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Increased level of amplification of the c-myc oncogene in tumors induced in nude mice by a human breast carcinoma cell line.

Cell line SW 613-S, derived from a human breast carcinoma, contained double minute chromosomes (DMs) but lost them progressively upon in vitro cultivation. These cells were tumorigenic in nude mice. Cell lines were derived from the tumors and were found to have a high DM content. In three such cell lines, DMs were stably maintained upon in vitro cultivation, whereas in another they were progressively lost. We found that the c-myc oncogene is amplified 5- to 10-fold in SW 613-S and 20- to 90-fold in the different cell lines derived from the tumors. At least part of the additional c-myc copies were found associated with a purified DM fraction. In cell lines which lost the DMs during in vitro passages, the level of amplification was maintained. In situ hybridization experiments indicated that this loss was compensated by the acquisition of copies of the c-myc gene integrated into a chromosome. No major rearrangement of the amplified c-myc gene was detected. The amount of c-myc messenger RNAs is roughly proportional to the level of amplification. Our results indicate that growth of SW 613-S cells as tumors in nude mice selected cells with an increased level of amplification and expression of the c-myc oncogene.

Animals↗

Comprehensive conventional and molecular cytogenetic characterization of B-CPAP, a human papillary thyroid carcinoma-derived cell line.

Cell lines derived from different thyroid tumor histotypes are useful for the in vitro study of both the phenotypic and genetic features of these cancers. Although karyotypic changes are known to be associated with thyroid lesions, the chromosome patterns of only a few cell lines have been published. Herein, we report an extensive conventional and molecular cytogenetic investigation of the human papillary thyroid carcinoma derived cell line B-CPAP. Morphological studies and expression of tumor markers in this cell line have been reported previously, but no detailed characterization on the origin of the chromosome markers is available. B-CPAP cells have a rather stable hypertriploid karyotype, with chromosome polysomies and structural chromosome abnormalities featuring whole chromosome arm imbalances. Chromosome banding revealed a main clone with nine chromosome markers, and fluorescence in situ hybridization (FISH) with whole chromosome paint (wcp), partial chromosome paint (pcp), and centromeric probes clarified their origin. The use of centromeric probes provided accurate refinement of the rearrangements classified as whole-arm translocations by banding and FISH with wcp probes. Both chromosomal and array-based comparative genomic hybridization experiments confirmed the cytogenetic characterization of this cell line. Moreover, the use of fluorescence immunophenotyping and interphase cytogenetics as a tool for the investigation of neoplasms (FICTION) technique, which simultaneously shows nuclear ploidy and cytoplasmic immunofluorescence, detailed the oncocytic feature of the cells. Intriguingly, despite their origin, they lack most of the features expressed in papillary thyroid tumor cells and have a chromosomal pattern reminiscent of that of a subgroup of oncocytic malignant thyroid tumors.

Carcinoma, Papillary↗

Genetic analysis of the catalytic domain of the GAP gene in human lung cancer cell lines.

Cell lines of non-small cell lung cancer (non-SCLC) have been shown to contain activating mutation of the K-ras oncogene in about 30% of cases, whereas no small cell lung cancer (SCLC) cell lines displayed these mutations. Biochemically, these mutations result in the ras gene product (p21) being constitutively activated in its GTP-bound form and insensitive to the hydrolytic action of the ras-specific GTPase-activating protein (ras GAP). We hypothesized that, if tumor development is related to the p21 ras being in the active GTP-bound state, then a similar malignant phenotype may result from an inactivating mutation in the ras GAP gene in the region that interacts with ras p21 (so-called catalytic domain). To test this hypothesis, we screened a panel of SCLC and non-SCLC cell lines for major genetic alterations in the catalytic domain of the GAP gene with the Southern blot technique, and for minor genetic abnormalities (e.g., point mutations) with denaturing gradient gel electrophoresis and single-strand conformation polymorphism. Mutations in the catalytic domain of the GAP gene could not be demonstrated by any technique in any cell line examined. We conclude that mutational inactivation of the catalytic domain of the GAP gene probably does not contribute to the development of lung cancer.

Blotting, Southern↗

Direct correlation between cell membrane fluctuations, cell filterability and the metastatic potential of lymphoid cell lines.

Cell membrane fluctuations, which reflect local bending deformability of the cell surface, are composed of submicron aperiodic reversible displacements of the cell membrane in the frequency range of 0.5-20Hz. Measurements of time-dependent light scattering from small areas (0.25 micron 2) of the cell surface reveal a higher level of cell membrane fluctuations in high metastatic BW5147 T-lymphoma derived cell lines than in their corresponding non-metastatic cell lines. Filterability measurements, carried out by recording the passage time of equal volumes of cell suspensions and media through 8 microns and 10 microns pores of a polycarbonate filter, demonstrate a higher filterability (lower rigidity index) for the high metastatic cell lines than their matched non-metastatic ones. Hence, the present study demonstrates a positive correlation between the metastatic potential of BW5147 lymphoma derived cell lines, their relative level of cell membrane fluctuations and their in-vitro cell filterability.

Animals↗

Functional interleukin-2 receptor on a Tac negative human leukaemia T-cell line.

Cell line PER-423 was derived from the cells of a patient with an immature acute T-lymphoblastic leukaemia and the growth of this human cell line is strictly dependent on interleukin-2 (IL-2). PER-423 cells express the p75 (beta) subunit of the IL-2 receptor (IL-2R beta), while the p55 chain (IL-2R alpha) is not detectable by immunofluorescence. The analysis of the IL-2R revealed that it is of intermediate affinity and the median effective IL-2 concentration for PER-423 cells (EC50 value) was determined to be 1.44 +/- 0.29 nM. Chemical crosslinking studies showed that the receptor consists of one polypeptide of approximately 95 kDa as well as a doublet of 70 kDa and 60 kDa and does not include the IL-2R alpha-chain. The steady-state mRNA level for the p75 subunit was similar to that present in a cell line expressing an IL-2R alpha+ beta+, while only traces for the alpha-chain were detectable. PER-423 cells can be induced to express the alpha-chain of the IL-2R on the cell surface, concomitant with a much reduced EC50 level. Since cell line PER-423 is functionally dependent on IL-2, it provides an ideal model for IL-2 signal transduction studies and for investigations focusing on the requirements for ligand binding vs activation.

Child, Preschool↗

Establishment and characterization of a human glioblastoma multiforme cell line.

Cell lines provide a useful system for further understanding the biology of glioblastoma multiforme. In this study, a new glioblastoma multiforme cell line, GATAGM-96 (Gulhane Askeri Tip Akademisi-Gliblastoma Multiforme-96), was established from a tumor specimen removed from an 80-year-old male patient who underwent surgery for intracranial tumor. Morphologic examination, immunocytochemical staining, growth kinetics, and karyotypic characteristics of this cell line were studied. The cytoskeleton was positive for neuron-specific enolase, vimentin, and neurofilament, and it was negative for glial fibrillary acidic protein, S-100 protein, p53 protein, epidermal growth factor, and transforming growth factor alpha. Growth kinetic studies demonstrated an approximate population doubling time of 38 to 42 h and a colony forming efficiency of 83.3%. The karyotype of the cells demonstrated it as hyperdiploid, with a large subpopulation of polyploid cells. There were numerous structural and numerical chromosome aberrations; most of them were present as clonal events. The phenotypic and chromosomal features detailed on the GATAGM-96 cell line should make it a useful addition to the cell lines currently available for in vitro and in vivo studies of glioblastoma multiforme.

Aged↗

Search for inhibitors against herpes simplex virus type-I in cell extracts derived from human lymphoblastoid cell lines.

Cell extracts obtained from KB cells and 5 human lymphoblastoid cell lines including 2 from Burkitt's lymphoma (P3HR-1 and Raji), one each from nasopharyngeal carcinoma (no.223), acute lymphatic leukemia (MOLT-4) and a healthy person (NC-37) were tested for their inhibitory effects on the growth of herpes simplex virus type-1 (HSV-1) in green monkey kidney (GMK) cells by the plaque titration method. The relationship between the production of HSV-1 inhibitors and the degree of Epstein-Barr virus (EBV) genome repression in lymphoblastoid cells were also examined. Among the cell lines used P3HR-1 and no.223 cells produced a few EBV particles, Raji and NC-37 cells contained EBV genomes only, and MOLT-4 as well as KB cells were EBV genome-negative. The results revealed that P3HR-1 cell extract showed a tendency to inhibit HSV-1 growth in GMK cells but the other 4 lymphoblastoid cell lines and KB cells did not produce HSV-1 inhibitors, indicating that EBV genomes governing the formation of EBV structural antigens were not related to the production of HSV-1 growth inhibitors. The extracts from MOLT-4 cells, which are only a T lymphocyte cell line used in this study, stimulated HSV-1 growth in GMK cells significantly.

Antiviral Agents↗

Identification of genes associated with metastasis of mammary carcinoma in metastatic versus non-metastatic cell lines.

Cell lines 4A4 and 2C5 are the respective metastatic and non-metastatic variants (nude mouse system) derived from the human mammary carcinoma cell line MDA-MB-435. In order to identify genes associated with or functionally involved in metastasis, we have extended our previous transcriptional profile from 5000 to 12,000 genes using the Affymetrix Gene Chip array technology. Based on a threshold level of a change factor of > or = 2.5, we found that the steady-state level of 40 genes (0.3%) was up-regulated and conversely 89 genes (0.7%) were down-regulated in the metastatic cell line 4A4. The de-regulated genes were classified into categories such as tumor antigens/transmembrane receptors, enzymes, mediators of signaling, cell migration and angiogenesis, cell-cycle-, apoptosis-, differentiation- and growth-factor related genes, tumor suppression, transcription factors and genes encoding components of the extracellular matrix and the cytoskeleton. As possible mediators of invasion we identified DGCR6, osteopontin, autotaxin and the 65 kD phosphoprotein p65. In addition, three sugar-modifying enzymes were up-regulated in cell line 4A4. Profound differences in G-protein-mediated signaling and down-regulation of the tumor-suppressor genes DPC4, BARDI and DLC-1 were noted in the metastatic cell line 4A4.

Animals↗

Authenticity and drug resistance in a panel of acute lymphoblastic leukaemia cell lines.

Cell lines are important models for drug resistance in acute lymphoblastic leukaemia (ALL), but are often criticised as being unrepresentative of primary disease. There are also doubts regarding the authenticity of many lines. We have characterised a panel of ALL cell lines for growth and drug resistance and compared data with that published for primary patient specimens. In contrast to the convention that cell lines are highly proliferative, those established in our laboratory grow at rates similar to estimates of leukaemic cells in vivo (doubling time 53-442 h). Authenticity was confirmed by genetic fingerprinting, which also demonstrated the potential stability of long-term cultures. In vitro glucocorticoid resistance correlated well with that measured ex vivo, but all lines were significantly more sensitive to vincristine than primary specimens. Sensitivity to methotrexate was inversely correlated to that of glucocorticoids and L-asparaginase, indicating possible reciprocity in resistance mechanisms. A cell line identified as highly methotrexate resistant (IC50 > 8000-fold higher than other lines) was derived from a patient receiving escalating doses of the drug, indicating in vivo selection of resistance as a cause of relapse. Many of these lines are suitable as models to study naturally occurring resistance phenotypes in paediatric ALL.

Antineoplastic Agents↗

Establishment and characterization of human hilar bile duct carcinoma cell line and cell strain.

We established and characterized a human hilar bile duct carcinoma (HBDC) cell line from cells isolated from the ascites of a 75-year-old Japanese woman. Histopathological findings were confirmed to be poorly differentiated adenocarcinoma (pat BsrlCm according to the Japanese Society of Biliary Surgery General rules for surgical and pathological studies on cancer of the biliary tract, 4th edn.). Using a semi-agarose method, a daughter-cell strain was also established. Both the cell line and the strain were transplanted into scid or nude mice with a 100% inoculation rate. The population doubling times of the cell line and the strain were 32.25 and 35.78 h, respectively. The cell line and strain strongly expressed human epithelial antigen (HEA)-125 and cytokeratin (CK)-19 but did not express desmin and partly expressed vimentin. High values tumor markers (carbohydrate antigen [CA19-9], Span-1, KMO-1) were detected in culture supernatants from both the cell line and the cell strain and the concentrations paralleled the patient's serum data. DNA analysis revealed that the cell strain was diploid, whereas the cell line was aneuploid, with a DNA index (DI) of 0.85. Chromosomal analysis of the cell line and the strain revealed a range of numerical abnormalities (76-93 and 74-88, respectively) as well as structural abnormalities. The establishment of this HBDC cell line and strain may provide some benefit for fundamental biological research.

Adenocarcinoma↗

Tumor type-specific differences in cell-substrate adhesion among human tumor cell lines.

Cell lines derived from human tumors of 4 different histological types (squamous carcinomas, melanomas, gliomas and a fibrosarcoma) were examined for cell-substrate adhesion on plastic culture dishes and dishes coated with 50 micrograms of type-IV collagen. In the absence of exogenous adhesion factors, the squamous carcinoma cells attached and spread more rapidly than the other cells on both substrates. Once attached, the squamous carcinoma cells were also more difficult than the other cells to remove with proteolytic enzymes/EDTA. While the cell lines derived from melanomas, gliomas and the fibrosarcoma were less adhesive than the squamous carcinoma lines in the absence of exogenous adhesion factors, these cells were highly responsive to laminin. In contrast, laminin only slightly enhanced the attachment and spreading of squamous carcinoma cells on the plastic dishes and actually inhibited attachment and spreading on the collagen-coated dishes. These results indicate that there are tumor-type-specific differences in adhesiveness among human tumor cell lines and that cells from different tumor types may have distinct mechanisms for carrying out one of the functions critical to invasion.

Carcinoma, Squamous Cell↗

Applications of adhesion molecule gene knockout cell lines.

Cell lines derived from mice carrying targeted mutations in adhesion or ECM genes, and ES cell lines homozygous for mutations in these genes, have proved to be valuable tools to examine the functions of these molecules in development, and at a molecular level by in vitro experimentation. In many cases, the development of cell lines has exposed novel phenotypes not apparent from in vivo observations, possibly because the in vitro system under observation is more dependent on a specific molecule than is an entire organ or organism. These cell lines should continue to provide interesting model systems to study the molecular function of adhesion receptors.

Animals↗

The effect of pH on incorporation of galactose by a normal human cell line and cell lines from patients with defective galactose metabolism.

Incorporation of radioactive galactose into TCA-insoluble material of galactosemic fibroblasts is more sensitive to low pH than is the incorporation by normal human fibroblasts. This study was undertaken to determine (1) whether there was any pH which could correct or counteract the galactosemic defect relative to galactose incorporation, and (2) whether the low pH effect was specific for galactose metabolism or whether general cellular metabolism in galactosemic cells was more sensitive to low pH than that in normal cells. The pH dependencies of incorporation of radioactive galactose and glucose into cellular macromolecules were investigated in galactosemic and normal cells. Normal cells have a biphasic curve with respect to galactose incorporation with peaks at pH 7.0 and 8.5. Galactosemic cells have only the high pH peak. The maximum incorporation by galactosemic cells was never more than about 30% that seen by normal cells under the conditions of these experiments. Thus manipulation of the pH alone cannot correct the galactosemic defect. The rate of incorporation of radioactive galactose was studied in normal, galactosemic and galactokinase deficient cells, at pH 7.2 and at pH 6.3. At pH 7.2, galactosemic cells incorporate galactose at a linear rate which is 30 to 40% that of normal cells while incorporation by kinase-deficient cells is between 5 and 10% of normal. At pH 6.3, the incorporation is also linear. However, galactosemic cells now exhibit the same rate as kinase-deficient cells in which the low level of incorporation is unaffected by pH. These results suggest that incorporation of galactose by galactosemic cells at low pH is not due to metabolic death of the cells, but may be due to the inhibition of some specific step or steps along a metabolic route of galactose metabolism other than the Leloir pathway.

Cell Line↗

Sodium cotransport processes in renal epithelial cell lines.

Cell growth and synchronization, gene expression and regulation, maintenance of epithelial cell polarization are major functional aspects of the nephron which have been difficult to approach with conventional preparations. Certainly, without the introduction of tissue culture techniques, the opportunity to analyze these issues could not have been afforded. Several renal epithelial cell lines with differentiated characteristics of proximal and distal segments of the nephron are already available. LLC-PK1, derived from a normal Hampshire pig kidney, shows multiple differentiated characteristics of in vivo epithelia. Specifically, this cell line has Na+-dependent sugar, amino acid, and phosphate cotransport systems with similar characteristics as those present in the renal proximal tubule. The expression of the Na+-dependent sugar transport system in LLC-PK1 cells depends on the growing conditions of the cells. For instance, isolated cells obtained by trypsin-EDTA treatment of confluent monolayers or exponentially growing cells do not express the Na+-dependent sugar transport system. Full expression occurs after the monolayer reaches confluency. Expression of the transporter can also be modified by agents that affect the differentiation of other cellular systems, such as the Friend erythroleukemia cells. The expression of the Na-sugar cotransport system is also regulated by the concentration of glucose in the growth medium. Low glucose concentration increases the sugar influx through the Na+-coupled apical membrane transporter by increasing the number rather than the affinity of the transporter. This effect appears to be mediated through the sugar metabolism of the cell. The expression of the Na+-amino acid cotransport system in LLC-PK1 cells and the epithelial cell line MDCK derived from a normal dog kidney also responds to regulatory signals associated with cell growth or amino acid deprivation. LLC-PK1 cells and the cell line OK derived from an opposum kidney, shows a Na+-dependent phosphate cotransport system modulated by parathyroid hormone and cyclic nucleotides that will prove to be an excellent model not only to study the mechanisms of the action of the hormone, but to study the mechanisms involved in the expression and modulation of the Na+-dependent phosphate cotransport system.

Amino Acids↗

Less initial rejoining of X-ray-induced DNA double-strand breaks in cells of a small cell (U-1285) compared to a large cell (U-1810) lung carcinoma cell line.

Cells of a small cell lung carcinoma cell line, U-1285, and an undifferentiated large cell lung carcinoma cell line, U-1810, differ in radiosensitivity in parallel to the clinical radiosensitivity of the kind of tumors from which they are derived. The surviving fraction at 2 Gy (SF2) was 0.25 that of U-1285 cells and 0.88 that of U-1810 cells. We investigated the induction of DNA double-strand breaks (DSBs) by X rays and DSB rejoining in these cell lines. To estimate the number of DSBs we used a model adapted for pulsed-field gel electrophoresis (PFGE). The induction levels were of the same magnitude (0.46 and 0.51 DSB/100 Mbp/Gy for U-1810 and U-1285 cells, respectively). These levels of induction do not correlate with radiosensitivity as measured by cell survival assays. Rejoining of DSBs after doses in the range of 0-50 Gy was followed for 0, 15, 30, 60 and 120 min. We found a difference in the velocity of repair during the first hour after irradiation which is parallel to the differences in radiosensitivity. Thus U-1810 cells exhibit a fast component of repair, with about half of the DSBs being rejoined during the first 15 min, whereas U-1285 cells lack such a fast component, with only about 5% of the DSBs being rejoined after the same time. In addition there was a numerical albeit not statistical difference at 120 min, with more residual DSBs in the U-1285 cells compared to the U-1810 cells.

Carcinoma, Large Cell↗

Relationship between DNA ploidy level and tumor sociology behavior in 12 nervous cell lines.

Cell population sociology was studied in two medulloblastomas and 10 astrocytic human tumor cell lines by means of the characterization of the structure of neoplastic cell colonies growing on histological slides. This was carried out via digital cell image analysis of Feulgen-stained nuclei, to which the Delaunay triangulation and Voronoi paving mathematical techniques were applied. Such assessments were compared to the DNA polidy level (assessed by means of DNA histogram typing). The results show that the cell colony architecture characteristics differed markedly according to whether the cell lines were euploid (diploid or tetraploid) or aneuploid (hyperdiploid, triploid, hypertriploid, or polymorphic). In fact, the cell colonies from the euploid cell nuclei populations were larger and more dense than those from the aneuploid ones. Furthermore, for an identical period of culture, the cell lines from high-grade malignant astrocytic tumors (glioblastomas) exhibited cell colonies that were larger and more dense than those in cell lines from low-grade astrocytic tumors (astrocytomas). In each of these two groups, the diploid cell nuclei populations exhibited cell colonies larger and more dense than the nondiploid colonies. The present methodology is now being applied in vivo to histological sections of surgically removed human brain tumors in order to distinguish between high-risk clinical subgroups and medium-risk subgroups in clearly circumscribed histopathological groups.

Aneuploidy↗

Interaction of heat with chemotherapy in vitro: effect on cell viability and protein synthesis in human and murine cell lines.

Cell survival in response to doxorubicin (Dx) and cis-diammine-dichloroplatinum (cis-Pt) administration, either alone or combined with hyperthermic treatment, was analyzed in human osteosarcoma (U-2-OS), murine melanoma (B16V) and murine leukemia (P388) cell lines and in Dx-resistant sublines derived from B16V and P388. In all cell lines tested there was an enhancement of drug toxicity by hyperthermia. In U-2-OS, the increase was more pronounced for cis-Pt than for Dx. In B16V and in P388, the increase in Dx toxicity was of the same degree in Dx-sensitive and Dx-resistant sublines, whereas heat-induced sensitization to cis-Pt was higher in Dx-resistant sublines than in their Dx-sensitive counterpart. Analysis of the protein pattern in the various cell lines showed that the synthesis of heat-shock proteins induced by heat was not influenced by the combined use of drugs and heat. Moreover, in spite of some differences in the overall protein pattern, no significant differences in the basal levels of heat-shock protein synthesis or in the extent of its induction after heat shock were observed between murine cell lines relatively sensitive to Dx and their corresponding selected resistant cells.

Animals↗