PULMONARY ADAPTIVE RESPONSES AND CADMIUM CARCINOGENESIS
Project Number1R01ES008991-01
Contact PI/Project LeaderHART, BETH A
Awardee OrganizationUNIVERSITY OF VERMONT & ST AGRIC COLLEGE
Description
Abstract Text
DESCRIPTION (Adapted from the Investigator's Abstract): Cadmium is an
atmospheric pollutant, a tobacco smoke contaminant, and a human lung
carcinogen. The investigators have previously demonstrated that chronic
cadmium exposure to both cell lines and whole animal studies leads to the
emergence of an epithelial cell sub-population with increased resistance to
oxidant induced cell death. This new phenotype is hypothesized to be caused
by cadmium induced alterations in gene expression, linked mechanistically to
cellular glutathione levels and to a common transcription factor. Some of
these resistant cells may exhibit increased proliferation (when exposed to
tumor promoters) and are resistant to apoptosis. This could ultimately
cause clonal expansion and tumor formation. To test these hypotheses, the
investigators propose (1) study Cd- induced expression of known
cytoprotectins (metallothione, GSH S-transferase, heme oxygenase-1) and
enzymes that increase GSH levels (gamma glutamylcysteine synthetase and
gaama glutamyl transpeptidase) in rats; (2) immunolocalize these resistance
factors in presumptive lung tumor target sites (alveolar type II cells); (3)
establish the role of the Ap-1 transcription factor in lung epithelial cell
adaptation to cadmium and cross-tolerance to oxidants; (4) determine if
malondialdehyde-DNA adducts form in Cd exposed lung epithelial cells; (5)
evaluate the potential link between cadmium induced type II cell
proliferation and metallothione (MT) expression; and, (6) determine whether
Cd-adapted lung epithelial cells are resistant to normal apoptotic processes
by oxidants and cytokines and whether phorbal esters increase the
proliferative capacity to grow in culture and soft agar (as a marker for
tumor promotion).
Public Health Relevance Statement
Data not available.
NIH Spending Category
No NIH Spending Category available.
Project Terms
DNA damageapoptosiscadmiumchemical carcinogenchemical carcinogenesiscytokineenzyme activityenzyme induction /repressionglutamyltransferaseglutathione transferaseheme oxygenaselaboratory ratlung neoplasmsmalonaldehydemetallothioneinnutrition related neoplasm /cancernutrition related tagoxidizing agentsphorbolsrespiratory epitheliumrespiratory functionrespiratory toxintissue /cell culturetoxicologytranscription factor
National Institute of Environmental Health Sciences
CFDA Code
DUNS Number
066811191
UEI
Z94KLERAG5V9
Project Start Date
15-August-1997
Project End Date
31-July-2002
Budget Start Date
15-August-1997
Budget End Date
31-July-1998
Project Funding Information for 1997
Total Funding
$198,929
Direct Costs
$131,598
Indirect Costs
$67,331
Year
Funding IC
FY Total Cost by IC
1997
National Institute of Environmental Health Sciences
$198,929
Year
Funding IC
FY Total Cost by IC
Sub Projects
No Sub Projects information available for 1R01ES008991-01
Publications
Publications are associated with projects, but cannot be identified with any particular year of the project or fiscal year of funding. This is due to the continuous and cumulative nature of knowledge generation across the life of a project and the sometimes long and variable publishing timeline. Similarly, for multi-component projects, publications are associated with the parent core project and not with individual sub-projects.
No Publications available for 1R01ES008991-01
Patents
No Patents information available for 1R01ES008991-01
Outcomes
The Project Outcomes shown here are displayed verbatim as submitted by the Principal Investigator (PI) for this award. Any opinions, findings, and conclusions or recommendations expressed are those of the PI and do not necessarily reflect the views of the National Institutes of Health. NIH has not endorsed the content below.
No Outcomes available for 1R01ES008991-01
Clinical Studies
No Clinical Studies information available for 1R01ES008991-01
News and More
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History
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Similar Projects
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