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Biomedical subjects

G Raschellà

Publications and source records attributed to G Raschellà.

29 records · Page 2Linked to original sources

Establishment and characterization of a human neuroblastoma cell line.

A continuous human cell line RN-GA was established from a stage-III primary neuroblastoma prior to therapy. Light and electron microscopic analysis of the biopsy showed morphological features typical of neuroectodermal origin. Relative cellular DNA content and N-myc oncogene copy number were also analyzed in the biopsy tissue: the tumor cells presented a near-diploid genome with N-myc amplification. The derived tumor cell line expressed distinctive ultrastructural, cytogenetic and immunological markers of neuroblastoma. Moreover, cells from the culture could be serially transplanted into splenectomized-irradiated nude mice, where they formed a progressively growing solid tumor. Surprisingly, the cells in culture did not show any N-myc amplification, while they retained a near-diploid DNA content. We propose that several techniques (electron microscopy, oncogene analysis, flow cytometry, cytogenetics, tissue culture, cell antigen immunodetection) should be used to establish a firm diagnosis and a correct clinical grading of this tumor. The establishment of this continuous cell line should be valuable as an experimental in vitro system for further studies of neuroblastoma biology and morphology.

Adrenal Gland Neoplasms↗

Transcriptional pattern of 21-hydroxylase gene (P-450C21) during embryonic development, before, and after birth in mice as determined by in situ hybridization.

21-Hydroxylase is a member of the P-450 superfamily of genes involved in the biosynthesis of cortisol and aldosterone in the adrenal cortex. Congenital adrenal hyperplasia, a well-characterized disease, originates from a lack of this enzyme. We present in this report an in situ hybridization study aimed at detecting 21-hydroxylase activity during murine development, from mid gestation to adulthood. Our results demonstrate that even during the embryonic period the adrenal cortex is the only major site of transcription of this enzyme, which is detectable beginning at embryonic day 14. In addition, a peculiar topographical pattern of transcriptional activity, characteristic of the stage of differentiation of the gland, could be drawn. Using a computer-assisted method, we were able to quantitate the relative transcription level at each stage of development. A steady increase in the level of transcription was demonstrated throughout embryonic life to birth, with a drop during the prepubertal period and a final rise at adult age. The possible physiological significance of our findings is discussed.

Adrenal Cortex↗

Cytologic evidence for increased rRNA gene activity in hemin-induced K562(S) cells.

Hemin-induced K562(S) cells have been studied for the following parameters: cell proliferation, erythroid induction, hemoglobin accumulation, and activation of ribosomal gene clusters 48 hr after hemin induction. Increased transcriptional activity of rRNA genes has been demonstrated by cytochemical methods at both the cell population and single cell level. The following results have been obtained: (a) The vast majority of induced cells shows a highly significant increase in the number of active rRNA gene clusters per cell. At this time, the number of benzidine-positive cells and the quantity of hemoglobin per cell are almost doubled. (b) Specific rRNA gene clusters are activated within single cells. Activation can be visualized at the single gene cluster level. (c) The increase in the average number of active ribosomal gene clusters per cell is not due to clonal selection, but rather to diffuse activation of several gene clusters. (d) The transcriptional activity of rRNA genes has been shown to be regulated at the cellular level by an agent known to specifically induce derepression of genes responsible for erythroid differentiation.

Cell Differentiation↗

The mouse beta h1 gene codes for the z chain of embryonic hemoglobin.

Beta h0 and beta h1 are two beta-like globin genes in the mouse beta-globin gene cluster whose functions have not previously been established. Transcripts of both beta h0 and beta h1 are found in yolk sac-derived erythroid cells from mouse embryos and in the murine erythroleukemic cell line GM979. S1 nuclease analysis shows that beta h1 is the more abundant of the two transcripts in both embryonic erythroid cells and the cell line GM979. Hybridization of a beta h1-specific probe to RNA from erythroid cells of 10-, 11-, 12-, 13-, and 14-day-old mouse embryos indicates that levels of beta h1 mRNA are high at 10 and 11 days and then decline during further fetal development. The in vitro translation product of hybrid-selected beta h1 mRNA was analyzed by acid/urea polyacrylamide gel electrophoresis. The beta h1 translation product has the electrophoretic mobility expected for the z chain. We conclude that beta h1 is a fully functional gene which codes for the embryonic z chain.

Animals↗

Human leukemia K-562 cells: induction of erythroid differentiation by 5-azacytidine.

In this article we show that the cytidine analog 5-azacytidine is able to induce differentiation of the human leukemia K-562 cell line. Erythroid induction is associated with (a) an increase of the overall globin synthesis and globin mRNA accumulation, (b) a relative increase of fetal with respect to embryonic globins, and (c) a decrease of the proliferative capacity of hemoglobin-containing cells. In addition, we have analysed the DNA methylation pattern at the cleavage sites of MspI and HpaII restriction enzymes, which are known to cleave differently CCGG DNA sequences when 5-methylcytosine is present. These experiments indicate that in K-562 cells treated with 5-azacytidine, DNA becomes hypomethylated, suggesting that genetic programmes leading to an erythroid phenotype may be activated by a reduction of DNA methylation.

Azacitidine↗

Desferrioxamine inhibits induced erythroid differentiation of human leukemic K-562 cells.

The iron chelator desferrioxamine reversibly inhibits heme accumulation and globin synthesis in human leukemic K-562 cells induced to express erythroid genes by butyric acid. These results suggest that iron metabolism can modulate globin gene expression. In addition we describe experimental conditions (6.25 micrograms/ml desferrioxamine) which do not suppress transcription of globin genes and translation of globin mRNA but prevent heme synthesis. Therefore expression of globin genes in butyric acid induced K-562 cells does not require accumulation of heme molecules. Human leukemic K-562 cells cultured with different inducers and treated with desferrioxamine should be used as a useful model system to further analyse the relationship between expression of erythroid genes, iron metabolism and heme accumulation.

Butyrates↗

[Extension of total thyroidectomy to the cellulo-lympho-thymic tissue of the anterior superior mediastinum].

Stress is laid on the importance of the cellulo-lympho-thymic tissue of the anterior-superior mediastinum in demolition surgery for thyroid cancer. For this reason, a straightforward, reliable technique for removing the thyrothymic lamina by the cervical route has been prepared. Experimented on cadavers, this method has been used for superior mediastinic lymphnode exeresis in all cases where it was indicated.

Humans↗

Association of near-diploid DNA content and N-myc amplification in neuroblastomas.

Seventeen neuroblastomas at different clinical stages were analysed for their N-myc copy number and flow cytometrically determined DNA content. Aneuploidy was found in 11 patients (65 per cent), whereas the remaining were near-diploid. N-myc amplification was found significantly (P less than 0.05) confined to near-diploid tumors (3 out of 6 cases). This finding indicates a very selective mechanism of oncogene amplification which is independent of gross chromosomal imbalance and limited to specific loci in the human genome. Association of near-diploidy and age at diagnosis older than 24 months was also demonstrated (P less than 0.05). Thus, flow cytometric analysis of DNA content together with N-myc gene dosage allowed us to distinguish two different subsets of neuroblastoma tumors: the first one aneuploid, with single-copy N-myc, usually observed in patients younger than 24 months with localized or IV-S clinical stages; the second one near-diploid, with frequent N-myc amplification, usually observed in patients older than 24 months with advanced clinical stages.

Child↗

Flow cytometric and molecular analysis of proliferative activity and DNA content in neuroblastoma: presence of stationary cells in S-phase.

Twenty-nine previously untreated neuroblastomas were analyzed for DNA content and percentage of cells in S-phase, both determined by flow cytometry, and N-myc oncogene copy number. Twelve of them were also tested for histone H3 transcript levels as a marker of actual proliferative activity. A significantly higher S-phase fraction was associated with advanced stages of disease, unfavorable (i.e., near-diploid and near-tetraploid) DNA content, and N-myc amplification. The occurrence of six tumors with a remarkable (greater than or equal to 10%) S-phase fraction but lacking histone H3 transcripts suggests the presence of stationary S-phase cells in neuroblastoma.

Cell Division↗