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S M Fischer

Publications and source records attributed to S M Fischer.

At least 91 records · Page 5Linked to original sources

Subpopulations of primary adult murine epidermal basal cells sedimented on density gradients.

Epidermal cells were harvested from the dorsal skin of adult mice by trypsinization and were sedimented through continuous density gradients of Percoll, formulated to separate basal cells of different buoyant density. Five fractions from the gradients were characterized with regard to the number of cells present, their viability and morphology and their basal origin. Suprabasal keratinocytes remained primarily at the top of the gradient; basal keratinocytes sedimented throughout. With increasing density, a relative enrichment was observed: (i) for [3H]-thymidine and [3H]-benzo[alpha]pyrene label-retaining (slowly cycling) keratinocytes; (ii) for keratinocytes that could proliferate in vitro in the continuous presence of 0.1 micrograms ml-1 of 12-O-tetradecanoylphorbol-13-acetate; (iii) for cells from untreated as well as initiated epidermis able to proliferate under conditions where calcium induces terminal differentiation; and (iv) for primary in vitro clonogenic keratinocytes from normal epidermis. The relative enrichment for epidermal basal cells having characteristics thought to be associated with immaturity and with the initiation and promotion of skin carcinogenesis suggests that density gradient sedimentation could be used in conjunction with other methods for the eventual purification of epidermal progenitors.

Animals↗

Correlation of phorbol ester promotion in the resistant C57BL/6J mouse with sustained hyperplasia but not ornithine decarboxylase or protein kinase C.

The activation of protein kinase C, induction of ornithine decarboxylase (ODC), and hyperplasia have been suggested to be linked, sequential processes resulting from phorbol ester application to mouse skin. However, evidence is presented indicating that these events are not necessarily linked or dependent on one another and that significant differences exist in these responses between phorbol ester promotion sensitive (SSIN) and resistant (C57BL/6J) mice. The epidermis from SSIN mice treated with a single application of 12-O-tetradecanoylphorbol-13-acetate (TPA) displayed a large induction of ODC and a subsequent extensive hyperplasia. A second TPA treatment at 24 or 48 h after the first did not result in ODC induction (refractory state), and protein kinase C was shown to be down-regulated at these times. By 72 h, however, a responsive state had returned even through protein kinase C remained down-regulated. The epidermis of C57BL/6J responds to a single application of TPA with a level of ODC induction similar to that of the SSIN mice. Protein kinase C was down-regulated by approximately 75% after 24 h and was virtually completely down-regulated at 48 and 72 h (95-97%). In contrast to the above findings for the sensitive mice, however, little, if any, hyperplasia was produced. In addition, while a second TPA treatment at 24 h did not result in ODC induction (refractory state), hyperplasia did occur within 24 to 48 h. When the second TPA application was given 48 h after the first, at a time when protein kinase C was down-regulated, an overinduction of ODC occurred, as well as subsequent hyperplasia. Furthermore, a significant number of papillomas resulted when these increased treatment frequencies, i.e., once a day or every other day, were used to promote dimethylbenz(a)anthracene-initiated C57BL/6J mice. It is concluded that, while hyperplasia remains an apparent requirement for tumor promotion, the ODC induction following an initial TPA treatment is insufficient for or not causally related to this hyperplasia. In addition, subsequent ODC induction, at least in the C57BL/6J mouse, is probably not mediated by protein kinase C.

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Eicosapentaenoic and arachidonic acid: comparison of metabolism and activity in murine epidermal cells.

The biological activity, including metabolism and modulation of ornithine decarboxylase activity and DNA synthesis, of arachidonic acid (AA) and eicosapentaenoic acid (EPA) were compared in epidermal cells from SENCAR mice. Radiolabelled AA and EPA were found to be similarly incorporated into and released from membrane phospholipids of unstimulated cultures. However, when cells were stimulated with the tumor promoter 12-0-tetradecanoylphorbol-13-acetate (TPA), the release of AA was significantly higher than the release of EPA. The extent of metabolism of AA and EPA to prostaglandins was determined in both freeze-thawed cell preparations and in viable cultured cells. In the freeze-thawed preparations, use of AA as a substrate resulted in significantly more PGF than when EPA was used as the substrate. However, more PGE3 was formed than PGE2. PGD levels were the same for either fatty acid precursor. Prostaglandin production was also determined in viable cultured cells since other influences such as phospholipase A2 activity can modify prostaglandin production. Control cultures prelabelled with either AA or EPA produced similar amounts of the respective PGF, PGE, and PGD. However, TPA-stimulated cultures produced significantly higher amounts of each prostaglandin in cultures prelabelled with AA compared to cells prelabelled with EPA. HETE or HEPE production was the same both for cultured cells prelabelled with AA or EPA and for homogenates from uncultured cells incubated directly with the radiolabelled fatty acids. TPA-induced ornithine decarboxylase (ODC) was significantly higher in AA-treated cultures compared to EPA-treated cultures. AA supports DNA synthesis to a greater extent than EPA, either alone or in the presence of TPA.(ABSTRACT TRUNCATED AT 250 WORDS)

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Quantitation of primary in vitro clonogenic keratinocytes from normal adult murine epidermis, following initiation, and during promotion of epidermal tumors.

A quantitative in vitro assay for clonogenic epidermal cells from adult mice has been designed to focus on the cells from normal epidermis that are potential targets for carcinogens. Dorsal epidermal cells were isolated by trypsinization from groups of three to six CD-1 female mice with yields of 1.31 +/- 6.84 X 10(6) (average of n = 7; SD) viable epidermal cells per square centimeter of skin. Suspensions of single epidermal cells were plated at clonal density onto irradiated Swiss 3T3 cells. The cultures were maintained in high calcium SPRD-105 medium designed to support concomitant proliferation and terminal differentiation of keratinocytes from normal as well as carcinogen-exposed mice. Two weeks later, the dishes were fixed and stained with rhodanile blue, and epidermal colonies were counted. The average number of colonies from normal epidermis was 45 +/- 8.5 (n = 11; SD) per 10(4) cells plated for mice 9 to 69 weeks of age. To determine the effects of initiation on the number of clonogenic epidermal cells, groups of mice 8 weeks of age were treated topically with 200 nmol of 7,12-dimethylbenz(a)anthracene or acetone alone. The number of colonies in both treatment groups remained within the control (untreated) range at all intervals from 7 to 61 weeks after initiation. In contrast, the number of clonogenic cells from control as well as initiated epidermis remained elevated at 1 month following multiple in vivo treatments of skin with 12-O-tetradecanoylphorbol-13-acetate (TPA). The increase in the number of clonogens was always greater from initiated epidermis treated with TPA than from control epidermis treated with TPA. These results suggest that an increase in the clonogenic population was a consequence of promotion rather than initiation and are in agreement with a concomitant carcinogenesis experiment confirming the apparent irreversibility of initiation, the veritable absence of tumors in the absence of promotion, and the similarity of the tumor responses regardless of the age of the animal at initiation or the length of the delay interval between initiation and promotion.

9,10-Dimethyl-1,2-benzanthracene↗

Phorbol ester induction of 8-lipoxygenase in inbred SENCAR (SSIN) but not C57BL/6J mice correlated with hyperplasia, edema, and oxidant generation but not ornithine decarboxylase induction.

Several responses suggested to be critical components of phorbol ester tumor promotion were compared in 12-O-tetradecanoylphorbol-13-acetate (TPA) promotion-sensitive SSIN and TPA promotion-resistant C57BL/6J mice. SSIN mice treated topically with 2 micrograms of TPA showed extensive hyperplasia accompanied by edema, measured as a 26% increase in water content of the skin. Only a very slight hyperplasia and 7% increased water content occurred after TPA treatment of C57BL/6J mice. The induction of ornithine decarboxylase was determined to be the same both in vivo and in vitro for SSIN and C57BL/6J mice, which does not correlate with the histological observations. Because hyperplasia and inflammation can be mediated by arachidonic acid metabolites, it was hypothesized that differences in this metabolic pathway would correlate with the histological responses. No significant qualitative or quantitative differences, however, were observed in the profiles of the major cyclooxygenase products between the strains of mice. Prostaglandin E2, the principal prostaglandin, was synthesized at a 3-fold greater level than prostaglandins D2 or F2 alpha in response to TPA. The most abundant lipoxygenase product was 12-hydroxyeicosatetraenoic acid followed by 8-, 15-, and 5-hydroxyeicosatetraenoic acid. 8-Lipoxygenase activity is elevated 24 h after TPA treatment in the SSIN mice by approximately 4-fold; no elevation is seen in C57BL/6J mice. A comparison of the oxidant response to TPA as well as to phospholipase C showed that SSIN epidermal cells generated a higher level, measured by chemiluminescence, than C57BL/6J cells. This suggests that oxidant generation or possibly 8-lipoxygenase activity may be the basis for the sensitivity or resistance to TPA as a hyperplasiogen and as a tumor promoter.

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Reactive oxygen in the tumor promotion stage of skin carcinogenesis.

Exposure of isolated SENCAR mouse epidermal cells to the tumor promoter 12-0-tetradecanoylphorbol-13-acetate (TPA) in vitro resulted in the production of oxidant species detected as chemiluminescence. This oxidant response can be inhibited by superoxide dismutase and copper complexes but not catalase or scavengers of hydroxyl radical or singlet oxygen, suggesting that the oxidant is superoxide anion. Inhibitors of various parts of the arachidonate cascade affect the TPA-induced oxidant response in a manner that corresponds to their effects on in vivo tumor promotion experiments. Agents that inhibit lipoxygenase activity, i.e. nordihydroguaiaretic acid, benoxaprofen, but not agents that are cyclooxygenase inhibitors, i.e. indomethacin, are effective in suppressing the oxidant response to TPA. Phospholipase C but not phospholipase A2 or D produced an oxidant response kinetically similar to that elicited by TPA. The inhibitors of TPA-induced oxidants inhibited the phospholipase C response to the same extent, suggesting that TPA and phospholipase C may produce an oxidant species through a common mechanism, via phospholipid turnover-protein kinase C activation. The relevance of oxidant production to the tumor promotion process is suggested by the ability of exogenous xanthine/xanthine oxidase, a superoxide anion-generating system, to induce ornithine decarboxylase, a characteristic of TPA-treated cells. In addition, oxidant production is significantly lower in cells from the TPA-promotion resistant C57BL/6J mouse. These studies provide further support for a role for reactive oxygens in the tumor promotion process.

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Events associated with mouse skin tumor promotion with respect to arachidonic acid metabolism: a comparison between SENCAR and NMRI mice.

NMRI and SENCAR, two stocks of mice commonly used in multistage skin carcinogenesis studies, were compared with respect to the effects of inhibitors of arachidonic acid metabolism for the following 12-O-tetra-decanoylphorbol-13-acetate (TPA)-elicited events: tumor promotion, DNA synthesis in vivo and in vitro, ornithine decarboxylase induction, and prostaglandin (PG) E2 synthesis. Previous work had shown that the cyclooxygenase inhibitor indomethacin enhanced TPA promotion in SENCAR mice. We report here that over the same dose range (50 to 200 micrograms) indomethacin caused a dose-dependent inhibition of promotion in NMRI mice. Significant reversal of this inhibition was achieved with concomitant application of 10 micrograms PGF2 alpha but not PGE2. DNA synthesis studies showed that low doses of indomethacin and flurbiprofen increased TPA-stimulated DNA synthesis in primary cultures from SENCAR mice; indomethacin suppressed this response in NMRI cultures. In vivo DNA synthesis studies showed the same pattern: indomethacin enhanced TPA-stimulated DNA synthesis in SENCAR mice but inhibited in NMRI mice. Other classes of inhibitors of arachidonate metabolism (i.e., the cyclooxygenase-lipoxygenase inhibitors 5,8,11,14-eicosatetraynoic acid and phenidone and the phospholipase A2 inhibitor dibromoacetophenone) had inhibitory activity in vitro and in vivo in both stocks of mice. Indomethacin was found to inhibit TPA-induced ornithine decarboxylase activity to the same extent in both mice. Indomethacin was also very effective in inhibiting TPA-induced PGE2 synthesis in both stocks of mice. 5,8,11,14-Eicosatetraynoic acid and phenidone were likewise suppressive in both stocks of mice. It is concluded that the NMRI and SENCAR mice respond similarly to TPA with respect to promotion, DNA synthesis, ornithine decarboxylase induction, and PG synthesis. The difference appears to be in the degree of involvement of the lipoxygenase pathway.

5,8,11,14-Eicosatetraynoic Acid↗

A new medium for primary cultures of adult murine epidermal cells: application to experimental carcinogenesis.

A culture medium has been formulated to support the long-term proliferation and differentiation of normal murine epidermal cells in primary cultures. This formulation is based upon MCDB-151 modified by the addition of 1.2 mM Ca2+, 1% fetal bovine serum (FBS) or 0.1% purified bovine serum albumin (BSA), trace elements, and growth supplements. For 4-12 weeks, the cultures demonstrate desmosomes, keratin fibers, basal proliferation, and stratification characteristic of keratinocytes. The addition of 12-O-tetradecanoylphorbol-13-acetate (TPA) resulted in approximately 70% cellular detachment, but with continued treatment, the remaining cells proliferated to confluence and stratified. This culture medium has application to a number of studies related to skin carcinogenesis in the murine model system that have not previously been possible.

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Elevated expression and point mutation of the Ha-ras proto-oncogene in mouse skin tumors promoted by benzoyl peroxide and other promoting agents.

The two-stage skin carcinogenesis model of initiation and promotion in SENCAR mice has been used to examine the effects of various tumor-promoting agents on the expression of the Ha-ras oncogene in early stages of tumorigenesis in vivo. Papillomas were induced in 7,12-dimethylbenz[a]anthracene (DMBA)-initiated SENCAR mouse epidermis by (i) complete promotion with benzoyl peroxide; (ii) complete promotion with 12-O-tetradecanoyl phorbol-13-acetate (TPA); and (iii) two-stage promotion with TPA for 2 weeks followed by mezerein for 9 weeks. Results of Northern blot hybridization analyses show that early papillomas contain significantly elevated levels of Ha-ras polyadenylated [poly(A)+] RNA, irrespective of the type of tumor promotion regimen used. This pattern holds for promoters of the phorbol ester class as well as for the free radical generating agent benzoyl peroxide. Furthermore, digestion of tumor DNA with diagnostic restriction endonucleases demonstrated that 9-week-old papillomas induced by DMBA contained a point mutation in the 61st codon of one allele of the Ha-ras gene. The results represent the earliest stage in the development of a papilloma at which a Ha-ras point mutation has been reported.

9,10-Dimethyl-1,2-benzanthracene↗

Possible dissociation of the phorbol ester-induced oxidant response and tumor promotion in the F1 offspring of SSIN x C57BL/6J mice.

The F1 progeny of a cross between 12-O-tetradecanoyl-phorbol-13-acetate (TPA) tumor promotion-sensitive SSIN mice and TPA promotion-resistant C57BL/6J mice were found to be sensitive to TPA as a tumor promoter. The tumor response was substantial, with an average of 15 papillomas per mouse and a 100% incidence following initiation with 400 nmol dimethylbenz[a]anthracene and promotion with 6.5 nmol (4 micrograms) TPA. To determine whether tumor promotability of the F1 mice correlates with other parameters believed to be associated with TPA responsiveness, oxidant generation, epidermal hyperplasia and edema were compared in the parents and F1 hybrids. The SSIN produced a strong hyperplastic response to TPA, the C57BL/6J a negligible response and the F1 hybrids a moderate response. In the SSIN, 6.5 nmol (4 micrograms) TPA caused an 18% increase in the water content of the skin (edema) while no change was seen for either the C57BL/6J or F1 hybrids. The oxidant response of the F1 hybrids to either TPA or phospholipase C was markedly less than that observed for the SSIN and was similar to the response previously observed for the C57BL/6J mice. These findings suggest that the oxidant response may not be an essential aspect of TPA tumor promotion. It may be related to the edema response, suggesting that at least this aspect of inflammation is not necessary for promotion.

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Characterization of an inbred strain of the SENCAR mouse that is highly sensitive to phorbol esters.

An inbred strain of SENCAR mice was developed that is more sensitive to two-stage skin carcinogenesis protocols than the outbred parental stock. These mice, registered as SSIN/UTSP, were compared to the SENCAR in initiation-promotion protocols using the tumor promoter 12-O-tetradecanoylphorbol-13-acetate (TPA) twice weekly for 22 weeks at dose levels of 0.5, 1.0 and 2.0 micrograms. With 0.5 microgram of TPA, the number of papillomas in the SSIN was 3-fold higher than in the SEN-CAR; the tumor incidence was 100 versus 60%, respectively. Similar, although less dramatic, results were found with 1.0 and 2.0 micrograms of TPA. In two-step promotion protocols using TPA twice weekly for 2 weeks and 2 micrograms mezerein twice weekly for 15 weeks the SSIN produced approximately 50% more tumors than the SENCAR at 0.5 microgram of TPA. At 2 micrograms of TPA the tumor response between the two mice was not significantly different. Epidermal hyperplasia was considerably greater in the SSIN at 0.5 microgram of TPA as was ornithine decarboxylase activity. These TPA-sensitive inbred mice should be useful in investigations on the biochemical and genetic factors involved in skin tumor promotion.

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Effects of anti-promoters and strain of mouse on tumor promoter-induced oxidants in murine epidermal cells.

The induction of oxidant production in mouse epidermal cells by the tumor promoter 12-O-tetradecanoylphorbol-13-acetate (TPA) can be suppressed by many, but not all, known inhibitors of mouse skin tumor promotion. Members of the anti-oxidant category that were tested were ranked in the following order, 7,8-benzoflavone greater than butylated hydroxyanisole greater than ascorbic acid. In the retinoid category, retinoic acid was only moderately effective, while the trimethoxymethylphenyl analog had at least twice the inhibitory activity. Among the six protease inhibitors examined, tosylphenylalanine chloromethylketone and tosyllysine chloromethylketone were effective in diminishing the response while tosylarginine methylester, antipain, leupeptin and soybean trypsin inhibitor were ineffective, suggesting that proteases are probably not involved in the oxidant response. Several agents, trifluoperazine, trisialoganglioside and diolein, that have been shown to suppress TPA activity in other cell systems were also found to suppress the oxidant response. Finally, the extent of the oxidant response was found to correlate with sensitivity to TPA tumor promotion among the three strains of mice tested: SSIn greater than SENCAR greater than C57BL/6J.

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7,8-Benzoflavone: an inhibitor of prostaglandin synthesis and ornithine decarboxylase in murine epidermal cultures.

7,8-Benzoflavone (7,8-BF), over a dose range of 0.1-10 microM, partially inhibited the synthesis of prostaglandin E2 (PGE2) in primary cultures of epidermal cells from SENCAR mice, and completely suppressed the TPA-dependent stimulation of PGE2 synthesis. Under identical conditions 7,8-BF also partially suppressed ornithine decarboxylase (ODC) activity in both unstimulated and TPA stimulated cultures. The finding that 7,8-BF inhibition of TPA-induced ODC can not be overcome by addition of exogenous PGE2 suggests that ODC induction by TPA involves a prostaglandin-independent component.

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Evidence that a slowly cycling subpopulation of adult murine epidermal cells retains carcinogen.

The distribution and persistence of radioactively labeled benzo(a)pyrene [B(a)P] in the skin of adult female SENCAR mice were investigated by autoradiography of epidermal whole mounts and cross-sections at intervals following a single initiating application of 200 nmol of either [3H]B(a)P (2 mCi) or [14C]B(a)P (23 muCi). One day after treatment, the entire thickness of the skin was labeled; the grain density was greatest over hair follicles, sebaceous glands, and interfollicular epidermis. At 1 and 2 weeks, decreases in the nuclear grain density were consistent with the overall pattern of epidermal renewal. One month after treatment, carcinogen label-retaining cells made up approximately 2% of the interfollicular basal cells. They were also present in the hair follicles, approximately 4 and 5% of basal cells in the infundibulum and external root sheath, respectively. They were rare in the germ region and dermal papilla. Carcinogen label-retaining cells were compared with slowly cycling [3H]thymidine label-retaining cells and "maturing" basal cells, two distinct proliferative subsets of adult murine epidermis. Carcinogen label-retaining cells were found to have characteristics of the slowly cycling cells: (a) most of the carcinogen labeled nuclei were found in the central regions of the epidermal proliferative units; (b) treatment of the carcinogen label-retaining cells with 2 micrograms of 12-O-tetradecanoylphorbol-13-acetate elicited labeled mitoses within 1 day, and a general decrease in grain density over basal nuclei. In contrast, maturing basal cells 4 days after a single injection of [3H]thymidine were found at the periphery of the epidermal proliferative units. Within 1 day after treatment with 2 micrograms of 12-O-tetradecanoylphorbol-13-acetate, maturing basal cells were displaced to the suprabasal layers. Double isotope-double emulsion autoradiographs demonstrated doubly labeled cells 1 month after continuous labeling with [3H]thymidine and [14C]B(a)P and provide evidence that the radioactive carcinogen is retained by the slowly cycling [3H]thymidine label-retaining cells. These observations suggest that a slowly cycling population of epidermal cells may be relevant to the initiation phase of two-stage carcinogenesis.

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Phospholipase C mimics tumor promoter-induced chemiluminescence in murine epidermal cells.

Treatment of newborn murine epidermal cells with phospholipase C results in the generation of a chemiluminescence response similar to that previously described for phorbol ester tumor promoters. Based on inhibitor studies, the oxidant, believed to be superoxide anion, is most likely generated from lipoxygenase metabolism of arachidonic acid. The specificity of the response to phospholipase C from C. perfringens and not from B. cereus or phospholipase A2 suggests specific phospholipids are involved. The response observed appears to arise from the phospholipid-protein kinase c model for phorbol ester binding and activity.

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Retinoyl-phorbol-acetate is a complete skin tumor promoter in SENCAR mice.

The semi-synthetic phorbol ester 12-O-retinoyl phorbol 13-acetate (RPA) was tested for activity as a complete tumor promoter, as well as for first or second stage promotion activity, in the skin of SENCAR mice. Unlike in NMRI mice where RPA has been reported to act only as a second stage promoter, in SENCAR mice it has moderate complete promoting activity as well as second stage activity. RPA also induces epidermal hyperplasia and an increase in the number of dark basal keratinocytes.

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Donor specific blood transfusions and successful spousal kidney transplantation.

Donor-specific blood transfusions have improved significantly 1-haplotype living related donor kidney transplant results. We have applied this concept successfully in 2 spousal kidney transplants. This technique may provide an additional source of kidney grafts, especially in developing countries without cadaver kidney transplant programs.

Adult↗