Description

The US Department of Defense (DOD) is faced with an overwhelming task in evaluating chemicals that could potentially pose a threat to its deployed personnel. There are over 84,000 registered chemicals, and testing them with traditional toxicity-testing methods is not feasible in terms of time or money. In recent years, there has been a concerted effort to develop new approaches to toxicity testing that incorporate advances in systems biology, toxicogenomics, bioinformatics, and computational toxicology. Given the advances, DOD asked the National Research Council to determine how DOD could use modern approaches for predicting chemical toxicity in its efforts to prevent debilitating, acute exposures to deployed personnel. This report provides an overall conceptual approach that DOD could use to develop a predictive toxicology system. Application of Modern Toxicology Approaches for Predicting Acute Toxicity for Chemical Defense reviews the current state of computational and high-throughput approaches for predicting acute toxicity and suggests methods for integrating data and predictions. This report concludes with lessons learned from current high-throughput screening programs and suggests some initial steps for DOD investment.

More Information

Rights Information

All rights held excluding Japan, China, Republic of Korea

Marketing Information

http://www.nap.edu/21775

National Academies Press

National Academies Press

The National Academies Press (NAP) publish the reports of the National Academies of Sciences, Engineering and Medicine. They published more than 200 books a year on a wide range of topics.

View all titles

Bibliographic Information

  • Publisher National Academies Press
  • Publication Date October 2015
  • Orginal LanguageEnglish
  • ISBN/Identifier 9780309376662
  • Publication Country or regionUnited States
  • FormatPaperback
  • Primary Price 58 USD
  • Pages134
  • ReadershipProfessional and scholarly
  • Publish StatusPublished
  • Dimensions11 x 8.5 inches
  • Biblio NotesRelated Digital edition - 9780309376679 . Copyright year 2015.

Subscribe to our

newsletter