Icahn School of Medicine at Mount Sinai
New York, 10029, United States
NCT Number: NCT01963065
The purpose of this study is to evaluate the impact of environmental exposures during the NICU hospitalization on preterm infant development. The research team is interested in both chemical and non-chemical exposures. Research studies have shown that babies are exposed to plasticizers (bisphenol A, phthalates) in the NICU. Plasticizers are chemicals that are used to make plastic medical equipment soft and flexible. The research team wants to find out whether NICU-based exposure to chemicals (including common plasticizers) and other non-chemical exposures like stress makes a difference to how they grow and develop.
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All sexes
Observational
New York, 10029, United States
As NICU care has matured, survival is likely for all but the most premature infants. The research emphasis is therefore shifting from survival to developing methods for improving the long term growth and development of the patients. The study team believes this research strategy must examine the potential contribution of environmental exposures that occur during the NICU stay as predictors of outcome. All subjects in the proposed study are cared for in the NICU - therefore comparisons are internally valid. While findings may not be generalizable to non-NICU populations, the potential positive impact of this work on thousands of NICU graduates makes this work a high impact public health priority. The study team's focus moderately premature infants as these infants generally experience much of the third trimester developmental window ex utero in the NICU, but generally have low rates of significant disease related to prematurity (such as intraventricular hemorrhage, bronchopulmonary dysplasia, etc). Studies of in utero exposure to common environmental chemicals and stress indicate the vulnerability of developmentally immature individuals during this same developmental window. It is therefore logical to assess whether ex utero exposures occurring in the NICU act similarly. Additionally, small cross-sectional studies indicate the high exposure levels faced by NICU inpatients. Through this study, the study team's plan to characterize the role of hospital-based exposures on preterm infant development.
The relationship between biomarkers of exposure to chemicals in the NICU and specific care practices has not been explored previously. Additionally, the potential association between NICU-based chemical or stress exposures and neurodevelopmental deficits has not been evaluated. Two previous studies assessed outcomes related to NICU phthalate exposure, but neither used exposure biomarkers or other validated exposure assessment methods to characterize initial exposure nor considered important non-chemical confounders.
The NICU-HEALTH cohort addresses these limitations and is a comprehensive, longitudinal evaluation of chemical exposure in the NICU designed to evaluate environmental chemical exposure and clinical outcomes in this vulnerable population.
Healthy volunteers accepted: Yes
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
Time frame: at 34-42 weeks postmenstrual age
Performance on a scale of newborn neurodevelopment designed both for use in newborns exposed to toxins in utero and for evaluation of infants born preterm
Time frame: at 34-42 weeks postmenstrual age
Dense-array EEG is a measure of infant neurologic function. The use of commercially-available high-density array mesh caps (Electrical Geodesics, Inc., Eugene, OR) allows the EEG to be placed on a study subject in under five minutes, and is comfortable enough to remain in place through multiple care activities and during sleep. Dense-array EEG has been used successfully used to demonstrate varying electrocortical functional connectivity between babies born at term or preterm, and has been correlated to performance on neurocognitive tests later in life.
Icahn School of Medicine at Mount Sinai
Other
Chemical Exposures and Infant Outcomes in the Neonatal Intensive Care Unit
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