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F R Miller

Publications and source records attributed to F R Miller.

At least 55 records · Page 3Linked to original sources

Melphalan sensitivity as a function of progressive metastatic growth in two subpopulations of a mouse mammary tumour.

In order to examine in detail the sensitivity to chemotherapy of tumour cells at various organ sites and at various stages of metastasis, we have used a series of cell lines, all selected from sister subpopulations derived from a single mouse mammary tumour, which can be distinguished and quantitated from normal cells and from each other through growth in selective medium. For the studies described here, we used two lines, 4T07 and 66FAR, which will form colonies in vitro in medium containing 60 microM 6-thioguanine or 330 microM 2,6-diaminopurine, respectively. Both cell lines have similar sensitivity to the test chemotherapeutic agent, melphalan, in vitro. These two tumour cell lines were treated with melphalan in vivo, when growing either in lungs as experimental metastases at various times after cell injection or as palpable tumours growing subcutaneously. Responses to various doses of melphalan were measured by removing lungs or subcutaneous tumours and performing colony-forming assays in selective medium. The data indicate marked shifts in sensitivity as a function of metastatic stage. Analyses of dose-response curves show that both cell lines were similarly sensitive to melphalan at early times (45 min) after cell injection i.v. but became less sensitive at an intermediate time after injection (3 days). Differences between the two lines became apparent at later times after i.v. injection (by day 8 or 9) and in subcutaneous tumours, where a marked reduction in the shoulder of the dose response curve was seen in line 4T07, resulting in sensitivity equal to or greater than the of early times, whereas the dose response parameters of 66FAR remained at those of the intermediate time point. These results show that, in heterogeneous tumours, individual subpopulations of tumour cells may respond differently to chemotherapeutic agents at various disease stages. In vitro measures of tumour sensitivity do not predict these changes in in vivo sensitivity. Model systems similar to the one described here may yield information which will eventually be useful in maximising the efficacy of clinically relevant adjuvant chemotherapy regimens.

Animals↗

Immune mechanisms in the sequential steps of metastasis.

The number of viable disseminating cancer cells may be reduced dramatically at each step of the metastatic sequence. Host defense mechanisms may contribute to the reduction in the number of cancer cells able to accomplish each step of metastasis. However, augmentation by host defense mechanisms of the ability to complete metastatic events has been observed. The role of cellular host defense mechanisms in the elimination of disseminating cancer cells at individual steps of metastasis is reviewed.

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Molecular events in metastatic progression.

A number of genes have been implicated in the metastatic process but relatively little is known regarding the specific event(s) in dissemination of malignant cells which are altered by specific genetic changes. In most cases, only a correlation between gene expression and a final outcome, e.g. patient survival or enumeration of metastatic nodules at necropsy for experimental animal models, exists. In other cases, gene expression has been correlated with one part of the metastatic cascade but possible alterations in additional steps were not determined. The ultimate effect of expression of any gene on specific steps in the metastatic cascade varies with the cell type. To minimize differences due to unspecified differences in background genetic mutations and expression, a model of closely related tumor subpopulations, which vary in metastatic potential and whose specific deficiencies are known, is described. This model may prove to be valuable in assessing the steps in the metastatic cascade affected by specific metastasis modulating genes.

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Selective events in the metastatic process defined by analysis of the sequential dissemination of subpopulations of a mouse mammary tumor.

To identify selective steps in metastasis, those that eliminate nonmetastatic tumor cells more efficiently than metastatic cells, we have evaluated the sequential dissemination of tumor cells from a mammary fatpad, using both metastatic (4T1 and 66cl4) and nonmetastatic (67NR, 168FARN, and 4TO7) subpopulations of a single mouse mammary tumor. Each of these variant subpopulations is resistant to one or more selective drugs so they could be quantitatively identified by colony formation in selective media. We found that the 2 metastatic cell lines metastasized by different routes and that the nonmetastatic tumor cell lines failed at different points in dissemination. Line 67NR did not leave the primary site; clonogenic tumor cells were not detected in the nodes, blood, or lungs during the experiment (7 weeks). Tumor line 168FARN disseminated from the primary tumor because clonogenic cells were cultured from the draining lymph nodes throughout the experiment. However, dissemination essentially stopped in the node as cells were rarely isolated from blood, lungs, or lives. Whether 168FARN cells failed to reach these tissues or were killed very rapidly after traversing the lymph node is unknown. Line 4TO7 cells disseminated via the blood and were consistently recovered from lungs by day 19 but failed to proliferate. This panel of 5 subpopulations thus identifies different points of selective failure in tumor cell dissemination and should be valuable in the assessment of antimetastatic therapies.

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Sequential alteration of peanut agglutinin binding-glycoprotein expression during progression of murine mammary neoplasia.

A sequential, quantitative loss of Peanut agglutinin (PNA) binding with progression of mouse mammary cells from normal to preneoplastic to neoplastic phenotypes was observed. Normal mammary epithelium, preneoplastic mammary lesions designated D2HAN (D2-type hyperplastic alveolar nodules) and a series of nine spontaneous tumours (D2ST1, D2ST2, D2ST3, D2ST4, D2A1, D2F2, D2.0R, D2.1, EMT6R08) derived from mice bearing D2HAN were grown in culture and analysed by flow cytometry with respect to PNA binding intensity to the cell surface. Primary cultures of normal mammary epithelium strongly bound PNA. A stepwise decrease in PNA binding by preneoplastic D2HAN cells and subsequent tumours arising from those hyperplastic lesions was observed. Three cloned tumour subpopulations derived from such tumours exhibited dramatic differences in PNA binding ranging from high (D2.0R) to low (D2.1) to very low (D2A1 cells). Their growth rate in vitro was similar. However, an inverse correlation between PNA binding and malignant characteristics, such as the incidence and latency of subcutaneous tumours and the efficiency of the tumour cells to form lung colonies after i.v. injection, existed. Cells subsequently derived from tumours resulting from injection of the D2.0R clone (high PNA binding, low tumorigenicity) were found to have diminished PNA binding properties and to be more tumorigenic when reimplanted into syngeneic mice. The difference in PNA binding (up to 50-fold) between normal mammary cells and other mouse mammary tumour cells, i.e., unrelated to D2HAN lesions, was also seen. These include six sister subpopulations derived from a single BALB/cfC3H mouse mammary tumour (lines: 67, 66c14, 168FARN, 4TO7, 68H, 64pT) as well as SP1 spontaneous CBA/J mouse mammary carcinoma. The difference was greatly reduced by neuraminidase treatment suggesting a masking of PNA binding sites by sialic acid. Separation of cell lysates by SDS-PAGE revealed a high molecular weight PNA binding glycoprotein (greater than 250 kd) expressed by normal mammary epithelium and preneoplastic D2HAN cells, but not by tumour cells regardless of neuraminidase treatment. A PNA reactive glycoprotein of approximately 90 kd was uniquely expressed in normal mammary epithelial lysates, although neuraminidase treatment exposed a similar band in a few tumour lines. Normal mammary epithelium, preneoplastic D2HAN cells, and the poorly tumorigenic clone D2.0R expressed a PNA binding glycoprotein of approximately 150 kd. This band appeared to be specifically sialylated during transition from the high PNA binding, low tumorigenic phenotype of D2.0R cells to the low PNA binding, highly tumorigenic phenotype of cells isolated from tumours resulting from s.c. implantation of D2.0R cells.(ABSTRACT TRUNCATED AT 400 WORDS)

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Cell line specific abnormalities in expression of PNA, SBA and L-PHA binding sites by carcinogen induced rat urothelial carcinomas.

Bladder tumor cell lines derived from male F344 rats treated with N-buthyl N-(4-hydroxybuthyl) nitrosamine (BBN) or N-[4-(5-nitro-2-furyl)-2-thiazolyl] formamide (FANFT) have been established in vitro and characterized with respect to histology, karyotype, myc and c-Ha-ras oncogene expression or mutation, anchorage-independent growth and tumorigenicity in nude mice. This unique model system comprising 13 cell populations was employed to study common events during development of carcinogen-induced urothelial neoplasia. Differential expression of malignant phenotypes by these cell lines prompted us to examine their expression of carbohydrate structures binding peanut agglutinin (PNA), soy bean agglutinin (SBA) or leukoagglutinin (L-PHA), which are known indicators of tumor progression in rodents and humans. In the present study we analyzed the patterns of glycoproteins reactive with PNA and L-PHA by Western blotting. We also estimated quantitative differences in lectin binding to surfaces of normal rat urothelium and tumor cell lines by flow cytometry. The patterns of PNA or L-PHA reactive glycoproteins expressed by tumor cells were different from that of normal urothelium in culture. They were also different amongst the tumor cells. A unique non-sialylated, PNA binding glycoprotein (117 kD) was seen in the case of the highly tumorigenic F5 cell line and absent in normal urothelium as well as in other tumor cell lines. Normal cells did not express glycoprotein 60 kD binding PNA (only after desialylation), which was found in lysates of some but not all transformed cell lines. A very high molecular weight (much greater than 200), perhaps mucin-like sialoglycoprotein was found in normal urothelium but not in most of the tumor cell lines. Four major L-PHA reactive bands (greater than 200, 190, 100, 80 kD approximately) were found in normal urothelium. Some of those bands were overexpressed or missing in materials isolated from different tumor cell populations. Total cell surface binding of SBA and PNA by different tumor cell lines was very heterogenous (167-2% that of normal urothelium). No simple correlation between expression of the lectin binding glycoconjugates by urothelial carcinoma cells and other known functional, phenotypic or genetic alterations was found. We were also unable to demonstrate carcinogen-specific changes in expression of lectin binding to these tumor cell lines. Thus we conclude that lectin binding patterns are cell line specific. This may reflect distinct pathways of progression of individual cell lines. The potential sources of phenotypic variability between the cell lines were discussed.

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Differential influence of organ site on three subpopulations of a single mouse mammary tumor at two distinct steps in metastasis.

Tumor subpopulations 66c14, 168FARN, and 4T07 are drug-resistant variants selected from sister subpopulations derived from a single mouse mammary tumor. These subpopulations are heterogeneous in their capacities to form experimental metastatic growth in the lungs and liver. Initial survival kinetics of arrested cells, determined by the clearance of 125IUdR-labelled cells, and subsequent growth rates, determined by sequential recovery of clonogenic tumor cells from occult metastases, both correlated with organ-colonizing potential as determined by necropsy. The growth rates of these 3 subpopulations were determined in vitro in monolayer and in situ in the subcutis, in the liver following intrasplenic injection, and in the lung following intravenous injection. Clonogenic potential of all 3 lines was similar in vitro (54-59%). Growth rates in vitro (population doubling times 16.5-21 hr) and in the subcutis (tumor volume doubling times 5.2-7.4 days) were similar for the 3 subpopulations, but differed significantly in the liver and lungs. For line 4T07, the most metastatic line to both lung and liver, population doubling times in vitro and in the lung and liver were similar, ranging from 17 to 26 hr. For lines 66c14 and 168FARN, the growth rates in lungs and livers were much slower than in vitro. Line 66c14, which is relatively more metastatic to the lungs, grew much faster in the lung (39 hours) than in the liver (91 hr), but line 168FARN, which is relatively more metastatic to the liver, grew at a faster rate in the liver (37 hr) than in the lung (63 hr). Thus, 3 tumor subpopulations (seeds) derived from a single tumor were differentially affected by host organ factors (soil) at 2 distinct stages in the metastatic process.

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Cell surface glycosylation changes accompanying immortalization and transformation of normal human mammary epithelial cells.

Fluorescent lectin binding to cell surfaces was quantitatively analysed by flow cytometry on mortal human breast epithelial cells MCF-10M, the immortalized cell line MCF-10A derived from MCF-10M and sublines of MCF-10A transfected with the neomycin resistance gene (MCF-10Aneo), the c-Ha-ras protooncogene (MCF-10AneoN), or transfected and transformed with the c-Ha-ras activated oncogene (MCF-10AneoT). Immortal MCF-10A cells bound 10-fold more peanut agglutinin (PNA) and soy bean agglutinin (SBA) than did MCF-10M cells. Transformed MCF-10AneoT cells bound approximately ten times more PNA than did non-transformed cells transfected with protooncogene (MCF-10AneoN). Treatment of the transfectants with neuraminidase abrogated the differences in PNA-binding and reduced the differences in SBA binding. SDS-PAGE separation of PNA binding glycoproteins revealed different patterns for all MCF-10A derived sublines.

Blotting, Western↗

Genetic Regulation of Development in Sorghum bicolor: V. The ma(3) Allele Results in Gibberellin Enrichment.

Sorghum bicolor genotypes, near isogenic with different alleles at the third maturity locus, were compared for development, for responsiveness to GA(3) and a GA synthesis inhibitor, and occurrence and concentrations of endogenous GAs, IAA, and ABA. At 14 days the genotype 58M (ma(3) (R)ma(3) (R)) exhibited 2.5-fold greater culm height, 1.75-fold greater total height, and 1.38-fold greater dry weight than 90M (ma(3)ma(3)) or 100M (Ma(3)Ma(3)). All three genotypes exhibited similar shoot elongation in response to GA(3), and 58M showed GA(3)-mediated hastening of floral initiation when harvested at day 18 or 21. Both 90M and 100M had exhibited hastening of floral initiation by GA(3) previously, at later application dates. Tetcyclacis reduced height, promoted tillering, and delayed flowering of 58M resulting in plants which were near phenocopies of 90M and 100M. Based on bioassay activity, HPLC retention times, cochromatography with (2)H(2)-labeled standards on capillary column GC and matching mass spectrometer fragmentation patterns (ions [m/z] and relative abundances), GA(1), GA(19), GA(20), GA(53), and GA(3) were identified in extracts of all three genotypes. In addition, based on published Kovats retention index values and correspondence in ion masses and relative abundances, GA(44) and GA(17) were detected. Quantitation was based on recovery of coinjected, (2)H(2)-labeled standards. In 14 day-old-plants, total GA-like bioactivity and GA(1) concentrations (nanograms GA/gram dry weight) were two- to six-fold higher in 58M than 90M and 100M in leaf blades, apex samples, and whole plants while concentrations in culms were similar. Similar trends occurred if data were expressed on a per plant basis. GA(1) concentrations for whole plants were about two-fold higher in 58M than 90M and 100M from day 7 to day 14. Concentrations of ABA and IAA did not vary between the genotypes. The results indicate the mutant allele ma(3) (R) causes a two- to six-fold increase in GA(1) concentrations, does not result in a GA-receptor or transduction mutation and is associated with phenotypic characteristics that can be enhanced by GA(3) and reduced by GA synthesis inhibitor. These observations support the hypothesis that the allele ma(3) (R) causes an overproduction of GAs which results in altered leaf morphology, reduced tillering, earlier flowering, and other phenotypic differences between 58M and 90M or 100M.

Journal Article↗

Modulation of host resistance to metastasis in the lungs of aged retired breeder mice.

Pretreatment with a single injection of poly I.C inhibited lung colonization by tumor line 4T07 cells in mice regardless of age. However, preimmunization inhibited lung colonization by intravenously injected 4T07 cells in young mice (10-16 weeks of age) but not in retired breeders (median age greater than 72 weeks). Analysis of kinetics of clearance and expansion of the clonogenic tumor stem cell population revealed that the initial rates of clearance were similar for control young mice and retired breeders, but the subsequent rate of expansion in control retired breeders was half that in young mice. As in young mice, pretreatment of retired breeders with poly I.C increased the initial rate of clearance of intravenously injected 4T07 cells but did not inhibit growth measured between days 1 and 8. Preimmunization, which inhibits growth of neoplastic cells in young mice, did not inhibit expansion of the clonogenic population in the lungs of retired breeders.

Aging↗

Cellular interactions in metastasis.

The metastatic cascade is a sequence of events that must be completed for metastases to be established. The realization that tumors are heterogeneous, consisting of many different subpopulations differing in many characteristics, and the belief that there are selective events in the metastatic process have led several laboratories to isolate and characterize variants with both high and low metastatic potential. Typically, the highly metastatic variants have been able to form distant metastases when implanted into the subcutis. Such lines have been popular for studies of metastatic mechanisms and anti-metastatic therapy, but they may be atypical examples, and thus not the best experimental models. Recent studies indicate that normal tissue influences metastasis such that many tumors metastasize only if placed in the orthotopic site. Furthermore, some cells that do not metastasize individually are able to do so in conjunction with other variant subpopulations. Thus, mixtures of tumor cells in the tissue of origin can express a more malignant character. We review possible mechanisms for such influential interactions, as well as the role of cellular interactions in generating heterogeneity and stabilizing tumor characteristics.

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Efficient recovery of clonogenic stem cells from solid tumors and occult metastatic deposits.

We describe the use of enzymes combined with brief, sequential mechanical disruptions in a Tekmar Stomacher blender for the recovery of clonogenic neoplastic cells from solid tumors, lungs, and livers. The method has yielded 3 X 10(8) to 5 X 10(8) total cells and 1.2 X 10(6) to 17 X 10(6) clonogenic cells per gram of tissue from three different mouse mammary tumor subpopulations growing in the subcutis. The clonogenic cell yields represent a 4- to 13-fold increase over our previous best method of tumor disaggregation. The increase in total cells recovered, while not as dramatic (up to 3-fold), was statistically significant for two of the three tumor lines. We were also able to efficiently recover 125I-iododeoxyuridine labelled neoplastic cells from lungs and livers after injecting the cells intravenously. Over half of the total radiolabel present in these organs prior to disaggregation could be recovered in the cell suspensions obtained.

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Growth regulation of mouse mammary tumor cells in collagen gel cultures by diffusible factors produced by normal mammary gland epithelium and stromal fibroblasts.

We have reported previously that both normal mammary epithelium and stroma stimulate the growth of mouse mammary tumors in vivo. We have devised a method to investigate the role of diffusible factors in these growth interactions in vitro. Because an appropriate matrix, a particular cell shape, or multicellular organization may be required for the production of factors and/or for the response to such factors, the method assesses the expansion of boluses of cells in collagen gel matrix. Under these culture conditions, paracrine effects were detected which were not observed when cells were growing in monolayer on plastic. The growth of mammary tumor lines 66, 410.4, and D2A1 was stimulated by both mammary epithelial cells and fibroblasts prepared from midpregnant mouse mammary glands. In contrast, these mammary tumor lines were inhibited by coculturing with normal mammary cells in monolayer on plastic. Stimulation in collagen and inhibition in monolayer cultures were both dose dependent; increasing numbers of regulator mammary cells increased the effects on tumor growth. Additional tumor cells did not stimulate growth of target tumor cell boluses in collagen gel cultures. This attempt to model the in situ situation may be a more appropriate model for the detection and characterization of relevant diffusible growth regulatory factors than monolayers on plastic and/or colonies growing in agar.

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Production of a more aggressive tumor cell variant by spontaneous fusion of two mouse tumor subpopulations.

A hybrid cell formed by the spontaneous fusion of two sister subpopulations was isolated and was found to combine clinically aggressive features of both parental cells. Subpopulation 168FAR is highly tumorigenic but does not metastasize spontaneously from a s.c. site. Subpopulation 44FTO is a variant selected for resistance to 6-thioguanine and to ouabain. It is poorly tumorigenic but spontaneously metastasizes to the lungs and livers of mice in which primary tumors do form. The two parental subpopulations are differentially sensitive to chemotherapeutic drugs; 168FAR is relatively more resistant to methotrexate, whereas 44FTO is more resistant to 5-fluorouracil. Both are about equally sensitive to melphalan. The hybrid 168FAR x 44FTO clone was isolated by growth in hypoxanthine-aminopterin-thymidine medium which also contained 3 mM ouabain; neither 168FAR nor 44FTO survive in this medium. The hybrid nature of the isolated clone was confirmed by cytogenetic analysis and determination of DNA content. The hybrid clone was highly tumorigenic, spontaneously metastasized from the subcutis, was nearly as resistant to 5-fluorouracil as the most resistant parental line, and was more resistant to both melphalan and methotrexate than either parental subpopulation. These results illustrate the role that cell fusion could play in progression by allowing the rapid assimilation of aggressive phenotypes from distinct coexisting subpopulations.

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