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S M Fischer

Publications and source records attributed to S M Fischer.

At least 73 records · Page 4Linked to original sources

Overexpression of cyclin D1 in mouse skin carcinogenesis.

Recent studies have provided evidence suggesting that disruption of cyclin function may play a critical role in tumorigenesis. Cyclin D1, a putative G1 cyclin previously isolated in human parathyroid adenomas (designated PRAD1) and mouse macrophages (designated Cyl1), has been implicated in various neoplasias including breast and squamous cell carcinomas (SCC). The role of cyclin altered regulation in the different stages of tumor progression has not been studied in a well defined animal model system. In the study presented here, Cyl1 was mapped to the distal end of mouse chromosome 7 and found to be dramatically overexpressed in skin SCC. In premalignant stages of tumor development, early papillomas showed basal Cyl1 transcript levels, whereas over-expression was observed in most advanced papillomas. These findings suggest that altered expression of cyclin D1 plays a critical role in mouse skin carcinogenesis and may be related to the acquisition of autonomous growth by papillomas. Further studies on the role of cyclin D1 in the mouse model system should prove valuable for understanding the multistep basis of tumor progression.

Animals↗

Dissociation of sensitivities to tumor promotion and progression in outbred and inbred SENCAR mice.

The sensitivity of outbred SENCAR mice and inbred SENCAR (SSIN) mice to multistage carcinogenesis was studied. Tumors were induced using either 7,12-dimethylbenz[a]anthracene or N-methyl-N'-nitro-N-nitrosoguanidine as initiators and 12-O-tetradecanoylphorbol-13-acetate or benzoyl peroxide as promoting agents. Although the number of papillomas per mouse was higher in SSIN than in outbred SENCAR mice, the number of carcinomas observed in the SSIN strain was significantly lower regardless of the initiator or promoter used. It was also observed that the expression of markers of premalignant progression (i.e., dysplasia, expression of keratin K13, and loss of keratin K1 expression) was markedly suppressed in SSIN papillomas. After 50 wk of promotion with 12-O-tetradecanoylphorbol-13-acetate, the pattern of expression of K13 and K1 in SSIN mice was comparable to the pattern observed in outbred SENCAR mice after 10 to 20 wk of promotion with 12-O-tetradecanoylphorbol-13-acetate. It was also observed that 67% of the tumors induced in SSIN mice by initiation with 7,12-dimethylbenz[a]anthracene exhibited a mutation in codon 61 of the Ha-ras-1 gene. This latter finding suggests that the differences observed in tumor progression between the inbred strain and the outbred stock are not related to a genetic alteration in the Ha-ras-1 gene but rather to an independent event that we have postulated to involve a putative suppressor gene. The data reported here suggest that the putative gene(s) that confers susceptibility to tumor promotion was segregated from the gene(s) involved in tumor progression during selection and inbreeding of the SENCAR mouse stock.

9,10-Dimethyl-1,2-benzanthracene↗

Differential effects of dietary linoleic acid on mouse skin-tumor promotion and mammary carcinogenesis.

On the basis of reports of rat mammary- and pancreas-tumor models, we hypothesized that an increase in consumption of linoleic acid (LA) would also cause an enhancement in mouse skin-tumor promotion. SEN-CAR mice were placed on diets containing 0.8%, 2.2%, 3.5%, 4.5%, 5.6%, 7.0%, or 8.4% LA, 1 week after initiation with 7,12-dimethylbenz(a)anthracene and 3 weeks before starting promotion with 12-O-tetradecanoylphorbol-13-acetate. An inverse correlation (r = -0.92) was observed between papilloma number and level of LA; however, there was little difference in tumor incidence. A relationship between diet and carcinoma incidence was also found. The fatty acid composition of epidermal phospholipids reflected the dietary LA levels. 12-O-Tetradecanoylphorbol-13-acetate-induced epidermal prostaglandin E2 levels generally decreased with increasing dietary LA. To determine whether this inverse correlation between dietary LA and tumor yield was due to species differences or organ-model differences, a mammary carcinogenesis experiment was performed. SENCAR mice were fed the 0.8%, 4.5%, and 8.4% LA diets. All mice received 6 mg 7,12-dimethylbenz(a)anthracene, administered intragastrically at 1 mg/week. Tumor appearance was delayed in the 0.8% LA diet group, and a positive dose-response relationship between dietary LA and mammary-tumor incidence was observed. These studies suggest that the effect of dietary LA on tumor development is target tissue specific rather than species specific.

9,10-Dimethyl-1,2-benzanthracene↗

The effect of dietary fat on the rapid development of mammary tumors induced by 7,12-dimethylbenz(a)anthracene in SENCAR mice.

We recently reported (J. Leyton et al., Cancer Res., 51: 907-915, 1991) an inverse correlation between skin tumor number and level of dietary linoleic acid (LA) in SENCAR mice following an initiation-promotion protocol. These results differed from the reported (C. Ip et al., Cancer Res., 45: 1997-2001, 1985) positive correlation between dietary LA and tumor incidence for the rat mammary gland. The goal of the study reported here was to determine whether this dissimilarity was due to organ site or species differences. Female SENCAR mice were fed 1 of 3 15% fat diets containing LA at levels of 0.8, 4.5, and 8.4% before, during, and after intragastric administration of 6 mg (1 mg/week) 7,12-dimethylbenz(a)anthracene. A positive correlation between level of dietary LA and mammary tumor incidence was observed such that for the first 15 weeks, the incidence was greatest in the 8.4% LA diet group, followed by the 4.5% and then the 0.8% LA groups. Distinct dietary effects on latency were also noted in that 15, 12, and 8 weeks after cessation of 7,12-dimethylbenz(a)anthracene were required for a 40% carcinoma incidence in the 0.8, 4.5, and 8.4% LA diet groups, respectively. A histopathological analysis of all tumors revealed that the predominant type was the adenosquamous carcinoma, which comprised 46.6, 54.1, and 77.7% of all mammary tumors for diets containing 0.8, 4.5, and 8.4% LA, respectively. The second most common tumor was the adenocarcinoma type B, which was found with a frequency of 33% in the 0.8% and 4.5% LA diet groups and 22% in the 8.4% LA diet group. These results indicate that SENCAR mice have a short latency period for 7,12-dimethylbenz(a)anthracene-induced mammary tumor development and that rat and mouse mammary tumor development is modified by dietary LA in a similar manner, although in the SENCAR mouse dietary LA did not have a saturating effect. In addition, high dietary LA was found to be associated specifically with an increased incidence of adenosquamous carcinomas but not of other types of mammary tumors.

9,10-Dimethyl-1,2-benzanthracene↗

Tumor-promoting activity of ethyl phenylpropiolate.

The ability of the hyperplasiogenic irritant ethyl phenylpropiolate (EPP) to act as a tumor promoter in two-stage carcinogenesis and to stimulate cellular events commonly cited as markers of tumor promoter action was evaluated. Treatment of adult, inbred SENCAR (SSIN) mice, initiated with 7,12-dimethylbenz(a)anthracene, with 5 mg of EPP twice weekly resulted in 100% of the mice developing tumors (4.8 tumors/mouse) after 40 weeks of promotion. Treatment with 3 mg EPP (twice weekly) resulted in 52% of the mice developing tumors (0.9 tumor/mouse). This treatment regimen with EPP produces a sustained epidermal hyperplasia without being overtly toxic. In addition, a 5-mg dose of EPP induced ornithine decarboxylase activity to a level comparable to that induced by the tumor promoter phorbol 12-myristate 13-acetate (PMA): 2.3 nmol CO2/mg protein/h for EPP versus 4.5 nmol CO2/mg protein/h for PMA versus 0.04 nmol CO2/mg protein/h for acetone control. Likewise, the time course of ornithine decarboxylase induction by EPP was the same as that seen with PMA (maximum induction at approximately 6 h). Vascular permeability of the dorsal skin increased significantly in response to EPP (8 times that seen in acetone controls) and exhibited the same kinetics as that seen after exposure to PMA. Activity of protein kinase C (PKC), the cellular receptor for PMA, decreased by 75 to 95% 48 h after treatment with PMA. In contrast, EPP treatment resulted in less than a 20% decrease in PKC activity 48 h after treatment. This slight decrease in PKC activity is thought to be an indirect effect caused by the hyperproliferative and inflammatory reactions, because EPP was found to be inactive as an in vitro activator of PKC. These results indicate not only that EPP is a good tumor promoter that causes morphological and biochemical responses similar to those induced by PMA, but also that the action of EPP is apparently mediated via a mechanism that does not involve direct interaction with PKC.

9,10-Dimethyl-1,2-benzanthracene↗

4 Beta- and 4 alpha-12-O-tetradecanoylphorbol-13-acetate elicit arachidonate release from epidermal cells through different mechanisms.

There is substantial evidence that the tumor promoter 4 beta-12-O-tetradecanoylphorbol-13-acetate (TPA) elicits enhanced arachidonic acid release and its metabolism to prostaglandins and lipoxygenase products in many cell types. The goal of this study was to determine whether 4 alpha-12-O-tetradecanoylphorbol-13-acetate (4 alpha TPA), a stereoisomer of TPA, can induce arachidonic acid release and whether it is by the same mechanism as release induced by TPA. The finding that 10 micrograms/ml 4 alpha TPA produces a response comparable with 1 microgram/ml TPA and with similar kinetics was unexpected. The mechanism mediating the TPA response appears to be the activation of protein kinase C (PKC), which subsequently results in phospholipase A2 activation. This is suggested by the observation that TPA-induced arachidonate release is inhibited 65% by 1-(5-isoquinolinesulfonyl)-2-methylpiperazine dihydrochloride (H-7), an inhibitor of PKC and that TPA completely down-regulates PKC. In addition, down-regulation or depletion of PKC by prior treatment with TPA results in a 75% loss of response to a second TPA treatment. In vitro activation of partially purified PKC could be demonstrated for TPA but not 4 alpha TPA. 4 alpha TPA thus appears to induce the release of arachidonate by a different but unknown mechanism. The 4 alpha TPA effect is not significantly reduced by the PKC inhibitor H-7, and no evidence of PKC activation or down-regulation was observed. Additionally, 4 alpha TPA is unable to "down-regulate" arachidonate release when the two-treatment protocol is used and the down-regulation of PKC by TPA has little effect on 4 alpha TPA-induced arachidonate release. Cycloheximide inhibited TPA-induced arachidonate release by 80% and 4 alpha TPA-induced release by 50%, indicating a partial requirement for protein synthesis for both phorbol esters. Actinomycin D, on the other hand, inhibited the TPA response by 70%, but enhanced the 4 alpha TPA response by 169%. When used at 10- or 100-micrograms doses, 4 alpha TPA was found to lack activity with respect to ornithine decarboxylase induction, oxidant production, hyperplasia, inflammation, and tumor promotion, suggesting that arachidonate release is not sufficient to induce these events. This may be related to the observation that with TPA the extent of arachidonate metabolism to prostaglandin E2 is four- to fivefold greater than occurred with 4 alpha TPA, even under conditions of equivalent arachidonate release.

Animals↗

Effects of type of dietary fat on phorbol ester-elicited tumor promotion and other events in mouse skin.

Based on the biological activity of arachidonic acid metabolites, we hypothesized that alterations in the consumption of linoleic acid, the precursor to arachidonic acid, would result in a modification in tumor development when fed during the tumor promotion stage of the mouse skin initiation-promotion model. The effects of seven different levels of dietary linoleic acid (LA), supplied as corn oil in a 15% fat diet, on the incidence and rate of papilloma and carcinoma development were determined. SENCAR mice were placed on one of the experimental diets, containing 1.0, 3.6, 6.0, 7.9, 9.9, 12.5, or 15.0% corn oil, 1 week after initiation with 10 nmol of 7,12-dimethylbenz(a)anthracene and 3 weeks prior to the start of twice weekly promotion with 1 micrograms 12-O-tetradecanoylphorbol-13-acetate (TPA). At 15 weeks of TPA treatment there were significant differences in papilloma number among diet groups, such that an inverse correlation (r = 0.92) was observed between tumor number and level of corn oil; the lowest corn oil diet group had an average of 11.7 tumors/mouse, while the highest corn oil group had 5.4 tumors/mouse. However, there was little difference in tumor incidence among diet groups. A general relationship between diet and carcinoma incidence was also found, such that the highest corn oil diet group had the lowest carcinoma incidence. In an experiment performed with DBA/2 mice, the average number of papillomas/mouse at 17 weeks was 4.5 (1.0% corn oil), 5.6 (7.9%) corn oil), and 2.3 (15.0% corn oil). Papilloma incidence was also affected by diet, with a 79% incidence for the 15.0% corn oil and an incidence of 93% for the 1.0% corn oil group. analyses of the fatty acid composition of epidermal phospholipids in mice fed the experimental diets reflected the dietary LA levels, in that an accumulation of phospholipid LA, accompanied by an overall decrease in arachidonic acid, occurred with increasing dietary corn oil. In spite of the high membrane levels of LA, no measurable amount of epidermal conjugated dienes of LA could be detected. Epidermal prostaglandin E2 levels in acetone-treated mice were similar for all diet groups (approximately 3 pg/micrograms DNA). However, 6 h after topical application with 4 micrograms of TPA, prostaglandin E2 levels were elevated 5- to 10-fold; an inverse correlation (P less than 0.05) was seen with increasing dietary LA, although the concordance with decreased phospholipid arachidonic acid was not strong.(ABSTRACT TRUNCATED AT 400 WORDS)

9,10-Dimethyl-1,2-benzanthracene↗

Concomitant proliferation and formation of a stratified epithelial sheet by explant outgrowth of epidermal keratinocytes from adult mice.

A chemically defined medium containing 1.2 mM Ca2+ has been developed for the culture of primary epidermal keratinocytes from untreated adult mice such that proliferation is accompanied by the formation of desmosomes and stratification. Cultured cutaneous explants of 1 mm2 from the backs of untreated, control, and carcinogen-exposed mice all demonstrated epithelial outgrowth within 1 wk, and by 5 wk approached confluence with characteristics of terminal differentiation such as desmosomes and stratification. Addition of 12-O-tetradecanoylphorbol-13-acetate (TPA) to the medium in concentrations of 0.001, 0.01, and 0.1 micrograms/ml resulted in a delay of approximately 1 wk in the outgrowth of the explants compared with the acetone controls and in a 30% decrease in the diameter of the epithelial outgrowth at 3 wk. The inhibition in outgrowth was overcome at higher concentrations (0.5, 1.0, and 10 micrograms/ml TPA). No obvious differences in morphology or in the rate of epidermal outgrowth within a 5-wk interval among explants from normal untreated epidermis, epidermis from mice treated with acetone, or epidermis from mice treated with an initiating application of 7,12-dimethylbenz[a]anthracene were observed. The defined composition of this medium and its ability to support reproducibly and conveniently both proliferation and differentiation of normal as well as treated primary adult murine epidermal cells suggest that it should be useful for a number of studies not previously possible that are relevant to the biology of the skin, to toxicology, and to carcinogenesis in the murine model system.

9,10-Dimethyl-1,2-benzanthracene↗

Effects of N-acyl dehydroalanines on phorbol ester-elicited tumor development and other events in mouse skin.

The free radical scavengers N-acyl dehydroalanines (AD compounds) were examined for their effect on several 12-O-tetradecanoylphorbol-13-acetate (TPA) elicited events in mouse skin. The induction of oxidant production by TPA in isolated mouse epidermal cells was reduced by approximately 70% by 1 mM paramethoxyphenyl-acetyl dehydroalanine (AD5) and 80% by 1 mM parasulfoxyphenyl-acetyl dehydroalanine (AD19). These AD compounds also completely suppressed the TPA-dependent stimulation of prostaglandin E2 synthesis in primary cultures of epidermal cells. Single and multiple topical applications on the dorsal skin of SENCAR mice of either AD5 or AD 19 inhibited TPA-induced epidermal hyperplasia but failed to inhibit epidermal ornithine decarboxylase induction. When used with TPA on initiated mice, AD19 did not inhibit papilloma formation; however, after 40 weeks of promotion, the carcinoma incidence was reduced by 50% in the AD19 group. These results suggest that reactive oxygens may be more important to the conversion of benign to malignant tumors than in the initial development of the benign tumors.

Alanine↗

Modulation of phorbol ester-elicited events in mouse epidermis by dietary n-3 and n-6 fatty acids.

Because arachidonic acid-derived eicosanoids are potent modulators of hyperproliferation and inflammation during skin tumor promotion with the phorbol ester, 12-0-tetradecanoylphorbol-13-acetate (TPA) (17, 18), it was hypothesized that dietary modification of epidermal fatty acids might modulate TPA-induced biochemical events in mouse skin. Semipurified diets containing 10% total fat composed of corn oil (CO) or a combination of CO and menhaden oil (MO) or coconut oil (CT) were fed to SENCAR mice for 4 weeks. Fatty acid composition of epidermal phospholipids generally reflected fatty acid composition of dietary oils fed to the mice. Since fatty acid-derived eicosanoids are thought to be essential in tumorigenesis, we compared the effects of dietary fats on prostaglandin E (PGE) production in epidermis treated with a single dose of TPA. TPA-induced PGE production in mouse epidermis from mice fed the MO diet was significantly reduced compared to PGE production in epidermal homogenates from mice fed the CO or CT diets. Type of dietary fats did not appear to modulate TPA-induced vascular permeability, however hyperplasia was slightly elevated in skins of mice fed MO. The subcellular distribution of protein kinase C, the plasma membrane receptor for TPA predominantly located in the cytosol (80%), was altered in epidermis from mice fed the MO diet compared to preparations from mice fed CO or CT diets which exhibited normal protein kinase C distribution. Our results suggest that n-3 rich dietary lipids modulate TPA-elicited events in mouse skin to a greater extent than diets containing higher proportions of saturated or n-6 fatty acids.

Animals↗

The effect of the level of dietary corn oil on mouse skin carcinogenesis.

To investigate the effects of two levels of dietary corn oil on tumorigenesis, semipurified diets containing 5% or 10% corn oil were fed during the promotion stage of a mouse skin carcinogenesis model. Sencar mice were initiated with 10 nmol dimethylbenz[a]anthracene (DMBA) and promoted with either 1 microgram 12-O-tetradecanoylphorbol-13-acetate (TPA) or 40 mg benzoyl peroxide twice weekly for 24 or 52 weeks, respectively. No significant differences in kilocalories of food consumed or body weights were observed between the diet groups during the study. Fatty acid profiles of the epidermal phospholipids reflected dietary fat intake. For example, high levels of linoleate and low levels of arachidonate were found in the phosphatidylcholine fraction from mice fed the 10% corn oil diet compared with 5% corn oil. When the diets were fed during TPA promotion, the papilloma incidence after 11 weeks of treatment for the 5% corn oil group was 77% and 37% for the 10% corn oil group. By 15 weeks of TPA treatment, papilloma incidence between the diet groups was similar, and later, carcinoma incidence and yield were not different between the two groups. For the animals treated with benzoyl peroxide, there was only a slight but not significant difference in papilloma and carcinoma appearance. In parallel studies, ornithine decarboxylase activity, vascular permeability, hyperplasia, and prostaglandin E2 (PGE2) levels were elevated in the epidermis after promoter treatment, but only hyperplasia and PGE2 synthesis tended to reflect the dietary effects on tumor appearance. These data suggest that the quantity of dietary corn oil at the two levels tested, 5% and 10%, altered epidermal phospholipid fatty acid composition and PGE2 levels and had modest effects on the modulation of tumorigenesis in this skin model.

9,10-Dimethyl-1,2-benzanthracene↗

The effect of various dietary fats on skin tumor initiation.

The type of dietary fat has been shown to modulate the initiation stage of mammary tumorigenesis, with saturated fat fed before and/or during carcinogen treatment resulting in increased tumor incidence. This study was designed to determine whether different types of dietary fat alter the initiation stage of skin carcinogenesis by use of the initiation-promotion mouse skin carcinogenesis model. Sencar mice were divided into three groups and maintained on one of the experimental diets. The AIN-76-based diets consisted of 10% total fat with various types of fat: 8.5% menhaden oil plus 1.5% corn oil, 8.5% coconut oil plus 1.5% corn oil, and 10% corn oil. After three weeks mice were initiated with 10 nmol dimethylbenz[a]anthracene (DMBA). Two weeks later, all mice were switched to a diet containing 5% corn oil. Promotion began four weeks after initiation with twice-weekly application of 1 microgram 12-O-tetradecanoylphorbol-13-acetate and continued for 12 weeks. No statistically significant differences in kilocalories of food consumed or body weights were observed between diet groups during the study. The final papilloma incidence, yield, and size were not significantly different among the diet groups. In a parallel study, [3H]DMBA binding to epidermal DNA showed no dietary differences. Unlike the mammary carcinogenesis model, these data suggest that the type of fat fed during DMBA initiation had minimal effects on this stage of skin carcinogenesis.

9,10-Dimethyl-1,2-benzanthracene↗

The effect of dietary lipid on skin tumor promotion by benzoyl peroxide: comparison of fish, coconut and corn oil.

Fish or vegetable oils were fed during the promotion stage of a mouse skin carcinogenesis model in order to investigate the effects of dietary fat on tumor development. Two weeks after initiation with 10 nmol dimethylbenz[a]anthracene, SENCAR mice were divided into five groups and maintained on one of the following semipurified diets containing 10% total fat and varying the type of fat: 8.5% coconut oil (CT)/1.5% corn oil (CO); 1% menhaden oil (MO)/7.5% CT/1.5% CO; 4% MO/4.5% CT/1.5% CO; 8.5% MO/1.5% CO; or 10% CO. Promotion with twice-weekly applications of 40 mg benzoyl peroxide was begun 2 weeks later and continued for 52 weeks. No statistically significant differences in kcal food consumed or body weights were observed between diet groups. Papilloma latency, incidence and yield differed among the diet groups with the group fed the 8.5% CT/1.5% CO diet having the shortest latency and highest papilloma incidence and number. In addition, carcinoma latency and incidence was assessed and the first carcinoma appeared in the group fed 8.5% CT/1.5% CO after 20 weeks of benzoyl peroxide treatment; this group yielded the highest carcinoma incidence throughout the study. In comparison, the group fed the 10% CO diet had the longest latency period, and among the lowest papilloma and carcinoma incidence and fewest tumors. In parallel studies, ornithine decarboxylase activity, vascular permeability and hyperplasia were elevated in the epidermis of benzoyl peroxide-treated mice but the extent of the response did not correlate with the different rates of tumor formation observed among the diet groups. These data indicate that dietary fat modulates tumor promotion by benzoyl peroxide in this skin carcinogenesis model with the predominantly saturated fat diet producing the highest rates of papilloma and carcinogen formation and the polyunsaturated fat diet the lowest.

Animals↗

Psychophysiological parameters of migraine and muscle-contraction headaches.

Previous headache studies have been unable to verify the presumed presence of headache. Attempting to correct this design fault, the present study assessed four psychophysiological measures (frontalis EMG, temporal BVP, temporal and finger skin temperature) and salient subjective measures in 13 migraineurs, eight muscle-contraction headache sufferers, and 13 age-matched normals. All subjects submitted to two 30-minute sessions of quiet monitoring, and for the headache subjects, one of the sessions was headache active. A bogus, but convincing preliminary "assessment" revealed insufficient headache activity in the headache active session, forcing subjects to reschedule that session in the future when a strong headache was present. A parallel manipulation was employed with the normal subjects. A MANOVA failed to discriminate within- or between-group differences on the psychophysiological measures. Self-reported pain was uncorrelated with the psychophysiological indices. These results cast further doubt on the validity of the psychophysiological measures employed in this study, the same ones routinely endorsed by headache researchers and therapists. We discuss problems of recruitment, compliance, and attrition in basic headache research.

Electromyography↗

Effects of antihistamines on phorbol ester tumor promotion and vascular permeability changes.

Substantial evidence suggests that inflammation is an essential component of the phorbol ester tumor promotion stage of multistage carcinogenesis in mouse skin. In order to understand better the significance of this relationship, studies were directed at identifying the principal mediators of the vascular permeability component of inflammation induced by 12-O-tetradecanoylphorbol-13-acetate (TPA). Antihistamines and inhibitors of arachidonic acid metabolism were compared with respect to their anti-inflammatory activity and the correlation of this parameter with their effect on tumor promotion. The H1 histamine receptor antagonist, diphenhydramine, suppressed TPA-induced vascular leakage by 25 and 50% at topical doses of 0.342 mumol (100 micrograms) and 0.856 mumol (250 micrograms) respectively. In initiated mice, these same doses inhibited papilloma development by 40 and 75%. Inhibition of tumors was also observed when diphenhydramine was given orally. The H2 antagonist, cimetidine, which could only be supplied orally, had little effect on either TPA-induced vascular permeability or promotion. The lipoxygenase inhibitor nordihydroguaiaretic acid also suppressed vascular permeability and has been reported to inhibit papilloma development. The cyclooxygenase inhibitor indomethacin, however, has no effect on TPA-induced vascular permeability. Collectively, these data suggest that the increased vascular leakage observed with TPA contributes to tumor development and that this event is mediated by both the H1 histamine receptors and one or more of the lipoxygenase products of arachidonic acid.

9,10-Dimethyl-1,2-benzanthracene↗

Lack of a protective effect of menhaden oil on skin tumor promotion by 12-O-tetradecanoylphorbol-13-acetate.

Fish oil has been shown to have a protective effect in some cancer models. To determine whether fish oil alters skin tumorigenesis, a study was designed using the initiation-promotion mouse skin carcinogenesis model, feeding mice during the promotion stage a constant overall amount of dietary fat (10%) in which the levels of menhaden oil (MO) varied from 0 to 8.5% or corn oil (CO) at 10%. SENCAR mice were initiated with 10 nmol dimethylbenz[a]anthracene. Two weeks later mice were divided into five groups and maintained on one of the following AIN-76 based diets consisting of: 8.5% coconut oil (CT)/1.5% CO (diet A); 1% MO/7.5% CT/1.5% CO (diet B); 4% MO/4.5% CT/1.5% CO (diet C); 8.5% MO/1.5% CO (diet D); or 10% CO (diet E). Two weeks later, promotion with twice weekly applications of 1 micrograms 12-O-tetradecanoylphorbol-13-acetate (TPA) was begun and continued for 24 weeks. No statistically significant differences in kcal food consumed or body wts were observed between diet groups during the study. The final papilloma and carcinoma incidence was not different among the diet groups. However, differences were seen in the rate of papilloma appearance with the group fed diet E (10% CO) being the slowest and diet B being the most rapid. In a parallel study, ornithine decarboxylase activity, a suggested marker of promotion, was greatly elevated in the epidermis of all TPA-treated mice and the effect of diet tended to reflect the different rates of tumor formation observed among the groups. These data indicate that the diets containing fish oil were not protective in the final incidence of tumor formation and suggest that a better understanding of the complex interactions is warranted before recommendations are made to alter the human diet for cancer prevention.

Animals↗

Arachidonic acid metabolism varies with the state of differentiation in density gradient-separated mouse epidermal cells.

Epidermal cells were isolated from adult inbred SENCAR (SSIN) mice and separated by density-gradient centrifugation. The cells were pooled into three fractions shown by previous work to differ in their state of differentiation and proliferative potential. The three fractions were examined for their capacity to metabolize exogenous 14C-arachidonic acid (AA) into prostaglandins (PG) and hydroxyeicosatetraenoic acids (HETE). Cells found in the upper two fractions, which are less dense, have less proliferative potential in vitro, and are more differentiated than cells in the lower more dense fraction, are much more active in producing PG from exogenous AA than are the more dense cells. This was observed in intact cells as well as cells disrupted by freeze-thawing following density separation. The same relationship was found for HETE production in that cytoplasmic preparations from the two fractions containing the less dense cells were much more active in the production of HETE than cytoplasmic preparations from the more dense fraction. The two upper fractions differed little from each other in the production of PG or HETE. These results indicate the presence of higher levels of active cyclooxygenase and lipoxygenases in fractions containing the less dense, more differentiated cells than in the fraction containing the more dense, less differentiated cells which are highly enriched for basal keratinocytes.

Animals↗