Search PubMed⌕ Search

Biomedical subjects

A Seidel

Publications and source records attributed to A Seidel.

At least 145 records · Page 8Linked to original sources

The role of arginine-vasopressin for pineal melatonin synthesis in the rat: involvement of vasopressinergic receptors.

The endogenously synthesized nonapeptide arginine vasopressin (AVP) is thought to be involved in transduction of photic information to the pineal gland. The enhancement of circulating AVP leads to a suppression of the nocturnal melatonin surge the mechanisms of which are unknown so far. We therefore studied the effect of dDAVP, an AVP analog with antidiuretic but without vasopressor activity, on pineal melatonin synthesis in Sprague-Dawley and AVP-deficient Brattleboro rats. The nocturnal intra-arterial application of dDAVP mimicked the inhibitory effect of AVP on the activity of the rate-limiting enzyme for pineal melatonin synthesis, N-acetyltransferase (NAT), in both rat strains. Furthermore, since the pineal is equipped with receptors for VP4-9 (the major proteolytic AVP fragment) only, the influence of this substance on the gland's metabolic activity was investigated in vitro. Neither this peptide nor AVP alone did not affect NAT activity, but either substance potentiated the norepinephrine-induced enhancement of NAT activity. These results reveal that at least two mechanisms mediate the influence of AVP on pineal melatonin synthesis. The AVP-induced pineal inhibition in vivo is probably due to a receptor-mediated effect on pinealopetal signal transduction. This inhibition masks the potentiating effect of AVP on the pineal gland itself which is delayed by the conversion of AVP to VP4-9. The present results support the idea of a modulatory role of AVP and its metabolites in the generation and maintenance of the circadian melatonin rhythm in mammals.

Animals↗

Effects of LHRH, progesterone, estradiol-17 beta and dexamethasone in vitro on pineal synaptic ribbons and serotonin N-acetyltransferase activity in diestrous rats.

Pineal glands of regularly cycling Sprague Dawley rats (180-220 g) killed on the diestrous morning (between 0900-1000 h) were incubated in appropriate media for six hours with LHRH (8.5 microM), progesterone (3.2 microM), estradiol-17 beta (370 nM) or dexamethasone (250 nM). Pineals incubated in hormone-free medium and unincubated glands served as controls. Six rats were used in each group. After incubation the glands were divided into two parts. One part was used to estimate serotonin N-acetyltransferase (NAT) activity. The other part was processed for electron microscopy to quantify synaptic ribbons (SR). The SR numbers were computed to 20,000 microns 2 area of pineal tissue. The number and distribution pattern of SR were identical in incubated as well as in the unincubated controls. In both these groups the SR located close to the cell membrane were more (23 +/- 1) than those that lay away from it (9 +/- 2). LHRH had no effect on the number of SR located close, to or distant from, the cell membrane. Incubation of pineals with progesterone significantly (p less than or equal to 0.05) depressed the number of SR present close to membranes (23 +/- 1 in controls vs 11 +/- 2 in treated group), total SR (34 +/- 3 in controls vs 21 +/- 2 in treated group) and synaptic fields (26 +/- 2 in controls vs 17 +/- 2 in treated group). Likewise, in the estradiol-17 beta group also membrane-associated SR decreased significantly. The effect of progesterone was more severe than estrogen on the SR possibly due to the differences in the doses used.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Relationship between mutagenicity and DNA adduct formation in mammalian cells for fjord- and bay-region diol-epoxides of polycyclic aromatic hydrocarbons.

Chinese hamster V79 cells were treated with the anti- and syn-diastereomers of the bay- or fjord-region diol-epoxides of four polycyclic aromatic hydrocarbons, namely benzo[a]pyrene (BP), benzo[c]chrysene (BcC), benzo[g]chrysene (BgC) and benzo[c]phenanthrene (BcPh). The frequency of induction of 6-thioguanine-resistant mutations was determined, and the extent of formation of DNA adducts was measured by 32P-postlabelling. When expressed as mutation frequency per nanomoles compound per millilitre incubation medium, this group of chemicals expressed a 160-fold range in potency. In agreement with previous experimental studies, the anti-diol-epoxide of BcC was highly mutagenic, inducing in excess of 3 x 10(4) mutations/10(6) cells per nmol compound/ml. The mutagenic activities of the anti- and syn-diol-epoxides of BP were 10- and 100-fold lower, respectively. Both diol-epoxides of BgC, the syn-BcC and the anti-BcPh derivatives were also highly mutagenic, and only the syn-BcPh diol-epoxide was less mutagenic than the anti-diol-epoxide of BP. Determination of the levels of DNA adducts formed by the diol-epoxides indicated that the most mutagenic compounds were the most DNA reactive, although the fjord-region diol-epoxides gave rise to more complex patterns of adducts than those of the BP diol-epoxides. When the mutagenicity results were expressed as mutations per femtomoles total adducts formed, all compounds showed similar activities. Thus the potent mutagenicity of the fjord region diol-epoxides appears to be due to the high frequency with which they form DNA adducts in V79 cells, rather than to formation of adducts with greater mutagenic potential.

Animals↗

Regiospecific oxidation of polycyclic aromatic dihydrodiols by rat liver dihydrodiol dehydrogenase.

Rat liver dihydrodiol dehydrogenase (DDH, E.C. 1.3.1.20) has recently been shown to oxidize the highly carcinogenic benz[a]anthracene-3,4- dihydrodiol in an NADP(+)-dependent reaction to its corresponding catechol. The present study is a systematic investigation of the substrate specificity of the purified enzyme towards synthetic trans-dihydrodiol metabolites of phenanthrene, benz[a]anthracene, chrysene, dibenz[a, h]anthracene and benzo[a]pyrene. DDH exhibited a remarkable regiospecificity of enzymatic catalysis with regard to the site of the dihydrodiol moiety of the parent hydrocarbon. M-region- and, with lower efficiency, bay-region dihydrodiols were found to be good substrates of the enzyme with maximal velocities between 20-80 nmol/min per mg enzyme and Km values in the micromolar range. K-region dihydrodiols were not accepted as substrates. Dihydrodiols situated at the terminal ring of an anthracene-type structure such as benz[a]anthracene-8,9-dihydrodiol as well as the corresponding dihydrodiol epoxides were also not oxidized by DDH at measurable rates. The results provide evidence for a detoxifying role of DDH in the metabolism of the chemical carcinogens benz[a]anthracene, chrysene and dibenz[a, h]anthracene.

Alcohol Oxidoreductases↗

Cytotoxic effects of quartz and chrysotile asbestos: in vitro interspecies comparison with alveolar macrophages.

Cytotoxic effects of DQ12 quartz and chrysotile asbestos on alveolar macrophages of different animal species were compared in vitro. The type of cell reaction toward the cytotoxic dusts was always the same: a loss of cell viability (trypan blue dye exclusion test) was accompanied by the release of cytoplasmic and lysosomal enzymes. The extent of cellular destruction depended upon the amount of dust applied. In the range of 50-100 micrograms/ml quartz or chrysotile asbestos, species-specific variations were observed in the sensitivity of the cells. At this concentration alveolar macrophages of dogs, monkeys, and human patients were damaged to a greater extent than the cells from rats and cattle. Simultaneous incubation of the cells with quartz and L-alpha-dipalmitoyl lecithin resulted in a reduction of the cytotoxic quartz effect. The extent of the protective effect varied according to the species. In the case of chrysotile asbestos no reduction of the fibers cytotoxicity was observed in the presence of L-alpha-dipalmitoyl lecithin.

Acetylglucosaminidase↗

Attenuated rise of 1,25 (OH)2 vitamin D3 in response to parathyroid hormone in patients with incipient renal failure.

Despite elevated parathyroid hormone (PTH) levels, low normal or diminished serum 1,25(OH)2D3 concentrations are found in patients with incipient renal failure. To further assess (indirectly) the reserve capacity of renal production of 1,25(OH)2D3 we studied 9 patients with incipient or moderate renal failure (inulin clearance 31-68ml/min/1.73 m2) and 9 controls, using a novel stimulation test. We measured 1,25 (OH)2D3 levels, free 1,25(OH)2D3 index, cAMP excretion, calciuria and phosphaturia before and after infusion of 2 x 400 U of human (h) PTH (1-38). Baseline 1,25(OH)2D3 levels were not significantly different in patients (42.5 pg/ml, 21.6-51.1) compared with controls (45.0 pg/ml, 37.4-67.3). After infusion of hPTH(1-38), however, median increase in 1,25(OH)2D3 was only +25% versus +86% in controls, despite a greater proportional increase in cAMP/GF ratio. The data suggest subnormal stimulation of renal 1,25(OH)2D3 production in response to exogenous PTH in most patients with incipient renal failure. This may reflect partial exhaustion of biosynthetic reserve capacity.

Adult↗

Do limited changes in phosphate intake modulate 1,25(OH)2D3 levels in early renal failure?

A high dietary phosphate load relative to GFR is thought to explain, at least in part, diminished renal 1-alpha hydroxylase activity in early renal failure (RF). To assess the role of dietary phosphate/GFR ratio in more detail, we examined the response of 1,25(OH)2D3 concentration to a controlled isolated reduction of dietary phosphate intake for up to 10 days with no change of Ca, Na and energy intake. We studied 7 healthy controls (2 male, 5 female, median age 45 years) and 6 non-nephrotic patients with early renal failure (RF) (3 males, 3 females, median age 55 years; median Cin 60.5ml/min/1.73 m2; 41-69). During an initial 3-day period of controlled diet with usual phosphate intake no difference of UVPi (median 27.6 mmol/day, 18.9-43.8) was found between controls and RF. A diet with 15 mmol Pi/day (confirmed by duplicate meal analysis) significantly reduced median UVPi (controls: 27.7 to 11.9 mmol/d; RF 27.4 to 14.1 mmol/d) with no change of median UVCa. Median day to day variation of 1,25(OH)2D3 levels (by RIA) in controls was 15.4%. Lowering dietary phosphate intake did not significantly change median 1,25(OH)2D3 levels in controls (45.7 vs. 38.3 pg/ml) and patients with RF, respectively (23.5 vs. 19.1 pg/ml). No changes of intact iPTH values were found. The experiment had a 68% power to detect a 15% change and a 99% power to detect a 30% change at a significance level of p less than 0.05.(ABSTRACT TRUNCATED AT 250 WORDS)

Calcitriol↗

No differences in pineal synaptic ribbon and spherule numbers in different stocks and strains of laboratory rats.

Previous studies have shown that the pineal glands of different stocks and strains of laboratory rats have different melatonin-forming capacities. In the present investigation a widely studied morphological parameter of the pineal, i.e. synaptic ribbon (SR) and synaptic spherule (SS) numbers, was explored in 6 different stocks and strains of laboratory rats, viz.:Han:WIST (albino), LEW/Han (albino), DA/Han (agouti), BN/Han (dark brown), LE/Han (black hooded) and (LEW x BN)/F1 (black with white belly). The rats were maintained under the usual laboratory conditions (lights on from 06.00-18.00 h) for 3 weeks and killed between 10.00-12.00 h, when they were 6 weeks old. The pineals were rapidly excised and processed for transmission electron microscopy. The morphology, distribution (in singles or groups, distant from, or near cell membrane etc.) and number of SR and SS per 20,000 microns2 area of pineal tissue were similar in all groups of rats studied. It is concluded that, in contrast to pineal gland size and melatonin synthesis, SR number is a fairly constant pineal parameter in different stocks and strains of laboratory rats and independent of pigmentation.

Animals↗

A possible role for cyclic guanosine monophosphate in the rat pineal gland.

Adrenergic stimulation of pinealocytes induces an increase of both cyclic adenosine monophosphate (cAMP) and cyclic guanosine monophosphate (cGMP). However, for cGMP no biological effects have been demonstrated so far. Therefore we tested the effects of the analog 8-bromo-cGMP on synaptic ribbon numbers and on melatonin synthesis as reflected by N-acetyltransferase (NAT) activity in the rat pineal gland in vitro. Incubation for 6 h with 8-bromo-cGMP did not change the activity of serotonin NAT but it increased the number of synaptic ribbons. These results indicate that cGMP is involved as a second messenger in the regulation of synaptic ribbon numbers in the rat pineal gland.

Acetyltransferases↗

Synaptic ribbons of the rat pineal gland: responses to in-vivo and in-vitro treatment with inhibitors of protein synthesis.

To elucidate the role of protein synthesis in the nocturnal increase of synaptic ribbons in the rat pineal gland, actinomycin-D, which inhibits transcription, and cycloheximide, an inhibitor of translation, were used. To assure that the drugs were effective and to relate morphological changes to pineal biosynthetic phenomena, the activity of N-acetyltransferase and levels of pineal indoleamine were measured. Results of in-vivo, short-term and long-term treatment with either drug suggest that transcription of proteins related to synaptic ribbon formation occurs during the first half of the light phase, whereas translation takes place during the first few hours of the dark phase. In contrast, proteins involved in enhanced melatonin synthesis are transcribed and translated during the first few hours of the dark phase. In vitro, preincubation with inhibitors of protein synthesis abolished the increase in the numbers of synaptic ribbons after stimulation with dibutyryl-adenosine-cyclic-monophosphate, indicating that the results of the in-vivo experiments are due to an interaction of the drugs with the pineal gland itself. The present study shows that, although in the rat pineal enhanced melatonin synthesis and increased numbers of synaptic ribbons occur at the same time, transcription of proteins involved in both rhythms is temporally separated.

Acetyltransferases↗

The pineal complex in Roman high avoidance and Roman low avoidance rats.

Previous studies have shown that the pineal gland of Roman high avoidance (RHA/Verh) rats is larger than that of Roman low avoidance rats (RLA/Verh). In the present study measurement of enzyme activities (serotonin-N-acetyl-transferase, hydroxyindole-O-methyltransferase) revealed that pineals of RHA/Verh rats are twice as active in melatonin production than pineals of RLA/Verh rats. Indoleamine content was also higher in RHA/Verh rats, whereas noradrenaline content was the same in both lines. When values were expressed per mg protein, these differences disappeared except for N-acetyl-serotonin and noradrenaline which were higher or lower in RHA/Verh rats, respectively. Both lines had higher serum levels of melatonin during the dark phase than during the light phase. However, RHA/Verh rats had increased serum levels as compared to RLA/Verh rats during both day and night. Morphometric analysis of the deep and superficial part of the pineal complex revealed, that the volumes of both parts are enlarged in RHA/Verh rats. Electron microscopic studies of pineals collected during day- and nighttime showed higher numbers of synaptic ribbons per unit area in pineals of RHA/Verh rats. In pineals collected during June synaptic ribbons displayed a day/night rhythm in RHA/Verh rats only, whereas in glands of both lines collected during November no daily changes were found. These results show that closely related but divergently selected rat lines may differ in pineal ultrastructure and pineal function.

Acetylserotonin O-Methyltransferase↗

Metabolism of 3-hydroxychrysene by rat liver microsomal preparations.

3-Hydroxychrysene, a metabolite of the polycyclic aromatic hydrocarbon (PAH) chrysene, was metabolised by rat liver microsomal preparations obtained from Arochlor 1254-pretreated rats. Eight major metabolites were isolated by high performance liquid chromatography and characterised by u.v. spectroscopy and a variety of mass spectrometric techniques. The metabolites were unambiguously identified as 9-hydroxy-trans-1,2-dihydroxy-1,2-dihydrochrysene and 9-hydroxy-r-1,t-2,t-3,c-4-tetrahydroxy-1,2,3,4-tetrahydrochrysene and tentatively identified as 3-hydroxy-trans-5,6-dihydroxy-5,6-dihydrochrysene (since chrysene is a symmetrical molecule the 3- and 9-positions are equivalent), 9-hydroxy-trans-3,4-dihydroxy-3,4-dihydrochrysene, 1,2,3-trihydroxy-1,2,3,4-tetrahydrochrysene, an oxidised phenol and two diphenols. These results indicate that 3-hydroxychrysene can be further metabolised via a number of different pathways including those involving the formation of phenol- and triol-epoxides.

Animals↗

Separation by carrier-free electrophoresis of subpopulations of bovine alveolar macrophages.

Carrier-free electrophoresis was used to separate subpopulations of bovine alveolar macrophages according to their electrical surface charges. The electrophoretic mobility of the macrophages changed significantly as a function of the time of cultivation in vitro. After 20 h, three subgroups were identified which differed in their specific contents of lysosomal hydrolases, alpha-naphthyl acetate esterase, and alkaline phosphodiesterase. By comparing the findings with results from the literature it was concluded that the subgroups correspond to different stages of maturation and that the fraction moving fastest may be the most mature fraction. The results were not influenced by phagocytosis and the presence or absence of Ca2+.

Animals↗

Dynamics of central nervous activation during motor imagination.

Central nervous processes of sensorimotor and behaviour control are prerequisites of skills and motor performance. Eight students (Ss) in sports were tested during motor imagination. They were requested to imagine their own movements when swimming over a distance of 100 m (sitting in a resting position, without any real or imitated movements). Electroencephalograms (EEG), heart rate (HR), skin conductance (SC), and respiration rate (RR) were recorded before, during and after one series of 3 periods of mental training (MT). HR, RR and SC increased during MT. The highest level of SC can be found at the beginning of the first period of imagination. Mean alpha-frequency of the EEG over the left occipital and precentral area in all Ss was higher during MT. The degree of these changes varied during the 3 imagination periods.

Brain↗

The initiator tRNA acceptance assay as a short-term test for carcinogens. 6. Results with 78 polycyclic aromatic compounds.

A total of 78 polycyclic aromatic compounds (PAH), including pure hydrocarbons, PAH metabolites, aromatic amines and nitroarenes, were tested in the initiator tRNA acceptance assay (tR assay) for carcinogens. Among the pure hydrocarbons, all strong carcinogens were highly active in the tR assay. Some weak carcinogens showed moderate positive responses, others as well as all possible non-carcinogens were inactive. Various PAH metabolites, including phenols, dihydrodiols, arene oxides, dihydrodiol epoxides, quinones and benzylic sulfate esters, were positive as well. Strikingly, however, their effects rarely reached the levels observed with the strong carcinogens among the pure hydrocarbons. Moreover, the correlation with carcinogenicity was less clear, partially due to limitations in the available carcinogenicity data. The activities in the tR assay were also compared with the mutagenicity in Salmonella typhimurium. No appreciable correlation was observed. For example, trans-9,10-dihydroxy-9,10-dihydrobenzo[c]chrysene, in the absence of a mammalian metabolic system, was highly active in the tR assay, but non-mutagenic. Upon addition of rat liver enzymes, the reverse result was obtained. syn-Benzo[c]chrysene-9,10-dihydrodiol-11,12-oxide, on the other hand, was a potent direct mutagen, but required the presence of liver microsomes for a positive response in the tR assay. Thus, the metabolic basis for these two activities is different, and not yet understood for the tR assay. The partial correlations in the tR assay and in the Salmonella mutagenicity assay with carcinogenicity, and the pronounced discrepancies between these in vitro tests, may suggest that they detect different mechanisms involved in carcinogenicity. However, the tR assay was less predictive for the carcinogenicity of PAHs as compared to the previously investigated N-nitroso compounds and mycotoxins.

Carcinogenicity Tests↗

Sulfotransferase-mediated chlorination of 1-hydroxymethylpyrene to a mutagen capable of penetrating indicator cells.

Methylated polycyclic aromatic hydrocarbons are common in the human environment. Many of them are stronger carcinogens than their purely aromatic congeners. They may be metabolized to benzylic alcohols. We report here on biochemical and toxicological characteristics of 1-hydroxymethylpyrene (HMP), a typical representative of this class of compounds. Rat liver cytosol, fortified with 3'-phosphoadenosine-5'-phosphosulfate, converted HMP into its sulfate ester (HMPS), HMPS bound covalently to isolated DNA. In physiological buffer at 37 degrees C, HMPS had a half-life of 2 min, the major decomposition product being HMP. Thus, cyclic activation is possible. When Cl- anions were present at physiological concentrations, an additional reaction product of HMPS, 1-chloromethylpyrene (ClMP), could be identified on the basis of its chromatographic properties and its mass spectrum, using the authentic standard for comparison. ClMP was shorter-lived in buffer than HMPS. ClMP reacted with DNA, the adduct pattern in the 32P-postlabeling analysis being similar, or identical, to that of HMPS. ClMP proved to be a very potent mutagen in Salmonella typhimurium, whereas HMPS, and HMP in the presence of a sulfate-conjugating system, showed strong mutagenicity only when Cl- or Br- ions were present in the exposure buffer. It is concluded that HMPS is capable of reacting with DNA, but is hampered in its distribution by membrane barriers.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Genetically engineered V79 Chinese hamster cells metabolically activate the cytostatic drugs cyclophosphamide and ifosfamide.

V79 cells, genetically engineered to express active cytochromes P450IIB1 and P450IA1, were used to study the cytotoxicity and mutagenicity of cyclophosphamide and ifosfamide. Cyclophosphamide, tested up to a concentration of 2 mM, was not cytotoxic in V79 nor in the P450IA1-expressing V79-derived cell line XEM2. Pronounced cytotoxicity was, however, observed in the P450IIB1-expressing V79-derived cell line SD1. Induction of gene mutations (acquisition of 6-thioguanine resistance) was observed in SD1 cells as well, but the effects were weak. Ifosfamide was inactive in V79 cells, but was cytotoxic in SD1 cells. Ifosfamide mustard, an active metabolite of ifosfamide, was equally cytotoxic and showed similar mutagenic effects in SD1 and parental V79 cells. The results indicate that cyclophosphamide and ifosfamide are metabolically activated by cytochrome P450IIB1. In contrast, cytochrome P450IA1 was not capable of activating cyclophosphamide. Thus, V79-derived cell lines defined for their expression of a specific form of cytochrome P-450 can be used as diagnostic tools to identify the cytochrome P-450 that is responsible for the metabolic activation of drugs.

Animals↗