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At least 19 recordsLinked to original sources

Toxicogenetics in drug development.

The major progress made in the understanding of the genetic basis of inter-individual variation in drug response, alongside the rapid advances in technology, provides major new opportunities to ensure the safe introduction of a new chemical entity into clinical practice. In essence, the aim is to get the right drug into the right patient using knowledge of factors that influence both benefit and risk. The stage of the drug development process at which genetic analysis needs to be undertaken is dependent on the frequency of the event, and the availability of clinical samples. Thus, common adverse events, or assessment of efficacy, will be feasible for testing in phases I-III. However, when a rare event is being studied, for example idiosyncratic toxicity, prospective analysis becomes impossible. Thus, retrospective studies using available drugs is important as it may provide paradigms for future drug development. Additionally, prospective collection of samples will be important so that rare adverse events identified during phase IV can then be analysed using toxicogenetic approaches. Ultimately, information obtained from toxicogenetics must be included in the Specific Product Characteristics (SPC) and thus formally translated into clinical practice in order to contraindicate the drug in specific patients with a genetically determined susceptibility to drug toxicity.

Carbamazepine↗

Toxicological and toxicogenetic effects of plants used in popular medicine and in cattle food.

Toxicological and toxicogenetic effects of aqueous (tea) and hexanic fruit extract of Indigofera suffruticosa Mill. and hydroalcoholic root extract of Solanum agrarium Stendt. were evaluated in Balb C male mice intraperitoneally exposed. A hepatotoxic effect was observed just for animals treated with aqueous fruit extract of I. suffruticosa. In relation to the toxicogenetic effect, just the group treated with 12.5% of toxic dose of aqueous fruit extract of I. suffruticosa showed a statistically significant increase in the frequency of cells with chromosome aberrations (cytogenetic effect), although a slight increase was also observed for the highest dose (25% of LD50) of hydroalcoholic root extract of S. agrarium. The results obtained show that before S. agrarium is used as medicine and before the wide use of I. suffruticosa in cattle food, careful evaluation must be done.

Animal Feed↗

Toxicogenetics: applications and opportunities.

The response to drugs and environmental chemicals varies with genotype. Some patients react well to drugs, while others may not benefit, or may even respond adversely. Individuals also experience different reactions to environmental agents, such as allergens. The sequencing of the human genome and the large-scale identification of genome polymorphisms have provided opportunities for understanding the genetic basis for individual differences in response to potential toxicants: an area of study that has come to be known as toxicogenetics. In this article, we discuss the potential applications and implications of this evolving branch of toxicology.

Genetic Predisposition to Disease↗

Toxicogenetic evaluation of metronidazole in the treatment of women infected with Trichomonas vaginalis.

Samples of peripheral blood were collected once from non-smoking women who were healthy (controls) and twice (immediately before and immediately after 7 days of treatment with metronidazole at 500 mg/day) from non-smoking women infected with Trichomonas vaginalis. Lymphocyte cultures were prepared and used, in toxicogenetic studies, to determine the frequency of sister-chromatid exchange (SCE), the mitotic index (MI), and the replication index (RI) for each sample. MTZ treatment of the infected women led to an increase in the frequency of SCE (P <0.001), a decrease in the MI (P <0.003), and a modification in the kinetics of cell proliferation, with a decrease in the RI (P <0.0006). The differences seen between the results for the controls and those for the infected women, before and after MTZ treatment, may be attributed to the presence of the parasite, to the treatment itself, and/or to variation in the host's response to infection with T. vaginalis.

Adult↗

[Toxicogenetic effects of azo- and arylmethane dyes].

The haploid strain 15B-II4 of Saccharomyces cerevisiae was used to study in an acute experiment the toxic and mutagenic effects of arylmethane dyes Victory Blue (C.I. 44040), Methyl Violet (C.I. 42535), Brilliant Green (C.I. 42040) and cancerogenic aminoazo dye Chrysoidine (C.I. 11270). High biological activity of all the dyes tested was found, based on such toxic effects as cell killing and growth inhibition. Also, it was shown that the dyes could increase the frequency of appearance of nuclear point mutations and cytoplasmic mutations of respiratory deficiency.

Azo Compounds↗

Toxicogenetics of niridazole in inbred mice.

The lethal potency of the antischistosomal agent niridazole (NDZ) was compared in C57BL/6J (B6) and DBA/2J (D2) mice and in their F1 hybrid, backcross and F2 progeny. A daily i.p. dosage range was chosen so that the lethal effect, ascribed to central nervous system toxicity, did not occur before 4 to 5 days. Death was always preceded by a generalized tonic-clonic seizure which terminated in respiratory arrest. In B6 mice the LD50 was 202 mg kg-1 day-1 while in D2 mice the LD50 was 146 mg kg-1 day-1; the LD50 for NDZ in similarly treated F1 hybrid mice was found to be the arithmetic mean of the LD50 values for the parental strains (172 mg kg-1 day-1). Determination of the level of NDZ in the plasma and brains of B6 and D2 mice treated subacutely with the same daily dose of NDZ failed to reveal any strain differences. Moreover, there was no evidence of in vivo accumulation of NDZ with subacute treatment which suggests that a NDZ metabolite is responsible for the observed toxicity. An association between susceptibility to the lethal effects of NDZ and the Ah locus is suggested by experiments in backcross and F2 mice. The incidence of death observed after subacute treatment with 162 mg/kg-1 day-1 of NDZ matched that predicted on the basis of genotype, i.e., it was lethal to 72% of nonresponsive and 38% of aromatic hydrocarbon responsive mice.

Animals↗

The utilization of quantitative trait loci in toxicogenetics.

With the increasing number of marker loci available in mouse, the traditional method of recombinant inbred strains can be extended to searches for quantitative trait loci (QTL) influencing continuously distributed phenotypes. These loci have effect sizes too small to be easily detectable by conventional single-locus techniques. Collective, several QTL may account for a substantial proportion of the phenotypic variability. Prospective advantages of location of QTL in toxicology-relevant phenotypes include opportunities for the study of mechanism, prospects of generating animal models by genotypic selection, study of the dynamics of gene interaction, and guiding the search for homologous genes in human beings.

Alleles↗

Drugs in the acute porphyrias--toxicogenetic diseases.

The acute Porphyrias are examples of toxico-genetic diseases and diseases genetically acquired, which show an idiosyncratic reaction to certain chemicals and drugs. Porphyrics are at risk of developing an acute attack if exposed to various precipitating factors of which drugs are the most common factor. This paper presents lists of drugs complied into those hazardous for patients with acute porphyria and those thought to be safe.

Contraindications↗

Black bean (Phaseolus vulgaris L.) as a protective agent against DNA damage in mice.

This study was designed to evaluate the toxicogenetic or protective effect of cooked and dehydrated black beans (Phaseolus vulgaris L.) in bone marrow and peripheral blood cells of exposed mice. The frequency of micronuclei detected using the bone marrow erythrocyte micronucleus test and level of DNA lesions detected by the comet assay were chosen as end-points reflecting mutagenic and genotoxic damage, respectively. Initially, Swiss male mice were fed with a 20% black bean diet in order to detect mutagenic and genotoxic activity. However, no increase in the frequency of bone marrow micronucleated polychromatic erythrocytes (MN PCEs) or DNA lesion in leukocytes was observed. In contrast, received diets containing 1, 10 or 20% of black beans, a clear, but not dose-dependent reduction in the frequency of MN PCEs were observed in animals simultaneously treated with cyclophosphamide, an indirect acting mutagen. Similar results were observed in leukocytes by the comet assay. Commercial anthocyanin was also tested in an attempt to identify the bean components responsible for this protective effect. However, instead of being protective, the flavonoid, at the highest dose administered (50 mg/kg bw), induced primary DNA lesion, as detected by the comet assay. These data indicate the importance of food components in preventing genetic damage induced by chemical mutagens, and also reinforce the role of toxicogenetic techniques in protecting human health.

Animals↗

Mercapturic acids revisited as biomarkers of exposure to reactive chemicals in occupational toxicology: a minireview.

A minireview is presented concerning the use of mercapturic acids as biological exposure index for electrophilic chemicals. Besides pure analytical aspects, this minireview considers possible issues in relation to (a) the added value of mercapturic acids as compared to other well validated biomarkers of exposure and (b) the high inter-individual variability in mercapturic acids excretion. Recent field and/or experimental studies confirm the usefulness of mercapturic acids as biological exposure index for electrophilic chemicals and suggest the interest of a toxicogenetic approach for a better interpretation of the results of biological monitoring.

Acetylcysteine↗

The action of the herbicide paraquat on somatic and germ cells of mice.

The genotoxic potential of paraquat was evaluated in mouse somatic (bone marrow) and germ (spermatozoa) cells. Two exposure schedules were conducted: single and multiple treatment. Only for multiple treatment was an increased frequency of chromosomal aberrations observed. In germ cells, paraquat induced an increase of sperm-shape abnormalities when the animals were treated at three stages of cell development: spermatozoa, spermatid and preleptotene spermatogonial cells. These toxicogenetic effects might be attributed to the ability of paraquat to generate oxygen free radicals.

Animals↗

Possible ethnic difference in toluene metabolism: a comparative study among Chinese, Turkish and Japanese solvent workers.

Toluene metabolism was studied in 192 Chinese workers in comparison with that in 130 Japanese and 17 Turks. Time-weighted average concentrations of toluene in the breathing zone of workers were measured utilizing passive dosimeters, and hippuric acid (HA) and omicron-cresol (omicron C) concentrations in shift-end spot urine samples by high-performance liquid chromatography (HPLC) and gas chromatography (GC), respectively. Under similar exposure conditions, male Japanese excreted almost twice as much HA as male Chinese, although such difference was less marked between female Chinese and Japanese. In contrast, the excretion of oC did not differ between the two ethnic groups. The ratio of oC over HA was highest among Turkish workers followed by Chinese, and lowest among Japanese. Possible roles of differences in toxicogenetics as well as in life patterns were discussed.

China↗

Developing sustainable studies on environmental health.

Toxicogenetics, toxicogenomics and proteomics are providing new biomarkers for use in human studies. These, coupled with the more traditional biological responses currently in use, provide a vast armamentarium for assessing exposures, effects and susceptibility factors relating to environmental pollutants. Biomarker availability, however, does not automatically translate to usefulness for studies directed at human health improvement. Transitional studies bridging the gap between laboratory and field, with the biomarker as dependent variable, are required for validation for intended applications. Prospective or cross-sectional studies are usually optimal for validating biomarkers of exposure, where the biomarker response follows the event (exposure) and the entire study population is affected. Biomarkers of effect, where the event (outcome) follows the biomarker response and may be infrequent in the study population, present more complex problems. Identification of genotypes as susceptibility factors requires that additional issues be addressed. Despite these difficulties, new data are emerging from transitional investigations that are providing validated biomarkers for sustainable human studies. It is now possible to envision schemes for integrating the results of molecular epidemiological investigations into the general toxicological evaluations of environmental agents. These will allow intermediate endpoints to be used for making realistic human health assessments and for elucidating pathogenic mechanisms that identify targets for intervention, all with the goal of preventing environmentally mediated human disease. Finally, select biomarker responses that predict the likelihood of disease occurrence will find application in the interpretation of individual medical diagnostic tests, with the goal of improving cancer detection and management.

Animals↗

Genomics and the prediction of xenobiotic toxicity.

The systematic identification and functional analysis of human genes is revolutionizing the study of disease processes and the development and rational use of drugs. It increasingly enables medicine to make reliable assessments of the individual risk to acquire a particular disease, raises the number and specificity of drug targets and explains interindividual variation of the effectiveness and toxicity of drugs. Mutant alleles at a single gene locus for more than 20 drug metabolizing enzymes are some of the best studied individual risk factors for adverse drug reactions and xenobiotic toxicity. Increasingly, genetic polymorphisms of transporter and receptor systems are also recognized as causing interindividual variation in drug response and drug toxicity. However, pharmacogenetic and toxicogenetic factors rarely act alone; they produce a phenotype in concert with other variant genes and with environmental factors. Environmental factors may affect gene expression in many ways. For instance, numerous drugs induce their own and the metabolism of other xenobiotics by interacting with nuclear receptors such as AhR, PPAR, PXR and CAR. Genomics is providing the information and technology to analyze these complex situations to obtain individual genotypic and gene expression information to assess the risk of toxicity.

Drug-Related Side Effects and Adverse Reactions↗

What is toxicology and how does toxicity occur?

Toxicology has matured since it was defined as the 'science of poisons'. Modern toxicology is no longer anthropocentric but takes on different views at various biological systems, including ecosystems. Each will interact specifically when exposed to defined chemical agents, including drugs. Adverse effects during drug therapy or after (accidental) poisoning are the result of some negative interactions between the agent and the exposed biological system. Toxicity is no longer a specific property of drugs and chemicals but an operative term to describe the adverse outcome of a specific drugs-host interaction. Newer developments in toxicology have focused on the host. Toxicogenetics continues to provide answers to variations of host response to xenobiotics, including drugs. Clinically relevant genetic polymorphisms and gene defects have been detected, and their number is rapidly growing. The key to understanding is in the host proteins that interact with the drug and mediate the cellular response. Hence, the proteom, i.e. the complete set of proteins of a cell, an individual or a species, determines how an exposed biological system may interact with the manifold of different xenobiotics. Structure-activity studies try to find out useful predictive parameters for risk and toxicity assessment.

Absorption↗

Genetic variation and exposure related risk estimation: will toxicology enter a new era? DNA repair and cancer as a paradigm.

With the vast technological and informational resources increasingly available from investments in "genomics," toxicology and much of biological science, is faced with previously undreamed of opportunities and equally daunting challenges. The ability to generate the large quantities of data becoming routinely available could not be imagined a decade ago. The complexities of data analysis are increasingly the rate-limiting element in scientific advances. The expectations that these large scientific investments will reduce the incidence of human disease and improve health are very high. An emphasis on genetic variation and Toxicogenetics is expected to yield risk estimates for specific rather than average individuals and individuals with varied lifestyles and complex patterns of exposure. Examples from studies of polymorphic variation in DNA repair genes in the healthy population and cancer risk highlight the complexity and challenges of incorporating genetic variation into quantitative estimates of risk associated with environmentally relevant exposures. Similar issues exist in selecting the animal models most appropriate for predicting human risk from environmental exposures to toxic agents.

Animals↗

Glucuronidation of 1'-hydroxyestragole (1'-HE) by human UDP-glucuronosyltransferases UGT2B7 and UGT1A9.

Estragole (4-allyl-1-methoxybenzene) is a naturally occurring food flavoring agent found in basil, fennel, bay leaves, and other spices. Estragole and its metabolite, 1'-hydroxyestragole (1'-HE), are hepatocarcinogens in rodent models. Recent studies from our laboratory have shown that glucuronidation of 1'-HE is a major detoxification pathway for estragole and 1'-HE, accounting for as much as 30% of urinary metabolites of estragole in rodents. Therefore, this study was designed to investigate the glucuronidation of 1'-HE in human liver microsomes in vitro and identify the specific uridine diphosphate glucuronosyltransferase (UGT) isoforms responsible for 1'-HE glucuronidation. The formation of the glucuronide of 1'-HE (1'-HEG) followed atypical kinetics, and the data best fit to a Hill equation, resulting in apparent kinetic parameters of Km = 1.45 mM, Vmax = 164.5 pmoles/min/mg protein, and n = 1.4. There was a significant intersubject variation in 1'-HE glucuronidation in 27 human liver samples, with a CV of 42%. A screen of cDNA expressed UGT isoforms indicated that UGT2B7 (83.94 +/- 0.188 pmols/min/mg), UGT1A9 (51.36 +/- 0.72 pmoles/min/mg), and UGT2B15 (8.18 +/- 0.037 pmoles/min/mg) were responsible for 1'-HEG formation. Glucuronidation of 1'-HE was not detected in cells expressing UGT1A1, UGT1A3, UGT1A4, UGT1A6, UGT1A7, UGT1A8, and UGT1A10. 1'-HE glucuronidation in 27 individual human liver samples significantly (p < 0.05) correlated with the glucuronidation of other UGT2B7 substrates (morphine and ibuprofen). These results imply that concomitant chronic intake of therapeutic drugs and dietary components that are UGT2B7 and/or UGT1A9 substrates may interfere with estragole metabolism. Our results also have toxicogenetic significance, as UGT2B7 is polymorphic and could potentially result in genetic differences in glucuronidation of 1'-HE and, hence, toxicity of estragole.

Analgesics, Opioid↗