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Estimation of radiation-induced interphase cell death in cultures of human tumor material and in cell lines.

A short-term assay method able to estimate the radiation response of human cancer tissue samples would be of great advantage to the individualization of radiotherapy in cancer patients. However, the effect of radiation on [3H]thymidine incorporation by proliferating cells reflects a composite of cell cycle arrest and induced cell death pathways. Here we consider whether it is feasible to correct for cell cycle effects based on comparison of the effects of radiation and the mitotic inhibitor paclitaxel on [3H]thymidine incorporation. Sixty-two short-term (7-day) cultures of human tumor tissue from 61 patients with melanoma, gynecological cancer, brain cancer, and head and neck cancer, as well as 18 5-day cultures of low passage human tumor cell lines, were irradiated at doses from 2 to 9 Gy, or exposed to paclitaxel (200 nM). [3H]Thymidine incorporation was measured at the end of the incubation. Cell cycle times could be estimated from the paclitaxel data and were 2.7 to 18.6 days for melanomas, 2.5 to >40 days for carcinomas, 3.9 to 39 days for brain tumors, and 1.1 to 3.8 days for cell lines. The effects of radiation on [3H]thymidine incorporation varied widely (0-97% and 0-99% inhibition for 2 and 9 Gy, respectively), and in 23 of the clinical samples, but in none of the cell lines, radiation caused significantly greater inhibition of [3H]thymidine incorporation than paclitaxel (p < 0.05). We argue that that these differences reflect radiation-induced cell loss from G1 phase and/or S phase. Responses of short-term cultures of clinical tumor material to radiation, with appropriate correction for cell cycle effects, might have the potential to provide information on radiation-induced cell death in individual patients.

Cell Death↗

Fibrous tumors in children - a morphologic and interphase cytogenetic analysis of problematic cases.

We describe and discuss the findings by fluorescent in situ hybridization (FISH) for detection of non-random chromosomal gains, in a group of unusual fibrous lesions in children. Nuclear disaggregation was used to prepare slides from eight cases which were hybridized using alpha-satellite enumeration probes for chromosomes 8, 11 and 17. Trisomy 8 and 11 were detected in a high percentage of nuclei in cases of congenital/infantile fibrosarcomas (ranging from 45 to 80%), and in a low grade fibrosarcoma in an older child (23%). Only gains of chromosome 17 were detected in a case of infantile fibromatosis (22%). In this study we have found that given the unconventional histopathologic features, the detection of more than one non-random chromosomal gains by FISH, may aid in further defining fibrous tumors in children, and may be useful as an ancillary diagnostic test in the future.

Adolescent↗

Analysis of chromosomes 9 and 11 aneuploidy frequency in pleural effusion of patients with and without malignancy: interphase FISH technique.

Fluids of body cavities result in a series of pathophysiological events associated with non-malignant and malignant conditions that lead to the formation of exudative effusion. Diagnosis of effusion from the patients is frequently troublesome for the cytologist because of the differentiation and biological behavior of different cells type in effusion. In the present study, chromosomal aneuploidy status in effusion cells derived from 32 patients including 14 patients with non-malignant and 18 patients with malignant diseases [including malign mesothelioma (n = 6), adeno carcinoma (n = 10), small cell carcinoma (n = 2)] was analyzed by using fluorescence in situ hybridization (FISH) with centromere specific probes for chromosomes 9 and 11. There was significant difference in the incidence of chromosomal 9 and 11 aneuploidies when compared with controls (P = 0.000). However, aneuploidies of chromosomes 9 and 11 in effusion cells from patients with malignant disease had significantly higher than in effusion cells from patients with non-malignant (P = 0.000), suggesting that chromosomes 9 and 11 are frequently involved in the status of disease. The present study indicates that there is a association between chromosomes aneuploidies and pleural effusion cell status. Chromosome aneuploidies in non-malignant group may be an indicator of premalignancy.

Adenocarcinoma↗

Identification of the appropriate tissue from formalin fixed perinatal autopsy material for chromosomal ploidy detection by interphase FISH.

We have evaluated the suitability of different formalin fixed paraffin embedded tissues i.e., brain, bone, liver and placenta, for fluorescence in situ hybridization (FISH) efficiency and chromosomal ploidy detection employing directly labelled repetitive sequence probes for chromosome X, Y and 1. The study was carried out on four foetal autopsy specimens. Cells from 50 mu thick tissue sections were dissociated before performing mono and multicolour FISH with directly labelled probes. Hybridization efficiency was maximum with brain tissue (81, 55 and 24% for mono, dual and triple colour FISH, respectively), followed by bone (45 and 34% for mono and dual colour FISH), liver (38, 19 and 0% for mono, dual and triple colour FISH) and placenta (14, 5 and 0% for mono, dual and triple colour FISH). These results indicated that brain is the most efficient material followed by bone, liver placenta for chromosome ploidy detection by FISH in formalin fixed tissues.

Autopsy↗

[The study of chromatin and chromosome structure on preparations of interphase nucleus derivatives resulting from nuclear wall removal.III Structural heterogeneity of chromatin and argyrophilic zone of the nucleolus in stretched membrane-free nuclei and chromatin bodies from human peripheral lymphocytes].

Viewed by light microscopy, the majority of lymphocytes in smears of human peripheral blood display a deep staining (with any chromatin- or DNA-specific dye) of the nucleus consisting of densely aggregated chromatin in addition to one or several small nucleoli with a dot- or spot-like argyrophilic zone. Amembraneous nuclei and "free chromatin" structures were isolated from intact lymphocytes gently treated with Triton X-100. Surface stretching of both these nuclei and structures, shortly fixed in methanol--glacial acetic acid (3:1), resulted in spatial separation of thin and thick chromatin or argyrophilic fibres, nucleoli, intranuclear bodies, polymorphous aggregations of chromatin or argyrophilic fibres and incidentally observed splitted or beaded thick chromatin fibres and the chromocenter. The light microscopic pattern of chromatin fibres of stretched amembraneous nuclei, isolated from peripheral lymphocytes, well compares with that of deconvolved images of intact lymphocyte nucleus obtained with optical tomography.

Cell Nucleus↗

[Dynamics of chromatin position within the interphase nucleus].

In this article we attempt to analyze the relationship between the processes, which occur in the nucleus, and the dynamics of chromatin, as well as to classify the changes in the position of chromatin in the cell nucleus during the lifetime of the cell. The proposed concept integrates possible types of chromatin movement within the nucleus.

Animals↗

Adjusting interphase FISH results in epithelial tissue sections to whole cell complement.

OBJECTIVE: To derive an equation to compensate for the discrepancies between whole cell preparations and tissue sections for more accurate enumeration of fluorescence in situ hybridization (FISH) signals per cell. STUDY DESIGN: Mean centromere signal counts in touch preparations and corresponding 4-6-micron sections of paraffin-embedded tissue were calculated. Mean widest nuclear diameters were also determined from the tissue sections. The observed data were analyzed to define the volumetric relationships between tissue sections and whole cell preparations. RESULTS: Analysis of results from six lung specimens yielded an equation that approximates whole versus sectioned nuclear volume and permits accurate quantification of mean FISH signal count in histologic sections, as follows: [formula: see text].

Carcinoma↗

Hypothesis for the influence of fixatives on the chromatin patterns of interphase nuclei, based on shrinkage and retraction of nuclear and perinuclear structures.

Nuclear chromatin patterns are used to distinguish normal and abnormal cells in histopathology and cytopathology. However, many chromatin pattern features are affected by aspects of tissue processing, especially fixation. Major effects of aldehyde and/or ethanol fixation on nuclei in the living state include shrinkage, chromatin aggregation and production of a 'chromatinic rim'. The mechanisms of these effects are poorly understood. In the past, possible mechanisms of fixation-induced morphological change have been considered only in terms of the theoretical model of the nucleus, which involves only a random tangle of partly unfolded chromosomes contained within the nuclear membrane. Such a model provides no basis for chromatin to be associated with the nuclear envelope, and hence no obvious clue to a mechanism for the formation of the 'chromatinic rim' in fixed nuclei. In recent years, two new models of nuclear structure have been described. The nuclear membrane-bound, chromosomal-domain model is based on the discoveries of chromatin-nuclear membrane attachments and of the localisation of the chromatin of each chromosome within discrete, exclusive parts of the nucleus (the 'domain' of each partly unfolded chromosome). The nuclear matrix/scaffold model is based on the discovery of relatively insoluble proteins in nuclei, which it suggests forms a 'matrix' and modulates gene expression by affecting transcription of DNA. Here, a hypothesis for fixation-associated chromatin pattern formation based mainly on the first model but partially relying on the second, is presented. The hypothesis offers explanations of the variations of appearance of nuclei according to fixation (especially air-drying versus wet-fixation with formaldehyde, glutaraldehyde or ethanol); the appearances of the nuclei of more metabolically active versus less metabolically active cells of the same type; the appearances of nuclei after fixation with osmium tetroxide; and of the marked central clearing ('egg-shell' or 'orphan Annie' appearance) of tumour nuclei of papillary carcinoma of the thyroid gland. A similar process may underlie the phenomenon of 'chromatin margination' seen in apoptosis. Various tests of the hypothesis, such as time-lapse confocal microscopy of living nuclei during fixation, are suggested. The significance of the theory is that it suggests that chromatin patterns could be investigated in terms of qualitative and quantitative aspects of nuclear components, and hence be related to the results of studies of the structure and function of nuclei in health and disease.

Cell Nucleus↗

Deuterium oxide (heavy water) arrests the cell cycle of PtK2 cells during interphase.

Deuterium oxide (D2O, heavy water) exerts an antiproliferative effect on a variety of cells in vitro and on some organisms. This effect is mainly ascribed to a tubulin-mediated antimitotic action. We evaluated the morphology, the mitotic activity, and the dynamics of the cell cycle of PtK2 cells grown in vitro in the presence of 75% D2O for up to eight weeks by microspectrophotometric DNA measurements as well as flow cytometric analysis and a determination of mitotic indices. Substitution of heavy water for water in the culture medium initially increased the mitotic index by a (pro-) metaphase block but after 2 to 3 days of incubation no mitotic figures were seen. Analysis of cells grown for 6 days in medium containing 75% D2O revealed accumulation of cells in S/G2-phase. Extended treatment stabilized the high level of cells in this specific phase, when compared to normal growing cells. Cells grown for 1 to 6 weeks in the presence of D2O remained non-proliferating, nevertheless, they were able to divide again after recovery in non-deuterated medium. The time needed for resumption of the mitotic activity was proportional to the duration of deuterium oxide exposure. Cells incubated for 8 weeks in 75% D2O did not recommence mitotic activity. Light and electron microscopic examination revealed characteristic morphological changes of size and ciliation in PtK2 cells subjected to prolonged deuteration.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Anti-histone autoantibodies recognize centromeric heterochromatin in metaphase chromosomes and hidden epitopes in interphase cells.

IgM autoantibodies from a subset of patients with undifferentiated rheumatic disease syndromes stained mouse kidney nuclei with a distinctive variable large-speckled (VLS) indirect immunofluorescence (IIF) pattern. However, these antibodies did not stain nuclei of tissue culture cells prepared with conventional fixation. These sera were shown to react with histone H3 by an enzyme-linked immunosorbent assay (ELISA), and adsorption with H3 reduced or eliminated the IIF reaction. Sera yielding a VLS-IIF pattern reacted in ELISA with all three H3 variants as well as the native (H3-H4)2 tetramer, but the reactive determinants were unavailable for binding when chromatin was the substrate. By IIF assay, the epitopes were exposed after treatment of tissue culture cells with 0.5 M NaCl, and were removed by 1.5 M NaCl. These sera also stained the centromeric region of metaphase chromosomes. These observations suggest that the VLS-IIF pattern is due to antibodies that recognize epitopes on constitutive heterochromatin near the centromere. The epitopes are exposed in differentiated cells but hidden in dividing cells. Histone in heterochromatin, or CENP-A, a histone-like protein in the centromere with a sequence similarity to histone H3, are candidates for the target antigen.

Autoantibodies↗