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Träfflista för sökning "AMNE:(MEDICAL AND HEALTH SCIENCES Basic Medicine Medical Genetics) ;pers:(Mitelman Felix)"

Sökning: AMNE:(MEDICAL AND HEALTH SCIENCES Basic Medicine Medical Genetics) > Mitelman Felix

  • Resultat 1-10 av 88
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1.
  • Mertens, Fredrik, et al. (författare)
  • Tumors of the skin
  • 2015. - 4th
  • Ingår i: Cancer Cytogenetics : Chromosomal and Molecular Genetic Aberrations of Tumor Cells - Chromosomal and Molecular Genetic Aberrations of Tumor Cells. - Chichester, UK : John Wiley & Sons, Ltd. - 9781118795538 - 9781118795569 ; , s. 555-565
  • Bokkapitel (refereegranskat)abstract
    • Skin cancer is the most common malignancy in humans. Clonal chromosome abnormalities have been reported in approximately 100 basal cell epitheliomas (BCC). In contrast to BCC, which has no recognized precursor lesion, squamous cell carcinoma (SCC) of the skin is known to develop through histologic stages, the most important of which are actinic keratosis (squamous cell dysplasia) and carcinoma in situ (severe dysplasia). A wide range of clinically and pathologically different benign and malignant melanocytic tumors are recognized. Appendageal tumors are subdivided into more than 30 benign and malignant subtypes showing apocrine and eccrine differentiation or follicular and sebaceous differentiation. Merkel cell carcinomas have near-diploid karyotypes, often showing rearrangements of chromosome 1. Dermal cylindromas may show similar genetic features to adenoid cystic carcinomas with the occurrence of a t (6; 9) (q22-23; p23-24) leading to a MYB-NFIB fusion gene.
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2.
  • Mitelman, Felix, et al. (författare)
  • How it all began : Cancer cytogenetics before sequencing
  • 2015. - 4th
  • Ingår i: Cancer Cytogenetics : Chromosomal and Molecular Genetic Aberrations of Tumor Cells - Chromosomal and Molecular Genetic Aberrations of Tumor Cells. - Chichester, UK : John Wiley & Sons, Ltd. - 9781118795538 - 9781118795569 ; , s. 1-10
  • Bokkapitel (refereegranskat)abstract
    • According to Boveri's hypothesis, chromosome abnormalities were the cellular changes causing the transition from normal to malignant proliferation. Technical difficulties prevented reliable visualization of mammalian chromosomes, in both normal and neoplastic cells, throughout the entire first half of the 20th century. Nowell and Hungerford's discovery greatly stimulated interest in cancer cytogenetics in the early 1960s, but for several reasons, the Ph chromosome long remained an exceptional finding. The advent of molecular genetics in the 1980s and the development of a range of powerful molecular cytogenetic technologies, such as fluorescence in situ hybridization (FISH), multicolor FISH, comparative genomic hybridization (CGH), various array-based genotyping technologies, and DNA and RNA sequencing, have widened one's knowledge and understanding of the molecular mechanisms that are operative in neoplastic initiation and progression. In the 100 years since Boveri first postulated that chromosome change may initiate the carcinogenic process, cancer cytogenetics has come of age.
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3.
  • Heim, Sverre, et al. (författare)
  • Cytogenetic nomenclature
  • 2015. - 4th
  • Ingår i: Cancer Cytogenetics : Chromosomal and Molecular Genetic Aberrations of Tumor Cells, - Chromosomal and Molecular Genetic Aberrations of Tumor Cells. - Chichester, UK : John Wiley & Sons, Ltd. - 9781118795538 - 9781118795569 ; , s. 19-25
  • Bokkapitel (refereegranskat)abstract
    • This chapter elaborates on human chromosome nomenclature. It provides a brief summary of the most essential cytogenetic terminology related to the description of chromosome aberrations in neoplastic cells. The chapter outlines criteria for designation of regions and bands for chromosome nomenclature. Regions and bands are numbered consecutively from the centromere outward along each chromosome arm. This chapter outlines guidelines and conventions foy karyotypic nomenclature. It provides a detailed account on nomenclature of tumor cell populations. The introduction of various in situ hybridization technologies into the cytogenetic analysis of interphase and metaphase cells has led the International Standing Committee on Human Cytogenetic Nomenclature to propose an in situ hybridization (ish) nomenclature system that may be used to describe abnormalities at the molecular level by indicating, for example, the presence, absence, amplification, or separation of specific probe signals.
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4.
  • Heim, Sverre, et al. (författare)
  • Nonrandom chromosome abnormalities in cancer : An overview
  • 2015. - 4th
  • Ingår i: Cancer Cytogenetics : Chromosomal and Molecular Genetic Aberrations of Tumor Cells - Chromosomal and Molecular Genetic Aberrations of Tumor Cells. - Chichester, UK : John Wiley & Sons, Ltd. - 9781118795538 - 9781118795569 ; , s. 26-41
  • Bokkapitel (refereegranskat)abstract
    • This chapter discusses neoplastic karyotypes. It emphasizes the difference between primary and secondary changes and address the questions of why, how, when, and where chromosome abnormalities arise; compare numerical and structural aberrations in terms of how they contribute to tumor development; and also touch upon the issues of what causes cancer-associated chromosome abnormalities and whether they are necessary and/or sufficient to transform a normal cell into a cancer cell. It discusses some of the more principal differences between the cytogenetic and molecular genetic approaches to the study of acquired somatic cell mutations. Numerous specific chromosomal abnormalities have been detected in almost all tumor types that have been examined. This chapter explores when do chromosome aberrations arise and in which cells do chromosome aberrations arise. It also discusses whether acquired chromosome aberrations are sufficient for neoplastic proliferation. The chapter discusses the general effects of structural and numerical chromosome abnormalities.
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5.
  • Heim, Sverre, et al. (författare)
  • Preface to the Fourth Edition
  • 2015. - 4th
  • Ingår i: Cancer Cytogenetics : Chromosomal and Molecular Genetic Aberrations of Tumor Cells - Chromosomal and Molecular Genetic Aberrations of Tumor Cells. - Chichester, UK : John Wiley & Sons, Ltd. - 9781118795538 - 9781118795569
  • Bokkapitel (övrigt vetenskapligt/konstnärligt)
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6.
  • Panagopoulos, Ioannis, et al. (författare)
  • Expression of NUP98/TOP1, but not of TOP1/NUP98, in a treatment-related myelodysplastic syndrome with t(10;20;11)(q24;q11;p15).
  • 2002
  • Ingår i: Genes, Chromosomes and Cancer. - : Wiley. - 1045-2257. ; 34:2, s. 249-254
  • Tidskriftsartikel (refereegranskat)abstract
    • The t(11;20)(p15;q11) is a rare but recurrent translocation that so far has been described in only four acute myeloid leukemias (AMLs), two treatment-related myelodysplastic syndromes (t-MDSs), and one case of polycythemia vera. Recently, the t(11;20) was shown to result in a fusion of the NUP98 and TOP1 genes, with expression of the NUP98/TOP1 chimera encoded by the der(11)t(11;20), but not of the reciprocal TOP1/NUP98 on the der(20)t(11;20). The genomic breakpoints were subsequently mapped to introns 13 and 7 of NUP98 and TOP1, respectively. We present here a t-MDS with a three-way variant translocation, t(10;20;11)(q24;q11;p15), that generates a der(11)t(11;20) but not a der(20)t(11;20), strongly suggesting that the der(11) harbors the critical genetic rearrangement. Reverse transcriptase-polymerase chain reaction (RT-PCR) revealed a NUP98/TOP1 fusion in which exon 13 of NUP98 was fused in-frame with exon 8 of TOP1. Extra long (XL) genomic PCR and subsequent sequence analyses showed that the breakpoint in NUP98 occurred at nucleotide (nt) 3461 of intron 13, close to a MER (medium reiteration frequency interspersed repetitive element) repeat, and that the breakpoint in TOP1 was at nt 1436 of intron 7, downstream of a MIR (mammalian-wide interspersed repeats) repetitive element. Genomic XL PCR did not amplify the reciprocal TOP1/NUP98, nor was this chimera expressed, as expected from the cytogenetic finding. The present results provide further support for the involvement of the NUP98/TOP1 transcript, but not of the reciprocal one, in the development of MDS/AML. Furthermore, the three cases genomically characterized to date have all been treatment-related and have all harbored breakpoints in intron 13 of NUP98 and intron 7 of TOP1, suggesting that these introns are susceptible to chemotherapy-induced breakage.
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7.
  • Mertens, Fredrik, et al. (författare)
  • Prognostically important chromosomal aberrations in soft tissue sarcomas: a report of the Chromosomes and Morphology (CHAMP) Study Group.
  • 2002
  • Ingår i: Cancer Research. - 1538-7445. ; 62:14, s. 3980-3984
  • Tidskriftsartikel (refereegranskat)abstract
    • Cytogenetic analysis has not only provided important information on the pathogenesis of soft tissue tumors but, by disclosing distinct chromosomal rearrangements in different histopathological entities, has also come to serve as a valuable diagnostic tool. Little is known as yet about the potential prognostic impact of cytogenetic features detected in these tumors. A total of 239 benign and 221 malignant soft tissue tumors with clonal chromosome aberrations were subdivided according to general karyotypic features, such as degree of complexity and ploidy level, and rearrangements of specific chromosomal regions. The cytogenetic variables were analyzed regarding clinical outcome, using time to metastasis as the end point. Selected variables were then compared with established clinicopathological predictors of metastasis development. When the entire material was considered, 167 of 268 investigated cytogenetic variables were associated with clinical outcome. Focusing on the subset of 151 patients with high-grade sarcoma, 17 variables were identified that, besides grade and size, were associated with increased risk of metastasis development. A final Cox regression analysis identified five independent cytogenetic predictors of adverse outcome; breakpoints in chromosome regions 1p1, 1q4, 14q1, and 17q2, and gain of regions 6p1/p2. An increasing effect on metastatic risk was seen with increasing involvement of the selected cytogenetic variables, even when different histopathological types were studied separately. We conclude that cytogenetic data provide independent prognostic information in soft tissue sarcomas. Furthermore, our results point to specific areas of the genome harboring genes that may influence the metastatic potential of sarcoma cells.
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8.
  • Gisselsson Nord, David, et al. (författare)
  • Generation of trisomies in cancer cells by multipolar mitosis and incomplete cytokinesis.
  • 2010
  • Ingår i: Proceedings of the National Academy of Sciences. - : Proceedings of the National Academy of Sciences. - 1091-6490 .- 0027-8424. ; 107:47, s. 20489-20493
  • Tidskriftsartikel (refereegranskat)abstract
    • One extra chromosome copy (i.e., trisomy) is the most common type of chromosome aberration in cancer cells. The mechanisms behind the generation of trisomies in tumor cells are largely unknown, although it has been suggested that dysfunction of the spindle assembly checkpoint (SAC) leads to an accumulation of trisomies through failure to correctly segregate sister chromatids in successive cell divisions. By using Wilms tumor as a model for cancers with trisomies, we now show that trisomic cells can form even in the presence of a functional SAC through tripolar cell divisions in which sister chromatid separation proceeds in a regular fashion, but cytokinesis failure nevertheless leads to an asymmetrical segregation of chromosomes into two daughter cells. A model for the generation of trisomies by such asymmetrical cell division accurately predicted several features of clones having extra chromosomes in vivo, including the ratio between trisomies and tetrasomies and the observation that different trisomies found in the same tumor occupy identical proportions of cells and colocalize in tumor tissue. Our findings provide an experimentally validated model explaining how multiple trisomies can occur in tumor cells that still maintain accurate sister chromatid separation at metaphase-anaphase transition and thereby physiologically satisfy the SAC.
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9.
  • Tallini, G, et al. (författare)
  • Correlation between clinicopathological features and karyotype in 100 cartilaginous and chordoid tumours. A report from the Chromosomes and Morphology (CHAMP) Collaborative Study Group
  • 2002
  • Ingår i: Journal of Pathology. - : Wiley. - 0022-3417. ; 196:2, s. 194-203
  • Tidskriftsartikel (refereegranskat)abstract
    • The evaluation of chondroid lesions requires full integration of clinical, radiographic, and pathological data; tumour typing is often a challenge for the diagnostic pathologist. Although a variety of chromosomal abnormalities have been documented in chondroid lesions, the potential usefulness of cytogenetic analysis remains unclear. This study has critically reviewed and analysed 117 karyotyped samples from 100 patients with cartilaginous and chordoid tumours. Cases were selected based on successful chromosomal analysis and adequacy of clinical, radiographic, and pathological information. To ensure objective evaluation, the cytogenetic results were correlated in a double-blind setting with consensus diagnoses independently determined on each case, after complete review of the histological, radiographic, and clinical findings. Karyotypic aberrations were identified in 41/92 cartilaginous tumours (5/11 osteochondromas, 2/3 chondromyxoid fibromas, 0/4 chondroblastomas, 11/29 chondromas, 0/3 chondroid tumours of undetermined malignant potential, 22/40 chondrosarcomas and 1/2 miscellaneous cartilaginous lesions) and 5/8 chordomas. Complex karyotypic changes were a feature of malignant tumours (chondrosarcoma and chordoma) and of chondrosarcoma among cartilaginous tumours, where they correlated with high tumour grade. Among primary well-differentiated cartilaginous lesions of bone, the finding of an abnormal karyotype was consistently associated with a grade 1 chondrosarcoma diagnosis. Among karyotypically abnormal cartilaginous tumours, loss of distal 8q was associated with osteochondroma, +5 with synovial chondroma/chondromatosis and parosteal or soft tissue chondroma, alterations of chromosome arm 6q with chondromyxoid fibroma, +7 with bone chondrosarcoma, and 17pl alterations with grade 3 chondrosarcoma. Alterations involving 12q13 characterized synovial chondroma/chondromatosis in the chondroma group and myxoid chondrosarcoma of bone in the chondrosarcoma group. In conclusion, cytogenetic abnormalities in chondroid lesions are common and are not randomly distributed. They are associated with malignancy/tumour grade as well as with specific diagnoses in many cases, and can therefore be of potential value for tumour typing.
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10.
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