The University of Kentucky Superfund Research Center (UK-SRC) Data Management and Analysis Core (DMAC) has a goal to provide an overarching technology and research support infrastructure for the management and integration of data and information assets. Given that interdisciplinary research requires researchers to use methods and data from a range of disciplines, this goal addresses a critical need for interdisciplinary research to overcome hurdles posed by discipline-specific methods that impede progress when many disciplines attempt to share data. The DMAC is designed in alignment with FAIR (Findable, Assessable, Interoperable, and Reusable) data principles to encourage interaction of data users and sharing of data.
The specific aims are: 1) coordination of projects and cores; 2) foster data integration, sharing, and interoperability; 3) ensure data quality assurance and quality control (QA/QC). The datasets to be managed and curated within the DMAC, encompass the full range of basic research to translational work, from animal- based studies to chemical analysis, from experimental studies evaluating remediation of hazardous substances to community engagement activities. The DMAC will engage regularly with project/core leaders to prioritize data sets. It will streamline analytic resources, data management, data quality validation, and data integration across projects and cores to improve efficiencies and reproducibility, enhance project coordination, and promote resource sharing. The DMAC will promote interoperability by incorporating FAIR guiding principles in its data dashboards, data archives, and its query exploration interface to permit projects and cores to better integrate. By developing common terminologies, data dictionaries, training, etc., the DMAC will facilitate a common data resource to foster sharing within, and beyond the UK-SRC. To facilitate interaction with investigators and trainees there will be (on-site and electronic) opportunities for regular interaction with biostatisticians, data scientists, and informaticians where formal and informal training can occur. These activities will be coordinated and advertised closely with the Research Experience Training Coordination Core (RETCC). The DMAC will create a new WHY ENVIRONMENT module to enable projects and cores to engage in investigator-initiated research translation activities to allow them to form new questions and hypotheses that can be tested in projects and cores and shared beyond the confines of UK-SRC. Lastly, the DMAC will incorporate best practices outlined by Data Observation Network for Earth (DataONE.org). It will establish a plan for data QA/QC so that UK-SRC research will not be subjected to pitfalls associated with poor quality data.

Public Health Relevance

The Data Management and Analysis Core (DMAC) of the University of Kentucky Superfund Research Center (UK-SRC) provides an integral new resource by functioning as a nexus for interactions across projects and cores. It systematically integrates data assets through the entire lifecycle of the grant and facilitates interaction of investigators and trainees to assist them in conducting research that addresses Superfund mandates. The DMAC will foster data sharing within and beyond UK-SRC, including researchers, as well as community stakeholders, and governmental agencies committed to protecting public health from the adverse effects of hazardous chemicals.

Agency
National Institute of Health (NIH)
Institute
National Institute of Environmental Health Sciences (NIEHS)
Type
Hazardous Substances Basic Research Grants Program (NIEHS) (P42)
Project #
2P42ES007380-22
Application #
9841177
Study Section
Special Emphasis Panel (ZES1)
Project Start
Project End
Budget Start
2019-12-01
Budget End
2020-11-30
Support Year
22
Fiscal Year
2020
Total Cost
Indirect Cost
Name
University of Kentucky
Department
Type
DUNS #
939017877
City
Lexington
State
KY
Country
United States
Zip Code
40526
Petriello, Michael C; Hoffman, Jessie B; Vsevolozhskaya, Olga et al. (2018) Dioxin-like PCB 126 increases intestinal inflammation and disrupts gut microbiota and metabolic homeostasis. Environ Pollut 242:1022-1032
Petriello, Michael C; Charnigo, Richard; Sunkara, Manjula et al. (2018) Relationship between serum trimethylamine N-oxide and exposure to dioxin-like pollutants. Environ Res 162:211-218
Deng, Pan; Barney, Jazmyne; Petriello, Michael C et al. (2018) Hepatic metabolomics reveals that liver injury increases PCB 126-induced oxidative stress and metabolic dysfunction. Chemosphere 217:140-149
Preston, Joshua D; Reynolds, Leryn J; Pearson, Kevin J (2018) Developmental Origins of Health Span and Life Span: A Mini-Review. Gerontology 64:237-245
Gupta, Prachi; Thompson, Brendan L; Wahlang, Banrida et al. (2018) The environmental pollutant, polychlorinated biphenyls, and cardiovascular disease: a potential target for antioxidant nanotherapeutics. Drug Deliv Transl Res 8:740-759
Roghani, Mohammadyousef; Jacobs, Olivia P; Miller, Anthony et al. (2018) Occurrence of chlorinated volatile organic compounds (VOCs) in a sanitary sewer system: Implications for assessing vapor intrusion alternative pathways. Sci Total Environ 616-617:1149-1162
Ahmad, Irfan; Weng, Jiaying; Stromberg, A J et al. (2018) Fluorescence based detection of polychlorinated biphenyls (PCBs) in water using hydrophobic interactions. Analyst :
Hernández, Sebastián; Porter, Cassandra; Zhang, Xinyi et al. (2017) Layer-by-layer Assembled Membranes with Immobilized Porins. RSC Adv 7:56123-56136
Wahlang, Banrida; Barney, Jazmyne; Thompson, Brendan et al. (2017) Editor's Highlight: PCB126 Exposure Increases Risk for Peripheral Vascular Diseases in a Liver Injury Mouse Model. Toxicol Sci 160:256-267
Bertrand, Luc; Dygert, Levi; Toborek, Michal (2017) Induction of Ischemic Stroke and Ischemia-reperfusion in Mice Using the Middle Artery Occlusion Technique and Visualization of Infarct Area. J Vis Exp :

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