1.Current Progress of Next Generation Battery of Toxicology-Cellular and Molecular Toxicology, and Toxicogenomics.
Jae Chun RYU ; Seok joo YOON ; Jong Eun LEE ; Youn Jung KIM
Genomics & Informatics 2004;2(4):153-162
No abstract available.
Toxicogenetics*
;
Toxicology*
2.GraPT: Genomic InteRpreter about Predictive Toxicology.
Jung Hoon WOO ; Yu Rang PARK ; Yong JUNG ; Ji Hun KIM ; Ju Han KIM
Genomics & Informatics 2006;4(3):129-132
Toxicogenomics has recently emerged in the field of toxicology and the DNA microarray technique has become common strategy for predictive toxicology which studies molecular mechanism caused by exposure of chemical or environmental stress. Although microarray experiment offers extensive genomic information to the researchers, yet high dimensional characteristic of the data often makes it hard to extract meaningful result. Therefore we developed toxicant enrichment analysis similar to the common enrichment approach. We also developed web-based system graPT to enable considerable prediction of toxic endpoints of experimental chemical.
Oligonucleotide Array Sequence Analysis
;
Toxicogenetics
;
Toxicology*
3.Toxicogenomics and its application in safety evaluation of traditional Chinese medicine.
Xue-ping LIAN ; Ni AI ; Xiao-yan LU ; Xiao-hui FAN
China Journal of Chinese Materia Medica 2015;40(14):2690-2695
Toxicogenomics (TGx) refers to a set of technologies that assess genome-wide responses after toxic agent exposure. Altered gene expression patterns that are caused by specific exposures reveal how toxicants may disrupt cellular processes and lead to side effects. Development and application of " omics" technology facilitate the toxicogenomic research which sharing and interpretation of the enormous amount of biological information generated in toxicologic field. In recent years TGx has been widely valued and successfully applied as an effective research tool to evaluate the toxic effects of traditional Chinese medicine (TCM). Here we reviewed current progress in the field of TGx and focused on its application in traditional Chinese medicine safety evaluation, especially in revealing the mechanism, finding potential toxic biomarkers and studying compatibility detoxification of TCM.
Medicine, Chinese Traditional
;
adverse effects
;
Safety
;
Toxicogenetics
5.XPERNATO-TOX: an Integrated Toxicogenomics Knowledgebase.
Jung Hoon WOO ; Hyeoun Eui KIM ; Gu KONG ; Ju Han KIM
Genomics & Informatics 2006;4(1):40-44
Toxicogenomics combines transcriptome, proteome and metabolome profiling with conventional toxicology to investigate the interaction between biological molecules and toxicant or environmental stress in disease caution. Toxicogenomics faces the problems of comparison and integration across different sources of data. Cause of unusual characteristics of toxicogenomic data, researcher should be assisted by data analysis and annotation for getting meaningful information. There are already existing repositories which claim to stand for toxicogenomics database. However, those just contain limited abilities for toxicogenomic research. For supporting toxicologist who comes up against toxicogenomic data flood, now we propose novel toxicogenomics knowledgebase system, XPERANTO-TOX. XPERANTO-TOX is an integrated system for toxicogenomic data management and analysis. It is composed of three distinct but closely connected parts. Firstly, Data Storage System is for reposit many kinds of '-omics' data and conventional toxicology data. Secondly, Data Analysis System consists of analytical modules for integrated toxicogenomics data. At last, Data Annotation System is for giving extensive insight of data to researcher.
Information Storage and Retrieval
;
Knowledge Bases*
;
Metabolome
;
Proteome
;
Statistics as Topic
;
Toxicogenetics*
;
Toxicology
;
Transcriptome
6.Pharmacomicrobiomics: a novel route towards personalized medicine?
Marwah DOESTZADA ; Arnau Vich VILA ; Alexandra ZHERNAKOVA ; Debby P Y KOONEN ; Rinse K WEERSMA ; Daan J TOUW ; Folkert KUIPERS ; Cisca WIJMENGA ; Jingyuan FU
Protein & Cell 2018;9(5):432-445
Inter-individual heterogeneity in drug response is a serious problem that affects the patient's wellbeing and poses enormous clinical and financial burdens on a societal level. Pharmacogenomics has been at the forefront of research into the impact of individual genetic background on drug response variability or drug toxicity, and recently the gut microbiome, which has also been called the second genome, has been recognized as an important player in this respect. Moreover, the microbiome is a very attractive target for improving drug efficacy and safety due to the opportunities to manipulate its composition. Pharmacomicrobiomics is an emerging field that investigates the interplay of microbiome variation and drugs response and disposition (absorption, distribution, metabolism and excretion). In this review, we provide a historical overview and examine current state-of-the-art knowledge on the complex interactions between gut microbiome, host and drugs. We argue that combining pharmacogenomics and pharmacomicrobiomics will provide an important foundation for making major advances in personalized medicine.
Anti-Infective Agents
;
pharmacology
;
Biodiversity
;
Humans
;
Microbiota
;
Pharmacogenetics
;
Precision Medicine
;
Toxicogenetics
7.Gene Expression Profiling of 6-MP (6-mercaptopurine) in Liver.
Hyung Lae KIM ; Han Na KIM ; Eun Ju LEE
Genomics & Informatics 2006;4(1):16-22
The KFDA (Korea Food & Drug Administration) has performed a collaborative toxicogenomics project since 2003. Its aim is to construct a toxicology database of 12 compounds administered to mice at initial phase. We chose 6-MP (6-mercaptopurine) which has been used in the treatment of childhood leukemia. It was administered at low (0.224 mg/kg) and at high (2.24 mg/kg) dose (5 mice per group) intraperitonealy to the postnatal 6 weeks mice, then the serum and liver were collected at the indicated time (6, 24 and 72 h) after scarification. Serum biochemical markers for liver toxicity were measured and histopathologic studies also were carried out. The gene expression profiling was carried out by using Applied Biosystems 1700 Full Genome Expression Mouse. By self-organization maps (SOM), we identified groups with unique gene expression patterns, some of them are supposed to be related to 6-MP induced toxicity, including lipid metabolism abnormality, inflammatory response, oxidative stress, ATP depletion and cell death. The potential toxic effects appearing as gene expression changes are dependent of the time of 6-MP but independent of the dosage of it. This study would contribute to establishment of international database as well as national one about hepatotoxicity.
Adenosine Triphosphate
;
Animals
;
Cell Death
;
Gene Expression Profiling*
;
Gene Expression*
;
Genome
;
Leukemia
;
Lipid Metabolism
;
Liver*
;
Mice
;
Microarray Analysis
;
Oxidative Stress
;
Toxicogenetics
;
Toxicology
;
Biomarkers
8.Predictive and Prognostic Biomarkers of Respiratory Diseases due to Particulate Matter Exposure.
Hyo Jeong KIM ; Min Gi CHOI ; Moo Kyun PARK ; Young Rok SEO
Journal of Cancer Prevention 2017;22(1):6-15
Air pollution is getting severe and concerns about its toxicity effects on airway and lung disease are also increasing. Particulate matter (PM) is major component of air pollutant. It causes respiratory diseases, such as asthma, chronic obstructive pulmonary disease, lung cancer, and so on. PM particles enter the airway and lung by inhalation, causing damages to them. Especially, PM2.5 can penetrate into the alveolus and pass to the systemic circulation. It can affect the cardiopulmonary system and cause cardiopulmonary disorders. In this review, we focused on PM-inducing toxicity mechanisms in the framework of oxidative stress, inflammation, and epigenetic changes. We also reviewed its correlation with respiratory diseases. In addition, we reviewed biomarkers related to PM-induced respiratory diseases. These biomarkers might be used for disease prediction and early diagnosis. With recent trend of using genomic analysis tools in the field of toxicogenomics, respiratory disease biomarkers associated with PM will be continuously investigated. Effective biomarkers derived from earlier studies and further studies might be utilized to reduce respiratory diseases.
Air Pollution
;
Asthma
;
Biomarkers*
;
Early Diagnosis
;
Epigenomics
;
Inflammation
;
Inhalation
;
Lung
;
Lung Diseases
;
Lung Neoplasms
;
Oxidative Stress
;
Particulate Matter*
;
Pulmonary Disease, Chronic Obstructive
;
Toxicogenetics
9.Expression Levels of GABA-A Receptor Subunit Alpha 3, Gabra3 and Lipoprotein Lipase, Lpl Are Associated with the Susceptibility to Acetaminophen-Induced Hepatotoxicity.
Minjeong KIM ; Jun Won YUN ; Kyeho SHIN ; Yejin CHO ; Mijeong YANG ; Ki Taek NAM ; Kyung Min LIM
Biomolecules & Therapeutics 2017;25(2):112-121
Drug-induced liver injury (DILI) is the serious and fatal drug-associated adverse effect, but its incidence is very low and individual variation in severity is substantial. Acetaminophen (APAP)-induced liver injury accounts for >50% of reported DILI cases but little is known for the cause of individual variations in the severity. Intrinsic genetic variation is considered a key element but the identity of the genes was not well-established. Here, pre-biopsy method and microarray technique was applied to uncover the key genes for APAP-induced liver injury in mice, and a cause and effect experiment employing quantitative real-time PCR was conducted to confirm the correlation between the uncovered genes and APAP-induced hepatotoxicity. We identified the innately and differentially expressed genes of mice susceptible to APAP-induced hepatotoxicity in the pre-biopsied liver tissue before APAP treatment through microarray analysis of the global gene expression profiles (Affymetrix GeneChip® Mouse Gene 1.0 ST for 28,853 genes). Expression of 16 genes including Gdap10, Lpl, Gabra3 and Ccrn4l were significantly different (t-test: FDR <10%) more than 1.5 fold in the susceptible animals than resistant. To confirm the association with the susceptibility to APAP-induced hepatotoxicity, another set of animals were measured for the expression level of selected 4 genes (higher two and lower two genes) in the liver pre-biopsy and their sensitivity to APAP-induced hepatotoxicity was evaluated by post hoc. Notably, the expressions of Gabra3 and Lpl were significantly correlated with the severity of liver injury (p<0.05) demonstrating that these genes may be linked to the susceptibility to APAP-induced hepatotoxicity.
Acetaminophen
;
Animals
;
Drug-Induced Liver Injury
;
Genetic Variation
;
Incidence
;
Lipoprotein Lipase*
;
Lipoproteins*
;
Liver
;
Methods
;
Mice
;
Microarray Analysis
;
Real-Time Polymerase Chain Reaction
;
Receptors, GABA-A*
;
Toxicogenetics
;
Transcriptome
10.The prospect of application of toxicogenetics/pharmcogenetics theory and methods in forensic practice.
Dan-na SHEN ; Xu-fu YI ; Xiao-gang CHEN ; Tong-li XU ; Li-juan CUI
Journal of Forensic Medicine 2007;23(5):362-364
Individual response to drugs, toxicants, environmental chemicals and allergens varies with genotype. Some respond well to these substances without significant consequences, while others may respond strongly with severe consequences and even death. Toxicogenetics and toxicogenomics as well as pharmacogenetics explain the genetic basis for the variations of individual response to toxicants by sequencing the human genome and large-scale identification of genome polymorphism. The new disciplines will provide a new route for forensic specialists to determine the cause of death.
Cytochrome P-450 Enzyme System/genetics*
;
Drug Hypersensitivity/genetics*
;
Forensic Medicine
;
Genetic Predisposition to Disease/genetics*
;
Genome, Human
;
Humans
;
Pharmacogenetics/trends*
;
Pharmacokinetics
;
Polymorphism, Single Nucleotide
;
Toxicogenetics/trends*