Transcriptomics: applications in epigenetic toxicology
book or book chapter published in 2012
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Transcriptomics: applications in epigenetic toxicology
Summary
Transcriptomics: applications in epigenetic toxicology is a book or chapter[1].
Key Facts
- Transcriptomics: applications in epigenetic toxicology authored applications in epigenetic toxicology — author (P50): Pius Joseph[2].
- Transcriptomics: applications in epigenetic toxicology's instance of is recorded as applications in epigenetic toxicology — instance of (P31): book or chapter[3].
- Transcriptomics: applications in epigenetic toxicology's page is recorded as 445-458[4].
- Transcriptomics: applications in epigenetic toxicology's DOI is recorded as 10.1002/9781118349045.CH23[5].
- Transcriptomics: applications in epigenetic toxicology's part of is recorded as applications in epigenetic toxicology — part of (P361): Toxicology and epigenetics[6].
- Transcriptomics: applications in epigenetic toxicology's language of work or name is recorded as applications in epigenetic toxicology — language of work or name (P407): English[7].
- Transcriptomics: applications in epigenetic toxicology's publication date is recorded as +2012-08-08T00:00:00Z[8].
- Transcriptomics: applications in epigenetic toxicology's sponsor is recorded as applications in epigenetic toxicology — sponsor (P859): NIOSH Health Effects Laboratory Division[9].
- Transcriptomics: applications in epigenetic toxicology's main subject is recorded as applications in epigenetic toxicology — main subject (P921): construction[10].
- Transcriptomics: applications in epigenetic toxicology's main subject is recorded as applications in epigenetic toxicology — main subject (P921): industrial manufacturing[11].
- Transcriptomics: applications in epigenetic toxicology's main subject is recorded as applications in epigenetic toxicology — main subject (P921): gene[12].
- Transcriptomics: applications in epigenetic toxicology's main subject is recorded as applications in epigenetic toxicology — main subject (P921): toxicology[13].
- Transcriptomics: applications in epigenetic toxicology's main subject is recorded as applications in epigenetic toxicology — main subject (P921): environmental factor[14].
- Transcriptomics: applications in epigenetic toxicology's main subject is recorded as applications in epigenetic toxicology — main subject (P921): deoxyribonucleic acid[15].
- Transcriptomics: applications in epigenetic toxicology's main subject is recorded as applications in epigenetic toxicology — main subject (P921): recombinant DNA[16].
- Transcriptomics: applications in epigenetic toxicology's main subject is recorded as applications in epigenetic toxicology — main subject (P921): ribonucleic acid[17].
- Transcriptomics: applications in epigenetic toxicology's published in is recorded as applications in epigenetic toxicology — published in (P1433): Toxicology and epigenetics[18].
- Transcriptomics: applications in epigenetic toxicology's title is recorded as Transcriptomics: applications in epigenetic toxicology[19].
- Transcriptomics: applications in epigenetic toxicology's cites work is recorded as applications in epigenetic toxicology — cites work (P2860): Minimum information about a microarray experiment (MIAME)-toward standards for microarray data[20].
- Transcriptomics: applications in epigenetic toxicology's cites work is recorded as applications in epigenetic toxicology — cites work (P2860): Blood gene expression signatures predict exposure levels.[21].
- Transcriptomics: applications in epigenetic toxicology's cites work is recorded as applications in epigenetic toxicology — cites work (P2860): Single-Step Method of RNA Isolation by Acid Guanidinium Thiocyanate–Phenol–Chloroform Extraction[22].
- Transcriptomics: applications in epigenetic toxicology's cites work is recorded as applications in epigenetic toxicology — cites work (P2860): Microarray analysis in rat liver slices correctly predicts in vivo hepatotoxicity[23].
- Transcriptomics: applications in epigenetic toxicology's cites work is recorded as applications in epigenetic toxicology — cites work (P2860): A gene expression biomarker provides early prediction and mechanistic assessment of hepatic tumor induction by nongenotoxic chemicals[24].
- Transcriptomics: applications in epigenetic toxicology's cites work is recorded as applications in epigenetic toxicology — cites work (P2860): Interlaboratory evaluation of genomic signatures for predicting carcinogenicity in the rat.[25].
- Transcriptomics: applications in epigenetic toxicology's cites work is recorded as applications in epigenetic toxicology — cites work (P2860): Genes related to apoptosis predict necrosis of the liver as a phenotype observed in rats exposed to a compendium of hepatotoxicants[26].
Body
Works and Contributions
Transcriptomics: applications in epigenetic toxicology authored applications in epigenetic toxicology — author (P50): Pius Joseph[2].