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T Wolff

Publications and source records attributed to T Wolff.

At least 55 records · Page 3Linked to original sources

Steroidal drug cyproterone acetate is activated to DNA-binding metabolites by sulfonation.

The antiandrogenic and gestagenic steroid cyproterone acetate (CPA) has been widely used in human therapy. There is currently a debate about the safety of CPA, since it proved to be genotoxic in rat liver and human hepatocytes [I. Neumann et al., Carcinogenesis (Lond.), 13: 373-378, 1992, J. Topinka et al., Carcinogenesis (Lond.), 14: 423-427, 1993, L. R. Schwarz et al., Biological Reactive Intermediates: V. Basic Mechanistic Research in Toxicology and Human Risk Assessment. pp. 243-251, 1996; A. Martelli et al., Carcinogenesis (Lond.), 16: 1265-1269, 1995]. Little is known about the metabolic pathways of activation of CPA to genotoxic metabolites. Using rat hepatocytes and subcellular fractions of female rat liver, we have examined whether sulfoconjugation plays an essential role in the activation of CPA to DNA-binding metabolites which are detectable with 32P-postlabeling. Incubation of hepatocyte cultures with 30 microM CPA for 6 h caused the formation of several DNA adducts; the total adduct level amounted to about 12,400 adducts/10(9) nucleotides. When the cells were incubated in sulfate-free medium to prevent the synthesis of the cosubstrate of sulfonation, 3'-phosphoadenosine-5'-phosphosulfate (PAPS), formation of all CPA-DNA adducts was greatly reduced, amounting to only 5% of that determined in the presence of sulfate (810 microM). Activation of CPA is likely to be catalyzed by hydroxysteroid sulfotransferase(s), because the specific substrate dehydroepiandrosterone almost completely inhibited DNA-binding of CPA. Our assumption that sulfonation plays a decisive role in the bioactivation of CPA is further supported by the results obtained with an in vitro system consisting of calf thymus DNA, various subcellular liver fractions, and the cofactor PAPS, NADPH, or NADH. Significant DNA binding only occurred when cytosol and both PAPS and the reduced pyridine nucleotides were present. The DNA adduct spot obtained was chromatographically identical to the adduct spot A detected in isolated liver cells, suggesting that the CPA-DNA adduct formed in vivo and in vitro is identical. Cytosol is known to contain not only sulfotransferases but also reductases. Thus, the requirement for NADPH or NADH suggests that in addition to sulfotransferase(s), reductases are involved in the activation of CPA. We propose that bioactivation of CPA involves reduction of the keto group at C-3 followed by sulfonation of the hydroxysteroid. The resulting sulfoconjugate is most likely unstable and supposed to generate a reactive carbonium ion.

Animals↗

Effect of sodium nitroprusside on complement activation induced by cardiopulmonary bypass: a clinical and experimental study.

Complement activation and leukocyte stimulation were prospectively studied during and after cardiopulmonary bypass in 16 children receiving sodium nitroprusside--a nitrovasodilator releasing nitric oxide--for vasodilation during the cooling and rewarming periods of extracorporeal circulation. Results were compared with those in 29 patients who were not treated with sodium nitroprusside during the operation. Patients treated with sodium nitroprusside had significantly less C3 conversion during cardiopulmonary bypass as measured by the ratio C3d/C3 (p <0.05) and significantly less C5a liberation immediately after cardiopulmonary bypass (p < 0.005) than patients not treated with sodium nitroprusside. C4 was not overtly consumed in our series. Leukocyte count during the rewarming period of cardiopulmonary bypass, but not leukocyte elastase release during cardiopulmonary bypass, was significantly reduced in patients treated with sodium nitroprusside (p <0.05). In vitro experiments were conducted to analyze the effect of sodium nitroprusside on complement hemolytic activity initiated by the classic and the alternate pathways and on zymosan-induced C3 conversion by the activation of the alternate pathway. The in vitro experiments clearly demonstrate inhibition of complement hemolytic activity by sodium nitroprusside in the sera tested. The 50% inhibitory concentration of sodium nitroprusside on the available complement hemolytic activity was less through the alternate pathway than through the classic one (4.2 +/- 0.8 mmol/L and 14.0 +/- 2.88 mmol/L, respectively). The decrease of complement hemolytic activity measured was dose-dependent and was enhanced by the sodium nitroprusside preincubation of the sera tested. This effect was related to the duration of preincubation. Sodium nitroprusside photodegradation (enhancing nitric oxide release) increased the anticomplementary effect of the drug, reducing the 50% inhibitory concentration on complement hemolytic activity to 0.24 to 0.02 mmol/L for the alternate pathway and 2.74 o 0.3 mmol/L for the classic pathway. the zymosan-induced C3 conversion was inhibited by sodium nitroprusside. Nitroglycerin and isosorbide dinitrate (other nitric oxide donors) had in vitro effects on complement hemolytic activity similar to those of nonphotodegraded sodium nitroprusside at similar concentrations (1 mmol/L). Our results suggest that sodium nitroprusside, both in vitro and in vivo, has an inhibiting effect on complement activation initiated by both classic and alternate pathways and that this effect is mediated by nitric oxide release from sodium nitroprusside. This is the first report on the anticomplementary effect of sodium nitroprusside by nitric oxide release.

Cardiopulmonary Bypass↗

Concentrations of morphine and morphine metabolites in CSF and plasma during continuous subcutaneous morphine administration in cancer pain patients.

Plasma and cerebrospinal fluid (CSF) steady-state concentrations (Css) of morphine (M) and the main metabolites morphine-3-glucuronide (M3G) and morphine-6-glucuronide (M6G), were determined by high performance liquid chromatography (HPLC) in 21 cancer patients treated with chronic subcutaneous morphine infusion. There was a moderate, but statistically significant correlation between the daily dose of morphine and the concentrations of morphine, M3G and M6G in CSF. A poorer correlation to concentrations were seen in plasma. The mean +/- SEM CSF/plasma morphine concentration ratio was 0.36 +/- 0.07. In plasma and CSF, the mean steady state concentration of M3G but not M6G substantially exceeded that of morphine where the mean CSF M/M3G/M6G ratio was 1:15:0.5 (molar basis), and the mean plasma ratio was M/M3G/M6G 1:31:3 (molar basis). The mean M3G and M6G concentrations in CSF were approximately 8 and 10% of those found in plasma, but there was a wide interindividual variation. Plasma concentrations of both morphine glucuronides were positively correlated to serum creatinine. Neither pain intensity, evaluated by visual analogue scale (VAS), nor side effects showed any relationship to the CSF M3G concentrations, M3G/M or the M3G/M6G ratios. We conclude that during steady state subcutaneous administration of morphine, there is a large interindividual variation in plasma morphine with poor relationship to the daily administered dose. In CSF this correlation was more evident. Plasma and CSF concentrations of M3G and CSF concentrations of M6G correlated with administered morphine dose. There was an accumulation of both morphine glucuronides in patients with elevated serum creatinine. Measurements of morphine, M3G and M6G in CSF did not show any overt relationship to analgesia or side effects.

Aged↗

Cyproterone acetate is an integral part of hepatic DNA adducts induced by this steroidal drug.

We have recently shown that cyproterone acetate (CPA), an active component of some antiandrogenic drugs, induces the formation of DNA adducts detectable by the 32P-DNA postlabelling technique in rat liver. The postlabelling technique, however, does not provide evidence for the chemical nature of the adducts observed. To ascertain whether the CPA-induced adducts do contain CPA, we have incubated tritiated CPA with cultured hepatocytes from female rats, digested the DNA to 3'-monophosphonucleosides, extracted the DNA adducts formed into butanol and phosphorylated the adducts in the extract with unlabelled ATP. One major and one minor 3H-labelled adduct spot were detectable on the TLC chromatograms. The spots appeared at positions identical to those observed in the 32P-postlabelling experiments with unlabelled CPA. Furthermore, the ratio of 3H activity for the major versus the minor adduct spot was 11.9 +/- 1.8, which agreed with the corresponding ratio for the 32P activities, which was 13.2 +/- 3.5. These findings indicate that the CPA-induced DNA adducts, which we have previously detected by 32P-postlabelling do contain CPA or CPA metabolites.

Androgen Antagonists↗

Interaction cloning of NS1-I, a human protein that binds to the nonstructural NS1 proteins of influenza A and B viruses.

The yeast interaction trap system was used to identify, NS1-I (for NS1 interactor), which is a human protein that binds to the nonstructural NS1 protein of the influenza A virus. NS1-I is a human homolog of the porcine 17beta-estradiol dehydrogenase precursor protein, to which it is 84% identical. We detected only one NS1-I mRNA species, of about 3.0 kb, in HeLa cells, and the NS1-I cDNA was found to have a coding capacity for a 79.6-kDa protein. However, immunoblot analysis detected predominantly a 55-kDa protein in human cells, suggesting that NS1-I, like the porcine 17beta-estradiol dehydrogenase, is posttranslationally processed. Using an in vitro coprecipitation assay, we showed that NS1-I interacts with NS1 proteins from extracts of cells infected with five different influenza A virus strains as well as with the NS1 of an influenza B virus. The fact that influenza A and influenza B virus NS1 proteins bind to NS1-I suggests that this cellular protein plays a role in the influenza virus life cycle.

Amino Acid Sequence↗

2-Chloroacetophenone is an effective glutathione depletor in isolated rat hepatocytes.

The glutathione (GSH) depleting effect of 2-chloroacetophenone (CN) was studied in freshly isolated rat hepatocytes. CN proved to be more effective in depleting GSH than diethylmaleate, phorone or styrene oxide. The reaction between GSH and CN followed a 1:1 stoichiometry, allowing adjustment of cellular GSH concentrations at distinct levels. After incubating cells (8 mg protein/ml) with 200 mumol CN/l for 5 min, GSH depletion was almost complete without signs of cytotoxicity. At 300 mumol/l CN, GSH depletion persisted, and cytotoxicity occurred after 30 min. Activities of cytochrome P450 dependent enzymes, even at concentrations up to 500 mumol CN/l, were only marginally affected. Therefore, CN is of particular value for in vitro studies at decreased availability of GSH.

Animals↗

Mutational analysis of human U6 RNA: stabilizing the intramolecular helix blocks the spliceosomal assembly pathway.

U6 RNA undergoes several conformational transitions during the spliceosome cycle: after the interaction with U4, the singular form of U6 is converted into the U4-U6 base-paired form, and within the spliceosome, the U4-U6 duplex isomerizes into the active U6-U2 conformation. The secondary structure of the singular form contains an extended 3' stem-loop, the upper part of which (intramolecular helix) most likely reforms in the spliceosome. We have previously shown in the mammalian splicing complementation system that the loop and the three adjacent, highly conserved base pairs of the intramolecular helix function during both the U4-U6 interaction and the first step of splicing. Here we demonstrate that the balanced stability of the lower, less conserved part of the 3' stem-loop is also critical for U4-U6 interaction; however, no specific splicing function could be detected in this region. The analysis of the heterologous interaction between mammalian U4 snRNP and yeast U6 RNA derivatives suggests that there are--in addition to the 3' loop and the stability of the intramolecular helix--specific sequence determinants in the 3' terminal domain of U6 that are important for efficient U4/U6 snRNP assembly.

Base Composition↗

phyllopod functions in the fate determination of a subset of photoreceptors in Drosophila.

phyllopod (phyl) encodes a novel protein required for fate determination of photoreceptors R1, R6, and R7, the last three photoreceptors to be recruited into the ommatidia of the developing Drosophila eye. Genetic data suggests that phyl acts downstream of Ras1, raf, and yan to promote neuronal differentiation in this subset of photoreceptors. Ectopic expression of phyl in the cone cell precursors mimics the effect of ectopic activation of Ras1, suggesting that phyl expression is regulated by Ras1. phyl is also required for embryonic nervous system and sensory bristle development.

Amino Acid Sequence↗

Accumulation and persistence of DNA adducts of the synthetic steroid cyproterone acetate in rat liver.

Cyproterone acetate (CPA) is a synthetic steroid which is widely used in antiandrogenic and gestagenic drugs. We have recently shown that CPA induces DNA adducts in cultured rat hepatocytes and in rat liver (1). In the present investigation, we studied the persistence and accumulation of CPA-derived DNA adducts in the liver of rats using the 32P-postlabeling technique. To study the persistence of CPA-DNA adducts, rats were treated with a single oral dose of 10 (female rats) or 100 mg CPA/kg body wt (male rats). Four DNA adducts were detected in the liver of both gender. In female rats, maximal total DNA adduct levels of 3.40 +/- 0.04 adducts/10(6) nucleotides were observed after 1 week. Eleven weeks later, 40% of the adducts determined after 1 week were still detectable. In male rats, maximal hepatic DNA adduct levels of approximately 98 +/- 3/10(9) nucleotides were attained after 2 weeks. The adduct level decreased during the following 4 weeks to approximately 40% of the earlier observed maximal level. To study the accumulation of the CPA-DNA adducts, rats were treated daily with a low oral dose of 50 micrograms CPA/kg body wt for 42 days. During this treatment period, the level of the four adducts increased continuously from approximately 10 to approximately 380 adducts/10(9) nucleotides in the liver of female rats. DNA adducts were formed at much lower levels in male rats; only one type of DNA adduct was detectable, the level of which increased to approximately 6 adducts/10(9) nucleotides after 42 days. In conclusion, CPA induces DNA adducts in rat liver; binding of the steroid is much higher in female compared to male rats. The CPA-DNA adducts show a high persistence and as a consequence of their long half life, CPA-DNA adducts accumulate significantly in the liver of rats.

Androgen Antagonists↗

DNA-damaging activity of the cyproterone acetate analogues chlormadinone acetate and megestrol acetate in rat liver.

The synthetic progestin cyproterone acetate (CPA) has been recently shown to elicit DNA repair synthesis in cultured rat hepatocytes and to form adducts with rat hepatocyte DNA in vitro and in vivo. In the present study we have examined the genotoxic potential of the structural analogues of CPA, chlormadinone acetate (CMA) and megestrol acetate (MGA) in rat liver cells. CPA strongly induced DNA repair synthesis in hepatocyte cultures from females but not from males. In contrast, CMA and MGA (2-50 microM) did not detectably increase repair synthesis in cultured hepatocytes from either gender. CMA and MGA, however, caused the formation of DNA adducts detectable by the 32P-postlabelling technique. At a concentration of 30 microM, between 30 and 50 adducts/10(9) nucleotides were found with MGA and CMA in cultured hepatocytes of female rats, and between 5 and 20 adducts/10(9) nucleotides were found in hepatocytes of males. By comparison, 30 microM CPA has been found to produce 1670 adducts/10(9) nucleotides in hepatocytes from female rats. CMA and MGA also induced low levels of DNA adducts in vivo. When female rats were treated with 100 mg/kg of CMA or MGA per os, the adduct levels were 2 and 19 adducts/10(9) nucleotides respectively. The results indicate that both CMA and MGA show some genotoxicity in rat liver cells, which is, however, much lower than that for CPA. Our findings further suggest that the high genotoxicity of CPA is associated with the presence of the 1,2 alpha-methylene group, which is absent in CMA and MGA.

Animals↗

Decay kinetics of N,N,N',N'-tetramethylbenzidine photocations in frozen micellar solution of cetyltrimethylammonium bromide.

After UV irradiation of rapidly frozen solutions of N,N,N',N'-tetramethylbenzidine (TMB) in dilute aqueous micellar cetyltrimethylammonium bromide at 80 K, the ESR signal corresponding to the TMB+ cation was detected indicating photoionization. This signal was monitored as a function of time at various temperatures between 80 K and 260 K. On a timescale of a few days the signal decayed to a plateau value that was stable for months. Two distinct second-order processes for the decay from the initial to the plateau value were observed: one prevailing at low temperatures with an activation energy of 0.6 kJ/mol, and one prevailing at T > 220 K with an activation energy of 13 kJ/mol. By means of spin probe investigations the latter process was shown to be connected with a local softening of the region adjacent to the micellar surface.

Benzidines↗

Gender bender.

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Animals↗

Biomarkers as tools in human health risk assessment.

Evaluation of occupational or environmental risk due to exposure to chemicals requires sufficient information on the toxic profiles, mechanisms of action, toxicokinetics, dose-response relation, exposure, and the target dose. Usually exposure is estimated by measuring concentrations of the agent in air, food, water, soil, dust, or other media with which a population or an individual is in contact. However, this external exposure is only a rough estimate for the internal exposure (agent dose or its metabolite at the critical target in the organism). Factors of influence are bioavailability of the chemicals, variations in concentrations and routes of exposure, physical activity, and individual variation in rates of metabolism, distribution, and excretion. All these affect the concentration of the toxic agent at the critical target, which is the most precise information for risk assessment. Thus, internal exposure is best measured by determining the concentration of the toxicant or its ultimate metabolite at the critical site in the target organ or by determining adducts with cellular macromolecules such as proteins, amino acids, DNA, or its bases. The latter are easily available in experimental toxicology from animal experiments but only occasionally from humans. For health surveillance such data usually are not available, because they require invasive procedures such as biopsies. Therefore, more accessible body fluids or tissue are used, such as blood, urine, or adipose tissue, or adducts with macromolecules such as albumin or hemoglobin in the blood, DNA adducts in peripheral lymphocytes, or altered DNA bases in urine such as 8-hydroxyguanine. All of these are indicators for exposure, whereas risk can only be estimated if the correlation between their deviations from normal and the dose-response at the critical target is known.

Animals↗

Evaluation of a radioimmunoassay for determination of calcitriol in human sera employing a 125I-labelled tracer.

The performance characteristics of a radioimmunoassay employing a 125I-labelled tracer for determination of calcitriol in human sera are reported. The assay is based on an immunoextraction step employing a monoclonal antibody against calcitriol followed by a radioimmunoassay (using 125I-labelled calcitriol and sheep antiserum against calcitriol). Bound/free separation is performed with an anti-sheep IgG antibody bound to cellulose. Within-run imprecision (n = 20) was 12.8% (mean = 9.4 ng/l) and 11.1% (mean = 48.8 ng/l), between-day imprecision (n = 11) was 27.1% (mean = 9.6 ng/l) and 17.2% (mean = 47.2 ng/l). Linearity of dilution as investigated by mixing pooled sera containing 62.0 ng/l and 4.7 ng/l calcitriol, respectively. The relationship between measured and expected concentrations was characterized by a linear correlation coefficient of r = +0.990. The values obtained with the 125I-based radioimmunoassay were compared with those obtained with a radioreceptor-assay using a 3H-labelled tracer; the regression line was y = 1.091 x -4.545 (n = 84; r = +0.935), where y = calcitriol [125I] [ng/l] and x = calcitriol [3H] [ng/l]. Mixing 9 volumes of sera from patients with renal insufficiency (n = 7) with 1 volume of 'calibrator F' (assigned value: 227 ng/l) yielded recovery rates of 90 +/- 8% (mean +/- SD). The detection limit was 3.0 ng/l. The cross-reactivity of cholecalciferol metabolites was found to be < 0.00003 for 25-hydroxycholecalciferol, 24R,25-dihydroxycholecalciferol and 25S,26-dihydroxycholecalciferol. A preliminary reference interval (5th to 95th percentile) was established in 40 apparently healthy persons (17 males and 23 females; age range: 20-61 [mean: 32] years) (19-74 ng/l). The method presented shows high practicability and may therefore be considered as a useful alternative to cumbersome assays using 3H-labelled tracers.

Adult↗

32P-postlabeling analysis of DNA adducts in tissues of rats exposed to coke-oven emissions.

Coke-oven workers are occupationally exposed to emissions containing relatively high levels of polycyclic aromatic hydrocarbons. Epidemiological studies suggest that this occupational exposure may lead to an increased risk of lung cancer. To evaluate a biologically effective exposure dose in human biomonitoring studies DNA carcinogen adduct analysis is frequently used. The most readily available source of cellular DNA in these studies is white blood cells (WBC). It is questionable whether WBC are an appropriate surrogate for target tissue cells. In this study an animal model was used to examine the relationship between DNA adduct levels in target tissues and WBC as a surrogate. Rats were exposed to emissions on the top of a coke-oven battery for 24 h during simultaneous sampling of the air for chemical analysis of polycyclic aromatic hydrocarbons. 32P-Postlabeling analysis of DNA adducts in lung, heart, liver and WBC with the butanol enrichment procedure was conducted. DNA adduct profiles differ in target and non-target tissues and WBC analyzed. One major adduct was detected in the DNA from all tissues and WBC analyzed that exhibited the same chromatographic mobility as the predominant B(a)P adduct of the standard DNA sample. The highest levels of this adduct were observed in DNA from lung and heart--16.3 and 12.9 adducts/10(9) nucleotides. The elevation compared to local control animals was 6.8-fold for lung, 8.6-fold for heart, in WBC DNA 3-fold and in liver DNA only 2-fold. In DNA samples from WBC and heart mainly this major adduct was observed. In liver DNA the other four distinct spots outside the diagonal zone (DRZ) and in lung two faster-migrating adducts inside the DRZ with higher intensities were detected. Evaluating total DNA adduct levels, almost the same extent of DNA damage in lung, heart and liver was observed (46.8, 37.7 and 46.2 adducts/10(9) nucleotides; WBC only 6.7 adducts/10(9) nucleotides). Our data showed that DNA injury in target tissue cells caused by exposure to coke-oven emissions may be more significant than expected only according to DNA adduct levels in WBC.

Affinity Labels↗