CHEMICAL ANALYSIS FACILITY CORE Accurate and sensitive qualitative and quantitative determination of toxicants forms a core element of CEED?s mission. The Chemical Analysis Facility Core (CAF) maintains state-of-the-art measurement capabilities to identify and quantify levels of chemicals in the total environment; characterizing potential internal dose (from environmental matrices), metabolites and biologically effective doses in target tissues. The goal of this Facility Core is to provide Center investigators assistance in experimental design, sample preparation, assay development, training, and access to technologies. These analysis tools are necessary for accurate assessment of chemical exposures for targeted metabolite analyses (biological response indicators) that can be linked to mechanisms of pathogenesis. Analysis of toxicants and their metabolites in a variety of biological and environmental matrices (e.g., blood, urine, sputum, cellular extracts, water, soil, dust) is performed within the CAF using mass spectrometrically-based techniques. The CAF also generates detailed mechanistic and metabolomic information on toxicants and chemo preventive or therapeutic agents and supports rapid response initiatives and new sensor development. The CAF uses inductively- coupled plasma mass spectrometry (ICPMS) for the bulk of its elemental analysis, gas chromatography/mass spectrometry (GC/MS) for semi-volatile and volatile molecular analytes, and high/ultra-performance liquid chromatography/mass spectrometry (HPLC/MS) for nonvolatile and polar chemical analysis. Through University funding (see Facilities and Resources section) the CAF continues to expand its capacities in metabolomics for discovery of biomarkers that bridge exposure to resultant biological responses and, ultimately, disease pathogenesis.

Agency
National Institute of Health (NIH)
Institute
National Institute of Environmental Health Sciences (NIEHS)
Type
Center Core Grants (P30)
Project #
5P30ES005022-33
Application #
9927645
Study Section
Environmental Health Sciences Review Committee (EHS)
Project Start
Project End
Budget Start
2020-04-01
Budget End
2021-03-31
Support Year
33
Fiscal Year
2020
Total Cost
Indirect Cost
Name
Rbhs-School of Public Health
Department
Type
DUNS #
078795880
City
Piscataway
State
NJ
Country
United States
Zip Code
08854
Cory-Slechta, D A; Allen, J L; Conrad, K et al. (2018) Developmental exposure to low level ambient ultrafine particle air pollution and cognitive dysfunction. Neurotoxicology 69:217-231
Joseph, Laurie B; Composto, Gabriella M; Perez, Roberto M et al. (2018) Sulfur mustard induced mast cell degranulation in mouse skin is inhibited by a novel anti-inflammatory and anticholinergic bifunctional prodrug. Toxicol Lett 293:77-81
Mamounis, Kyle J; Hernandez, Michelle R; Margolies, Nicholas et al. (2018) Interaction of 17?-estradiol and dietary fatty acids on energy and glucose homeostasis in female mice. Nutr Neurosci 21:715-728
Graber, Judith M; Chuang, Connie T; Ward, Carolyn L et al. (2018) Head and Neck Cancer in World Trade Center Responders: A Case Series. J Occup Environ Med 60:e439-e444
Stapleton, P A; McBride, C R; Yi, J et al. (2018) Estrous cycle-dependent modulation of in vivo microvascular dysfunction after nanomaterial inhalation. Reprod Toxicol 78:20-28
Dai, Zhuqing; Feng, Simin; Liu, Anna et al. (2018) Anti-inflammatory effects of newly synthesized ?-galacto-oligosaccharides on dextran sulfate sodium-induced colitis in C57BL/6J mice. Food Res Int 109:350-357
Graber, Judith M; Alexander, Cora; Laumbach, Robert J et al. (2018) Per and polyfluoroalkyl substances (PFAS) blood levels after contamination of a community water supply and comparison with 2013-2014 NHANES. J Expo Sci Environ Epidemiol :
Feng, Simin; Dai, Zhuqing; Liu, Anna B et al. (2018) Intake of stigmasterol and ?-sitosterol alters lipid metabolism and alleviates NAFLD in mice fed a high-fat western-style diet. Biochim Biophys Acta Mol Cell Biol Lipids 1863:1274-1284
Sagona, Jessica A; Weisel, Clifford; Meng, Qingyu (2018) Accuracy and practicality of a portable ozone monitor for personal exposure estimates. Atmos Environ (1994) 175:120-126
Mauro, T; Hao, L; Pop, L C et al. (2018) Circulating zearalenone and its metabolites differ in women due to body mass index and food intake. Food Chem Toxicol 116:227-232

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