Puerto Rico offers a unique opportunity to collect longitudinal data on women at high risk of preterm births to explore relationships with environmental exposures because: (1) at 19.9%, Puerto Rico has the highest rate of preterm births of any jurisdiction in the US, (2) the rate of preterm birth has been increasing since 1995 and had not reached a plateau as of 2006, (3) preliminary data show that the observed increase is not explained by the traditional risk factors of preterm birth, including access to health care, tobacco exposure in pregnancy, maternal education, type of delivery, and maternal age, and (4) it has a high density of Superfund and national priority list sites within its 3500 square miles with well-documented contamination. Core C """"""""Human Subjects and Sampling (HSS)"""""""" is designed to provide human subjects data and human and environmental specimens to four projects to facilitate much-needed research on demographic, environmental and genetic contributors to preterm birth. The University of Puerto Rico Medical Science Campus and the Graduate School of Public Health have the infrastructure and long-term experience in conducting clinical studies and population-based surveys in a culturally-sensitive manner, and will be the main site for coordination and execution of the recruitment, data and biological sample collection needed to support this program. Recruitment for the Core will take place at three hospitals in Puerto Rico's north coast with high rates of preterm birth (up to 41% of births) and their affiliated physician's clinics. A total of 1200 women will be recruited through the core during their second trimester, and detailed information on potential predictors of preterm birth, including medical and pregnancy history, demographic variables, self-reported environmental exposures, etc., will be collected through a research nurse-administered interview. Blood and urine samples, along with added exposure information, will be collected from the women at their 20-week and 28-week prenatal visits. At delivery, maternal blood and hair, cord blood, and placental tissue will be collected from a subset of women, and clinical data will be recorded for all births. All samples will be collected, processed and stored according to strict protocols. Samples will then be packaged and transferred to the various investigators and sites in regular batches to support the individual projects'research aims.

Public Health Relevance

Core C Human Subjects and Sampling is designed to provide human and environmental specimens and human subjects data to multiple projects in the program to facilitate much-needed research on demographic, environmental and genetic contributors to preterm birth. Knowledge gained through this research will inform effective public health strategies for preventing the high rate of preterm births in Puerto Rico and the US, as well as approaches for reducing exposures to environmental contaminants among pregnant women.

Agency
National Institute of Health (NIH)
Institute
National Institute of Environmental Health Sciences (NIEHS)
Type
Hazardous Substances Basic Research Grants Program (NIEHS) (P42)
Project #
1P42ES017198-01A1
Application #
7936558
Study Section
Special Emphasis Panel (ZES1-LWJ-M (O1))
Project Start
2010-04-12
Project End
2014-03-31
Budget Start
2010-04-12
Budget End
2011-03-31
Support Year
1
Fiscal Year
2010
Total Cost
$388,999
Indirect Cost
Name
Northeastern University
Department
Type
DUNS #
001423631
City
Boston
State
MA
Country
United States
Zip Code
02115
Aker, Amira M; Ferguson, Kelly K; Rosario, Zaira Y et al. (2018) The associations between prenatal exposure to triclocarban, phenols and parabens with gestational age and birth weight in northern Puerto Rico. Environ Res 169:41-51
Johns, Lauren E; Ferguson, Kelly K; Cantonwine, David E et al. (2018) Subclinical Changes in Maternal Thyroid Function Parameters in Pregnancy and Fetal Growth. J Clin Endocrinol Metab 103:1349-1358
Bedrosian, Leah D; Ferguson, Kelly K; Cantonwine, David E et al. (2018) Urinary phthalate metabolite concentrations in relation to levels of circulating matrix metalloproteinases in pregnant women. Sci Total Environ 613-614:1349-1352
Nazari, Roya; Raji?, Ljiljana; Xue, Yunfei et al. (2018) Degradation of 4-Chlorophenol in Aqueous Solution by Sono-Electro-Fenton Process. Int J Electrochem Sci 13:9214-9230
Zhou, Wei; Meng, Xiaoxiao; Rajic, Ljiljana et al. (2018) ""Floating"" cathode for efficient H2O2 electrogeneration applied to degradation of ibuprofen as a model pollutant. Electrochem commun 96:37-41
Ashrap, Pahriya; Watkins, Deborah J; Calafat, Antonia M et al. (2018) Elevated concentrations of urinary triclocarban, phenol and paraben among pregnant women in Northern Puerto Rico: Predictors and trends. Environ Int 121:990-1002
Ferguson, Kelly K; Meeker, John D; Cantonwine, David E et al. (2018) Environmental phenol associations with ultrasound and delivery measures of fetal growth. Environ Int 112:243-250
Cathey, Amber; Ferguson, Kelly K; McElrath, Thomas F et al. (2018) Distribution and predictors of urinary polycyclic aromatic hydrocarbon metabolites in two pregnancy cohort studies. Environ Pollut 232:556-562
Lan, Jiaqi; Rahman, Sheikh Mokhlesur; Gou, Na et al. (2018) Genotoxicity Assessment of Drinking Water Disinfection Byproducts by DNA Damage and Repair Pathway Profiling Analysis. Environ Sci Technol 52:6565-6575
Wang, Poguang; Giese, Roger W (2018) Interpretation of Mass Spectral Data for the Cisplatin 1,2 Intrastrand Guanine-Guanine Adduct. Chem Res Toxicol 31:1106-1107

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