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M M Moore

Publications and source records attributed to M M Moore.

At least 127 records · Page 7Linked to original sources

Mutagenicity and clastogenicity of teniposide (VM-26) in L5178Y/TK +/- -3.7.2C mouse lymphoma cells.

The antitumor drug teniposide (VM-26) is a potent inducer of DNA breaks (Long et al., Cancer Res., (1985) 45, 3106), but it is only weakly mutagenic at the hprt locus in CHO cells (Singh and Gupta, Cancer Res., (1983) 43, 577). In the present study, the mutagenic and clastogenic activities of teniposide were evaluated in L5178Y/TK +/- -3.7.2C mouse lymphoma cells. Although teniposide is a weak mutagen at the hprt locus, it is a potent mutagen at the tk locus, with as little as 0.5 ng/ml producing 220 TK mutants/10(6) survivors at 96% survival (background = 100/10(6) survivors). This same dose of teniposide induced 38 aberrations per 100 metaphases (background = 7/100 cells). At 7 ng/ml, teniposide induced approximately 2700 TK mutants/10(6) survivors at approximately 10% survival. At the highest dose sampled for aberration analysis (5 ng/ml), teniposide induced 44 aberrations/100 cells. Most of the aberrations were chromosomal rather than chromatid events. As expected for a compound acting primarily by a clastogenic mechanism, most of the TK mutants were small colonies. Thus, teniposide is a potent clastogen, and it is a potent mutagen at the tk locus but not at the hprt locus. These results support the hypothesis that the location of the target gene affects the ability of the assay to detect both intragenic events and events causing functional multilocus effects. Thus, a heterozygous locus (like tk) but not a functionally hemizygous locus (like hprt) may permit the detection of mutagens that act primarily by a clastogenic mechanism. Because teniposide induces topoisomerase II-associated DNA breaks, and because there is evidence that teniposide may not interact directly with DNA, we discuss the possibility that the potent clastogenic/mutagenic activity of teniposide may be mediated by topoisomerase II.

Animals↗

Mutagenicity of m-AMSA and o-AMSA in mammalian cells due to clastogenic mechanism: possible role of topoisomerase.

We evaluated the ability of the antitumor agent 4-(9-acridinylamino)-methanesulfon-m-anisidide (amsacrine or m-AMSA) and its congener, o-AMSA, to induce specific-locus mutations at the heterozygous thymidine kinase (tk) locus of L5178Y/TK+/- -3.7.2C mouse lymphoma cells. These cells permit the recovery of mutants due to single-gene or chromosomal mutation. m-AMSA was highly mutagenic at the tk locus, producing approximately 3000 mutants/10(6) survivors at 10% survival; positive dose range 1-10 ng/ml; o-AMSA produced approximately 1500 mutants/10(6) survivors at 10% survival; positive dose range 0.1-2.5 micrograms/ml. Most of the TK mutants were small colonies, which suggests that m-AMSA and o-AMSA induce primarily chromosomal mutations as opposed to single-gene mutations. The potent clastogenicity of these agents was confirmed by cytogenetic analysis for chromosomal aberrations, which showed that m-AMSA (9 ng/ml, 10% survival) and o-AMSA (1 microgram/ml, 10% survival) produced 383 and 179 aberrations, respectively, per 100 metaphases (background = 3-4/100). The large-colony TK mutant frequencies produced by m-AMSA (67 - 112/10(6) survivors; background = 7/10(6); survival = 63 - 16%) were comparable to the published HPRT mutant frequencies produced by m-AMSA in V79 cells. Novobiocin (50 micrograms/ml), an inhibitor of mammalian DNA topoisomerase II and other enzymes, inhibited the mutagenic effects of m-AMSA, suggesting that DNA topoisomerase II (or another enzyme) may play a role in the mutagenic/clastogenic activity of m-AMSA.

Amsacrine↗

Evaluation of the effect of agar on the results obtained in the L5178Y mouse lymphoma assay.

The L5178Y TK+/- mouse lymphoma assay is widely used in mutagenicity testing. Trifluorothymidine-resistant (TFTr) mutants are quantitated following growth in agar-supplemented cloning medium. In an attempt to evaluate the effect of agar on plating efficiency, we have tested several lots of Difco Noble agar (cat. No. 0142-01-8; normally used in this assay) and compared it with Baltimore Biological Laboratory (BBL) agar (cat No. 11849). We find that BBL agar gives a higher and less variable plating efficiency than any of the Noble lots tested. Colonies plated in BBL agar tend to appear significantly earlier on the plates than those cloned in Noble agar. The absolute mutant number and the induced mutant frequency quantitated from a treated culture is generally higher in BBL compared to Noble agar. To determine if this higher frequency is due to increased mutant recovery rather than "sneak through" of nonmutant cells, we isolated 97 mutants from treated cultures (44 large colonies and 53 small colonies) and 69 mutants from untreated cultures (24 large colonies and 45 small colonies) and tested them for TFT resistance. All but one (a large colony from an untreated culture) were found to be TFTr, indicating that the mutant frequency is due to an increased mutant recovery. The spontaneous mutant frequency was quantitated for 122 untreated cultures. Showing little variation within and between experiments, the spontaneous mutant frequency yielded a mean of 57.7, with a standard deviation of 14.4. Under our laboratory conditions, BBL agar gave reliable results, and we prefer it for use in cloning L5178Y mouse lymphoma cells.

Agar↗

Genotoxicity of gamma-irradiation in L5178Y mouse lymphoma cells.

The ability of gamma-irradiation to induce gene mutation at the thymidine kinase locus and gross chromosome aberrations in L5178Y TK+/- 3.7.2C mouse lymphoma cells was evaluated. Positive results were obtained for both end-points. The majority of mutants were found to be small-colony mutants which correlated with the induction of gross chromosome aberrations.

Animals↗

Genotoxicity studies of benz[l]aceanthrylene.

The genotoxicity of the cyclopenta-fused polycyclic aromatic hydrocarbon, benz[l]aceanthrylene (B[l]A), was evaluated in vitro using the L5178Y/TK+/- mouse lymphoma assay and in vivo using the mouse peripheral blood lymphocyte (PBL) culture system. The mutagenicity and sister chromatid exchange (SCE) inducing potential of B[l]A was then compared to that of benzo[a]pyrene (B[a]P). B[l]A appeared to be slightly less mutagenic than B[a]P at the TK locus, and each compound produced both small and large colony mutants indicating that they are clastogenic as well as mutagenic. Gross chromosome aberration analysis of treated L5178Y/TK+/- mouse lymphoma cells confirmed the clastogenicity of B[l]A in vitro. In the mouse PBL system, after administration by gavage, B[l]A was more cytotoxic and produced a sharper elevation in SCE frequency than B[a]P.

Animals↗

Lag in radiographic imaging systems: simple methods for evaluation.

Lag is an important measure of performance in radiographic imaging systems that are used for dynamic studies. This paper describes some simple, noninvasive techniques that can be used to evaluate lag under clinical conditions. The image receptor is exposed through a copper plate perforated with regularly spaced holes or slits and rotating at a known angular velocity. The resulting image can be evaluated visually to determine the point at which separate holes appear to blur. Alternatively, a light-sensitive diode connected to an oscilloscope can be used to determine the decay rate of the signal from an individual slit. A correlation between these two techniques has been obtained that enables lag to be estimated from a visual assessment of the image of the rotating plate.

Angiography↗

In situ analysis of trifluorothymidine-resistant (TFTr) mutants of L5178Y/TK+/- mouse lymphoma cells.

TFTr mutants of L5178Y/TK+/- mouse lymphoma cells are analyzed as they appear in situ following cloning and incubation for 9-11 days in soft agar cloning medium. These TFTr mutants can be divided by colony size into sigma, small colony, and lambda, large colony, mutants. The use of a size discriminator on an automatic colony counter allows the production of histograms to evaluate the size distribution of colonies on a plate. The evaluation of these size distribution curves provides insight into the properties of sigma and lambda mutants. From these analyses several conclusions may be drawn. The sigma phenotype is preferentially associated with the TFTr subpopulation of a treated culture. The sigma phenotype is not an artifact of delayed toxicity following treatment. The frequency of quantifiable sigma mutants is not affected by agar concentrations between 0.20% and 0.45% in the cloning medium. TFTr sigma mutants are produced spontaneously and can be induced by a variety of mutagens. The decline in overall detectable mutants frequency observed for some mutagens with increasing time after treatment is due to the decline in sigma mutant frequency. The quantitation of both sigma and lambda mutants is thus useful in obtaining maximum utility of the information provided by the L5178Y/TK+/- mouse lymphoma assay.

Agar↗

Analysis of trifluorothymidine-resistant (TFTr) mutants of L5178Y/TK+/- mouse lymphoma cells.

Three classes of TFTr variants of L5178Y/TK+/- -3.7.2C mouse lymphoma cells can be identified--large colony (lambda), small colony (sigma), and tiny colony (tau). The sigma and lambda mutants are detectable in the routine mutagenesis assay using soft agar cloning. The tau mutants are extremely slow growing and are quantitated only in suspension cloning in microwells. Variants of all three classes have been analyzed in the process of evaluating the usefulness of the thymidine kinase locus in L5178Y/TK+/- mouse lymphoma cells for detecting induced mutational damage. 150 of 152 variants from mutagen treated cultures and 163 of 168 spontaneous mutants were TFTr when rechallenged approximately 1 week after isolation (3 weeks after induction). All of the 41 mutants assayed for enzyme activity were TK-deficient. The sigma and tau phenotypes were found to correlate with slow cellular growth rates (doubling time greater than 12 h), rather than from effects of the TFT selection or mutagen toxicity. Cytogenetic analysis of sigma mutants approximately 3 weeks after induction shows an association between the sigma phenotype and readily observable (at the 230-300 band level) chromosomal abnormalities (primarily translocations involving that chromosome 11 carrying the functional TK gene) in 30 of 51 induced mutants studied. Using an early clonal analysis of mutants (approximately 2 weeks after induction) 28 of 30 sigma mutants showed chromosome 11 rearrangements. All lambda mutants studied (17 of 17 evaluated 3 weeks after induction and 8 of 8 evaluated 2 weeks after induction) showed normal karyotypes (at the 230-300 band resolution level), including the chromosome 11s. These observations support the hypothesis that sigma (and likely tau) mutants represent chromosomal mutations and lambda mutants represent less extensive mutations affecting the TK locus. The inclusion of sigma mutants in the total induced mutant frequency, as well as distinguishing them as a separate subpopulation of TK-deficient mutants, is, therefore, essential in obtaining maximum utility of the information provided by the L5178Y/TK+/- mouse lymphoma assay.

Animals↗

Chromosome 11 aberrations in small colony L5178Y TK-/- mutants early in their clonal history.

We have developed a cytogenetic technique that allows observation of chromosome rearrangements associated with TK-/- mutagenesis of the L5178Y/TK+/-3.7.2C cell line early in mutant clonal history. For a series of mutagenic treatments we show that the major proportion (93%) of small-colony (sigma) mutants studied have chromosome 11 rearrangements (the chromosome containing the thymidine kinase gene) while large-colony (lambda) mutants do not have detectable chromosome rearrangements. In addition, we find among the chromosome abnormalities in sigma mutants a significant proportion (34%) with dicentric chromosomes involving chromosome 11. These potentially unstable chromosome rearrangements may help to explain the karyotypic instability and heterogeneity among chromosome 11 aberrations previously noted in sigma mutants when they are analyzed later in their clonal history.

Animals↗

Cytogenetic characterization of the L5178Y TK+/-3.7.2C mouse lymphoma cell line.

The cytogenetic characterization of the L5178Y TK+/-3.7.2C mouse lymphoma cell line was carried out, utilizing G-banded metaphase chromosomes, to provide a karyotypic basis for the precise delineation of induced rearrangements in TK-/- mutants. Band-pattern measurements were used to construct ideograms which represent the position, number, size and staining intensity of the chromosome bands. The TK+/-3.7.2C cell line has been shown to provide quantitation of forward mutations induced at the autosomal thymidine kinase (TK) locus in this cell line. Chromosome analysis of the TK+/-3.7.2C cell line and derived TK-/- mutants has become important in demonstrating that the TK+/-----TK-/- assay may detect and distinguish between chromosomal events and smaller, perhaps point-mutation, events in mutant colonies.

Animals↗

Angiolymphoid hyperplasia with eosinophilia: a case report.

A case of angiolymphoid hyperplasia with eosinophilia of the hand is described. This tumor has also been described as subcutaneous angiolymphoid hyperplasia with eosinophilia and as an atypical pyogenic granuloma. It usually occurs in the head or neck. This highly recurrent tumor has not been previously described in the hand. It was completely excised and had not recurred 4 years after surgery.

Angiolymphoid Hyperplasia with Eosinophilia↗

The protective effects of D-600 and propranolol on reperfusion injury in the anaesthetized rabbit.

The ability of a calcium channel blocker (D-600) and a beta-adrenergic antagonist (propranolol) to modify the chemical, biochemical, functional, and ultrastructural manifestations of reperfusion injury following circumflex coronary artery ligation has been examined using an open chest, anaesthetized rabbit model of acute myocardial ischaemia. A 40-min ligation period followed by 60 min of reperfusion produced a decrease in mitochondrial azide-sensitive ATPase activity which could be prevented by pretreatment with either agent. While both drugs caused an equivalent (approximately 50%) reduction in myocardial Ca2+ accumulation associated with reperfusion, only D-600 preserved Mg2+ and Na+ levels. The greater protective effects of D-600 on sarcolemmal integrity were also apparent from its superior ability (when compared with propranolol) to offer protection against the loss of sarcolemmal Na+-K+ ATPase activity which we have previously suggested may parallel the development of irreversible ischaemic injury. Further support for these biochemical data came from ultrastructural studies in which we demonstrated significant improvement in subcellular membrane integrity by both of the drugs. In contrast to the foregoing protective actions, D-600 and propranolol failed to prevent the marked decrease in myocardial contractile function and in cellular ATP content associated with reperfusion. The superior effectiveness of D-600 in our system cannot be explained on the basis of Ca2+ antagonism alone, but is more likely a result of its greater negative inotropism.

4-Nitrophenylphosphatase↗