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Effect of a standardized complex mixture derived from coal tar on the metabolic activation of carcinogenic polycyclic aromatic hydrocarbons in human cells in culture.

A complex mixture of polycyclic aromatic hydrocarbons (PAH) extracted from coal tar, standard reference material (SRM) 1597, has been shown to initiate tumor formation in mouse initiation-promotion assays in our laboratory [(2001) Carcinogenesis 22 (7), 1077-1086]. To determine the effects of SRM 1597 on PAH activation in human cells, we investigated the PAH-DNA adduct formation in the human mammary carcinoma-derived cell line MCF-7. We examined the effects of SRM 1597 on the metabolic activation to DNA binding derivatives of two carcinogenic PAHs, the bay region containing benzo[a]pyrene (B[a]P) and the more carcinogenic fjord region containing dibenzo[a,l]pyrene (DB[a,l]P). PAH-DNA adduct analysis by 33P-postlabeling and reversed phase high-performance liquid chromatography revealed a significant decrease in the levels of both B[a]P and DB[a,l]P DNA adduct formation on cotreatment with SRM 1597 in comparison to cells exposed to B[a]P or DB[a,l]P alone. However, the inhibition of PAH-DNA adduct formation only occurred within the first 48 h of exposure in cells cotreated with SRM 1597 and B[a]P. In contrast, SRM 1597 significantly inhibited the level of DB[a,l]P DNA adducts throughout the 120 h of exposure. Induction of human cytochrome P450 (P450) enzymes 1A1 and P4501B1 on treatment with SRM 1597 was observed by immunoblots. These results suggest that the important factors in determining the carcinogenic activity of PAH within a complex mixture would depend on the ability of other components of the mixture to promote or inhibit the activation of carcinogenic PAH by the induction of P450 enzymes followed by the formation of DNA adducts.

Aryl Hydrocarbon Hydroxylases↗

The use of alternative systems for the ecotoxicological screening of complex mixtures on fish populations.

This paper presents the results of the use of alternative systems in a screening study of four complex mixtures. The following tests were performed: in vitro induction of micronuclei in a rainbow trout-derived cell line by flow cytometry, and hatching percentage, time of hatching and teratogenic alterations on the embryolarval development on medaka fish eggs. The results obtained with the proposed tests in this study allows an increase in the information level in a short period of time (2 weeks), using very low sample volumes (< 100 ml). Inclusion of chronic and specific effects (genotoxicity and teratogenicity) allows the selection of the most sensitive endpoint to increase security factors in the ecotoxicological assessment of complex mixtures, so that detailed studies can be focused only on those samples which require further research.

Animals↗

A further characterization of Drosophila cuticular monoenes using a mass spectrometry method to localize double bonds in complex mixtures.

Positions of double bonds of olefins of complex mixtures, such as those of Drosophila cuticular hydrocarbons, have been determined using a simple method combining methoxymercuration-demercuration of extracts and analysis by gas chromatography-mass spectrometry using ammonia for chemical ionization. Chemical similarities between cuticular monoenes of both sexes of Drosophila simulans and males of Drosophila melanogaster are specified: the major isomer is always in position 7.

Alkenes↗

Antitransforming activity of chlorophyllin against selected carcinogens and complex mixtures.

Chlorophyllin, a derivative of chlorophyll, is known to be an antimutagenic agent. Studies were performed to determine whether chlorophyllin can also inhibit morphological transformation of BALB/3T3 cells induced by carcinogens and complex mixtures. Chlorophyllin was added to the cultures simultaneously with carcinogens or complex mixtures while the transformation assay was conducted. At concentrations that did not significantly affect cell growth, chlorophyllin was found to inhibit morphological transformation induced by N-methyl-N'-nitro-N-nitrosoguanidine, 3-methylcholanthrene, 7,12-dimethylbenz(a)anthracene, benzo(a)pyrene, aflatoxin B1, and extracts of coal dust, tobacco snuff, and chewing tobacco. In all cases, the mean number of transformed foci per flask treated with chlorophyllin was significantly lower than that of untreated cultures. The reduction in the number of transformed foci was dependent on the concentration of chlorophyllin tested. These results indicate that chlorophyllin is an antitransforming agent.

3T3 Cells↗

Liquid scintillation determination of low level components in complex mixtures of radionuclides

A new approach to simultaneous activity measurements of the complex radionuclide mixtures using liquid scintillation counting, which is applicable to the analysis of the environmental and technological samples, is presented. The method is based on specially developed software 'SpectraDec', realized on a Windows 95/98/NT platform and a spectra library created for different kinds and levels of quenching. The method allows analysis of complex mixtures when the activity ratios of the individual components vary considerably. For example, the radionuclide concentrations were successfully determined in the following complex mixture: 3H, 63Ni, 90Sr + 90Y, 137Cs, 241Am (model mixture), where the 90Sr + 90Y/3H activity ratio was 1/2500 (0.2 Bq/500 Bq) and 90Sr, 137Cs, 134Cs, 232Th, 226Ra (IAEA-reference sample), where the 90Sr/137Cs activity ratio was 1/50 (92 Bq/4515 Bq) with an accuracy of about 20%. The limitations of the given approach to the LS analysis of the radionuclide mixtures are considered.

Journal Article↗

32P-postlabeling of DNA adducts arising from complex mixtures: HPLC versus TLC separation applied to adducts from petroleum products.

The carcinogenicity of petroleum products is mainly due to their content of polycyclic aromatic compounds (PACs). These compounds may be activated metabolically and react with DNA to form DNA adducts, which is a critical event in the initiation of cancer. One of the most common techniques for analyzing DNA adducts is (32)P-postlabeling. The chromatographic method often used has been (32)P-TLC (thin-layer chromatography), but the more recently developed (32)P-HPLC (high-performance liquid chromatography) method has shown advantages. The aim of this study was to test the hypothesis that the (32)P-HPLC method has a better ability of detecting DNA adducts derived from petroleum products than (32)P-TLC. It was found that some DNA adducts migrated from the application point in (32)P-TLC in such a way that it is doubtful if they could be detected and quantified properly. It was also found that, when using (32)P-HPLC, it is possible to use the same protocol for substances with a wide variety of DNA adduct forming potential, whereas (32)P-TLC needs to be optimized regarding time of exposure and/or the amount of DNA applied. Further, a pattern of recognition in (32)P-HPLC enables a selective assessment of DNA adducts derived from complex mixtures whereas (32)P-TLC is very limited when analyzing complex mixtures due to poor resolution. With more knowledge about the properties of the most mutagenic DNA adducts in HPLC, it could be possible to know also which pattern corresponds to a mutagenic or carcinogenic oil. Consequently, (32)P-HPLC is a good alternative when assessing the genotoxicity of petroleum products.

Chromatography, High Pressure Liquid↗

Toxicological investigations in the semiconductor industry: I. Studies on the acute oral toxicity of a complex mixture of waste products from the aluminium plasma etching process.

In dry etching processes--one of the sources of potential exposure to toxic wastes in the semiconductor industry--complex mixtures of inorganic and organic compounds arise from reactions between feed stock gases (BCl3/Cl2), top layers (aluminium photoresist), and the carrier gas (N2). Two different fractions of the complex mixture--one an ethanolic solution (ES) and the other an insoluble liquid residue (LR)--were examined for acute oral toxicity in rats. Analytical data showed that the ethanol soluble fraction contained mainly inorganic compounds, whereas the residue contained various halogenated hydrocarbons. Neither death nor behavioral changes occurred after oral administration and observation up to 23 days. ES caused a lower mean arterial blood pressure in both sexes, increased P-R-intervals in male rats, and caused some mild biochemical and hematological alterations and changes in relative organ weights compared to the control groups. Exposure to LR influenced food and water intake, and caused a significant decrease in body weights, signs of polyurie, as well as changes in various relative organ weights and biochemical and hematological parameters. The blood pressure of the male animals fell and the heart rates of both sexes decreased.

Aluminum↗

Interactive and multi-sensory analysis of complex mixtures by an automated gas chromatography system.

Methods are presented for increased human-computer interactions in the analysis of metabolic profiles of urinary organic acids. Complex mixtures of trimethylsilylated derivatives are separated by capillary gas-liquid chromatography on a 25-m bonded-phase, fused-silica column. Retention times and areas, determined by a printing integrator, are transferred to a personal computer along with the digitized output of the flame-ionization detector. Post-run computer analysis gives enhanced visual graphic displays with software-driven zooming, scrolling, peak identification and quantitation. In addition, auditory (musical) forms can be produced that increase the scope of human interaction. This novel approach catalyzes simultaneous use of computer calculations and human intuition, optimizing their combined cognitive powers for accurate qualitative and quantitative analyses of these complex mixtures.

Acids↗

Specific high performance liquid chromatographic determination of the molecular weight and concentration of hyaluronic acid in complex mixtures by labelled hyaluronate binding proteins.

A simple High performance liquid chromatographic (HPLC) method for the specific determination of the molecular weight and concentration of hyaluronic acid (HA) in complex mixtures has been developed. Hyaluronate-binding proteins isolated from bovine cartilage labelled by 125I or fluoresceinisothiocyanate were used as specific markers. The specific binding affinities of the markers were compared and were found to have association constants of 1.6 x 10(7) M-1 and 1.2 x 10(7) M-1 respectively. The HA levels and molecular weight distributions can be easily determined in the range 10-500 ng/mL in complex mixtures by the use of markers, molecular sieving HPLC columns and appropriate detectors. It has been demonstrated clearly that the method is useful for the highly specific determination of the parameters in complex biological samples such as serum and synovial fluids and is recommended for clinical applications.

Animals↗

NMR spectroscopic filtration of polypeptides and proteins in complex mixtures.

Due to the inherent complexity of the natural biological environment, most studies on polypeptides, proteins and nucleic acids have so far been performed in vitro, away from physiologically relevant conditions. Nuclear magnetic resonance is an ideal technique to extend the in vitro analysis of simple model systems to the more complex biological context. This work shows how diffusion-based spectroscopic selection can be combined with isotopic labeling to tackle and optimize the NMR analysis of specific macromolecules in multicomponent mixtures. Typical media include cell-free systems containing overexpressed proteins, lysates and proteolytic mixtures. We present a few variants of diffusion-edited HSQC pulse sequences for the selective spectroscopic detection of protein and polypeptide resonances within complex mixtures containing undesired species of smaller molecular weight. Due to diffusion-based filtering, peak intensities of fast diffusing small molecules are attenuated more than peaks due to large molecules. The basic sequence, denoted as PFGSTE-HSQC, combines translational diffusion-ordering with two dimensional heteronuclear single quantum correlation spectroscopy. The GCSTE-HSQC and BPPSTE-HSQC sequences include bipolar gradients and are therefore suitable for both diffusion-based filtering and determination of diffusion coefficients of individual mixture components. Practical applications range from protein stability/folding investigations in physiologically relevant contexts to prescreening of tertiary fold and resonance assignments in structural genomics studies. A few applications of diffusion-edited HSQC to an E. coli cell lysate containing the (15)N-labeled B domain of streptococcal protein G (GB1), and to a (15)N-labeled N-acetylglycine/apomyoglobin mixture are presented. In addition, we provide specific guidelines for experimental setup and parameter optimization.

Data Interpretation, Statistical↗

Hazardous chemicals in complex mixtures--a role for direct toxicity assessment.

Whole sample toxicity assessment can help identify, diagnose and control impacts in the environment arising from the release of hazardous chemicals in complex mixtures. This role for direct toxicity assessment is considered against a background of increased international activity in the regulation of chemicals and reported improvements in the quality of surface waters in England and Wales. International legislation is largely focussed on the regulatory control of chemicals as individual substances although the majority of substances released to the environment enter in complex mixtures either as point source discharges or diffuse inputs. Whole sample measures of biological effect support the traditional substance by substance approach and provide a diagnostic capability to direct investigation into the likely chemicals or groups of chemicals of concern. Reported improvements in surface water quality in England and Wales are considered in the context of current impacts associated with hazardous substances.

Animals↗

Toxicity of a complex mixture of atmospherically transported pesticides to Ceriodaphnia dubia.

The presence of several anthropogenic chemicals has been documented in the atmosphere of the Canadian prairies. The deposition of these chemicals as a mixture is of importance since little is known of the combined effects of these chemicals on aquatic organisms. This study was designed to evaluate the acute and chronic toxicity of a complex mixture of nine atmospherically transported pesticides to Ceriodaphnia dubia. The nine selected pesticides (bromoxynil, dicamba, 2,4-D, MCPA, triallate, trifluralin, pentachlorophenol, lindane, and 4,4'-DDT) were detected in appreciable quantities in dry atmospheric deposits. The concentration of each pesticide in the mixture was based on maximum measured daily dry deposition rates for central Canada, except for pentachlorophenol, which was estimated based on atmospheric concentrations. The 48-h LC50 estimate for C. dubia exposed to the pesticide mixture was 174.60 microg L(-1) (340 times the measured total dry deposition concentration). The estimated NOEC and LOEC for both survival and reproduction, as determined in the 7-d chronic toxicity test, were 51.3 (100 times) and 154 microg/L(-1) (300 times), respectively. A basic risk assessment, using the toxic unit approach, suggested that the toxicity of the pesticide mixture was mainly due to 4,4'-DDT. Overall, this atmospherically transported complex mixture of pesticides appears to pose a negligible toxicological risk to non-target aquatic invertebrates such as zooplankton.

Air Pollutants↗

Molecular identification of organic compounds in atmospheric complex mixtures and relationship to atmospheric chemistry and sources.

This article describes a chemical characterization approach for complex organic compound mixtures associated with fine atmospheric particles of diameters less than 2.5 m (PM2.5). It relates molecular- and bulk-level chemical characteristics of the complex mixture to atmospheric chemistry and to emission sources. Overall, the analytical approach describes the organic complex mixtures in terms of a chemical mass balance (CMB). Here, the complex mixture is related to a bulk elemental measurement (total carbon) and is broken down systematically into functional groups and molecular compositions. The CMB and molecular-level information can be used to understand the sources of the atmospheric fine particles through conversion of chromatographic data and by incorporation into receptor-based CMB models. Once described and quantified within a mass balance framework, the chemical profiles for aerosol organic matter can be applied to existing air quality issues. Examples include understanding health effects of PM2.5 and defining and controlling key sources of anthropogenic fine particles. Overall, the organic aerosol compositional data provide chemical information needed for effective PM2.5 management.

Aerosols↗

Managing complex mixtures of chemicals--a forward look from the regulators' perspective.

The key findings to emerge from the successful Direct Toxicity Assessment Demonstration Programme are reviewed. At present, whole sample toxicity tests can identify and help control releases of complex mixtures that are likely to cause short-term toxic effects. Protection of aquatic organisms from the many hazardous chemicals that enter the environment, usually as complex mixtures, will require the introduction of new and improved techniques that are affordable and provide rapid turnaround of information. A number of bioassays were rigorously tested during the DTA programme. Further developments are suggested and other methods, including biosensors, biomarkers, and biological survey are briefly reviewed.

Animals↗

Separation of a complex mixture of heparin-derived oligosaccharides using reversed-phase high-performance liquid chromatography.

A reversed-phase ion-pairing high-performance liquid chromatography (RP-HPIPC) method for the separation of a complex mixture of heparin-derived oligosacchrides has been developed by a stepwise optimization of the mobile phase, in which the concentration of ion-pairing reagent, mobile phase pH, and acetonitrile concentration were varied. The resolution of more than 30 oligosaccharide components was obtained, under optimized conditions, in an analysis time of less than 30 min. This represents the first RP-HPLC method that can separate a complex mixture of both small and large sulfated oligosaccharides in a single chromatographic step. The heparin-derived oligosaccharides, in this mixture, can also be separated under a second set of RP-HPIPC conditions using a volatile ion-pairing reagent, tributylammonium acetate, to aid in the recovery of individual sulfated oligosaccharides. Moreover, it was possible to replace sodium chloride gradient, required for eluting highly sulfated oligosaccharides, with a fixed, low concentration of a volatile salt, ammonium acetate, by utilizing an acetonitrile gradient. This solvent system might make it possible to directly interface this RP-HPIPC separation with mass spectral analysis.

Chromatography, High Pressure Liquid↗

Biomonitoring of inhaled complex mixtures--ambient air, diesel exhaust and cigarette smoke.

Human biomonitoring comprises the determination of biomarkers in body-fluids, cells and tissues. Biomarkers are generally assigned to one of three classes, namely, biomarkers of exposure, effect or susceptibility. Since biomarkers represent steps in an exposure-disease continuum, their application in epidemiological studies ('molecular epidemiology') shows promise. However, to be a predictor of disease, a biomarker has to be validated. Validation criteria for a biomarker include intrinsic qualities such as specificity, sensitivity, knowledge of background in the population, existence of dose-response relationships, degree of inter- and intra-individual variability, knowledge of the kinetics, confounding and modifying factors. In addition, properties of the sampling and analytical procedures are of relevance, including constraints and non-invasiveness of sampling, stability of sample as well as simplicity, high sensitivity, specificity and speed of the analytical method. It is of particular importance to prove by suitable studies that the biomarker of exposure indicates the actual exposure, the biomarker of effect strongly predicts the actual risk of disease and the biomarker of susceptibility actually modifies the risk. Biomonitoring of the exposure to complex mixtures such as polluted ambient air, diesel exhaust or tobacco smoke is a particular challenge since these exposures have many constituents in common and many people were exposed to more than one of these mixtures. Data on the exposure to polycyclic aromatic hydrocarbons (PAH) and benzene from ambient air, diesel exhaust and tobacco smoke will be presented. In addition, some source-specific biomarkers such as nitro-arenes and nicotine metabolites as well as their application in population groups will be discussed. The second part of the presentation addresses the application of biomarkers for assessing so called 'potentially reduced exposure products' (PREPs). According to a recent report of the Institute of Medicine (USA), "reducing risk of disease by reducing exposure to tobacco toxicants is feasible" and "surrogate biological markers that are associated with tobacco-related diseases could be used to offer guidance as to whether or not PREPs are likely to be risk-reducing." In general, the same validation criteria apply as discussed above. In addition, it is suggested that a panel of biomarkers should be used, representing both smoke phases (gas and particulate phase) and the various chemical classes of smoke constituents (e.g., carbonyls, benzene, PAH, tobacco-specific nitrosamines, aromatic amines). Also, a panel of biomarkers of effect should cover the major known adverse effects of smoking (e.g., oxidative stress, inflammatory processes, lipid peroxidation, lipometabolic disorders, mutagenic effects). Biomarkers of nicotine and carbon monoxide uptake are of interest for evaluating the smoking and inhalation behavior, respectively. Finally, suitable study designs for evaluating PREPs are discussed. It is concluded that suitable biomarkers for assessing the exposure to complex mixtures such as ambient air, diesel exhaust and tobacco smoke as well as for evaluating the exposure-reducing properties of PREPs are already available. Future efforts should focus on the development and validation of biomarkers of effect.

Air↗

Peptidic complex mixtures as therapeutic agents in CNS autoimmunity.

Limited success with antigen-specific immunotherapies has led to the identification of novel approaches which consider the degeneracy of the T cell response, i.e. their ability to respond to multiple antigenic peptides. Random complex mixtures of polypeptides such as glatiramer acetate (GA) were among the first to be applied as immunodulators that take into account T cell degeneracy. While the mechanisms of action are not completely understood, the immunogenicity of GA, its strong major histocompatability complex (MHC) binding, immune deviation and bystander suppression all appear to be important. In the present study we have designed peptidic complex mixtures (CM) of varied lengths and compositions to test their potential as immunomodulating agents. CM were synthesized that had defined lengths and contained aa corresponding to binding motifs of MHC class II molecules relevant in multiple sclerosis (MS) and its animal model, experimental autoimmune encephalomyelitis (EAE), specifically HLA-DRB1*1501 and HLA-DRB5*0101, which are related to MS, and H2-IA(s) associated with EAE in SJL mice. Additional CM were designed based on specificity profiles derived from positional scanning synthetic combinatorial library (PS-SCL) testing of a GA-specific T cell clone (TCC). Several mixtures were strongly stimulatory for peripheral blood mononuclear cells (PBMC) from MS patients and healthy donors suggesting a high degree of cross-reactivity with other peptide antigens. A subset of these mixtures exhibited cross-reactivity to myelin antigens and prophylactic efficacy in reducing the severity of EAE. Based on these observations we envision mixture-based peptidic compounds can be developed not only for immunotherapeutic purposes in autoimmune diseases and cancer, but also in vaccine development.

Adjuvants, Immunologic↗