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Biotreatability and kinetics of UASB reactor to mixtures of chlorophenol pollutants.

In most natural ecosystems heterotrophic microorganisms encounter complex mixtures of carbon sources, each of which is present at a concentration of few micrograms per litre. This study examined the biotreatability and kinetics of an upflow anaerobic sludge blanket (UASB) reactor to complex mixtures of chlorophenols encountered in environmental conditions using on-line and off-line experimental studies. Results indicate that (1) steady-state concentration was quite lower (98.3 mg L(-1)) with complex mixture of chlorophenols than steady-state concentration achieved when only 2.4 dichlorophenol (124 mg L(-1)) was studied alone on the same reactor; (2) that toxic effects of chlorophenols increase with increasing concentrations of toxicant. (Onset of the inhibitory effect occurred at a lower concentration in multi-substrate than in single substrate utilization): (3) addition of alternative utilizable substrate can mitigate toxic effects and enhance degradation; (4) the relative concentration of substrate was critical in determining utilization patterns. HPLC analysis of off-line experimental samples resulted in a steady-state treatment efficiency of 68% for COD, 36% for 2-chlorophenol, 40.5% for 4-chlorophenol, 70.7% for 2,4-dichlorophenol, 53.2% for 2,4,6-trichlorophenol and 42% for pentachlorophenol in presence of glucose. Kinetic constant in terms of Vmax and Ks were determined. Ks for the five chlorophenols ranged between 0.016 and 0.117 kg m(-3) day(-1) while Vmax range between 0.056 and 0.244 kg m(-3) day(-1).

Bacteria, Anaerobic↗

Bioindicators for toxicity assessment of effluents from a wastewater treatment plant.

The discharge of effluents and toxic compounds into aquatic systems represents a growing environmental problem involving an impact on water ecology and potential effect on human health. Most municipal wastewaters are complex mixtures; their complexity led as to carry out a hazard assessment using chemical analyses and biological tests. This study investigates biochemical alteratiobns in two sentinel organisms, the Anodonta cygnea mussel and the Xenopus laevis frog exposed for different lengths of time to various concentration of wastewater of the S. Antonino Ticino treatment plant. The results point out the long-life of toxic compounds.

Animals↗

Polychlorinated biphenyls (PCBs), dibenzo-p-dioxins (PCDDs), dibenzofurans (PCDFs), and related compounds: environmental and mechanistic considerations which support the development of toxic equivalency factors (TEFs).

Halogenated aromatic compounds, typified by the polychlorinated dibenzo-p-dioxins (PCDDs), dibenzofurans (PCDFs), biphenyls (PCBs), and diphenylethers (PCDEs), are industrial compounds or byproducts which have been widely identified in the environment and in chemical-waste dumpsites. Halogenated aromatics are invariably present in diverse analytes as highly complex mixtures of isomers and congeners and this complicates the hazard and risk assessment of these compounds. Several studies have confirmed the common receptor-mediated mechanism of action of toxic halogenated aromatics and this has resulted in the development of structure-activity relationships for this class of chemicals. The most toxic halogenated aromatic is 2,3,7,8-tetrachlorodibenzo-p-dioxin (TCDD) and based on in vivo and in vitro studies the relative toxicities of individual halogenated aromatics have been determined relative to TCDD (i.e., toxic equivalents). The derived toxic equivalents can be used for hazard and risk assessment of halogenated aromatic mixtures; moreover, for more complex mixtures containing congeners for which no standards are available (e.g., bromo/chloro mixtures), several in vitro or in vivo assays can be utilized for hazard or risk assessment.

Animals↗

Mutagenicity studies on complex environmental mixtures: selection of solvent system for extraction.

The mutagenic activities in the Salmonella/microsome assay of dichloromethane (DCM) and acetone extracts of complex environmental mixtures were compared. The particulate samples used in the IPCS collaborative study were Soxhlet-extracted twice with DCM followed by a third extraction with acetone. Compared with the mutagenic activity of the first extract, the third (acetone) extract of the urban particulate matter showed a relatively high mutagenic activity. In contrast to this the third extract of the diesel particulate matter contributed very little additional mutagenic activity. Furthermore, 10 filter samples of air particulates from a suburban airport area were collected for comparison of the extraction efficiency of DCM and acetone. Each sample was divided into two samples of identical size followed by extraction with acetone and DCM, respectively. No clear difference in the mutagenic activity of these extracts was observed in strains TA98 and TA98NR. It is concluded that for ambient air particulates (but not emission samples) acetone may extract some mutagenic compounds which are not extracted by DCM. The amount of these additional extractable compounds seems to depend on the composition of the sample. As DCM extracts are better suited for further fractionation and chemical analysis DCM is considered to be the best choice for a general solvent system for extraction of complex environmental mixtures.

Acetone↗

Mass spectrometric detection for capillary isoelectric focusing separations of complex protein mixtures.

Capillary isoelectric focusing (CIEF) can provide high-resolution separations of complex protein mixtures, but until recently it has primarily been used with conventional UV detection. This technique would be greatly enhanced by much more information-rich detection methods that can aid in protein characterization. We describe progress in the development of the combination of CIEF with Fourier transform ion cyclotron resonance (FTICR) mass spectrometry and its application to proteome characterization. Studies have revealed 400-1000 putative proteins in the mass range of 2-100 kDa from total injections of approximately 300 ng protein in single CIEF-FTICR analyses of cell lysates for both Escherichia coli (E. coli) and Deinococcus radiodurans (D. radiodurans). We also demonstrate the use of isotope labeling of the cell growth media to improve mass measurement accuracy and provide a means for quantitative proteome-wide measurements of protein expression. The ability to make such comprehensive and precise measurements of differences in protein expression in response to cellular perturbations should provide new insights into complex cellular processes.

Bacterial Proteins↗

Influences of complex organic mixtures on tumor-initiating activity, DNA binding and adducts of benzo[a]pyrene.

Co-incubation of benzo[a]pyrene (BaP) and coal-derived complex organic mixtures has been shown to decrease the metabolism and mutagenic activity of BaP. Because of these influences, five mixtures were co-administered dermally to mice to initiate tumor development. Results from these studies demonstrated that BaP tumor-initiating activity was decreased substantially by four of the five mixtures. When one of the mixtures was separated into chemical class fractions, the polycyclic aromatic hydrocarbon (PAH) and nitrogen-containing polycyclic aromatic compound fractions were the most effective, and the aliphatic and hydroxy-PAH fractions were the least effective as inhibitors of BaP-induced tumor initiation. Binding of [3H]BaP to epidermal DNA under conditions identical to those used for tumor initiation was decreased by co-administration of all five mixtures. Calculations of the number of tumors produced/micrograms BaP bound to DNA demonstrated that co-administration of this carcinogen with the mixtures consistently increased the effectiveness of the bound BaP at producing tumors by approximately a factor of 2. The HPLC radioactivity profiles of enzyme-hydrolyzed, adducted DNA indicated that, in the presence of the mixtures, the predominant adducts were derived from BaP-diol epoxide (BPDE); however, the mixtures decreased the ratios of the anti-BPDE-deoxyguanosine to syn-BPDE-deoxy-guanosine adducts. These data indicate that the prevailing influences of the mixtures (i.e. decreased DNA binding and adduct shifts) were similar to those observed with other bioassays following co-administration of binary mixtures. Furthermore, the data demonstrate that both DNA binding and adduct profiles are important in determining the contribution of a known carcinogen to tumor initiation by complex organic mixtures.

7,8-Dihydro-7,8-dihydroxybenzo(a)pyrene 9,10-oxide↗

Carcinogenic mixtures.

Human populations are generally exposed simultaneously to a number of toxicants present in the environment, including complex mixtures of unknown and variable origin. While scientific methods for evaluating the potential carcinogenic risks of pure compounds are relatively well established, methods for assessing the risks of complex mixtures are somewhat less developed. This article provides a report of a recent workshop on carcinogenic mixtures sponsored by the Committee on Toxicology of the U.S. National Research Council, in which toxicological, epidemiological, and statistical approaches to carcinogenic risk assessment for mixtures were discussed. Complex mixtures, such as diesel emissions and tobacco smoke, have been shown to have carcinogenic potential. Bioassay-directed fractionation based on short-term screening test for genotoxicity has also been used in identifying carcinogenic components of mixtures. Both toxicological and epidemiological studies have identified clear interactions between chemical carcinogens, including synergistic effects at moderate to high doses. To date, laboratory studies have demonstrated over 900 interactions involving nearly 200 chemical carcinogens. At lower doses, theoretical arguments suggest that risks may be near additive. Thus, additivity at low doses has been invoked as as a working hypothesis by regulatory authorities in the absence of evidence to the contrary. Future studies of the joint effects of carcinogenic agents may serve to elucidate the mechanisms by which interactions occur at higher doses.

Animals↗

Studies on the inhibition of macrophage migration induced by soluble antigen-antibody complexes.

Mixtures of serum of Freund's complete adjuvant (FCA) immunized guinea-pigs and tuberculin PPD consistently inhibited the in vitro migration of peritoneal exudate cells (PEC) of normal guinea-pigs. It is shown that this inhibitory effect is due to a soluble complex between an IgG2 antibody and PPD. By separation of PPD on Sephadex G-200 two peaks were obtained, corresponding respectively to molecular weights of at least 800,000 and 25,000, separated by a plateau. Material derived from both peaks and from the plateau was able to form inhibitory complexes with anti-PPD IgG2. When a mixture of small molecular weight PPD and anti-PPD IgG2 was fractionated on Sephadex G-200, the inhibitory activity was recovered in the void region only. The detection of both IgG2 and PPD in the latter was taken as evidence for the presence of a high molecular weight antigen-antibody complex. When the mechanism of complex-induced inhibition of migration was examined it was found that: (1) complexes act directly on macrophages present in the peritoneal exudate; (2) removal of the Fc fragment of IgG2 by pepsin abolishes its ability to form migration inhibitory complexes; (3) passive sensitization of macrophages with anti-PPD IgG2, followed by exposure to PPD does not result in inhibition of migration; (4) in order to obtain migration inhibition, the complexes must be present during the entire migration period. A 2-hr pulse with complexes does not induce permanent inhibition; (5) the migration inhibitory activity of antigen--antibody complexes can be abolished by certain concentrations of puromycin and aminophylline.

Aminophylline↗

High-resolution capillary isoelectric focusing of complex protein mixtures from lysates of microorganisms.

High-resolution capillary isoelectric focusing separations of complex protein mixtures have been obtained for cellular lysates of Saccharomyces cerevisiae, Eschericia coli, and Deinococcus radiodurans. High quality separations are shown to be achievable for total protein concentrations of < 0.1 mg/mL. The separation reproducibility was examined, and the influence of the capillary inner wall coating on resolution investigated using fusedsilica capillaries coated with various hydrophilic polymers including hydroxypropyl cellulose, poly(vinyl alcohol), and linear polyacrylamide. Proteins having an isoelectric point (pI) difference of 0.004 are shown to be separated using a linear carrier ampholyte (linear pH gradient between two electrodes) of 3-10. Approximately 45 discrete peaks in the pI range of 5-7 were obtained for S. cerevisiae, approximately 80 peaks in the pI range of 4.5-8.5 for E. coli, and approximately 210 peaks in the pI range of 3-8.8 for D. radiodurans.

Bacterial Proteins↗

Separation of complex oligosaccharide mixtures by capillary electrophoresis in the open-tubular format.

The fluorescent derivatives of complex oligosaccharide mixtures from different origins are separated in open capillaries. The number of negatively charged sulfonate groups in the tag molecule strongly affects separation efficiency and selectivity. Coating of the capillary surface with linear polyacrylamide has been essential to ensure fast and stable migration velocities. Efficiencies in excess of 1 million plates/m have been achieved, facilitating resolution of branched oligosaccharides. The effects of field strength and buffer composition on the apparent electrophoretic mobility of dextran and dextrin oligomers are discussed, with relation to borate complexation. Preliminary examples of applications to monitoring the action of hydrolytic and synthesizing enzymes are also described.

Dextrans↗

Universal two-dimensional HPLC technique for the chemical analysis of complex surfactant mixtures.

Two-dimensional HPLC was applied for the first time to the analysis of complex surfactant mixtures. In the first dimension, ion chromatographic-type separations were performed on a diol column eluted by an acetonitrile-water (0.1% trifluoroacetic acid) gradient. Using this new technique, cationic and amphoteric surfactants were not retained at all, nonionic surfactants exhibited a weak and essentially unspecific retention, and anionic surfactants were retained mainly according to their functional group. Rather than detecting the analytes immediately after this first separation, successive fractions were automatically and quantitatively transferred to parallel C2 (dimethyl) and C4 (butyl) reversed-phase columns using an innovative setup. The second dimension of the separation then took place, by which the analytes were separated according to their hydrophobicity. Surfactants from all four classes, cationic, amphoteric, nonionic, and anionic, were separated simultaneously in single 54-min two-dimensional HPLC runs. The suitability of the method for quantitative measurements was demonstrated.

Journal Article↗

Comparison of fetotoxic effects of a dermally applied complex organic mixture in rats and mice.

A high-boiling (288-454 degrees C), coal-derived complex organic mixture (COM) has been shown to be teratogenic in rats following inhalation and oral routes of exposure. To determine whether similar changes also occur after dermal exposure to this COM, pregnant rats and mice were exposed during periods of organogenesis (Days 11 to 15 of gestation). Shaved backs were painted with 0, 500, or 1500 mg/kg of the COM (control, low, or high dose, respectively); the exposed area was not occluded. Maternal weight gain during the gestation period decreased with increasing dose in rats but not in mice. Examination of rat fetuses on Day 20 of gestation showed that resorptions had occurred in more than 90% of low- and high-dose litters (vs 6% in the control group). In mice, fetal examinations on Day 18 of gestation showed that resorptions occurred in 71% of litters from both exposure groups (vs 14% in the controls). Fetal measurements indicated that both the weight and the length of rat fetuses decreased with increasing dose, but mouse fetuses were unaffected. Cleft palates, absent in the control groups, were observed in 50 to 55% of the high-dose group and 5 to 8% of the low-dose fetuses of both species. Small fetal lungs occurred in nearly 100% of the exposed rat fetuses and in 25% of the high-dose mice; the incidence of small lungs was 1% in control animals. Other variations observed in exposed groups included edema and reduced ossification in the rat and renal pelvic cavitation in the mouse.(ABSTRACT TRUNCATED AT 250 WORDS)

Administration, Topical↗

Reduced formulation and efficient algorithm for the determination of equilibrium composition and partition functions of ideal and nonideal complex plasma mixtures.

The system of coupled nonlinear Saha equations supplemented by electroneutrality and conservation of nuclei for complex plasma mixtures is reformulated into a reduced form, which allows the development of an efficient numerical algorithm to solve the set of nonlinear equations. The efficient algorithm is based on the solution of an equivalent single transcendental equation. Nonideality corrections have been taken into consideration in terms of depression of ionization potentials and truncated partition functions. Implementing this simple efficient methodology simplifies the problem and considerably reduces the computational effort needed to compute the detailed plasma composition for different cases. The algorithm is analytically known to be safe, fast, and efficient. It also shows no numerical instabilities, no convergence problems, and no accuracy limitations or lack of change problems, which have been reported in the literature. A nontrivial sample problem has been worked in detail showing the usefulness of the method for applied and industrial plasma physicists. Effects of the nonideality corrections and the exclusion of excited states are quantified and presented. A criterion for the validity of the assumption of local thermodynamic equilibrium is applied to the results from the sample problem to show the region of the temperature-density phase space over which the assumption is valid.

Journal Article↗

Simplification of complex peptide mixtures for proteomic analysis: reversible biotinylation of cysteinyl peptides.

A rapid means of identifying many components in an enriched mixture of proteins is enzymatic digestion of the entire protein fraction. This complex peptide mixture is then subjected to reversed-phase high performance liquid chromatography (HPLC) coupled on-line with a mass spectrometer capable of data-dependent ion selection for fragmentation (LC-tandem mass spectrometry; MS/MS). Thus, as many peptides as possible in the sample are fragmented to produce MS/MS spectra, which can then be searched against sequence databases. Ideally, one peptide from each protein in the mixture would be fragmented and identified. To this end, we employed an affinity selection method to capture cysteinyl peptides and thereby simplify the mixture. Both the captured cysteinyl and the noncysteinyl peptides are analyzed by LC-MS/MS, to increase the number of proteins identified. The method was tested on a limited set of standard proteins and applied to the analysis of a protein fraction obtained from isolated mitochondria treated with atractyloside. To further increase the number of different precursor ions selected for fragmentation, dynamic exclusion and ion selection from multiple narrow mass ranges of consecutive runs were employed.

Animals↗

Development of field modulation in a split-field drift tube for high-throughput multidimensional separations.

A field modulation approach for high-throughput ion mobility/time-of-flight analyses of complex mixtures has been developed using a split-field drift tube. In this approach, complex mixtures of peptides, such as those that arise from tryptic digestion of protein mixtures, are separated by nanocolumn liquid chromatography, ionized by electrospray ionization, and analyzed by ion mobility/time-of-flight techniques. The split-field drift tube allows parent ions to be separated based on differences in their low-field mobilities through the first-field region before entering the second region. For increased throughput, the magnitude of the field in the second region can be modulated throughout an LC separation in order to favor transmission of different types of ions: parent ions at low fields; fragments from primarily [M+3H]3+ peptides at moderate fields; or, fragmentation of [M+3H]3+ and [M+2H]2+ species at higher fields. We demonstrate the approach with two examples: a mixture of tryptic peptides from digestion of hemoglobin; and a complex mixture of tryptic peptides from digestion of human plasma.

Blood Proteins↗

Ion/ion reactions for oligopeptide mixture analysis: application to mixtures comprised of 0.5-100 kDa components.

Oligopeptide mixtures have been subjected to electrospray ionization, accumulated within a quadrupole ion trap, and subjected to ion/ion proton transfer reactions with anions derived from perfluoro-1,3-dimethylcyclohexane. Various mixtures were studied with approximate molecular weight ranges of 0.5-8.5, 12-30, 45-100, and 0.5-100 kDa. Mixtures of known composition were studied to evaluate the mixture complexity amenable to electrospray combined with ion/ion reactions to reduce spectral complexity associated with multiple charging. Mixture analysis with at least 40 components of low and medium molecular weight and roughly comparable solution concentrations appears to be straightforward. No matrix effects upon ionization were implicated in the data for the low and medium molecular weight mixtures but bovine albumin appeared to inhibit signals from bovine transferrin and chicken conalbumin in the high molecular weight mix. Furthermore, the presence of abundant low mass-to-charge ions appeared to inhibit signals from high molecular weight proteins (> 40 kDa) in the 0.5-100 kDa mix. Such an observation is consistent with dynamic range limitations that can arise from discrimination based on ion space charge effects, although an ionization matrix effect could not be precluded from the data reported here. The results reported here indicate that the limitation to mixture complexity amenable to electrospray mass spectrometry imposed by spectral congestion associated with multiple charging can be significantly reduced via ion/ion reactions. The use of ion/ion reactions can therefore facilitate the study of other factors that can impose limitations to mixture analysis, such as matrix effects upon ionization and differences in ion transmission, accumulation, storage, and detection efficiencies.

Algorithms↗

[Isoelectric focusing of complex protein mixtures in the nanogram range in microgels (author's transl)].

A method is described for isolectric focusing of complex protein mixtures in 2, 5 or 10 mul capillaries. For one separation only 15- 50 ng of a protein mixture is needed. Isoelectric focusing is finished after 10 min, staining takes 20 min and destaining approximately 30 min. Using defined mixtures of Servalyt from different pH ranges, isoelectric focusing can be adapted to the protein sample to be fractionated. Protein peaks separated by isoelectric focusing can be electrophoretically eluted and for further analysis refractionated directly in a microgradient gel. The resolution power of microisoelectric focusing is as good as that of the wellknown macroprocedure, as is demonstrated by isoelectric focusing of the water soluble proteins from cerebellum and heart, of rat and human serum and of a human oncocytoma of the thyroid gland.

Animals↗