Genomic Analysis of Rodent Pulmonary Tissue Following Bis-(2-chloroethyl) Sulfide Exposure

Abstract

Bis-(2-chloroethyl) sulfide (sulfur mustard, SM) is a carcinogenic alkylating agent that has been utilized as a chemical warfare agent. To understand the mechanism of SM-induced lung injury, we analyzed global changes in gene expression in a rat lung SM exposure model. Rats were injected in the femoral vein with liquid SM, which circulates directly to the pulmonary vein and then to the lung. Rats were exposed to 1, 3, or 6 mg/kg of SM, and lungs were harvested at 0.5, 1, 3, 6, and 24 h postinjection. Three biological replicates were used for each time point and dose tested. RNA was extracted from the lungs and used as the starting material for the probing replicate oligonucleotide microarrays. The gene expression data were analyzed using principal component analysis and two-way analysis of variance to identify the genes most significantly changed across time and dose. These genes were ranked by p value and categorized based on molecular function and biological process. Computer-based data mining algorithms revealed several biological processes affected by SM exposure, including protein catabolism, apoptosis, and glycolysis. Several genes that are significantly upregulated in a dose-dependent fashion have been reported as p53 responsive genes, suggesting that cell cycle regulation and p53 activation are involved in the response to SM exposure in the lung. Thus, SM exposure induces transcriptional changes that reveal the cellular response to this potent alkylating agent.

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Document Details

Document Type
Technical Report
Publication Date
Jan 01, 2005
Accession Number
ADA468734

Entities

People

  • A. J. Sylvester
  • A. M. Sciuto
  • C. S. Phillips
  • J. F. Dillman Iii
  • L. M. Croxton
  • T. S. Moran

Organizations

  • United States Army Medical Research Institute of Chemical Defense

Tags

Communities of Interest

  • Biomedical

DTIC Thesaurus Topics

  • Alkylating Agents
  • Arteries
  • Blood
  • Body Weight
  • Cell Physiological Processes
  • Cells
  • Chemical Warfare
  • Chemical Warfare Agents
  • Data Mining
  • Dna Microarrays
  • Gene Expression
  • Information Science
  • Lung Diseases
  • Polymerase Chain Reaction
  • Rodents
  • Statistical Analysis
  • Veins

Fields of Study

  • Biology

Readers

  • Immunology and Pathology
  • Molecular and genetic basis of cancer.
  • Toxicology/Environmental Toxicology

Technology Areas

  • AI & ML