Search PubMed⌕ Search

Biomedical subjects

T Sanner

Publications and source records attributed to T Sanner.

At least 37 records · Page 2Linked to original sources

Carcinogen classification systems: similarities and differences.

An overview of regulatory classification systems on carcinogens in the Organization for Economic Cooperation and Development (OECD) countries is presented based on a questionnaire study. Most OECD countries have implemented legislation including classification systems and lists of carcinogens. Basically, there are two types of classifications systems. The major difference between the two is that in one system carcinogens are classified according to the weight of evidence for carcinogenic effects in humans, whereas in the other carcinogens are allocated to various groups according to potency. Even if the classification systems may differ, the substances classified as carcinogens are to a large extent the same. Classification of carcinogens will in many countries require hazard labeling. This labeling, i.e., the limit for labeling of substances and preparations, and risk phrases show considerable similarities, but differ in certain aspects. Several countries have restrictions on sale and/or use of carcinogens. There is a trend toward introducing more mechanistic considerations in the classification of carcinogens.

Carcinogens↗

[Peroxisome proliferation and possible cancer hazard].

Approximately 80 chemicals, including hypolipidemic fibrates, have been shown to induce peroxisome proliferation in rodent liver. There is a strong concordance between this effect and development of liver cancer in rats and mice. There is evidence that the peroxisome proliferators induce cancer via a non-genotoxic, receptor-mediated mechanism. Both oxidative stress as a consequence of peroxisome proliferation and preferential growth of preneoplastic lesions following hepatocyte proliferation have been proposed as underlying processes in the neoplastic development. Peroxisome proliferation does not seem to occur in human liver to any significant extent. Therefore exposure to chemicals with such an effect apparently represents little, if any, human carcinogenic hazard.

Adult↗

[Smokeless health institutions--what progress was achieved so far?].

In August 1991, the Norwegian Ministry of Health and Social Affairs distributed their publication Plan of Action to Achieve Smoke-free Health Institutions. The goal was that all health institutions in Norway should have established a smoke-free environment for all employees before 1.1.1994. In March 1993 a questionnaire was sent to all health institutions. The purpose was to remind the institutions of the plan of action, and to evaluate the progress of the efforts to achieve smoke-free health institutions so far. Three types of institutions were included in this study: hospitals, institutions for the elderly, and psychiatric institutions, in all 1,437 institutions. The overall response rate was 33%. The response rate for the hospitals was 68%. A majority, 55%, have decided to establish a smoke-free environment for their employees. About two thirds of the institutions who had not made such a decision do not have any plans to do so. It is concluded that this study indicates a demand for further action in order to establish smoke-free health institutions in Norway. Stronger involvement seems to be needed, particularly on the part of the municipalities and countries, as owners of the institutions.

Evaluation Studies as Topic↗

Effect of 1,1'-(2,2,2-trichloroethylidene)-bis(4-chlorobenzene) (DDT) on gap junctional intercellular communication and morphological transformation of Syrian hamster embryo cells.

The organochlorine insecticide 1,1'-(2,2,2-trichloroethylidene)bis(4-chlorobenzene) (DDT) did not induce or promote induction of morphological transformation in Syrian hamster embryo (SHE) cells, but it was a potent inhibitor of gap junctional intercellular communication (GJIC). The kinase inhibitor staurosporine did not affect DDT induced inhibition of GJIC, although it has been shown to decrease the inhibitory effect of 12-O-tetradecanoyl-phorbol-13-acetate (TPA) on GJIC. In addition, pretreatment with TPA made the cells refractory to further TPA induced inhibition of GJIC, while they remained sensitive to DDT. Thus, DDT and TPA inhibit GJIC through different mechanisms. Elevation of cellular cyclic adenosine monophosphate (cAMP) level by exposure to forskolin counteracted the inhibitory effect of DDT similar to that observed for TPA. Continuous exposure to DDT at concentrations near the effective concentration (50%) value (EC50 value) resulted in a slight recovery of GJIC following the initial inhibition. This recovery was not accompanied by the cells becoming refractory to further DDT induced inhibition of GJIC. The recovery of GJIC after removal of the DDT containing medium seemed to be related to a reduction in the amount of cell-associated DDT.

Animals↗

Increased gap junctional intercellular communication in Syrian hamster embryo cells treated with oxidative agents.

The effects of K2CrO4, H2O2, benzoyl peroxide, menadione, KBrO3 and UV365nm on gap junctional intercellular communication (GJIC) have been studied in the 12-O-tetradecanoylphorbol-13-acetate (TPA)-sensitive Syrian hamster embryo (SHE) cell line BPNi. All agents were found to increase the level of GJIC by 50-100%. Also, in early passage SHE cells, a tendency for increased GJIC was found for the oxidative agents studied. Hydrogen peroxide was used as a model compound in the subsequent studies. The increase in GJIC was reversible, and it was not due to an increased non-junctional permeability. Hydrogen peroxide counteracted the TPA-induced decrease in GJIC, regardless of whether the cells were exposed to the compounds simultaneously or the cells were pre-exposed to TPA before addition of H2O2. The GJIC enhancement by H2O2 was slightly reduced by the addition of the hydroxyl radical scavenger dimethylsulphoxide or by the inhibition of catalase by amitrole. The cAMP/protein kinase A system is the only characterized signal transduction system that is known to increase GJIC in most cell types. Hydrogen peroxide did not increase the amount of cAMP (or cGMP) in BPNi cells, while forskolin and a phosphodiesterase inhibitor had to increase the cAMP level several-fold to affect GJIC to the same degree as the oxidative agents. Some inhibitors of protein kinase A were assayed for their ability to inhibit the increases in GJIC caused by H2O2 and forskolin. Staurosporine inhibited the forskolin-induced increase in GJIC, with much less effect on the H2O2-induced increase. H8, H88 and H89 had less effect than staurosporine on the forskolin-induced increase in GJIC. The results suggest that the cAMP/protein kinase A system may not be involved in the increase in GJIC caused by H2O2, although this cannot be completely ruled out.

Animals↗

Inhibition of gap junctional intercellular communication in Syrian hamster embryo cells by TPA, retinoic acid and DDT.

12-O-Tetradecanoylphorbol-13-acetate (TPA), trans-retinoic acid (RA) and DDT inhibit gap junctional intercellular communication in Syrian hamster embryo (SHE) cells. The inhibition is rapid and takes place within minutes. Northern blot analysis shows that SHE cells express connexin 43 and that exposure to these compounds for up to 20 h has no effect on connexin 43 mRNA level. Immune cytochemistry shows that the connexon structures in SHE cells are scattered over the cell, and not confined to the cell-cell boundaries as is the case in the rat liver epithelial cell line IAR20. RA and TPA induce the disappearance of the connexon structures in parallel to the induced inhibition of communication in SHE cells. The disappearance of the connexon spots takes place with no apparent effect on the cellular content of connexin protein measured by immunoblotting, and is probably caused by disaggregation of the connexon structures rather than disappearance or degradation of the connexin protein. DDT shows little or no apparent effect on connexin immunostaining in SHE cells, indicating a different mechanism of action. In the IAR20 cells, exposure to TPA and RA also results in loss of immunostainable connexon structures while exposure to DDT results in relocalization of the connexons away from the cell-cell borders. Immunoblotting of connexin 43 in SHE cells results in three major bands with apparent mol. wts of 40-50 kDa where the two higher mol. wt bands represent phosphorylated connexin 43 protein. Exposure of the cells to the communication inhibiting compounds results in reduction or loss of the highest mol. wt phosphorylated band, indicating a relation between a specific connexin phosphorylation and aggregation of connexin 43 protein to functional communicating gap junctions. The results suggest the presence of various post-transcriptional control mechanisms in the regulation of connexin function which are vulnerable to exogenous stimuli.

Animals↗

Effects of five phorbol esters on gap junctional intercellular communication, morphological transformation and epidermal growth factor binding in Syrian hamster embryo cells.

The effects of 12-O-tetradecanoylphorbol-13-acetate (TPA), 12-deoxyphorbol-13-phenylacetate (DOPP), 12-deoxyphorbol-13-phenylacetate-20-acetate (DOPP A), sapintoxin D (SAP D) and sapintoxin A (SAP A) on the decrease in [125I]epidermal growth factor (EGF) binding (indicating protein kinase C activation), suppression of gap junctional intercellular communication (GJIC) and induction of morphological cell transformation (MCT) in Syrian hamster embryo (SHE) cells were investigated. All five phorbol esters were found to reduce [125I]EGF binding in early passage SHE cells at comparable concentrations. DOPP A was approximately 10-fold less potent in decreasing GJIC compared to the other phorbol esters in early passage SHE cells, while the compounds showed less difference in suppressing GJIC in the phorbol ester sensitive SHE cell line BPNi. The decreases in [125I]EGF binding and GJIC were found to be transient in the continuous presence of phorbol esters. All phorbol esters induced MCT in early passage SHE cells, but DOPP and DOPP A were approximately 10-fold less potent than TPA, SAP D and SAP A. Thus, there seems to be some degree of correlation, but not to a full extent, between the ability of the phorbol esters to activate PKC, decrease GJIC and to induce MCT. The results do not suggest a simple relationship between PKC activation, inhibition of GJIC and the reported tumor-promoting activities of the compounds.

Animals↗

Phosphatase inhibitors, gap junctional intercellular communication and [125I]-EGF binding in hamster fibroblasts.

A number of phosphatase inhibitors (okadaic acid, calyculin A, aluminium fluoride, sodium molybdate, sodium orthovanadate, pervanadate and vanadyl sulphate) were investigated for their effects on gap junctional intercellular communication (GJIC) and [125I]-epidermal growth factor (EGF) binding in early passage Syrian hamster embryo cells (mainly fibroblast-like cells) and in V79 Chinese hamster lung fibroblasts. Only pervanadate decreased GJIC significantly. After the initial pervanadate-induced decrease the GJIC recovered rapidly. Only pervanadate was able to change the band pattern of the gap junction protein connexin43 (cx43) in Western blots. Together this may indicate either that there is a low turnover of phosphate groups in cx43 under basal conditions or that the putative phosphatases are not sensitive to most of the phosphatase inhibitors applied. In contrast, pervanadate, orthovanadate and molybdate decreased [125I]-EGF binding. 12-O-Tetradecanoylphorbol-13-acetate (TPA) is able to induce the phosphorylation of both cx43 and the EGF receptor, concomitantly with a decrease in GJIC and [125I]-EGF binding. These effects are reversible after removal of TPA. It could be imagined that other phosphatases would act on cx43 and the EGF receptor after the forced phosphorylation of the two molecules. Thus TPA was used to downregulate GJIC and [125I]-EGF binding and phosphatase inhibitors were applied in the upregulation phase. Only pervanadate affected the upregulation of GJIC, and pervanadate, orthovanadate and molybdate affected the upregulation of [125I]-EGF binding. Thus it is not an identical complement of phosphatases that act on cx43 and the EGF receptor. All the downregulating agents are assumed to be phosphotyrosine phosphatase inhibitors.

Aluminum Compounds↗

Intercellular communication in colonies of Syrian hamster embryo cells and the susceptibility for morphological transformation.

The levels of gap junctional intercellular communication (GJIC) were studied in normal, morphologically altered and morphologically transformed colonies formed in the Syrian hamster embryo (SHE) cell transformation assay. The colonies were selected from non-exposed dishes or dishes exposed to 12-O-tetradecanoylphorbol-13-acetate (TPA, 0.16 microM), di(2-ethylhexyl)phthalate (DEHP, 77 microM), Na-orthovanadate (vanadate, 3.4 microM) or dieldrin (25 microM) for 7 days during colony formation. TPA, DEHP and vanadate induced increased frequencies of morphological transformation of colonies. At the same time, TPA and DEHP decreased GJIC in the colonies by approximately 30% under the conditions used. All categories of colonies were equally affected. Vanadate did not change the level of GJIC in any of the categories of colonies compared to unexposed control. Dieldrin strongly suppressed GJIC in all colonies without increasing the frequency of transformation. The compounds affected GJIC after short-term exposures (4 and 24 h) to cell monolayers rather similarly to that found after long-term exposure to the colonies. Transformation assays with coexposure of dieldrin together with the transforming agents vanadate, DEHP or benzo[a]pyrene did not increase transformation frequencies compared to the transforming agents alone. The GJIC level in all coexposure groups was similar to that of dieldrin alone. Furthermore, regardless of whether dieldrin was present or not, removal of vanadate 24 h before fixation of the colonies caused a slight decrease in the transformation frequency. The results suggest that: (i) morphologically transformed colonies have the same ability of intercellular communication as normal colonies; (ii) decreased GJIC is probably not either sufficient or necessary to induce transformation of SHE cell colonies; (iii) a decreased level of GJIC does not necessarily increase the susceptibility of SHE cells for transformation; and (iv) inhibition of GJIC may not have an impact on the maintenance of the transformed phenotype of SHE cell colonies.

Animals↗

12-O-tetradecanoylphorbol-13-acetate-induced inhibition of gap junctional communication is differentially regulated in a transformation-sensitive Syrian hamster embryo cell line compared to early passage SHE cells.

The transformation-sensitive cell-line BPNi was more susceptible to 12-O-tetradecanoylphorbol-13-acetate (TPA)-induced inhibition of gap junctional intercellular communication (GJIC) than early passage Syrian hamster embryo (SHE) cells, while the potency of TPA to down-regulate EGF-binding was similar in the two cell types. The kinetics of TPA-induced inhibition of GJIC suggested that different mechanisms may operate at high and low TPA concentrations. The initial inhibition after exposure to high TPA concentrations was followed by a recovery of GJIC. The recovery was much more pronounced in SHE than in BPNi cells. This effect could not be explained by differences in down-regulation of protein kinase C. Removal of high TPA concentrations also resulted in a faster recovery of GJIC in SHE than in BPNi cells. In addition, although forskolin induced a similar protection against the inhibitory effect of TPA on GJIC, forskolin restored GJIC blocked by TPA much faster in SHE than in BPNi cells. Thus, BPNi cells are more sensitive to TPA induced inhibition of GJIC than SHE cells, and have reduced capability to recover from down-regulated GJIC as compared to SHE cells.

Animals↗

Effect of cAMP elevating compounds on inhibition of gap junctional communication and induction of morphological transformation in Syrian hamster embryo cells.

An enhancement of the cellular cAMP level has been shown to protect against phorbol ester-induced inhibition of gap junctional intercellular communication (GJIC) and induction of morphological transformation in Syrian hamster embryo (SHE) cells. Cholera toxin, forskolin, 3-isobutyl-1-methylxanthine (IBMX) and theophylline counteracted the 12-O-tetradecanoylphorbol-13-acetate (TPA)-induced inhibition of GJIC. The enhancement of communication by these compounds was independent of the TPA concentration, as well as whether the cells were treated with TPA prior to or after the cAMP elevating agents. The induced increase in the cAMP level by cholera toxin occurred in the same concentration range as the enhancement of GJIC. With forskolin the effect on GJIC was apparent at concentrations 10 times lower than needed to enhance the cAMP level. IBMX and theophylline were found to enhance GJIC with only a 20% elevation of cAMP. The cAMP elevating compounds also suppressed the response of TPA on induction of transformed morphology in SHE cells.

1-Methyl-3-isobutylxanthine↗

Regulation of gap junctional communication in Syrian hamster embryo cells by retinoic acid and 12-O-tetradecanoylphorbol-13-acetate.

Retinoids enhance the frequency of Syrian hamster embryo (SHE) cell colonies with transformed morphology in a similar way to tumor-promoting phorbol esters. The present study shows that retinoids are also potent inhibitors of gap junctional intercellular communication in SHE cells at noncytotoxic concentrations. This is an apparent contrast to the results observed in transformation systems using the mouse cell lines C3H10T1/2 and BALB/c 3T3, where retinoids have been found to reduce the induction of transformation, and also to enhance gap junctional cell communication. Retinoids are thus potent modulators of transformation and cell communication in three transformation systems. For all three cell types, enhancement of communication by retinoids is related to reduced transformation, and inhibition of communication to enhanced induction of transformation. Communication in the SHE cells is completely blocked following 1 h exposure to 30 microM retinoic acid, while concentrations of 0.3-15 microM results in a gradual down-regulation of communication during 1-5 h exposure. Removal of retinoic acid results in complete restoration of communication to control values within a few hours. Primary SHE cells and the cell line BPNi show similar sensitivity for inhibition of communication after exposure to retinoic acid, while BPNi cells are far more sensitive to inhibition of communication by 12-O-tetradecanoylphorbol-13-acetate (TPA) than primary SHE cells. Retinoic acid does not induce inhibition of epidermal growth factor binding, potentiate adenylate cyclase activation or enhance arachidonic acid release, as does TPA, suggesting different mechanisms of action.

Animals↗

Effects of hydrocarbons on transformation and intercellular communication in Syrian hamster embryo cells.

The ability of 18 different hydrocarbons to induce and promote morphological transformation and to inhibit intercellular communication in primary Syrian hamster embryo cells in culture have been studied. The compounds were: the n-alkanes octane, nonane, decane, undecane, dodecane and tridecane; the iso-alkanes 2-methylheptane, 2-methyloctane and 2-methylnonane; the naphthenes 1,2-dimethylcyclohexane, 1,2,4-trimethylcyclohexane and tert-butylcyclohexane; the aromates 1,2-dimethylbenzene, 1,2,4-trimetylbenzene and tert-butylbenzene; and the alkenes 1-octene, 1-nonene and 1-decene. None of the hydrocarbons induced morphological transformation of Syrian hamster embryo cells. When the hydrocarbons were incubated together with benzo(a)pyrene, enhancement of the transformation frequency was observed for the naphthene 1,2-dimethylcyclohexane and the iso-alkanes 2-methylheptane and 2-methyloctane. None of the n-alkanes, alkenes or aromates enhanced the transformation frequency induced by benzo(a)pyrene. The alkane tridecane and the iso-alkanes 2-methyloctane and 2-methylnonane reduced intercellular communication in the primary Syrian hamster embryo cells.

Animals↗

[What does cigarette smoking cost society?].

Deaths from cigarette smoking have been estimated to 7,500 persons per year in Norway. Half of these are assumed to die before reaching 70 years of age. It is calculated that cigarette smoking costs the society about NOK 1.2 billion per year in direct health care, NOK 1.6 billion in indirect morbidity, and NOK 4.2 billion in lost productivity due to premature death.

Costs and Cost Analysis↗