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Biomedical subjects

M J Armstrong

Publications and source records attributed to M J Armstrong.

At least 19 recordsLinked to original sources

Induction of chromosome aberrations in vitro by phenolphthalein: mechanistic studies.

Phenolphthalein induces tumors in rodents but because it is negative in assays for mutation in Salmonella and in mammalian cells, for DNA adducts and for DNA strand breaks, its primary mechanism does not seem to be DNA damage. Chromosome aberration (Ab) induction by phenolphthalein in vitro is associated with marked cytotoxicity. At very high doses, phenolphthalein induces weak increases in micronuclei (MN) in mouse bone marrow; a larger response is seen with chronic treatment. All this suggests genotoxicity is a secondary effect that may not occur at lower doses. In heterozygous TSG-p53((R)) mice, phenolphthalein induces lymphomas and also MN, many with kinetochores (K), implying chromosome loss. Induction of aneuploidy would be compatible with the loss of the normal p53 gene seen in the lymphomas. Here we address some of the postulated mechanisms of genotoxicity in vitro, including metabolic activation, inhibition of thymidylate synthetase, cytotoxicity, oxidative stress, DNA damage and aneuploidy. We show clearly that phenolphthalein does not require metabolic activation by S9 to induce Abs. Inhibition of thymidylate synthetase is an unlikely mechanism, since thymidine did not prevent Ab induction by phenolphthalein. Phenolphthalein dramatically inhibited DNA synthesis, in common with many non-DNA reactive chemicals that induce Abs at cytotoxic doses. Phenolphthalein strongly enhances levels of intracellular oxygen radicals (ROS). The radical scavenger DMSO suppresses phenolphthalein-induced toxicity and Abs whereas H(2)O(2) potentiates them, suggesting a role for peroxidative activation. Phenolphthalein did not produce DNA strand breaks in rat hepatocytes or DNA adducts in Chinese hamster ovary (CHO) cells. All the evidence points to an indirect mechanism for Abs that is unlikely to operate at low doses of phenolphthalein. We also found that phenolphthalein induces mitotic abnormalities and MN with kinetochores in vitro. These are also enhanced by H(2)O(2) and suppressed by DMSO. Our findings suggest that induction of Abs in vitro is a high-dose effect in oxidatively stressed cells and may thus have a threshold. There may be more than one mechanism operating in vitro and in vivo, possibly indirect genotoxicity at high doses and also chromosome loss, both of which would likely have a threshold.

Animals↗

The genetic toxicity of the peroxisome proliferator class of rodent hepatocarcinogen.

Peroxisome proliferators comprise a structurally diverse class of chemicals. Some of the members of this class show evidence of genetic toxicity (most evidently the in vitro clastogen Wyeth 14,643, WY), while others do not (most evidently methyl clofenapate, MCP). When attempting to understand the mechanism of rodent hepatocarcinogenesis of this class of chemicals the possible role of genetic toxicity should be assessed on a class-wide basis, i.e., if just one peroxisome proliferator is shown to be unequivocally inactive as a genetic toxin, genetic toxicity cannot be implicated in the carcinogenic activity of peroxisome proliferators as a class. In an earlier paper, we established MCP as inactive in a range of in vitro and in vivo genetic toxicity assays. However, the top dose level of MCP that could be tested for induction of chromosome aberrations (clastogenicity) in human lymphocytes and CHO cells was limited by the relative insolubility of the test agent in the assay medium. Methyl clofenapate was not toxic up to a dose that produced precipitate, so cannot be directly compared with WY, which induced aberrations only at toxic dose levels. In the present paper, we have evaluated the clastogenicity of the carcinogenic peroxisome proliferator nafenopin (NAF) at dose levels up to those that are toxic to CHO cells, and found no evidence of chromosome aberration induction. These data isolate further the genetic toxicity of WY from other peroxisome proliferators, and increase confidence in the proposal that genetic toxicity does not play a critical role in the hepatocarcinogenicity of peroxisome proliferators.

Animals↗

Nasopharyngeal carcinoma in Malaysian Chinese: occupational exposures to particles, formaldehyde and heat.

BACKGROUND: During 1990-1992, 282 Chinese residents of Selangor and the Federal Territory, Malaysia with histologically confirmed nasopharyngeal carcinoma (NPC) were interviewed about occupational history, diet, alcohol consumption, and tobacco use, as were an equal number of Malaysian Chinese population controls, pair-matched to cases by age and sex. METHODS: Exposures to 20 kinds of workplace substances, solar and industrial heat, and cigarette smoke, were analysed by univariate and multivariate methods. RESULTS: Nasopharyngeal carcinoma was associated with occupational exposures to construction, metal and wood dusts; motor fuel and oil; paints and varnishes; certain other chemicals; industrial heat; solar heat from outdoor occupations; certain smokes; cigarette smoking; and childhood exposure to parental smoking. After adjustment for risk from diet and cigarette smoke, only wood dust (OR = 2.36; 95% CI : 1.33- 4.19), and industrial heat (OR = 2.21; 95% CI : 1.12-4.33) remained clearly associated. Wood dust remained statistically significant after further adjustment for social class. No significant crude or adjusted association was found between NPC and formaldehyde (adjusted OR = 0.71; 95% CI : 0.34-1.43). CONCLUSIONS: This study supports previous findings that some occupational inhalants are risk factors for NPC. The statistical effect of wood dust remained substantial after adjustment for diet, cigarette smoke, and social class. Intense industrial heat emerged as a previously unreported risk factor, statistically significant even after adjustment for diet and cigarette smoke. No association was found between NPC and formaldehyde.

Adult↗

Older women's organization of friendship support networks: an African American-white American comparison.

Research of friendship in older people's lives has recently extended to examine the impact of social structural factors. This study compared the friendship support networks of a small sample of older African and White American women for influences of ethnicity. The comparison used a matched-pair sample which controlled for age, marital status, residence type, and disability. Examination of data from the women's diagrams and descriptions of current informal support networks and friendship life histories indicates ethnic differences in four related areas of friendship network organization: size, composition, recruitment strategies, and opportunities for support exchanges. Implications for research and practice are considered.

Black or African American↗

Social impact of nasopharyngeal carcinoma on Chinese households in Selangor, Malaysia.

AIM OF STUDY: With a five-year survival rate of 20% in 1970 and 40-45% in 1990, and highest incidence and mortality in early and middle adult years, nasopharyngeal carcinoma (NPC) may have a severe social impact on families and households. The aim of this study was to measure the social impact of NPC in the Chinese population of Selangor, Malaysia. METHOD: Cases were pooled from three epidemiological case-control studies conducted in 1973-74, 1980, and 1990-92 for a total of 442. They lived in households with a grand total of 2,598 persons. Interviewers collected data on household composition: number of residents; each resident's age, sex, occupation, and relationship to the head of the household; and position of the NPC case in the household. RESULTS: Ninety-four percent of cases supported 93% of household members in some way. Most cases were employed as income earners or homemakers and 80% had a key role as head of household and/or parent of dependent children. CONCLUSION: The illness and death caused by NPC had a major social impact on immediate families and on extended family and non-kin households as well.

Adolescent↗

Rapid method for improving slide quality in the bone marrow micronucleus assay; an adapted cellulose column procedure.

Micronuclei are routinely scored in anucleate erythrocytes in bone marrow smears stained with acridine orange. Intense fluorescence from the many nucleated cells in the preparations can interfere with micronucleus detection and cause fatigue in the reader. A method for removing nucleated cells by filtering bone marrow through cellulose packed in syringes was developed by Romagna some ten years ago, but has not been used routinely because of the excessive time needed to prepare columns. We have modified the method very simply by filling chromatography columns by pipet with a cellulose suspension. We show here that column filtration of bone marrow does not affect the numbers of micronucleated polychromatic erythrocytes (MN-PCEs) scored from mice treated with the chromosome breaking agents mitomycin C and cyclophosphamide, or the aneuploidy-inducing spindle poisons, colchicine and vinblastine. The extra preparation time is only about half an hour for a full scale micronucleus assay, and results in better slides and faster scoring.

Animals↗

Nasopharyngeal carcinoma in Malaysian Chinese: salted fish and other dietary exposures.

We interviewed 282 histologically confirmed cases of nasopharyngeal carcinoma (NPC) in Chinese residents of Selangor and the Federal Territory, Malaysia, and an equal number of Chinese age-, sex-, and length-of-residence-matched controls sampled from the general population. Consumption of 55 dietary items during childhood, and 5 years pre-diagnosis of NPC, was analyzed by univariate and multivariate methods. Four salted preserved foods (fish, leafy vegetables, egg and root), fresh pork/beef organ meats and beer and liquor consumption exhibited strong positive associations, and 4 vegetable/fruit combinations strong negative associations with NPC. Factor analysis and multivariable modeling using estimated factor scores strongly supported separate effects on NPC of vegetables/fruits, salted preserved foods, pork/beef organ meats and beer/liquor consumption. Multivariable modeling associated NPC most clearly with high consumption of salted fish, salted eggs, pork/beef liver and beer and low consumption of Chinese flowering cabbage, oranges/tangerines and shrimp. A strong residual association of social class with NPC remained after adjustment for diet, which is consistent with a substantial role for non-dietary environmental factors.

Adult↗

Fewer chromosome aberrations and earlier apoptosis induced by DNA synthesis inhibitors, a topoisomerase II inhibitor or alkylating agents in human cells with normal compared with mutant p53.

The human lymphoblastoid cell lines TK6 (normal p53) and WI-L2-NS or WTK1 (mutant p53) differ in sensitivity to killing and induction of gene mutations and chromosome aberrations by ionizing radiation. This may be related to decreased apoptosis in the cells with mutated p53, such that more damaged cells survive. We compared the response of the two cell types to various chemicals. First, to ensure that the thymidine kinase deficiency does not increase the sensitivity of TK6 tk+/- cells to mutagens, we demonstrated that they were not hypersensitive to aberration induction by altered DNA precursor pools or DNA synthesis inhibition, by aphidicolin (APC), methotrexate, hydroxyurea (HU), cytosine arabinoside and thymidine. TK6 cells were then compared with WI-L2-NS or WTK1 cells. With APC, HU, methyl methanesulfonate (MMS), ethyl nitrosourea (ENU) and etoposide (etop), TK6 cells had more apoptosis in the first two days after treatment. Fewer aberrations were seen in normal p53 TK6 cells than the mutant p53 WI-L2-NS cells, ranging from very little difference between the two cell types with MMS to very large differences with ENU and etop. For MMS and ENU we followed cultures for several days, and found that WI-L2-NS cells underwent delayed apoptosis 3 to 5 days after treatment, in parallel with published observations with ionizing radiation. WI-L2-NS cells also had a delayed increase in aberrations (up to 5 days post-treatment) when no aberrations remained in TK6 cells. Colony forming efficiency was measured for APC, MMS and ENU, and was greater in the p53 mutant cells. Our results show that normal p53 function is required for rapid and efficient apoptosis in these lymphoblastoid cells with DNA synthesis inhibitors, alkylating agents and a topoisomerase II inhibitor, and support the hypothesis that induced levels of aberrations are higher in p53 mutant cells because of a failure to remove damaged cells by apoptosis.

Alkylating Agents↗

DNA synthesis inhibition as an indirect mechanism of chromosome aberrations: comparison of DNA-reactive and non-DNA-reactive clastogens.

Positive results in the in vitro assay for chromosome aberrations sometimes occur with test chemicals that apparently do not react with DNA, being negative in tests for mutation in bacteria, for DNA strand breaks, and for covalent binding to DNA. These chromosome aberrations typically occur over a narrow concentration range at toxic doses, and with mitotic inhibition. Indirect mechanisms, including oxidative damage, cytotoxicity and inhibition of DNA synthesis induced by chemical exposure, may be involved. Understanding when such mechanisms are operating is important in evaluating potential mutagenic hazards, since the effects may occur only above a certain threshold dose. Here, we used two-parameter flow cytometry to assess DNA synthesis inhibition (uptake of bromodeoxyuridine [BrdUrd]) associated with the induction of aberrations in CHO cells by DNA-reactive and non-reactive chemicals, and to follow cell cycle progression. Aphidicolin (APC), a DNA polymerase inhibitor, induces aberrations without reacting with DNA; 50 microM APC suppressed BrdUrd uptake during a 3-h treatment to <10% of control levels. Several new drug candidates induced aberrations concomitant with marked reductions in cell counts at 20 h (to 50-60% of controls) and suppression of BrdUrd uptake (<15% of control). Several non-mutagenic chemicals and a metabolic poison, which induce DNA double strand breaks and chromosome aberrations at toxic dose levels, also suppressed DNA synthesis. In contrast, the alkylating agents 4-nitroquinoline-1-oxide, mitomycin C, methylnitrosourea, ethylnitrosourea, methylmethane sulfonate and ethylmethane sulfonate, and a topoisomerase II inhibitor, etoposide, produced many aberrations at concentrations that were less toxic (cell counts >/=73% of controls) and gave little inhibition of DNA synthesis during treatment (BrdUrd uptake >/=85% of controls), although cell cycle delay was seen following the 3-h treatment. Thus, inhibition of DNA synthesis at the time of treatment is supporting evidence for an indirect mechanism of aberrations, when there is no direct DNA reactivity.

Animals↗

Ullrich-Turner syndrome: seven pregnancies in an apparent 45,X woman.

A 37-year-old woman was referred for genetic counseling after termination of her probable seventh pregnancy. Ultrasound examination at 13 weeks of gestation had shown a fetus with bilateral cystic hygromas. A transabdominal amniocentesis confirmed 45,X karyotype in the fetus. The patient had marked short stature and a 45,X chromosome constitution in blood lymphocytes. Subsequently she had a hysterectomy and oophorectomy. Tissue of representative sites of the pathological specimen showed a 45,X chromosome constitution. However, molecular analysis of 8 sites from the uterus and ovaries, and of skin fibroblasts with X-chromosome microsatellites showed the presence of only one allele, except for the microsatellite DXS996 which demonstrated 2 alleles (155 bp and 161 bp) in ovarian tissue. The lymphocytes from the mother and her only son demonstrated the same single allele (161 bp). We conclude that molecular analysis of lymphocytes and of tissue is necessary for detecting low-level mosaicism in apparently homogeneous 45,X women.

Adult↗

Chromosome aberrations in vitro related to cytotoxicity of nonmutagenic chemicals and metabolic poisons.

Chromosome aberrations can occur by secondary mechanism(s) associated with cytotoxicity, induced by chemicals that do not attack DNA. Aberrations are formed from DNA double-strand breaks, and DSBs are known to be induced by nonmutagenic (Ames test negative) noncarcinogens at toxic levels [Storer et al. (1996): Mutat Res 368:59-101]. Here, 8 of 12 of these chemicals caused aberrations in CHO cells at cytotoxic doses, and often only when cell counts (survival) at 20 hr approached < or =50% of controls. Five of eight noncarcinogens (2,4,-dichlorophenol, dithiocarb, menthol, phthalic anhydride, and ethionamide) and one of two equivocal carcinogens (bisphenol A) caused aberrations, usually over a narrow dose range with steeply increasing cytotoxicity. Phthalic anhydride and ethionamide were positive only at doses with precipitate. Phenformin was negative even at toxic doses and ephedrine and phenylephrine were negative and gave little toxicity. Aberrations were also induced by metabolic poisons, 2,4-dinitrophenol, (uncouples oxidative phosphorylation), and sodium iodoacetate, (Nal; blocks ATP production). Five of the chemicals that induced aberrations in CHO cells were tested in human TK6 cells and four were positive, the fifth being equivocal. Stable aberrations (translocations) were induced in human cells by Nal. Clearly, chemicals can give "false-positive" results in the chromosome aberration assay at cytotoxic levels, though cytotoxicity does not always produce aberrations, so that further information (e.g., DNA reactivity) is needed to determine whether a result is a "false-positive." Primary DNA-damaging chemicals such as alkylators are also cytotoxic, but give strong increases in aberrations without marked initial toxicity by the measures used here, although the aberrations they induce do reduce long-term survival in colony-forming assays.

Animals↗

Mismatch repair provokes chromosome aberrations in hamster cells treated with methylating agents or 6-thioguanine, but not with ethylating agents.

O6-Methylguanine (O6MeG) is important in induction of chromosome aberrations (abs), with the unusual property that new abs are produced in the second cycle after treatment; cells lacking repair by O6-alkylguanine DNA-alkyltransferase (AGT) have more abs at the second division (M2) than at the first (M1). These second-cycle abs are likely caused by attempted correction by mismatch repair (MMR) of O6MeG:T mispairs, since we previously showed that MMR-deficient human cells (MT1 lymphoblasts) treated with SN-1 methylating agents do not produce new abs at M2 and are resistant to killing. Here we used MMR-deficient rodent cells to examine ab induction by alkylators and by incorporated 6-thioguanine (6-tG) which produces mispairs. BrdUrd labeling was used to identify cells at first, second and third metaphase after treatment (M1, M2 and M3). MMR-deficient Chinese hamster Clone B cells were 10-fold more resistant to ab induction by methyl nitrosourea and 1-methyl-3-nitro-1-nitrosoguanidine compared to their MMR-proficient parent cells, CHO MT+. Both cell lines express AGT and can remove the methyl group from O6MeG. Clone B has twice the AGT activity of CHO MT+, but inhibition of AGT with O6-benzylguanine did not change ab induction, indicating that methylation tolerance of Clone B cells was due to defective MMR and not to increased repair of O6MeG. Confirming the importance of O6MeG in inducing abs, even when it is a minor component of the adducts induced, Clone B cells were 2-fold more resistant to ab induction by methyl methanesulfonate and dimethylsulfate, whereas they had normal sensitivity to ethyl nitrosourea and 1-ethyl-3-nitro-1-nitrosoguanidine. Clone B cells are also resistant to killing by 6-tG, and 6-tG induced few abs in MMR-deficient Clone B (6-fold lower than CHO MT+ cells). Since mispairs do not occur until the cell cycle following incorporation of 6-tG, new abs in MMR-proficient cells are expected one cell cycle later than with the methylators, i.e., at M3. As expected, in normal CHO MT+, high ab levels were seen at M3, but there was also ab induction at M2. Similarly, with methylating agents we saw higher levels of abs at M1 in the MMR-proficient CHO MT+ cells than in Clone B cells, suggesting that in the rodent cells, MMR is involved in ab formation from mispairs or modified base pairs induced in the first S-phase, such as O6MeG:C. These rodent cells thus differ from human MT1 lymphoblasts which had similar ab levels to their normal parent cells at the first metaphase after treatment with methylators.

Alkylating Agents↗

2,4,6-Trichlorophenol (TCP) induces chromosome breakage and aneuploidy in vitro.

2,4,6-Trichlorophenol (2,4,6-TCP), a non-mutagen to Salmonella, was reportedly negative in tests for chromosome breakage in vitro, but did produce numerical chromosome changes and micronuclei in V79 cells (Jansson and Jansson, 1992). This apparent specific ability to induce aneuploidy is of interest since aneuploidy testing is not part of routine genotoxicity test procedures. Here we show 2,4,6-TCP clearly induces structural chromosome aberrations in CHO cells and in V79 cells using a 3-h treatment and 20-h sampling time (17-h recovery). The isomers 2,4,5- and 2,3,6-TCP were also clastogenic in this protocol. There was no increase in aberrations when we used the protocol of Jansson and Jansson (1992), i.e., a 24-h treatment with sampling either immediately, or with a 24-h recovery period. However, positive results were obtained when a recovery time of 4-12 h was allowed after the 24-h treatment with 2,4,6-TCP. Previous negative aberration tests of 2,4,6-TCP (Galloway et al., 1987; Ishidate, 1988) are also likely due to inappropriate protocols. All these results were obtained without S9 metabolic activation. We also found positive results in CHO cells when 2,4,6-TCP was tested with S9. The present study demonstrates that 2,4,6-TCP induces both structural and numerical aberrations, and underscores the importance of protocol design, in particular the appropriate recovery time after treatment, for detecting clastogenic activity in vitro.

Aneuploidy↗

Micronuclei induced in peripheral blood of E mu-PIM-1 transgenic mice by chronic oral treatment with 2-acetylaminofluorene or benzene but not with diethyl-nitrosamine or 1,2-dichloroethane.

Micronucleus induction in peripheral blood was examined during carcinogenicity assays of the genotoxic carcinogens 2-acetylaminofluorene (2-AAF), benzene, diethylnitrosamine (DEN) and 1,2-dichloroethane (1,2-DCE) in lymphoma prone E mu-PIM-1 transgenic mice. In both sexes, micronuclei were increased in polychromatic (PCE) and normochromatic (NCE) erythrocytes after 14 weeks of oral treatment with 75 mg/kg 2-AAF or 50 and 100 mg/kg benzene. The micronucleus frequencies induced by benzene were higher in males than in females. There was no apparent treatment related suppression of erythropoiesis by 2-AAF or by benzene. Blood micronucleus frequencies induced by benzene were similar in transgenic mice and their non-transgenic litter mates. There was no micronucleus induction or PCE suppression detected in the blood of either sex after treatment with 1 and 3 mg/kg DEN or 100 to 300 mg/kg 1,2-DCE. At 40 weeks bone marrow was sampled from mice given 100 mg/kg benzene, and it was confirmed that micronucleated PCE frequencies in blood were an accurate reflection of those induced in bone marrow. However, the spontaneous and induced frequencies of micronucleated cells in blood were slightly higher in PCE than in NCE suggesting that a small degree of selective removal of micronucleated cells occurs in this mouse strain. Control micronucleus frequencies in E mu-PIM-1 mice appeared comparable to those in other, non-transgenic mouse strains. Thus micronuclei are readily detectable in blood during chronic exposure to the bone-marrow clastogens 2-AAF and benzene, but not to DEN and 1,2-DCE, probably because active species do not reach the bone marrow in sufficient concentrations to induce increases in micronuclei.

2-Acetylaminofluorene↗

Disability self-help organizations in the developing world: a case study from Malaysia.

Disability self-help organizations have emerged as an important element of response to the advancement of people with disabilities throughout the developing world in recent years. There are now self-help organizations in all regions of the developing world, their memberships are growing, and the scope of their activities is enlarging. This paper draws on field research in Malaysia to present an organization developed by and for people with physical disabilities as a case study of self-help action in the Southeast Asian region. This paper reviews the origins and growth of the organization, describes its current programme of activities, and offers comment about the nature and future of disability self-help in the region and its continued advancement in the developing world generally. A combination of internal factors that relate to organization and programming, and external political and social conditions is indicated as important.

Consumer Advocacy↗

Lymphocyte aging in bone marrow chimeras.

Chimeric mice provide a unique approach to the analysis of genetic factors associated with aging since cells with two genetically distinct backgrounds can be analyzed in the same animal. In this study, bone marrow chimeras were produced by reconstituting lethally irradiated female B6AF1 [(C57BL/6 female x A male)F1] mice with varying mixtures of T cell-depleted bone marrow cells from A (short-lived) and C57BL/6 (long-lived) mice. The phenotypic composition of the peripheral blood lymphocytes was analyzed using either a cytotoxicity assay or flow cytometry with indirect immunofluorescence. The percentage of A-derived lymphocytes in the peripheral blood following reconstitution was generally higher than the percentage of A bone marrow cells with which the irradiated mice were inoculated, suggesting that the cells from the A donor bone marrow were more efficient at marrow reconstitution than the cells from the C57BL/6 donor bone marrow. In order to determine whether the percentage of A- versus C57BL/6-derived cells changed with age in each animal, the chimeric mice were bled for phenotype analysis of peripheral blood lymphocytes between 2-6 months following reconstitution and at 2-3 month intervals until death. For most animals [93/127 (73%)], there was no consistent pattern of increase or decrease (> 20%) with regard to the percentage of A lymphocytes in the peripheral blood over time. However, in 34/127 (27%) of the chimeras, a change greater than 20% in the phenotypic composition of the peripheral blood lymphocytes was observed and these animals were considered unstable. Among these 34 unstable animals, 6 (18%) showed an overall increase in A-derived lymphocytes, 24 (71%) showed an overall decrease in A-derived lymphocytes, and 4 (12%) showed fluctuating increases and decreases over their lifespan. While the lifespans of the chimeric animals in these studies were considerably shorter than those reported for untreated mice of the same strain and gender, in these animals increased proportions of A cells were associated with significantly longer lifespans. In addition, the lifespan of the B6AF1 chimeric mice was a function of the proportion of A lymphocytes present in the peripheral blood over the course of the animal's life.

Animals↗