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Biomedical subjects

P Arnstein

Publications and source records attributed to P Arnstein.

At least 37 records · Page 2Linked to original sources

Dynamics of tumor growth and cellular adaptation after inoculation into nude mice of varying numbers of transformed 3T3 cells and of readaptation to culture of the tumor cells.

Decimal dilutions containing 5 X 10(5) to 5 X 10(1) cells were inoculated s.c. into nude mice and the course of tumor development was recorded. The highest concentration of cells produced rapidly growing poorly differentiated sarcomas within 2-3 weeks of their inoculation. Upon explantation the resultant tumors yielded cells which multiplied on plastic almost as rapidly as did their progenitors used to initiate the tumors, and had as high a colony forming efficiency in agar as long as tryptose phosphate broth was omitted from the agar medium. Tumors initiated by the lower concentrations of cells were disproportionately delayed in their appearance and tended to increase in size at a low rate. At least one tumor regressed and one which apparently regressed appeared again at a later time. These changes are characteristically described under the rubric of tumor regression. Host reactive cells such as neutrophils, eosinophils, macrophages, and fibroblasts were observed in some tumors. One of the tumors was a low grade hemangiosarcoma, another a well-differentiated fibrosarcoma, and the rest poorly differentiated sarcomas. Cells from two tumors initiated by 500 and 5000 cells multiplied slowly in early passages in culture, particularly when seeded at low densities at which they appeared to sustain cumulative damage even when multiplying. In later passages, the "low dose" tumor cells gained the capacity to multiply in culture after seeding at low densities, but it took up to 50 cell generations to reach this capacity. The loss of growth capacity on plastic of cells from the low dose tumors and its subsequent restoration by passaging in culture may provide a quantitative method for analyzing the type of cellular change which underlies tumor progression.

Adaptation, Physiological↗

Neoplastic transformation of human epidermal keratinocytes by AD12-SV40 and Kirsten sarcoma viruses.

Recent investigations have begun to dissect the number and nature of genetic alterations associated with cancer cells. In the present study, primary human epidermal keratinocytes acquired indefinite life-span in culture but did not undergo malignant conversion in response to infection with a hybrid of adenovirus 12 and simian virus 40. Addition of Kirsten murine sarcoma virus, which contains a K-ras oncogene, to these cells induced morphological alterations associated with the acquisition of neoplastic properties. These findings demonstrate the malignant transformation of human primary epithelial cells in culture and support a multiple-step process for neoplastic conversion.

Adenoviruses, Human↗

Proliferation of infected lymphoid precursors before Moloney murine leukemia virus-induced T-cell lymphoma.

NFS/N mice inoculated with Moloney murine leukemia virus (M-MuLV) developed T-cell lymphoma after a 10-week latent period. Expression of lymphoid differentiation antigens, appearance of M-MuLV-encoded cell surface antigens, and rates of cellular proliferation were measured in splenic and bone marrow subpopulations during this latent period. At 2 weeks of age, Thy-1-and surface immunoglobulin-negative null cells of spleen and bone marrow expressed M-MuLV antigens whereas T- and B-lymphocytes did not. During the 3d and 4th weeks, the number of splenic null cells increased to six times the number found in uninfected controls. These null cells included the precursors of lymphocytes and hematopoietic cells. For the remainder of the latent period, the percentage of null cells undergoing proliferation was three times greater in the infected mice, while the total number of null cells remained constant. This proliferation was not accompanied by terminal differentiation or emigration of mature cell types from the spleen. Proliferation was substantially delayed in CBA mice, which are resistant to lymphoma induction.

Animals↗

Inheritance of acquired changes in growth capacity of spontaneously transformed BALB/3T3 cells propagated in mice and in culture.

Five subclones were derived from a spontaneously transformed BALB/3T3 clone soon after its isolation. Despite their common clonal origin, the subclones were different from each other in appearance, colony-forming efficiency in agar (CFEag), and rate of tumor formation in mice. A comparison of growth properties during repeated passages in culture was made between the cells derived from the tumors and the cells used to initiate the tumors. In most cases, the tumor-derived cells had a much lower CFEag than did their parental in vitro-propagated cells, and the CFEag was restored slowly to the original level or remained at a reduced level during the period of study. In a few cases, the tumor-derived cells had almost as high a CFEag as their parental cells or were quickly restored to this level during cultivation. It was shown by karyotypic and clonal analysis that the reduced CFEag of the tumor-derived cells arose from a change in the transformed cells; i.e., it was not due to the presence of normal host cells in the explanted tumor. Clones of the tumor-derived cells tended to show the same patterns of change in CFEag as the uncloned tumor cell populations, but there were cases of individual variation in pattern among the tumor cell clones. Tumor cells with greatly reduced CFEag also grew a little more slowly on plastic than did the parental nontumor cells, and their growth rate tended to increase along with CFEag in long-term culture. Clonal analysis of one of the five original subclones failed to reveal cells which had the CFEag properties of its progeny tumor cells. This suggests that the reduction of CFEag during tumor formation arose by adaptation rather than selection of preexisting variants. A similar conclusion was drawn about the restoration of CFEag during cultivation of the tumor-derived cells. Although the decrease in CFEag which accompanied tumor formation varied in magnitude and stability, some tumor cell populations retained their reduced capacity through months of weekly passaging in culture, involving up to 100 cell divisions. The results are therefore consistent with the heretical notion of inheritance of acquired characteristics. In addition, the wide variation of in vitro growth capacity among tumors initiated by different subclones, and even among tumors initiated by the same subclone, raises the possibility that the complete chain of causality underlying the variation is intrinsically indeterminate.

Animals↗

High-frequency variation and population drift in a newly transformed clone of BALB/3T3 cells.

During repeated passage of BALB/3T3 cells and testing for anchorage-independent growth, a single transformed clone was isolated from agar, and five subclones were derived from it. These subclones differed from one another in morphology on a solid substratum, efficiency and size of colony formation in agar, and rate of tumor formation in nude mice. With weekly passage over a period of 6 months, the differences in morphology and growth in agar gradually decreased. The subclone which produced the fastest-growing tumors in nude mice after 4 weeks of culture produced the slowest-growing tumors after 18 weeks, and a change in the opposite direction was made by another subclone. There was no difference among the subclones in growth rate on plastic. The distribution of chromosome numbers was heterogeneous but overlapping in all the primary subclones at 16 and 24 weeks, with no statistically significant difference in the mean number of chromosomes per subclone. An extremely high degree of variation must have occurred to produce the multiple differences between the subclones, and the same type of variation could have been responsible for the subsequent changes with repeated passage. The high frequency and graded nature of the changes and the concurrent involvement of several traits suggest an epigenetic basis for the variation.

Animals↗

Neoplastic transformation of fetal lamb kidney cells by bovine leukemia virus.

Neoplastic transformation of fetal lamb kidney (FLK) cells by bovine leukemia virus (BLV) is reported. Morphological transformation was observed in FLK cells within a few weeks of BLV inoculation. BLV-transformed FLK cells had the following properties generally associated with viral transformation: (1) altered morphology; (2) increased growth rate; (3) colony formation in soft agar medium; (4) formation of large cell aggregates and growth in this aggregate form above an agar base; and (5) tumorigenicity in nude mice. The transformed cells contained BLV-specific p24 and gp51 antigens and were virus producers. BLV was detected in transformed cells by syncytial assay. The transformed cells yielded high-titered viral reverse transcriptase activity and viral particles. The transformed cells contained marker chromosomes (M1, M2, M3, M4 and M7) and a large submetacentric chromosome, but control cells did not. Thus, we demonstrated the neoplastic transformation of FLK cells by BLV.

Animals↗

Heritable variations in growth potential and morphology within a clone of Balb/3T3 cells and their relation to tumor formation.

A nontransformed clone and a spontaneously transformed clone were isolated from a twice-recloned line of Balb/3T3 cells. At different times two sublines were initiated from the nontransformed clone, and three were initiated from the transformed clone. The sublines were maintained in parallel passages under the same conditions. Each subline was distinctive in appearance and fell into the same rank order in a variety of growth parameters in vitro. Colony formation in agar and tumor formation in mice occurred only in the morphologically transformed sublines, but there was no quantitative correlation between the two properties or with the rate of glucose utilization. Two of the cell populations derived from noninbred NIH nude mouse tumors of the 3 transformed sublines differed in agar colony formation from the parental sublines. The results indicate that there is an immense capacity for variation in cultured animal cells involving many unrelated characteristics expressed in a way that is difficult, if not impossible, to explain by conventional genetic models.

Agar↗

Differentiated mouse epithelial cell line with hepatocyte characteristics.

An epithelial cell line, 3105, with an unusual growth pattern has been derived from the liver of an (NZB x NZW)F1 mouse. When confluent, it forms a monolayer of closely packed cells interspersed with holes that do not fill in during cultivation. By electron microscopy, the line has tight and intermediate junctions as well as desmosomes typical of epithelial cells. It produces several enzymes normally present in liver including hydroxymethylglutaryl-coenzyme A (HMG-CoA) reductase, glucose-6-phosphatase, and alkaline phosphatase; has cytochromes P-450 and b5; and spontaneously release xenotropic but not ecotropic endogenous mouse type C viruses. Inoculation of the cell line into athymic nude mice gives rise to benign cysts in 2-3 months. This mouse epithelial line with hepatocyte characteristics should be helpful to investigators as a cell model of normal liver cell differentiation.

Animals↗

Neoplastic transformation of chimpanzee cells induced by adenovirus type 12--simian virus 40 hybrid virus.

The adenovirus 12--simian virus 40 hybrid virus produced neoplastic transformation of chimpanzee skin fibroblasts in vitro. The transformed fibroblasts showed morphological alteration and became permanent lines. The transformed cells contained both adenovirus 12 and simian virus 40 large tumor antigens and were virus producers. However at passage 9, one line (WES) was found to be a nonproducer, producing neither infectious virus nor virus-specific antigen detectable by the complement fixation test. Virus particles were not detected nor could infectious hybrid virus be rescued from this line by cocultivation with Vero cells. The transformed cells formed large cell aggregates and grew in liquid growth medium above an agar base, formed colonies in soft agar, and grew to high saturation densities; the normal chimpanzee skin fibroblasts did not. One transformed WES line produced tumors when transplanted subcutaneously into newborn nude mice, thus providing an important tool for studying tumor immunity in the chimpanzee.

Adenoviruses, Human↗

Chemical transformation of cultured skin fibroblasts from humans genetically predisposed to cancer.

Adenomatosis of the colon and rectum (ACR) is an inherited form of cancer. Assuming that phenotypic expressions that appear in cell strains reflect its biological abnormalities, the study of cultured skin fibroblasts derived from individuals with an inherited form of cancer such as ACR provides a unique study for analysis of the oncogenic process. Growth disorders and increased susceptibility to tumor promoters and to transformation by an oncogenic RNA tumor virus have been demonstrated in these skin fibroblasts. We found that human skin fibroblasts (PF) derived from ACR individuals were sensitive to a chemical carcinogen. Cells treated only with various levels of N-methyl-N'-nitro-N-nitrosoguanidine (MNNG) underwent morphological alteration. The morphologically altered cells formed large cell aggregates when suspended in liquid growth medium above an agar base and grew to high saturation densities but did not form colonies in soft agar. Transformed cells were resistant to rechallenge of MNNG (1 microgram/ml) and showed prolonged life span compared to those untreated cells. However, no tumors were produced when cells were inoculated subcutaneously into nude mice. Data suggest that neoplastic transformation of these skin cells by chemical carcinogens is a multi-phase process.

Cell Transformation, Neoplastic↗

Chemical transformation of cultured human skin fibroblasts derived from individuals with hereditary adenomatosis of the colon and rectum.

Chemical transformation of cultured human skin fibroblasts (PF) derived from individuals with hereditary adenomatosis of the colon and rectum is reported. Cells treated only with various levels of N-methyl-N'-nitro N-nitrosoguanidine (MNNG) underwent morphological alteration. The morphologically altered cells formed large aggregates when suspended in liquid growth medium above an agar base and grew to high saturation densities. One altered (MNNG, 1.0 microgram/ml) cell culture formed colonies in soft agar. Transformed cells were resistant to rechallenge of MNNG (l microgram/ml) and showed a more prolonged life-span compared to the untreated cells. Altered cells became heteroploid cells. However, no progressively growing tumors were produced when cells were inoculated subcutaneously into nude mice. The data suggest that chemical carcinogens alone may not induce neoplastic transformation of fibroblasts from humans genetically predisposed to cancer and that neoplastic transformation of these skin cells by chemical carcinogens might require the presence of a tumor promotor and the use of an immuno-privileged site in the nude mouse system.

Adenoma↗

Effects of sodium butyrate and dimethylsulfoxide on biochemical properties of human colon cancer cells.

Sodium butyrate and dimethylsulfoxide (DMSO) have marked effects on the growth, morphology, and biochemistry of two human colonic adenocarcinoma cell lines in culture. Doubling times were increased between 18% and 660% while cell viability was unaffected. Both cell lines formed colonies in soft agar in the absence of butyrate of DMSO, but no colonies were observed in the presence of these agents. However, no differences in in vivo tumorigenicities, when cells were implanted in athymic mice, were seen following treatment. Gross morphological alterations including cell enlargement, process formation, and cellular flattening occurred during culture in butyrate or DMSO. Acrylamide gel electrophoresis in sodium dodecyl sulfate revealed no change in membrane protein constituents, but autoradiographic analysis of membrane glycoproteins demonstrated differences between treated and untreated cells. Ganglioside compositions were altered, and a sialyltransferase required for the synthesis of GM3 ganglioside was elevated by butyrate. Although cytoplasmic aminooligopeptidase remained unaffected by butyrate or DMSO, brush border-associated activity was enhanced by butyrate. Alkaline phosphatase also rose dramiatically during culture in butyrate but was not enhanced by DMSO.

Adenocarcinoma↗

Inhibition of chemically induced carcinogenesis of canine cells in vitro by infection with mouse xenotropic type C virus.

C57L mouse xenotropic type C virus infection inhibited N-methyl-N'-nitro-N-nitrosoguanidine (MNNG)-induced in vitro transformation of embryo cells from inbred beagles. Treatment with MNNG induced in vitro neoplastic transformation in uninfected canine cells but not in C57L virus-infected canine cells; the C57L virus-infected canine cells not treated with MNNG also remained untransformed. In this dog cell system, preinfection with a C57L mouse xenotropic type C virus inhibited in vitro neoplastic transformation induced by MNNG.

Animals↗

Neoplastic transformation of canine embryo cells in vitro by N-methyl-N'-nitro-N-nitrosoguanidine.

A cell line derived from a normal beagle embryo was treated in vitro with various levels of N-methyl-N'-nitro-N-nitrosoguanidine or dimethyl sulfoxide (control). Cells treated only with the carcinogen underwent morphologic alteration in vitro, and one of these altered cell lines produced tumors subcutaneously when injected into NIH nude mice. The tumorigenic transformed line formed larger cell aggregates and grew in this aggregate form when suspended in liquid growth medium above an agar base.

Animals↗

Chemical transformation of human revertant cells induced by murine sarcoma virus.

A human revertant cell line, derived from non-producer human osteosarcoma cells (NP/KHOS) induced by Kirsten murine sarcoma virus, was treated in vitro with various levels of polycyclic aromatic hydrocarbons (3-methylcholanthrene, 7,12-dimethylbenz(alpha)anthracene, and benzo(alpha)pyrene [BP] or dimethyl sulfoxide (control). Cells treated only with 3-methylcholanthrene and 7,12-dimethylbenz(alpha)anthracene underwent morphological alteration in vitro, and produced tumors when injected into NIH nude mice. These human revertant cells may be a useful in vitro tool in screening for the potential chemical carcinogens in human cell systems.

9,10-Dimethyl-1,2-benzanthracene↗

Characterization of human cells transformed in vitro by N-methyl-N'-nitro-N-nitrosoguanidine.

Human osteosarcoma (HOS) clonal cells transformed in vitro by N-methyl-N'-nitro-N-nitrosoguanidine (MNNG) were characterized, and compared to non-producer HOS cells transformed by Kirsten murine sarcoma virus (Ki-MSV). The MNNG- and virus-transformed cells grew in the aggregate form above an agar base, grew in soft agar, and had a high fibrinolytic activity. When inoculated into nude mice, all the chemically or virally altered cells produced tumors or tumor nodules. When transplanted into ATS-treated hamsters, the cells transformed by MNNG (0.01 mug/ml) and Ki-MSV produced tumors but MNNG (0.1 mug/ml) transformed cells did not produce tumors. The control HOS cells did not grow in the aggregate form but formed colonies in soft agar, and had low fibrinolytic activity and no capacity to form tumors in nude mice and ATS-treated hamsters. However, one of the control clonal lines had a high level of fibrinolytic activity. Cellular aggregation properties of human transformed cells did appear to correlate with tumorigenicity in nude mice.

Animals↗