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At least 73 records · Page 4Linked to original sources

Establishment and characterization of leukemic T-cell lines, B-cell lines, and null-cell line: a progress report on surface antigen study of fresh lymphatic leukemias in man.

Permanent human hematopoietic cell lines representing T-cell, B-cell and non T/non B (null-cell) leukemia have been established. Comparative analyses were made for their phenotype characteristics. A number of characteristics common within the 7 T-cell lines studied or distinct from other leukemia-type lines were described. Usefulness, validity and limitation of these findings are discussed in connection to the attempt at classification of ALL, CLL and blastic phase of CML. The great majority of CLL were SmIg+-B-cell leukemia and a single case of T-cell CLL was documented. Except 10% as T-cell ALL and a single case of B-cell ALL, the majority of ALL were found to be the non T/non B ALL. Nevertheless, little evidence was suggested from the present study in favor for a notion that the T-cell ALL and the non T/non B ALL are two distinct diseases.

Antigens, Neoplasm↗

Establishment, growth properties, and morphological characteristics of permanent human small cell lung cancer cell lines.

Cell lines from SCLC were established with a success rate of 43% from different metastatic sites of treated and untreated patients. All 6 SCLC cell lines grew as floating cell aggregates without substrate adherence. The degree of aggregation ranged from very tight spheroids to very loose sheets and chains. This gross morphological property showed a striking correlation to the PDT, with short PDTs in loose growing cell lines and long PDTs in tight growing cell lines. Cell size and nuclear features, i.e., chromatin pattern and nucleolar prominence, also seemed to correlate with the PDT and gross morphology. All SCLC cell lines had dense core granules by electron microscopical examination. Several different serum-free and serum-supplemented growth media were tested for their feasibility in establishing and permanently growing SCLC. Serum-free SIT medium and SIT2.5 medium provided the best results in liquid culture. For semisolid SCLC cultivation, R 10 medium was superior to all other media tested. These cell lines are currently under intensive biochemical, molecular biological, and cytogenetical investigation in different laboratories and thus provide a tool for studying the biology of lung cancer.

Bone Marrow↗

A comparison of gene expression signatures from breast tumors and breast tissue derived cell lines.

Cell lines derived from human tumors have historically served as the primary experimental model system for exploration of tumor cell biology and pharmacology. Cell line studies, however, must be interpreted in the context of artifacts introduced by selection and establishment of cell lines in vitro. This complication has led to difficulty in the extrapolation of biology observed in cell lines to tumor biology in vivo. Modern genomic analysis tool like DNA microarrays and gene expression profiling now provide a platform for the systematic characterization and classification of both cell lines and tumor samples. Studies using clinical samples have begun to identify classes of tumors that appear both biologically and clinically unique as inferred from their distinctive patterns of expressed genes. In this review, we explore the relationships between patterns of gene expression in breast tumor derived cell lines to those from clinical tumor specimens. This analysis demonstrates that cell lines and tumor samples have distinctive gene expression patterns in common and underscores the need for careful assessment of the appropriateness of any given cell line as a model for a given tumor subtype.

Breast↗

Development of resistance to 1-beta-D-arabinofuranosylcytosine after high-dose treatment in childhood lymphoblastic leukemia: analysis of resistance mechanism in established cell lines.

Cell lines PER-163 and PER-164 are derived from a patient with acute lymphoblastic leukemia who developed resistance to 1-beta-D-arabinofuranosylcytosine (ara-C) after high-dose (HD) therapy. Both lines are highly resistant to ara-C and have maintained stable resistance for more than 18 mo. The resistance in PER-164 cells is the result of a selection process in vivo only, while PER-163 cells have in addition been exposed to ara-C in culture. Comparison with cell line PER-145, which is sensitive to ara-C and was established from the same patient before HDara-C therapy, revealed no differences with respect to surface markers, morphology, cytochemical stains, or requirements for growth in vitro. The leukemic origin of the three cell lines is indicated by the close similarities of all three cell lines to the patient's fresh cells. The analysis of the two resistant cell lines shows that resistance to ara-C is not due to lower ara-C transport capacity nor to cytokinetic reasons, since the percentage of cells in S-phase is similar in all three cell lines. In addition, the resistant cell lines do not show any increased cytidine deaminase activity. PER-164 cells show a markedly reduced deoxycytidine kinase activity, 4.8 nmol/h/mg of protein, compared to PER-145 cells with an enzyme activity of 21.48 nmol/h/mg of protein. In PER-163 cells, no deoxycytidine kinase activity could be detected. Furthermore, the two resistant cell lines show significantly different dCTP levels. The sensitive PER-145 cells generated 97.9 pmol of 1-beta-D-arabinofuranosylcytosine triphosphate (ara-CTP)/10(7) cells during a 45-min incubation period in the presence of 10(-6) M ara-C. This contrasts with 0.16 and 12 pmol of ara-CTP/10(7) cells for PER-163 and PER-164 cells, respectively. These investigations suggest that cell phenotypes with distinct features can be generated after HDara-C treatment and that decreased deoxycytidine kinase activity appears to be one of the major mechanisms of resistance.

Arabinofuranosylcytosine Triphosphate↗

Differences in surface sialic acid and galactosyl residues of two autologous human melanoma cell lines.

Cell surface carbohydrate differences were observed between two human cell lines initiated from primary melanoma and metastasis of the same patient. Although total sialic acid content was similar in both cell lines, neuraminidase-released sialic acid was twice as high in metastatic cells than that of primary cells. One class of Concanavalin A binding sites with similar affinity constant was found in untreated and neuraminidase-treated cells in both cell lines. Before surface sialic acid release, the primary cell line expressed two classes of Ricinus lectin binding sites with high and low affinity; the cell line of metastatic origin had only one class of Ricinus lectin binding sites with low affinity. After neuraminidase treatment, the number of Ricinus lectin binding sites with low affinity increased two- or three-fold in both cell lines, whereas the high-affinity binding sites were not observed in primary cells. The present data indicated that differences in surface sialic acid level modified the Ricinus lectin binding in two human melanoma cell lines. However, the ability of the cells to bind Concanavalin A was not changed.

Adult↗

Comparative M-FISH and CGH analyses in sensitive and drug-resistant human T-cell acute leukemia cell lines.

Cell lines of human T-cell acute lymphoblastic leukemias (T-ALL) have gained high interest for study of mechanisms of cytostatic drug resistance. However, they should also be suited to examine the validity and reliability of molecular cytogenetic techniques in detecting genomic alterations in neoplastic cells. Therefore, comparative genomic hybridization (CGH) and 24-color-fluorescence-in-situ-hybridization (M-FISH) were applied to eight sublines of CCRF-CEM leukemia cells selected in vitro for drug resistance and to their drug-sensitive parental counterparts. All cell lines were characterized by altered chromosome numbers and by a variety of chromosomal structural aberrations as shown by M-FISH. The great majority of anomalies detected by this technique were confirmed by CGH. Interestingly, a considerable number of the rearrangements found were imbalanced. Amplifications of 5q13 in the six methotrexate-resistant cell lines, a del(9)(p21pter) in all lines examined, and a gain of chromosome 20 in 9 of the 10 lines examined were readily detected by both techniques. The same held true for losses of chromosomes 17 and 18 in the near tetraploid cell lines which could also be confirmed by CGH. Some imbalances of genomic material detected by CGH were, however, not observed by means of M-FISH, possibly due to the limited extension of the corresponding chromosomal segment involved or the small subpopulation of cells affected. On the other hand, reciprocal translocations, balanced isochromosomes, and small deletions remained mainly undetected by CGH. A comparison of chromosomal alterations in drug-resistant and parental cell lines showed not only amplifications of chromosomal segments harboring well-known drug resistance genes, e.g., the dihydrofolate reductase gene, but also chromosomal changes which may involve novel genes associated with drug resistance. Thus, the present study has clearly unveiled the strengths and weaknesses of both techniques which can excellently complement each other. Their combination allowed a distinct improvement of the definition of the complex karyotypes of drug-resistant cell lines.

Chromosome Aberrations↗

Use of nude mouse xenografts as preclinical screens. Characterization of xenograft-derived melanoma cell lines.

Cell lines derived from human melanoma xenografts were characterized for surface markers, karyotype abnormalities, and in vitro drug sensitivity. Xenografts were established using metastatic explants from untreated patients and passaged in nude mice. Cell lines were readily established from melanoma xenografts, and formed colonies when plated in semisolid media. The lines expressed human melanoma-associated and other surface antigens, human lactate dehydrogenase (LDH) isoenzymes, and contained only human chromosomes. They failed to express murine histocompatibility determinants and were negative for murine viruses by mouse antibody production assay. Karyotypes showed abnormalities of chromosomes 3, 6, and 7 similar to other melanomas. In vitro chemosensitivity profiles were compared using cell line and xenograft colony-forming assays. Values were similar for the original xenografts and their cell lines. Xenograft-derived human melanoma lines resemble other melanoma cell lines and primary melanomas with respect to surface antigens and karyotype abnormalities, and are appropriate models for studying in vitro drug sensitivity. When used as a model for transition from solid tumor to cell line, these studies suggest cell lines closely mirror in vitro chemosensitivities of parent tumor cells. However, occasional, unpredictable changes in sensitivity to some drugs occurs during this transition.

Animals↗

Short tandem repeat DNA typing provides an international reference standard for authentication of human cell lines.

Cell lines have wide applications as model systems in the medical and pharmaceutical industry. Much drug and chemical testing is now first carried out exhaustively on in vitro systems, reducing the need for complicated and invasive animal experiments. The basis for any research, development or production program involving cell lines is the choice of an authentic cell line. Microsatellites in the human genome that harbour short tandem repeat (STR) DNA markers allow individualisation of established cell lines at the DNA level. Fluorescence polymerase chain reaction amplification of eight highly polymorphic microsatellite STR loci plus gender determination was found to be the best tool to screen the uniqueness of DNA profiles in a fingerprint database. Our results demonstrate that cross-contamination and misidentification remain chronic problems in the use of human continuous cell lines. The combination of rapidly generated DNA types based on single-locus STR and their authentication or individualisation by screening the fingerprint database constitutes a highly reliable and robust method for the identification and verification of cell lines.

Animal Testing Alternatives↗

Requirements for the induction of the interleukin-2 receptor complex in a human pre-T-cell line.

Cell line PER-117 is a T-cell receptor negative human T-cell line that can be induced to express a functional interleukin-2 receptor (IL-2R). Recombinant interleukin-1 (IL-1) as well as certain combinations of inducer substances could be shown to stimulate the expression of the p55 (alpha)-chain of the IL-2R in PER-117 cells. The synergistic increases in IL-2R alpha expression were demonstrated at the cell surface as well as at the mRNA level. The results suggested that in PER-117 cells IL-1 appears to induce expression of the alpha-chain by pathways that are different to activation via protein kinase C (PKC), and that drug-induced cyclic AMP (cAMP) activation did not substitute for IL-1. We found that the regulation of mRNA for IL-2R beta (p75) differed significantly from that seen for IL-2R alpha. Moreover, the requirements for IL-2R alpha induction determined for this cell line differ from other human cell lines, which may reflect that there are distinct requirements for activation depending on the stage of differentiation and/or lineage of the cells. The PER-117 cell line provides a unique model to examine further the mechanism leading to induction of a functional IL-2R at an early stage of human T-cell differentiation.

Cell Line↗

Early insulin signaling cascade in a model of oxidative skeletal muscle: mouse Sol8 cell line.

Cell models provide important tools to investigate the mechanisms modulating the insulin-signaling cascade. Insulin interaction and subsequent signaling of cells is complex and regulated at multiple levels: receptor abundance, binding dynamics, phosphorylation/dephosphorylation of tyrosine and serine/threonine residues, and subsequent interactions of key intracellular messengers. We report early insulin signaling events in the mouse Sol8 myogenic cell line. Sol8 cells responded to insulin by increasing total IRS-1, p85 PI3-kinase and tyrosine phosphorylated IRS-1 (pY-IRS-1) at 10 min (P<0.05), but not at 1 min of insulin stimulation. The dose-response relationships at 10-min insulin (10 to 300 nM) stimulation showed that IRS-1 and pY-IRS-1 responded to 100 and 300 nM insulin, and the p85 PI3-kinase response peaked at 30 nM insulin. PI3-kinase appeared to be present in high abundance and, in response to insulin, recruitment to the insulin receptor tyrosine kinase (IR) of IRS-1 and PI3-kinase was observed. The increase in IRS-1 detected in IR immunoprecipitates was twofold, while the corresponding increase in PI3-kinase was threefold, suggesting direct recruitment of PI3-kinase to the IR. PI3-kinase detected in IRS-1 immunoprecipitates in response to insulin increased 1.7-fold. An ultimate target of this pathway, GLUT4 recruitment to the PM, was delayed (30 min), the increase in GLUT4 being of similar magnitude (1.6-fold) to the early signaling events. Saturation binding analysis indicated that IR in the plasma membrane was not down-regulated in response to insulin. The present study suggests that early signaling events in the insulin cascade are invoked in Sol8 myogenic cells and that this cell line provides a useful model to study insulin signaling.

Animals↗

In vitro growth patterns and autocrine production of hemopoietic colony stimulating factors: analysis of leukemic populations arising in irradiated mice from cells of an injected factor-dependent continuous cell line.

Cells of the factor-dependent hemopoietic cell line FDC-P1 become leukemic when injected intravenously to irradiated syngeneic mice. An analysis of 117 cell lines derived from 17 such leukemic mice showed that they displayed different patterns of growth in vitro ranging from full autonomy to absolute dependency on stimulation by granulocyte-macrophage colony stimulating factor (GM-CSF) or multipotential colony stimulating factor (multi-CSF). In contrast to parental FDC-P1 cells, even the factor-dependent variant cell lines were tumorigenic in vivo. The behavior of these latter cell lines could not be explained by hyperresponsiveness to CSFs or prolonged survival in the absence of CSFs. Conditioned media and cell lysates from leukemic cell lines from 8 animals contained variable levels of GM-CSF or multi-CSF. Proliferation of a GM-CSF-producing cell line was inhibited by anti-GM-CSF antibody, while both the parental FDC-P1 line and a leukemic line secreting multi-CSF remained unaffected. The patterns of growth in vitro of the leukemic cells tended to correlate with the amounts of CSFs produced. The observations show that leukemic transformation of FDC-P1 cells in vivo is frequently linked to autogenous production of hemopoietic growth factors. The range of abnormal in vitro growth patterns observed includes those typical of human acute myeloid leukemia, and the in vivo transformation model may be useful in analyzing the mechanisms leading to the development of this human disease.

Animals↗

Transactivational and DNA binding abilities of endogenous p53 in p53 mutant cell lines.

Cells with divergent mutant alleles of the p53 gene have different biological and biochemical properties in vitro. Increasing evidence indicates that p53 is a transcriptional activator, and recently, high affinity DNA binding sites for p53 have been identified. The purpose of this study was to determine in vivo, the effect that various mutant p53 proteins have on their ability to mediate transactivation and to bind specifically to DNA. Either a p53 responsive or control reporter gene was transfected into 18 human carcinoma cell lines, having various p53 mutations, either with or without a wild-type p53 expression vector. The CAT activity and DNA gel retardation were studied to measure transactivation and DNA binding by these endogenous p53s. As expected, the endogenously produced wild-type p53 binds to DNA binding sequences and can transactivate a reporter construct containing a p53 high affinity DNA binding site. Four of five cell lines with homozygous p53 mutations at codon 273 (273His), contained p53 which had the ability to bind to p53 DNA binding sequences and transactivate. In contrast, all the homozygous, non-codon 273 mutant p53s (156Pro, 175His, 223Leu, 248Gln, 248Trp, 280Lys) present in the other cell lines had no transactivating ability. These findings suggest that the biology of cancers with mutations at codon 273 may be different than those with p53 mutations at other sites. The p53 from WRO, a thyroid carcinoma cell line with p53 mutation at codon 223 (223Leu), was able to bind p53 DNA recognition sequences, but was unable to transactivate. Interestingly, in a vulvar carcinoma cell line (A431) with a p53 mutation at codon 273 (273His), the p53 was unable to transactivate and gave an aberrant band on gel retardation. Both CEM and SK-UT-1, which have compound heterozygous mutations at codons 175/248 (175His/248His), produced p53 which can complex with DNA, as well as transactivate. In contrast, the p53 in cell lines with either homozygous 175His or 248His p53 mutations, were unable either to transactivate or bind to the p53 response element. A cell line (NPA) heterozygous for 266Glu p53 mutation, was able to efficiently transactivate a reporter containing a p53 DNA binding site, therefore showing no evidence of a dominant negative effect of the endogenous p53 mutant allele. In summary, this in vivo study further supports the idea that different p53 mutant alleles have various properties which may affect their function.

Base Sequence↗

TCGF (IL 2)-receptor inducing factor(s). I. Regulation of IL 2 receptor on a natural killer-like cell line (YT cells).

A continuous cell line (YT cells) with inducible receptor for T cell growth factor (TCGF)/interleukin 2 (IL 2) was established from a 15-yr-old boy with acute lymphoblastic lymphoma and thymoma. YT cells were tetraploid, having 4q+ chromosomal markers, and proliferated continuously in vitro without conditioned medium (CM) or IL 2. They were weakly positive for OKT9, OKT11, and Tac antigen (Ag), a determinant closely associated with the receptor for IL 2 (IL 2-R), and were negative for OKT1, OKT3, OKT4, and OKT8 Ag. YT cells also expressed HNK-1 Ag and Fc receptors for IgG, which are expressed on natural killer (NK) cells. They retained a killing activity against human cell lines, including K562 (myeloid), T, and B cell lines. Unlike Tac Ag/IL 2-R(+) cell lines derived from adult T cell leukemia (ATL), YT cells were negative for HTLV, as proved by Southern blotting with cDNA for viral DNA. The expression of Tac Ag was markedly enhanced in 18 hr, when YT cells were incubated with CM from PHA-stimulated peripheral blood leukocytes (PBL) or spleen cells, as determined by immunofluorescence by using flow cytometry and binding assay with 125I-anti-Tac antibody (Ab). The binding study with 125I-labeled recombinant IL 2 showed 3.2 X 10(4) IL 2 receptor sites on YT cells precultured with CM. PHA-P and Con A neither agglutinate nor enhance the expression of IL 2-R/Tac antigen on these non-T cell line cells. Furthermore, neither recombinant IL 2 nor gamma-interferon could induce IL 2-R on YT cells, suggesting the presence of a unique IL 2-R inducing factor in PBL or spleen CM. Unlike Tac Ag on HTLV(+), ATL-derived cell lines (Hut-102, MT-1, ATL-2), the expression of Tac Ag on YT cells was down-regulated by anti-Tac Ab. The induction of Tac Ag/IL 2-R on YT cells seemed specific, because the enhancement of Tac Ag expression was not associated with that of Ia Ag and T9/transferrin receptor.

Adolescent↗

Characterization of immortalized mouse granulosa cell lines.

Cell cultures of primary mouse granulosa cells were transfected with a v-myc-containing plasmid, and the resulting stable cell lines were tested for their steroidogenic properties and physiologic status. Granulosa cells were obtained from 22-day-old NMRI mice injected with 8 IU pregnant mare serum gonadotropin i.p. 2 days earlier. In Passage 1 the cells were transfected with pSVv-myc using calcium phosphate precipitation or lipofectin. The 3 beta- and 17 beta-hydroxy steroid dehydrogenase activity was visualized in control cultures. The three cell lines obtained have been in culture for over 1 yr and have been subcultured for more than 90 passages. The cell line GRM01, with a doubling time of 37 +/- 3 h and a diploid modal chromosome number, produced progesterone, estradiol, as well as inhibinlike and activinlike material under basal conditions. A combination of follicle-stimulating hormone and luteinizing hormone was able to increase the secretion of progesterone. GRM01L, a fast growing clone of the GRM01 line with a doubling time of 10 +/- 1 h, retained only the capacity to produce activinlike material and transforming growth factor-beta, and it was the only one with a tumorigenic capacity. Epidermal growth factor, insulin, and interleukin-6 were able to induce the [3H]thymidine incorporation into DNA in these two cell lines. GRM02, with a doubling time of 36 +/- 2 h and a hypertriploid modal chromosome number, produced progesterone and activinlike and inhibinlike material. Follicle-stimulating hormone and luteinizing hormone were able to enhance the secretion of progesterone. For this cell line, only insulin was shown to induce [3H]thymidine incorporation into DNA.

17-Hydroxysteroid Dehydrogenases↗

Introduction to the issues: recently developed methods for characterizing cell lines.

Cell line characterization is an integral part of establishing quality control over the manufacturing process of a biological product. Characterizing the general and unique features of the continuous cell line and the absence or presence of contaminants establishes a fundamental knowledge about the raw material from which the biological product is being derived. Such information can be used for cell line selection, design of the purification scheme and extent of ensuing validation studies. Developing the selected cell line into a cell bank system allows for a constant source of starting material and decreases the likelihood of contamination. Characterization of the cell bank system may include a) identification of the cell line species of origin, b) identification of unique reference markers, and c) pre-testing for cross-contamination and adventitious agents. This paper introduces issues surrounding present and upcoming methods used for authenticity and characterization testing of cell banks.

Animals↗

Intracellular localization of the PDE4A cAMP-specific phosphodiesterase splice variant RD1 (RNPDE4A1A) in stably transfected human thyroid carcinoma FTC cell lines.

Cells of two human follicular thyroid carcinoma cell lines (FTC133, FTC236) were stably transfected with a cDNA encoding the PDE4A cAMP-specific phosphodiesterase (PDE) splice variant RD1 (RNPDE4A1A) so as to generate the cloned cell lines, FTC133A and FTC236A. This allowed the expression of a novel rolipram-inhibited cAMP-specific PDE activity in these cells. Unlike the parent cell lines in which Ca2+/calmodulin caused a profound activation (approx. 3-4-fold) of homogenate PDE activity, no such stimulation was evident in the RD1-expressing cell lines, indicating loss of PDE1 activity. Reverse transcriptase-PCR analysis indicated that this was due to the down-regulation of the PDE1C isoform. The novel PDE4 activity in transfected cells was located exclusively in the membrane fraction, as was immunoreactive RD1. Low concentrations of the detergent Triton X-100, but not high NaCl concentrations, allowed RD1 to be solubilized. Laser scanning confocal immunofluorescence analyses identified RD1 immunoreactivity in a discrete perinuclear region of these RD1-expressing transfected cell lines. A similar pattern of labelling was observed using the antiserum Tex1, which specifically identified the Golgi apparatus. Treatment of FTC133A cells with the Golgi-perturbing agents monensin and brefeldin A led to a similar redistribution of immunoreactive species detected using both the Tex1 and anti-RD1 antisera. It is suggested that the PDE4A splice variant RD1 contains a membrane-association signal which allows the targeted expression of RD1 within the Golgi complex of these human follicular thyroid carcinoma cell lines.

3',5'-Cyclic-AMP Phosphodiesterases↗

Feeder layer and nutritional requirements for the establishment and cloning of human malignant lymphoma cell lines.

Cell lines were successfully established in continuous suspension culture from 10 patients with a histopathological diagnosis of diffuse histiocytic lymphoma (SU-DHL-1 to SU-DHL-10), two with North American Burkitt's lymphoma (SU-AmB-1 and SU-AmB-2), and one with acute lymphoblastic leukemia (SU-ALL-1). By screening a variety of parameters, including media, sera, effusion fluids, feeder layers, and chemical supplements, the nutritive growth requirements of lymphoma cells obtained from malignant effusions and lymph node biopsies were determined for each tumor. Most of these cell lines initially required human skin fibroblast or epithelial cell feeder layers from which they could be weaned after one to six weeks in culture and maintained in Roswell Park Memorial Institute Tissue Culture Medium 1640 containing 20% fetal calf serum and 10% pooled human serum. Several of these cell lines were successfully cloned on 0.5% Noble agar substrates. In the presence of human serum and selected feeder monolayers, cloning efficiencies increased significantly from less than 1% to 15 to 25%. In addition, the cloning efficiencies of certain cell lines showed a concentration-dependent increase with specific chemical supplements including L-cysteine and dithiothreitol. Placental colony-stimulating factor, nerve growth factor, epithelial growth factor, and fibroblastic growth factor were ineffective in augmenting the cloning efficiencies of the human lymphoma cell lines. After a single passage on agar, cells subpassaged from visible colonies showed markedly increased cloning efficiencies to levels as high as 50%. Such cloning efficiencies, coupled with the use of replica plating, make this technique applicable to genetic and quantitative radiobiological, immunological, and chemotherapeutic studies. Although these methods have thus far been used only with lymphoreticular tumors, they may also be applicable to the cell culture of other human neoplasms and normal tissues.

Burkitt Lymphoma↗