lung.

Pseudodiploid karyotypes with clonal structural rearrangements were observed in short-term cultures from two adenosquamous carcinomas (ASC) of the lung, a tumor type hitherto virtually uncharacterized cytogenetically. The karyotypes were 46,XX,der(1)t(1;14)(q44;q22),add(9)(q34) in the first tumor and 46,XX,i(17)(q10) in the second tumor. We suggest that ASC of the lung differ from other lung cancers by having pseudodiploid instead of massively aneuploid tumor stemlines.

Aneuploidy

Trisomy 7 in nonneoplastic focal steatosis of the liver.

Cytogenetic analysis of short-term cultures of a nonneoplastic focal steatosis of the liver showed trisomy 7 as the sole chromosomal change. This finding, especially when viewed in light of previous reports describing +7 in nonneoplastic tissues, strongly suggests that trisomy 7 cannot be considered a tumor-specific abnormality when it occurs as the only change. The cell type in which +7 is present is not yet known.

Adult

Nonrandom chromosomal rearrangements in pancreatic carcinomas.

Short-term cultures were initiated from 20 carcinomas of the pancreas, 17 of which could be successfully cytogenetically analyzed. In eight carcinomas, only normal karyotypes were detected, probably representing dividing stromal cells. Three cases had -Y as the sole anomaly, which also may have occurred in cells that do not belong to the tumor parenchyma. Massively rearranged karyotypes with modal chromosome numbers in the triploid (five cases) and diploid-triploid (one case) ranges were found in the remaining six carcinomas. Structural rearrangements, including deletions and unbalanced translocations, of the long arm of chromosome 6, involving bands q13 and q15 twice and q11 and q16 once, occurred in four tumors. All of these aberrations led to loss of chromosome material from 6q, always involving 6q15. Deletions and unbalanced translocations of the short arm of chromosome 1 also were found in four cases, affecting band p32 in three of them. In all four cases, the abnormalities resulted in loss of genetic material distal to 1p32. Chromosome 17 was involved in structural aberrations in three cases, twice as unbalanced translocations leading to loss of 17p material. Deletions of the short arms of chromosomes 3 and 8 were detected in two carcinomas. The most consistent numerical abnormalities were +2, +10, +11, +14, and tetrasomy 20, which were seen in all six cases. The findings suggest that structural rearrangements, or loss, of genes located on 1p, 3p, 6q, 8p, and 17p are of pathogenetic importance in pancreatic carcinogenesis.

Aged

Cytogenetic analysis of 57 primary prostatic adenocarcinomas.

Cytogenetic analysis after short-term culture in vitro of primary tumor samples was attempted in 82 patients with prostatic cancer. Tumor material was obtained by radical prostatectomy or transurethral resection. Successful cytogenetic studies were performed on 57 tumors of which five were well, 30 moderately, and 22 poorly differentiated adenocarcinomas. Only normal karyotypes were found in 24 tumors. Structural nonclonal aberrations were detected in 18 and clonal karyotypic abnormalities in 15 tumors. The most common clonal numerical aberration was loss of the Y chromosome; a missing Y was found in six tumors, in three of these as the sole anomaly. Clonal structural chromosomal rearrangements, usually accompanied by numerical changes, were detected in 12 tumors. The rearrangements involved 18 of the 22 autosomes and the X chromosome. Chromosomes 1, 7, and 10 were most frequently affected. Deletions, duplications, inversions, insertions, and balanced as well as unbalanced translocations were represented. The breakpoints in chromosome 1 were scattered along both the short and long arms with no obvious clustering, whereas those in chromosomes 7 and 10 were clustered at bands 7q22 (two deletions and two duplications in four different tumors) and 10q24 (two translocations, one deletion, and one inversion in four tumors). One additional tumor displayed a derivative chromosome 10 with a breakpoint in 10q23, and one had monosomy 10. Altogether, these abnormalities resulted in loss of 10q24----qter in five tumors. Monosomy 8 and rearrangements of the short arm of chromosome 8 leading to loss of 8p21----pter were seen in four tumors. Double minute chromosomes were found in two tumors.

Adenocarcinoma

Chromosome aberrations in 35 primary ovarian carcinomas.

Cytogenetic analysis was performed on short-term cultures of primary ovarian carcinomas from 62 patients. Cytogenetic analysis was successful in 59 cases. Clonal chromosome aberrations were detected in 35 tumors. Only numerical changes or a single structural change were found in five carcinomas: trisomy 12 was the sole anomaly in two tumors, one tumor had the karyotype 50,XX, + 5, + 7, + 12, + 14, a fourth tumor had a balanced t(1;5), and the fifth tumor had an unbalanced t(8;15). The fact that four of these five carcinomas were well differentiated suggests that simple karyotypic changes are generally characteristic of these less aggressive ovarian tumors. The majority of the cytogenetically abnormal tumors (n = 30) had complex karyotypes, with both numerical and structural aberrations and often hypodiploid or near-triploid stemlines. The numerical imbalances (comparison with the nearest euploid number) were mostly losses, in order of decreasing frequency -17, -22, -13, -8, -X, and -14. The structural aberrations were mostly deletions and unbalanced translocations. Recurrent loss of genetic material affected chromosome arms 1p, 3p, 6q, and 11p. The breakpoints of the clonal structural abnormalities clustered to several chromosome bands and segments: 19p13, 11p13-15, 1q21-23, 1p36, 19q13, 3p12-13, and 6q21-23. The most consistent change (16 tumors) was a 19p + marker, and in 12 of the tumors the 19p + markers looked alike.

Adult

Trisomy 2 as the sole chromosomal abnormality in a hepatoblastoma.

Short-term cultures of a fine-needle aspirate from a hepatoblastoma were analyzed cytogenetically. Trisomy 2 was found as the sole abnormality, yielding the karyotype 47,XY, + 2/46,XY. Because trisomy for all or part of chromosome 2 has been described, although together with other aberrations, in seven of the 11 hepatoblastomas hitherto reported, the finding of + 2 as the only anomaly in the present case strongly indicates that additional chromosome 2 material is of pathogenetic significance in this tumor type.

Carcinoma, Hepatocellular

Clonal structural chromosome aberrations in nonneoplastic cells of the skin and upper aerodigestive tract.

Cytogenetic analyses of tumors of the skin and upper aerodigestive tract have repeatedly revealed small, pseudodiploid clones characterized by balanced structural rearrangements and a high frequency of cells with nonclonal structural aberrations. However, the lack of common cytogenetic denominators within the different histologic subtypes, the discrepancy between cytogenetic findings and data obtained from flow cytometric DNA content studies, and the occasional identification of tumors with massively rearranged karyotypes indicate that the chromosome rearrangements present in pseudodiploid cells have little to do with the tumorigenesis or progression. Further support for this conclusion, and indirect evidence that the pseudolipid clones probably do not represent the tumor cell populations, derives from the present study in which clonal and nonclonal structural rearrangements were also found in short-term cultures from nonneoplastic skin and pharyngeal mucosa. It is possible that the aberrations are present in subepithelial fibroblast that have accumulated DNA damage due to extensive exposure to potentially carcinogenic agents.

Adult

Improved technique for short-term culture and cytogenetic analysis of human breast cancer.

Various growth media and procedures for tissue disaggregation and culturing were tested with regard to cell attachment, the type of cells to grow out, and the emergence of cytogenetically abnormal clones in cultures of 20 primary breast carcinomas. Clonal chromosome abnormalities were detected in 16 cases (80%). Our findings allow us to suggest a series of modifications of existing culturing and chromosome preparation techniques for breast cancer cytogenetic analysis. The improvements include: (1) combined mechanical and enzymatic disaggregation of the tumor samples, (2) initiation of short-term cultures in plastic flasks that have a Primaria-modified tissue culture surface or have been coated with Vitrogen 100, (3) use of serum-free growth medium, CDM-5, but with temporary (24 hours) enrichment with 20% FBS if rapid cell attachment is not achieved, (4) partial and sequential harvesting of the cultures, and (5) use of minimal volumes of hypotonic and fixative solutions during harvesting.

Aneuploidy

Whole-arm t(1;16) and i(1q) as sole anomalies identify gain of 1q as a primary chromosomal abnormality in breast cancer.

Cytogenetic analysis of four ductal breast carcinomas revealed net gain of 1q in all tumors. In the first tumor, the only change was that one chromosome 16 was replaced by a derivative chromosome consisting of 16p and 1q. The same unbalanced whole-arm translocation was also found in the second tumor, as the only aberration in one of four abnormal clones. In the last two cases, which also were characterized by cytogenetically unrelated clones, an extra i(1q) was present in one clone in both tumors as the sole aberration. Our findings suggest that gain of 1q is a primary chromosomal abnormality in breast carcinomas, in the sense that it is an early event that precedes the acquisition of more complex changes.

Adenocarcinoma, Mucinous

Rearrangement of the transcription factor gene CHOP in myxoid liposarcomas with t(12;16)(q13;p11).

Most myxoid liposarcomas (MLS) are characterized cytogenetically by a t(12;16)(q13;p11). It is reasonable to assume that this translocation corresponds to the consistent rearrangement of one or two genes in 12q13 and/or 16p11, and that the loci thus affected are important in the normal control of fat cell differentiation and proliferation. We have used Southern blot technique to test whether a gene of the CCAAT/enhancer binding protein (C/EBP) family, CHOP, which maps to 12q13 and is assumed to be involved in adipocyte differentiation, could be the 12q gene in question. Using a cDNA probe that spans the CHOP coding region, we detected one rearranged and one wild type allele in nine of nine MLS with t(12;16). Using PCR generated, site-specific probes corresponding to the non-coding exons 1 and 2 and intron 2 of CHOP, rearrangements in five of seven tumors mapped to the 2.4 and 1.6 kbp PstI fragments that contain the first two exons and introns of the gene and the upstream promoter region. In contrast to the findings in MLS, no tumor without a t(12;16) exhibited aberrant CHOP restriction digest patterns. These tumors included one highly differentiated liposarcoma with abnormal karyotype but no involvement of 12q13, seven lipomas with various cytogenetic aberrations of 12q13-15, two uterine leiomyomas with t(12;14) (q14-15;q23-24), and one hemangiopericytoma and one chondroma, both of which also had 12q13 changes.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

Near-haploid clones in a malignant fibrous histiocytoma.

Near-haploid solid tumors are very rare. In a storiform-pleomorphic malignant fibrous histiocytoma (MFH) of bone, we found three cell populations: one with a near-haploid, a second with a near-diploid, and a third with a near-tetraploid chromosome number. The near-haploid cells had few structural rearrangements: i(12p) and t(13q21q) in one clone, and these two and an additional t(19;?)(p11;?) in another clone. One structurally normal copy of all chromosomes was also present, except that the only chromosome 13 was involved in the t(13q21q). There were also two near-diploid clones, one without the t(19;?) and one with a single copy of this derivative chromosome. This is the first tumor with i(12p) among bone and soft tissue tumors.

Chromosome Inversion

Supernumerary ring chromosomes in five bone and soft tissue tumors of low or borderline malignancy.

Five tumors (two myxoid malignant fibrous histiocytoma, two dermatofibrosarcoma protuberans, and one parosteal osteosarcoma) with ring chromosomes as the sole cytogenetic anomaly or as the only structural rearrangement were observed in a series of 60 karyotypically abnormal, nonlipogenic bone and soft tissue tumors (BST). All five tumors were of borderline or low malignancy. These findings support the suggestion that supernumerary ring chromosomes as the sole structural chromosomal aberration are not associated with any particular histopathologic diagnosis but may characterize a group of BST of borderline or low malignancy.

Adolescent

Embryonal rhabdomyosarcoma with 100 chromosomes but no structural aberrations.

An embryonal rhabdomyosarcoma was analyzed cytogenetically after short-term culturing. The tumor was located in the scrotum of an 18-year-old man who, at the age of 4, had been treated for a rhabdomyosarcoma in the orbita. The chromosome number was 100. No structural aberrations were present. There were 2-7 copies of each chromosome type with particular excess of chromosomes 8, 12, and 22, and a relative deficit of chromosome 15.

Adolescent

Recurrent chromosome aberrations in abdominal smooth muscle tumors.

Short-term cultures of four abdominal smooth muscle tumors, three leiomyosarcomas and one leiomyoma, were analyzed cytogenetically. A low-grade malignant, epithelioid leiomyosarcoma had a normal karyotype. The other two leiomyosarcomas had abnormal karyotypes; one was near-diploid, and the other was near-triploid. Structural rearrangements of the short arm of chromosome 16 and monosomies of chromosomes 14, 15, and 22 were observed in both tumors. When our cases and previously published abdominal leiomyosarcomas are viewed in conjunction, loss of chromosomes 14, 15, and 22 are the most frequent abnormalities. The leiomyoma, the second cytogenetically abnormal nonuterine leiomyoma reported to date, had a hyperdiploid karyotype with a chromosome number of 56 and structural rearrangements of chromosomes 9, 14, and 19. The only aberrations similar to those observed in the previously reported esophageal leiomyoma were trisomies of chromosomes 7 and 8.

Abdominal Neoplasms

Cytogenetic findings in three primary hepatocellular carcinomas.

Short-term cultures of three primary hepatocellular carcinomas were cytogenetically analyzed. Case 1 displayed a normal karyotype. Case 2 had, in addition to cells with a normal male chromosome complement, a clone with -Y. In case 3, two abnormal clones were found, one with -Y and one with a highly aberrant karyotype: [formula: see text] Our results, collated with the findings in one previously published primary hepatocellular carcinoma and in three cell lines, suggest that structural changes of chromosomes 1 and 6, leading to loss of 1p and 6q material, and loss of chromosome 16 are frequent events in hepatocellular carcinogenesis.

Aged

Chromosome abnormalities are associated with unfavorable outcome in prostatic cancer patients.

Potential clinico-cytogenetic correlations were assessed in 57 patients with prostatic cancer in whom cytogenetic analysis of the primary tumor had been successful. Clonal karyotypic abnormalities were found in 15 tumours, 18 had normal karyotypes with nonclonal structural abnormalities and 24 had normal karyotypes only. The study began in January 1987 and all patients were monitored regularly until death or through September 1990 (median followup from diagnosis 2.6 years and from surgery 1.3 years). Survival curves were estimated by the Kaplan-Meier method, and the log rank test was used in univariate analyses of possible prognostic factors. The patients with clonal karyotypic abnormalities had shorter survival times (1.3 years) than those with normal karyotypes (greater than 3 years). The difference in survival after surgery was statistically significant (p less than 0.05) when all causes of death and when death from prostatic cancer alone were considered. The Cox proportional hazards regression model was used to evaluate the additional prognostic information of chromosomal changes in excess of that attributable to other well known prognostic factors, such as tumor stage and differentiation, acid and alkaline phosphatases, and performance status. In this analysis there also was a tendency for patients with clonal chromosome aberrations to have an unfavorable outcome but the association was not significantly (p = 0.13), possibly due to the rather small number of patients and short followup. Thus, our study suggests that the presence of clonal karyotypic changes in the tumor cells is associated with an unfavorable outcome in prostatic cancer patients.

Adenocarcinoma