Partnering TT© Imrove Human Exposure Methods

M. Medina-Vera, K. Bradham, S. Harper, A. Lindstrom, M. Strynar, R. Seila, J. Starr
US Environmental Protection Agency, Research Triangle Park, NC



Methods development research is an application
driven scientific area that addresses the Agency's
programmatic needs. The goals are to reduce measurement
uncertainties and data gaps, and to improve existing analytical
procedures for estimating human exposures. Methods
development researchers are working to maximize the
effectiveness of the program and resources by integrating
methods research across the National Exposure Research
Laboratory (NERL) and partnering with other ORD
laboratories, Regions, Program Offices, and Federal Agencies.
The methods developed and the data produced are being
used to perform risk assessments, make regulatory decisions,
provide tools to state governments, and provide databases to
the general public on potential exposures,

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•	Apply research to specific programmatic needs

•	Develop methods for determining human exposures to new
chemicals

•	Reduce uncertainties and data gaps

•	Improve existing analytical procedures

•	Maximize resources by integrating research efforts and
partnering with other laboratories, program offices, federal
agencies and state governments

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¦	Identify programmatic needs

¦	Perform a customer value analysis

¦	Propose research. Contact collaborators

¦	Get customer feedback on proposed research

¦	Peer review research plan

¦	Develop, test, evaluate, apply and deliver method

¦	Customer feedback and performance/utility measures of
product/data delivered

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Partnerships have proven to be effective means to
integrate research and maximize resources. New areas
of research mean new partnerships. Future directions
include collaborations with the new centers (e.g. Center for
Computational Toxicology).

Disclaimer: Although this work was reviewed by EPA and approved
for publication, it may not necessarily reflect official Agency policy.

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Chromated Copper Arsenate
(CCA) Methods Research

Potential Human Exposure Routes: dermal, ingestion
Outcome: increased cancer risk

Methods: in-vitro methods for arsenic, in-vivo bioavailabJe
techniques, standard operating procedures (SOPs) for
sampling and analyses

NERL Contacts: Sharon Harper, Karen Bradham

Collaborators: National Risk Management Research
Laboratory (NRMRL, M. Mason), Consumer Safety Product
Commission

Impact: Analytical data produced will complement NRMRL
dermal transfer data to be reported to Office of Pesticide
Programs for guidance on management of the arsenic risk
from CCA-treated \vood.

Perfluorinated Compounds
(PFCs) Methods Research —

Fluoro-telomer Alcohols, Perfluorinated Acids
& Sulfonates

Potential Human Exposure Routes: ingestion (primary),
inhalation, dermal.

Outcome: potential endocrine disrupting compound (EDC),
neonatal malformations, potential carcinogenic (occupational
exposure), teratogenic (occupational exposure)

Methods: GC/MS, LC/MS/MS

NERL Contacts: Andrew Lindstrom, Mark Strynar

Collaborators: National Health & Environmental Effects
Research Laboratory (NHEERL - C- Lau), NRMRL
(J. Rosati), Office of Prevention, Pesticides & Toxic
Substances (OPPTS- L. Libelo, J. Seed)

Impact: Data will help OPPTS assess sources of residential
exposure and potential risks. NHEERL will use serum,
liver, kidney, and brain data for Physiologically Based
Pharmacokinetic (PBPK) modeling. NRMRL will use coated
paper bags data for indoor air quality study. OPPTS will
use soil and dust data for the PFOS/PFOA assessment of
the enforceable consent agreement. It will also help OPPTS
to determine potential sources of perfluorinated compound
exposure and health effects. NERL-Athens will use the data
for biodegradation modeling projects.

Alkylphenol Ethoxylates (APE)
Methods

Potential Human Exposure Routes: dermal, ingestion

Outcome: known endocrine disruption

Methods: GC/MS,LC/MS, extraction

Collaborators: NERL (Myriam Medina-Vera), Region 3,
(Jennifer Gundersen), Region 5 (Larry Zintek)

Impact: Methods to obtain baseline discharge data (Michigan,
Wisconsin)

7

Toxic Organics (TO) Series
Replacement Method — Pesticides

and Polychlorinated Biphenyls (TO-4A) Semi-
volatile Organic Compounds (TO-13)

Potential Human Exposure Routes: inhalation

Methods: Pressurized Fluid Extraction, new sampling
equipment & sampling method to replace the PS-1 sampler

NERL Contacts: James Starr, Elin Ulrich

Collaborators: Region 4 (Danny France, Tim Slagle, Sam
Dutton, and Sallie Hale)

Impact: Alternative method for current users of TO-4A and
TO-13 methods.

Detroit Exposure and Aerosol
Research Study (DEARS) —

Air toxics & Particulat Matter (PM)

Potential Human Exposure Route: inhalation

Outcome: potential adverse health effects, including
premature mortality and higher instances of respiratory illness

Methods: canister, personal exposure diffusion tubes, large
volume injection GC/MS

NERL Contacts: Robert Seila, Stephen McDow, David Olsen

Collaborators: NHEERL; National Center for Environmental
Assessment (NCEA); Office of Transportation & Air Quality;
Michigan Department of Environmental Quality; University
of Michigan

Impact: Data will be used by NCEA for criteria document &
by Office of Air Quality Planning and Standards to develop
standards which are protective of human health for PM, and
air toxics.

American Healthy Homes
Survey (AHHS) — National Survey of
Housing Related Hazards

Collaborators: NERL, Office of Pollution Prevention & Toxics
(OPPT, J. Smith) Office of Healthy Homes and Lead Hazard
Control, US Department of Housing and Urban Development
(HUD, W. Friedman)

NERL Contacts: Karen Bradham (main), Sharon Harper, Andy
Lindstrom, Mark Strynar, Dan Stout

Methods: Standard operating procedures (SOPs) for sampling
and analytical methods for pesticides, chromated copper
arsenic (CCA), and other environmental hazards

Impact: Sampling SOPs will be used by HUD for sample
collection. Analytical data will be included in the first national
residential multi-parameter database produced by HUD and EPA.



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